CN103982761B - Supporting member - Google Patents

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Publication number
CN103982761B
CN103982761B CN201410212368.4A CN201410212368A CN103982761B CN 103982761 B CN103982761 B CN 103982761B CN 201410212368 A CN201410212368 A CN 201410212368A CN 103982761 B CN103982761 B CN 103982761B
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China
Prior art keywords
adjustment piece
screw thread
adjustment
strut
supporting member
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CN201410212368.4A
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Chinese (zh)
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CN103982761A (en
Inventor
区炜锋
梁元豪
刘丽军
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TCL China Star Optoelectronics Technology Co Ltd
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Shenzhen China Star Optoelectronics Technology Co Ltd
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Priority to CN201410212368.4A priority Critical patent/CN103982761B/en
Publication of CN103982761A publication Critical patent/CN103982761A/en
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Abstract

The invention discloses a kind of supporting member, comprising: a shell; One strut, have the first end and the second end, described strut has clamping part, and described clamping part is between described first end and described second end; And one adjusts component, be socketed in described shell, described adjustment component has an accommodating chamber and one first through hole, described first through hole is connected with described accommodating chamber, is provided with a spring in described accommodating chamber, and described strut is through described first through hole, the described clamping part of described strut is arranged in described accommodating chamber, first end of described strut is exposed to outside described adjustment component, and the second end of described strut passes described spring, described clamping part and described spring contact; Wherein, the shape of the cross section of described shell is corresponding with the shape of described adjustment element cross-section.Supporting member of the present invention can realize the adjustment of the decrement to spring, thus the compensation that realization decays to the length of spring.

Description

Supporting member
[technical field]
The present invention relates to display floater production technical field, particularly a kind of supporting member.
[background technique]
Produce in line at display floater, the board containing platform (Stage) generally all uses push rod (LiftPin) mechanism, and the effect of this post rod mechanism allows manipulator moved into from platform by glass substrate or take out of.Along with the development of display floater technology, the area of glass substrate is increasing, and thickness is more and more thinner, and the speed goes of moving glass substrate is fast, and in this case, the probability of glass substrate fragmentation increases thereupon.
In order to reduce the fragmentation risk of glass substrate, existing solution increases spring on post rod mechanism, to cushion glass substrate.
In practice, inventor finds that prior art at least exists following problem:
In use for some time, the elasticity of above-mentioned spring can reduce, and the length of above-mentioned spring may shorten.Now, above-mentioned post rod mechanism then cannot support glass substrate effectively.
Therefore, be necessary to propose a kind of new technological scheme, to solve the problems of the technologies described above.
[summary of the invention]
The object of the present invention is to provide a kind of supporting member, it can realize the adjustment of the decrement to spring, thus the compensation that realization decays to the length of spring.
For solving the problem, technological scheme of the present invention is as follows:
A kind of supporting member, described supporting member comprises: a shell; One strut, have the first end and the second end, described strut has clamping part, and described clamping part is between described first end and described second end; And one adjusts component, be socketed in described shell, described adjustment component has an accommodating chamber and one first through hole, described first through hole is connected with described accommodating chamber, is provided with a spring in described accommodating chamber, and described strut is through described first through hole, the described clamping part of described strut is arranged in described accommodating chamber, first end of described strut is exposed to outside described adjustment component, and the second end of described strut passes described spring, described clamping part and described spring contact; Wherein, the shape of the cross section of described shell is corresponding with the shape of described adjustment element cross-section; Described adjustment component is for adjusting the initial compression amount of described spring; Described adjustment component comprises: one first adjustment piece, and described first through hole is arranged on described first adjustment piece, and described first adjustment piece has the first inner chamber and the first opening; One second adjustment piece, comprise the first Embedded Division, described first Embedded Division is embedded in described first inner chamber by described first opening, end face and described first inner chamber of described first Embedded Division form described accommodating chamber, the described end face of described first Embedded Division and described spring contact, the described end face of described first Embedded Division is provided with the second through hole, and described second end of described strut is through described second through hole.
In above-mentioned supporting member, described first inner chamber has the first screw thread; The outer wall of described first Embedded Division of described second adjustment piece has the second screw thread; Wherein, described first screw thread and described second screw thread match, and described first adjustment piece and described second adjustment piece are integrated by described first screw thread and described second screw thread couple.
In above-mentioned supporting member, described second adjustment piece also comprises: one first holds passage, and described first holds passage is connected with described second through hole, and described first holds passage for holding described second end of described strut.
In above-mentioned supporting member, described adjustment component is also for adjusting the initial support-position of described strut; Described adjustment component also comprises: one the 3rd adjustment piece, and described 3rd adjustment piece is connected with described second adjustment piece, and described 3rd adjustment piece is arranged on described shell.
In above-mentioned supporting member, described 3rd adjustment piece has the second inner chamber and the second opening; Described second adjustment piece also comprises: one second Embedded Division, and described second Embedded Division is embedded in described second inner chamber by described second opening.
In above-mentioned supporting member, the outer wall of described second Embedded Division of described second adjustment piece has the 3rd screw thread; Described second inner chamber has the 4th screw thread; Wherein, described 3rd screw thread and described 4th screw thread match, and described second adjustment piece and described 3rd adjustment piece are integrated by described 3rd screw thread and described 4th screw thread couple.
In above-mentioned supporting member, described second adjustment piece has the 3rd inner chamber and the 3rd opening; Described 3rd adjustment piece also comprises: three embedded portion, described three embedded portion is embedded in described 3rd inner chamber by described second opening.
In above-mentioned supporting member, described 3rd inner chamber has the 5th screw thread; The outer wall in the described three embedded portion of described 3rd adjustment piece has the 6th screw thread; Wherein, described 5th screw thread and described 6th screw thread match, and described second adjustment piece and described 3rd adjustment piece are integrated by described 5th screw thread and described 6th screw thread couple.
In above-mentioned supporting member, described 3rd adjustment piece also comprises: one second holds passage; The end face in described three embedded portion is also provided with third through-hole, and described second holds passage is connected with described third through-hole, and described second holds passage for holding described second end of described strut.
Hinge structure, the present invention is conducive to realizing regulating the decrement of described spring neatly, thus the compensation that realization decays to the length of described spring.
For foregoing of the present invention can be become apparent, preferred embodiment cited below particularly, and coordinate institute's accompanying drawings, be described in detail below.
[accompanying drawing explanation]
Fig. 1 is the schematic diagram of the first embodiment of supporting member of the present invention;
Fig. 2 is the schematic diagram of first embodiment in A-A ' cross section in Fig. 1;
Fig. 3 is the schematic diagram of second embodiment in A-A ' cross section in Fig. 1;
Fig. 4 is the schematic diagram of the second embodiment of supporting member of the present invention;
Fig. 5 is the schematic diagram of the 3rd embodiment of supporting member of the present invention.
[embodiment]
The explanation of following embodiment is graphic with reference to what add, can in order to the specific embodiment implemented in order to illustrate the present invention.
With reference to the schematic diagram that figure 1, Fig. 2 and Fig. 3, Fig. 1 are the first embodiment of supporting member of the present invention, Fig. 2 is the schematic diagram of first embodiment in A-A ' cross section in Fig. 1, and Fig. 3 is the schematic diagram of second embodiment in A-A ' cross section in Fig. 1.
The supporting member of the present embodiment comprises shell 101, strut 102 and adjustment component 103.Wherein, described shell 101 can be set to tubulose.Described strut 102 has the first end 1021 and the second end 1022, and described strut 102 has clamping part 1023, and described clamping part 1023 is between described first end 1021 and described second end 1022.Described clamping part 1023 can be a clasp (such as, C type clasp), and described clasp snaps onto on described strut 102, and the snapping position of described clasp is between described first end 1021 and described second end 1022.Described adjustment component 103 is socketed in described shell 101, described adjustment component 103 has an accommodating chamber and one first through hole 10311, described first through hole 10311 is connected with described accommodating chamber, a spring 1033 is provided with in described accommodating chamber, described strut 102 is through described first through hole 10311, the described clamping part 1023 of described strut 102 is arranged in described accommodating chamber, first end 1021 of described strut 102 is exposed to outside described adjustment component 103, second end 1022 of described strut 102 is through described spring 1033, described clamping part 1023 contacts with described spring 1033, namely, part between the described clamping part 1023 of described strut 102 and described second end 1022 is positioned at described adjustment component 103.The shape of the cross section of described shell 101 is corresponding with the shape of the cross section of described adjustment component 103.Particularly, as shown in Figure 2, in the shape of the cross section of described shell 101, the shape corresponding with its inwall is Hexagon, and the shape of the cross section of described adjustment component 103 is Hexagon.
In the present embodiment, the inwall of described shell 101 is provided with the first limited part (201,301), the outer wall of described adjustment component 103 is provided with the second limited part (202,302), the position of described first limited part (201,301) residing on described shell 101 is corresponding with the position residing for described second limited part (202,302) is on described adjustment component 103, and described first limited part (201,301) and described second limited part (202,302) splice mutually.Such as, as shown in Figure 2, the interior angle of described first limited part 201 corresponding to the inwall of described shell 101, the exterior angle of described second limited part 202 corresponding to the outer wall of described adjustment component 103, described interior angle splices mutually with described exterior angle.Again such as, as shown in Figure 3, described first limited part 3011 is the chute on the inwall of described shell 101, and described second limited part 302 is the guide rail on the outer wall of described adjustment component 103, and described chute and described guide rail are nested.Any one arranging that described first limited part (201,301) and described second limited part (202,302) be conducive to preventing in described shell 101 and described adjustment component 103 is rotated around the axle corresponding to described supporting member.
In addition, described shell 101 and described adjustment component 103 are by described first limited part (201, 301) and described second limited part (202, 302) be separated or combine, particularly, at described adjustment component 103 from the process that described shell 101 departs from, described adjustment component 103 is by described first limited part (201, 301) and described second limited part (202, 302) relative sliding, in the process that described adjustment component 103 is combined with described shell 101, described adjustment component 103 is by described first limited part (201, 301) and described second limited part (202, 302) relative sliding.
In the supporting member of the present embodiment, described adjustment component 103 is for adjusting the initial compression amount of described spring 1033.Wherein, described adjustment component 103 comprises the first adjustment piece 1031 and the second adjustment piece 1032.Described first through hole 10311 is arranged on described first adjustment piece 1031, described first adjustment piece 1031 has the first inner chamber 10312 and the first opening 10313, described first opening 10313 is arranged at the relative two ends of described first adjustment piece 1031 respectively with described first through hole 10311, particularly, described first through hole 10311 is positioned at one end place of described first adjustment piece 1031 described second adjustment piece 1032 dorsad, and described first opening 10313 is positioned at one end place of described first adjustment piece 1031 towards described second adjustment piece 1032.Described first inner chamber 10312 is arranged between described first through hole 10311 and described first opening 10313.Described second adjustment piece 1032 comprises the first Embedded Division 10321, described first Embedded Division 10321 is positioned at described second adjustment piece 1032 one end towards described first adjustment piece 1031, described first Embedded Division 10321 is embedded in described first inner chamber 10312 by described first opening 10313, end face and described first inner chamber 10312 of described first Embedded Division 10321 form described accommodating chamber, the described end face of described first Embedded Division 10321 contacts with described spring 1033, namely, described spring 1033 is clipped in the middle by the described described end face of the first Embedded Division 10321 and the described clamping part 1023 of described strut 102, the described end face of described first Embedded Division 10321 is provided with the second through hole 10322, described second end 1022 of described strut 102 is through described second through hole 10322.The radius of the cross section of described first Embedded Division 10321 is corresponding with the radius of the cross section of described first opening 10313.
In the supporting member of the present embodiment, described first inner chamber 10312 has the first screw thread 10314, and preferably, described first screw thread 10314 is arranged in described first inner chamber 10312 near the position of described first opening 10313.The outer wall of described first Embedded Division 10321 of described second adjustment piece 1032 has the second screw thread 10323.Wherein, described first screw thread 10314 and described second screw thread 10323 match, namely, pitch, the sense of rotation of described first screw thread 10314 and described second screw thread 10323 are identical, and described first adjustment piece 1031 and described second adjustment piece 1032 are coupled as one by described first screw thread 10314 and described second screw thread 10323.
In the present embodiment, described adjustment component 103 is for adjusting the initial compression amount of described spring 1033 in the following manner: when described adjustment component 103 departs from described shell 101 (taking out described adjustment component 103 from described shell 101), fixing described first adjustment piece 1031, any one in described second adjustment piece 1032, around the axle corresponding to described strut 102, rotate described first adjustment piece 1031, other one in described second adjustment piece 1032, be the first intended distance with the distance of the described end face of the first Embedded Division 10321 and the described clamping part 1023 of described strut 102 that make described second adjustment piece 1032, wherein, described first intended distance is corresponding with the initial compression amount of described spring 1033.Such as, fixing described first adjustment piece 1031, around described strut 102 length direction corresponding to axle, rotate the second adjustment piece 1032, make described first adjustment piece 1031 and described second adjustment piece 1032 under the cooperation of described first screw thread 10314 and described second screw thread 10323 close to each other or mutually away from, thus make the distance between the end face of described first Embedded Division 10321 and described clamping part 1023 be described first intended distance.Wherein, initial compression amount is corresponding with pre compressed magnitude, and pre compressed magnitude refers to described spring 1033 in advance by the distance compressed before work, and such as, as this parameter is set to 0, then spring 1033 is in the state loosened completely.
In the supporting member of the present embodiment, described second adjustment piece 1032 also comprises the first accommodation path 10 324, described first holds path 10 324 is connected with described second through hole 10322, and described first accommodation path 10 324 is for holding described second end 1022 of described strut 102 and described strut 102 at least partially.Hold path 10 324 by arranging described first on described second adjustment piece 1032, be conducive to the weight of the object supported at described strut 102 larger time, described adjustment component 103 still has strut 102 described in enough space.
In the present embodiment, described second supporting member is supported by described shell 101, and particularly, described second supporting member is supported by the inwall of described shell 101 or inner bottom surface.Described second adjustment piece 1032 supports described first adjustment piece 1031 and described strut 102.
Because described spring 1033 is after using for a long time, elasticity can decay, described spring 1033 length may shorten, pass through technique scheme, can by finely tuning the decrement of described spring 1033, the described strut 102 caused with the shorten length compensated due to described spring 1033 cannot realize the deficiency of support function effectively.The present invention is conducive to regulating the decrement of described spring 1033 neatly, achieves the compensation decayed to the length of described spring 1033.
It is the schematic diagram of the second embodiment of supporting member of the present invention with reference to figure 4, Fig. 4.The supporting member of the present embodiment is similar to above-mentioned first embodiment, and difference is:
Described adjustment component 103 is also for adjusting the initial support-position of described strut 102.Wherein, described initial support-position can refer to: in an initial condition, the height of described first end 1021 (or described second end 1022, the described clamping part 1023) in the vertical direction of described strut 102.
For this reason, described adjustment component 103 also comprises the 3rd adjustment piece 1034, described 3rd adjustment piece 1034 is connected with described second adjustment piece 1032, described 3rd adjustment piece 1034 is arranged on described shell 101, described 3rd adjustment piece 1034 is supported by described shell 101, particularly, described 3rd adjustment piece 1034 is supported by the inwall of described shell 101 or inner bottom surface.Described 3rd adjustment piece 1034 supports described second adjustment piece 1032, described first adjustment piece 1031 and described strut 102.
In the supporting member of the present embodiment, described 3rd adjustment piece 1034 has the second inner chamber 10341 and the second opening.Described second opening is positioned at described 3rd adjustment piece 1034 towards on one end of described second adjustment piece 1032.Described second inner chamber 10341 is connected with described second opening.
Described second adjustment piece 1032 also comprises the second Embedded Division 10325.The radius of the cross section of described second Embedded Division 10325 is corresponding with the radius of the cross section of described second opening.
Wherein, described second Embedded Division 10325 is embedded in described second inner chamber 10341 by described second opening.
In the supporting member of the present embodiment, the outer wall of described second Embedded Division 10325 of described second adjustment piece 1032 has the 3rd screw thread 10326.
Described second inner chamber 10341 has the 4th screw thread 10342.Preferably, described 4th screw thread 10342 is arranged in described second inner chamber 10341 near the position of described second opening.
Wherein, described 3rd screw thread 10326 and described 4th screw thread 10342 match, namely, pitch, the sense of rotation of described 3rd screw thread 10326 and described 4th screw thread 10342 are identical, and described second adjustment piece 1032 and described 3rd adjustment piece 1034 are coupled as one by described 3rd screw thread 10326 and described 4th screw thread 10342.
Described adjustment component 103 is for adjusting the initial support-position of described strut 102 in the following manner: when described adjustment component 103 departs from described shell 101 (taking out described adjustment component 103 from described shell 101), fixing described second adjustment piece 1032, any one in described 3rd adjustment piece 1034, around the axle corresponding to described strut 102, rotate described second adjustment piece 1032, other one in described 3rd adjustment piece 1034, be the second intended distance with the distance of the bottom surface of the end face and described 3rd adjustment piece 1034 that make described first Embedded Division 10321 of described second adjustment piece 1032, wherein, described second intended distance is corresponding with described initial support-position and described initial compression amount.Such as, fixing described second adjustment piece 1032, around described strut 102 length direction corresponding to axle, rotate the 3rd adjustment piece 1034, make described second adjustment piece 1032 and described 3rd adjustment piece 1034 under the cooperation of described 3rd screw thread 10326 and described 4th screw thread 10342 close to each other or mutually away from, thus the distance making the end face of described first Embedded Division 10321 of described second adjustment piece 1032 and the bottom surface of described 3rd adjustment piece 1034 is the second intended distance.
Described 3rd adjustment piece 1034 can be fixed on described shell 101 by screw, and particularly, described 3rd adjustment piece 1034 and described shell 101 are provided with screw, described 3rd adjustment piece 1034 and described shell 101 are fixed as one by described screw.Described 3rd adjustment piece 1034 can also be buckled by spring 1033 and spring 1033 to buckle groove fixing with on described shell 101, particularly, described 3rd adjustment piece 1034 and described shell 101 are respectively arranged with spring 1033 is buckled, one in groove buckled by spring 1033, described spring 1033 is buckled, described spring 1033 is buckled groove and mutually fastened.
When regulating the pre compressed magnitude of described spring 1033, first described first adjustment piece 1031 (outer sleeve) is lifted away from, a hand fixes described first adjustment piece (upper bush) 1031 and described 3rd adjustment piece (lower sleeve) 1034, another hand-screw turns described second adjustment piece (middle sleeve) 1032, the direction of its axle corresponding to described strut 102 is moved, thus regulates the pre compressed magnitude of described spring 1033.When rotating described second adjustment piece 1032, described first adjustment piece 1031 and the 3rd adjustment piece 1034 do identical and contrary the rotating in direction of speed relative to described second adjustment piece 1032, thus the relative movement making described first adjustment piece 1031 and the described 3rd adjust the direction of 1034 axles corresponding to described strut 102 is zero (because described first adjustment piece 1031 is equal with the pitch of described second adjustment piece 1032 internal thread), therefore can realize only regulating the pre compressed magnitude of described spring 1033 and the whole height not changing described strut 102.
When adjusting the initial support-position of described strut 102, lift described first adjustment piece 1031, fixing described first adjustment piece 1031 and described second adjustment piece 1032, rotate described 3rd adjustment piece 1034, namely strut 102 described in adjustable whole height and do not change the pre compressed magnitude of described spring 1033.
By technique scheme, be conducive to adjusting the pre compressed magnitude of described spring 1033 and the initial support-position of described strut 102, thus the effective support making supporting member of the present invention can realize objects such as glass substrates.
It is the schematic diagram of the 3rd embodiment of supporting member of the present invention with reference to figure 5, Fig. 5.The supporting member of the present embodiment is similar to above-mentioned second embodiment, and difference is:
Described second adjustment piece 1032 has the 3rd inner chamber 10327 and the 3rd opening.Described 3rd opening is positioned at one end place of described second adjustment piece 1032 described first adjustment piece 1031 dorsad.Described 3rd opening is connected with described 3rd inner chamber 10327, and described 3rd inner chamber 10327 and described first holds path 10 324 and is connected.
Described 3rd adjustment piece 1034 also comprises three embedded portion 10343.The radius of the cross section in described three embedded portion 10343 is corresponding with the radius of the cross section of described 3rd opening.Described 3rd adjustment piece 1034 is also provided with the second accommodation path 10 345, and it is corresponding that the described second accommodation position and described first of path 10 345 on described 3rd adjustment piece 1034 holds the position of path 10 324 on described second adjustment piece 1032.
Wherein, described three embedded portion 10343 is embedded in described 3rd inner chamber 10327 by described second opening.
In the supporting member of the present embodiment, described 3rd inner chamber 10327 has the 5th screw thread 10328.
The outer wall in the described three embedded portion 10343 of described 3rd adjustment piece 1034 has the 6th screw thread 10344.
Wherein, described 5th screw thread 10328 and described 6th screw thread 10344 match, namely, pitch, the sense of rotation of described 5th screw thread 10328 and described 6th screw thread 10344 are identical, and described second adjustment piece 1032 and described 3rd adjustment piece 1034 are coupled as one by described 5th screw thread 10328 and described 6th screw thread 10344.
The end face in described three embedded portion 10343 is also provided with third through-hole, described second holds path 10 345 is connected with described third through-hole, and described second holds path 10 345 for holding described second end 1022 of described strut 102 and described strut 102 at least partially.
In sum; although the present invention discloses as above with preferred embodiment; but above preferred embodiment is also not used to limit the present invention; those of ordinary skill in the art; without departing from the spirit and scope of the present invention; all can do various change and retouching, the scope that therefore protection scope of the present invention defines with claim is as the criterion.

Claims (9)

1. a supporting member, is characterized in that, described supporting member comprises:
One shell;
One strut, have the first end and the second end, described strut has clamping part, and described clamping part is between described first end and described second end; And
One adjustment component, be socketed in described shell, described adjustment component has an accommodating chamber and one first through hole, described first through hole is connected with described accommodating chamber, is provided with a spring in described accommodating chamber, and described strut is through described first through hole, the described clamping part of described strut is arranged in described accommodating chamber, first end of described strut is exposed to outside described adjustment component, and the second end of described strut passes described spring, described clamping part and described spring contact;
Wherein, the shape of the cross section of described shell is corresponding with the shape of described adjustment element cross-section;
Described adjustment component is for adjusting the initial compression amount of described spring;
Described adjustment component comprises:
One first adjustment piece, described first through hole is arranged on described first adjustment piece, and described first adjustment piece has the first inner chamber and the first opening;
One second adjustment piece, comprise the first Embedded Division, described first Embedded Division is embedded in described first inner chamber by described first opening, end face and described first inner chamber of described first Embedded Division form described accommodating chamber, the described end face of described first Embedded Division and described spring contact, the described end face of described first Embedded Division is provided with the second through hole, and described second end of described strut is through described second through hole.
2. supporting member according to claim 1, is characterized in that, described first inner chamber has the first screw thread;
The outer wall of described first Embedded Division of described second adjustment piece has the second screw thread;
Wherein, described first screw thread and described second screw thread match, and described first adjustment piece and described second adjustment piece are integrated by described first screw thread and described second screw thread couple.
3. supporting member according to claim 1, is characterized in that, described second adjustment piece also comprises:
One first holds passage, and described first holds passage is connected with described second through hole, and described first holds passage for holding described second end of described strut.
4. supporting member according to claim 1, is characterized in that, described adjustment component is also for adjusting the initial support-position of described strut;
Described adjustment component also comprises:
One the 3rd adjustment piece, described 3rd adjustment piece is connected with described second adjustment piece, and described 3rd adjustment piece is arranged on described shell.
5. supporting member according to claim 4, is characterized in that, described 3rd adjustment piece has the second inner chamber and the second opening;
Described second adjustment piece also comprises:
One second Embedded Division, described second Embedded Division is embedded in described second inner chamber by described second opening.
6. supporting member according to claim 5, is characterized in that, the outer wall of described second Embedded Division of described second adjustment piece has the 3rd screw thread;
Described second inner chamber has the 4th screw thread;
Wherein, described 3rd screw thread and described 4th screw thread match, and described second adjustment piece and described 3rd adjustment piece are integrated by described 3rd screw thread and described 4th screw thread couple.
7. supporting member according to claim 5, is characterized in that, described second adjustment piece has the 3rd inner chamber and the 3rd opening;
Described 3rd adjustment piece also comprises:
Three embedded portion, described three embedded portion is embedded in described 3rd inner chamber by described second opening.
8. supporting member according to claim 7, is characterized in that, described 3rd inner chamber has the 5th screw thread;
The outer wall in the described three embedded portion of described 3rd adjustment piece has the 6th screw thread;
Wherein, described 5th screw thread and described 6th screw thread match, and described second adjustment piece and described 3rd adjustment piece are integrated by described 5th screw thread and described 6th screw thread couple.
9. supporting member according to claim 7, is characterized in that, described 3rd adjustment piece also comprises:
One second holds passage;
The end face in described three embedded portion is also provided with third through-hole, and described second holds passage is connected with described third through-hole, and described second holds passage for holding described second end of described strut.
CN201410212368.4A 2014-05-20 2014-05-20 Supporting member Active CN103982761B (en)

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106982533A (en) * 2016-01-18 2017-07-25 中兴通讯股份有限公司 Attachment means and the communication subrack using the attachment means
CN111252552A (en) * 2020-01-21 2020-06-09 Tcl华星光电技术有限公司 Supporting assembly and carrying device

Citations (6)

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Publication number Priority date Publication date Assignee Title
AT291751B (en) * 1968-03-29 1971-07-26 Heer & Co Tripods, in particular for photographic apparatus
DE2926077A1 (en) * 1979-06-28 1981-01-08 Bremshey Ag Extensible hollow column for furniture, or stands - has clamping jaws spring loaded outwards at bottom of hollow release bar
US5916047A (en) * 1994-02-03 1999-06-29 Huffy Corporation Portable basketball goal support system with separate ballast tank
EP1479963A2 (en) * 2003-05-22 2004-11-24 Heinrich J. Kesseböhmer KG Telescopic support
CN201764219U (en) * 2009-09-11 2011-03-16 王鹏飞 Support
CN202691502U (en) * 2012-05-21 2013-01-23 安徽省广德中鼎汽车工具有限公司 Manual quick-adjusting support frame

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT291751B (en) * 1968-03-29 1971-07-26 Heer & Co Tripods, in particular for photographic apparatus
DE2926077A1 (en) * 1979-06-28 1981-01-08 Bremshey Ag Extensible hollow column for furniture, or stands - has clamping jaws spring loaded outwards at bottom of hollow release bar
US5916047A (en) * 1994-02-03 1999-06-29 Huffy Corporation Portable basketball goal support system with separate ballast tank
EP1479963A2 (en) * 2003-05-22 2004-11-24 Heinrich J. Kesseböhmer KG Telescopic support
CN201764219U (en) * 2009-09-11 2011-03-16 王鹏飞 Support
CN202691502U (en) * 2012-05-21 2013-01-23 安徽省广德中鼎汽车工具有限公司 Manual quick-adjusting support frame

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