CN214165144U - Integral instrument board beam module - Google Patents

Integral instrument board beam module Download PDF

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Publication number
CN214165144U
CN214165144U CN202022771154.4U CN202022771154U CN214165144U CN 214165144 U CN214165144 U CN 214165144U CN 202022771154 U CN202022771154 U CN 202022771154U CN 214165144 U CN214165144 U CN 214165144U
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China
Prior art keywords
cross rod
mounting block
block
side arm
positioning block
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CN202022771154.4U
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Chinese (zh)
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梁雄伟
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Shanghai Ziyan Mould Industry Co ltd
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Shanghai Ziyan Mould Industry Co ltd
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Abstract

The utility model provides an integral instrument board crossbeam module, include: the cross rod is provided with arc side arms which are piled up, a support rod is arranged between the side arms, and the free ends of the side arms are all detachably provided with connecting blocks; the side arm comprises a left side arm and a right side arm, the left side arm mounting block I is detachably connected with the left side arm, and a mounting through hole is formed in the left side arm mounting block I; the right side arm mounting block II is detachably connected with the right side arm, and a mounting through hole is formed in the right side arm mounting block II; and a second left arm mounting block. The utility model has the characteristics of simple to operate, promotion work efficiency.

Description

Integral instrument board beam module
Technical Field
The utility model belongs to the technical field of machinery, a integral instrument board crossbeam module is related to.
Background
With the development of the international advanced automobile manufacturing industry, the automobile testing fixture becomes an important technical means and tool for automobile production, research and development, modification and the like. The automobile inspection device is a special inspection device for measuring and evaluating the dimension quality of automobile parts, and the existing automobile inspection device becomes an indispensable device for producing automobiles and becomes a mainstream technical product. Some more important functional dimensions on the automobile structure part can also utilize the automobile to examine utensil and carry out numerical detection. And in the preparation stage of automobile production, the precision of the die is measured, adjusted and the dimension is subjected to daily management after mass production.
Among the prior art, the instrument board crossbeam is as automobile parts, and its structure is comparatively unique, does not have the structure to the instrument board crossbeam specially at present and has better processing mode, and this makes the instrument board assembly detect and very inconvenient when installing, influences work efficiency.
To sum up, for solving current not enough, the utility model relates to a simple to operate, promote work efficiency's integral instrument board crossbeam module.
Disclosure of Invention
The utility model discloses a solve the problem that prior art exists, provide a simple to operate, promote work efficiency's integral instrument board crossbeam module.
The purpose of the utility model can be realized by the following technical proposal:
a monolithic instrument panel beam module comprising:
the cross rod is provided with arc side arms which are piled up, a support rod is arranged between the side arms, and the free ends of the side arms are all detachably provided with connecting blocks;
the side arm comprises a left side arm and a right side arm, the left side arm mounting block I is detachably connected with the left side arm, and a mounting through hole is formed in the left side arm mounting block I;
the right side arm mounting block II is detachably connected with the right side arm, and a mounting through hole is formed in the right side arm mounting block II;
the left side arm mounting block II is detachably connected with the right side arm, and a mounting through hole is formed in the left side arm mounting block II;
the right end of the cross rod is sequentially provided with a right cross rod positioning block I and a right cross rod positioning block II, the right cross rod positioning block I is detachably provided with a right cross rod mounting block I and a right cross rod mounting block II, the upper parts of the right cross rod mounting block I and the right cross rod mounting block II which are both provided with mounting through holes are also provided with a right cross rod mounting block III and a right cross rod mounting block IV, the right cross rod mounting block III and the right cross rod mounting block IV are respectively detachably fixed with the right cross rod positioning block II, and the free ends of the right cross rod mounting block III and the right cross rod mounting block IV are provided with mounting through holes;
the left end of the cross rod is provided with a first left cross rod positioning block, a second left cross rod positioning block, a third left cross rod positioning block and a fourth left cross rod positioning block, the first left cross rod positioning block, the second left cross rod positioning block, the third left cross rod positioning block and the fourth left cross rod positioning block are detachably connected with the cross rod, and installation through holes are formed in the first left cross rod positioning block, the second left cross rod positioning block, the third left cross rod positioning block and the fourth left cross rod positioning block.
As a further improvement of the scheme, a fixing through hole is formed in the first right cross rod installation block, a fixing through hole is formed in the second right cross rod installation block, and the free ends of the first right cross rod installation block and the second right cross rod installation block are arranged in the installation through holes.
As the further improvement of the scheme, the right side arm mounting block II comprises a right side arm mounting block II connecting end and a right side arm mounting block II free end, and the right side arm mounting block II free end is provided with a mounting through hole.
As a further improvement of the scheme, the first left arm mounting block comprises a side arm mounting block connecting end and a side arm mounting block free end, a fixing hole is formed in the side arm mounting block connecting end, a protruding block which is identical to the left arm mounting block connecting end in shape is arranged on the outer arm of the left arm, a fixing hole is formed in the protruding block, and the position of the fixing hole is identical to the position of the fixing hole formed in the left arm mounting block connecting end.
As a further improvement of the scheme, the free end of the side arm is provided with a first step surface, the end of the connecting block is provided with a second step surface matched with the first step surface, the free end of the side arm is provided with a fixing hole, and the position of the fixing hole is consistent with that of the fixing hole on the connecting block.
Compared with the prior art, the utility model has the advantages of reasonable design, during the use, only need at first with whole cast aluminium instrument board beam module install on white automobile body or master model, then with instrument board assembly mounting point correspond whole cast aluminium instrument board beam module mounting point one-to-one locking can. The structure can be provided with a plurality of instrument panel assembly mounting points, the overall stability is strong, the processing is relatively convenient and fast, the measurement and debugging time is greatly shortened, the working efficiency is improved, and the practicability is good.
Drawings
Fig. 1 is the structure diagram of the integral instrument panel beam module of the present invention.
Fig. 2 is an exploded view of the integrated instrument panel beam module of the present invention.
Fig. 3 is a schematic structural diagram of the first left-side arm mounting block of the present invention.
Fig. 4 is a schematic structural diagram of the left arm mounting block ii of the present invention.
Detailed Description
The technical solution of the present invention will be further explained with reference to the following embodiments and accompanying drawings.
As shown in the figure, the first and second,
this integral instrument board beam module includes:
the device comprises a cross rod 10, wherein arc-shaped side arms 20 which are piled up are arranged on the cross rod 10, a support rod 22 is arranged between the side arms 20, and connecting blocks 21 are detachably arranged at the free ends of the side arms 20;
the side arm 20 comprises a left side arm and a right side arm, the left side arm mounting block 23 is detachably connected with the left side arm, and a mounting through hole 30 is formed in the left side arm mounting block 23;
the right side arm mounting block II 25 is detachably connected with the right side arm, and a mounting through hole 30 is formed in the right side arm mounting block II 25;
the left side arm mounting block II 26 is detachably connected with the right side arm, and a mounting through hole 30 is formed in the left side arm mounting block II 26;
a right cross rod positioning block I11 and a right cross rod positioning block II 12 are sequentially arranged at the right end of the cross rod 10, a right cross rod mounting block I111 and a right cross rod mounting block II 121 are detachably arranged on the right cross rod positioning block I11, and mounting through holes 30 are formed in the right cross rod mounting block I111 and the right cross rod mounting block II 121;
the upper part of the right cross bar positioning block II 12 is also provided with a right cross bar mounting block III 122 and a right cross bar mounting block IV 123, the right cross bar mounting block III 122 and the right cross bar mounting block IV 123 are respectively detachably fixed with the right cross bar positioning block II 12, and the free ends of the right cross bar mounting block III 122 and the right cross bar mounting block IV 123 are provided with mounting through holes 30;
the left end of the cross rod 10 is provided with a first left cross rod positioning block 13, a second left cross rod positioning block 14, a third left cross rod positioning block 15 and a fourth left cross rod positioning block 16, the first left cross rod positioning block 13, the second left cross rod positioning block 14, the third left cross rod positioning block 15 and the fourth left cross rod positioning block 16 are detachably connected with the cross rod, and the first left cross rod positioning block 13, the second left cross rod positioning block 14, the third left cross rod positioning block 15 and the fourth left cross rod positioning block 16 are all provided with installation through holes 30.
Among the prior art, the instrument board crossbeam is as automobile parts, and its structure is comparatively unique, does not have the structure to the instrument board crossbeam specially at present and has better processing mode, and this makes the instrument board assembly detect and very inconvenient when installing, influences work efficiency.
For solving the current not enough, the utility model designs an integral instrument board crossbeam module of simple to operate, promotion work efficiency.
In this embodiment, the positioning blocks are detachably disposed at a plurality of positions of the cross bar 10, and the mounting through holes 30 are disposed on the positioning blocks, so that the integral instrument panel beam module mainly retains the integral cast aluminum instrument panel beam module and a plurality of mounting points, which are positions where the mounting through holes 30 are disposed, wherein the integral cast aluminum instrument panel beam module is of an integral cast aluminum structure, and the mounting points of the instrument panel assembly are fixed on the instrument panel beam module.
When the automobile dashboard beam module is used, the integral cast aluminum dashboard beam module is mounted on a body in white or a main model, and then the mounting points of the dashboard assembly corresponding to the mounting points of the integral cast aluminum dashboard beam module are locked in a one-to-one correspondence manner. The structure can be provided with a plurality of instrument panel assembly mounting points, has stronger overall stability, is relatively convenient and quick in processing, greatly shortens the measurement and debugging time, and improves the working efficiency.
As a further preferred embodiment, a fixing through hole is formed on the first right cross bar mounting block 111, a fixing through hole is formed on the second right cross bar mounting block 121, and the mounting through hole 30 is formed at the free ends of the first right cross bar mounting block 111 and the second right cross bar mounting block 121.
In this embodiment, the first right rail mounting block 111 and the second right rail mounting block 121 are fixed to the first right rail positioning block 11 and the second right rail positioning block 12 respectively by the position arrangement of the fixing through holes, that is, the positioning of the mounting through holes 30 on the first right rail positioning block 11 and the second right rail positioning block 12 is realized.
As a further preferred embodiment, the second right arm mounting block 25 comprises a second right arm mounting block connecting end and a second right arm mounting block free end, and the second right arm mounting block free end is provided with a mounting through hole 30.
In this embodiment, the second side arm mounting block 25 is fixed to the right side arm, that is, the positioning of the mounting through hole 30 on the right side arm is realized, and the operation is convenient.
As a further preferred embodiment, the first left arm mounting block 23 includes a side arm mounting block connecting end 231 and a side arm mounting block free end 232, the side arm mounting block connecting end 231 is provided with a fixing hole, the outer arm of the left arm is provided with a projection 24 having a shape identical to that of the left arm mounting block connecting end 231, the projection 24 is provided with a fixing hole, and the position of the fixing hole is identical to that of the fixing hole provided on the left arm mounting block connecting end 231.
In this embodiment, the first left arm mounting block 23 can be quickly positioned by the arrangement of the projection 24 on the left arm, and moreover, the installation is facilitated by the arrangement of the position of the fixing hole, the free end 232 of the first left arm mounting block is provided with the mounting through hole 30, and the first left arm mounting block 23 and the left arm are quickly fixed, namely, the position of the mounting through hole 30 is positioned.
As a further preferred embodiment, the free end of the side arm 20 is provided with a first step surface 201, the end of the connecting block 21 is provided with a second step surface 211 matched with the first step surface 201, and the free end of the side arm 20 is provided with a fixing hole, and the position of the fixing hole is consistent with the position of the fixing hole on the connecting block 21.
In this embodiment, the first step surface 201 of the free end of the side arm 20 is attached to the second step surface 211 of the connecting block 21, and the fixing holes are aligned after attachment, so that rapid assembly is directly performed, time is saved, and working efficiency is improved.
As a further preferred embodiment, the cross bar 10 further includes a first cross bar positioning block 40, a second cross bar positioning block 41, a third cross bar positioning block 42, and a fourth cross bar positioning block 43, which are transversely and sequentially disposed, the first cross bar positioning block 40, the second cross bar positioning block 41, the third cross bar positioning block 42, and the fourth cross bar positioning block 43 are detachably fixed to the cross bar 10, and the first cross bar positioning block 40, the second cross bar positioning block 41, the third cross bar positioning block 42, and the fourth cross bar positioning block 43 are all provided with mounting through holes 30.
This integral instrument board crossbeam modular structure reasonable in design through the setting of the locating piece on horizontal pole 10 and left side arm and the right side arm for overall stability is stronger, and is convenient relatively in the aspect of the processing, and is swift, shortens the measurement debugging time greatly, has improved work efficiency.
The preferred embodiments of the present invention are described herein, but the scope of the present invention is not limited thereto. Modifications or additions to or replacement by similar means to those skilled in the art to which the invention pertains to the specific embodiments described herein are intended to be covered by the scope of the invention.

Claims (5)

1. An integral instrument panel beam module, comprising:
the device comprises a cross rod (10), wherein arc-shaped side arms (20) which are stacked are arranged on the cross rod (10), a support rod (22) is arranged between the side arms (20), and connecting blocks (21) are detachably arranged at the free ends of the side arms (20);
the side arm (20) comprises a left side arm and a right side arm, the left side arm mounting block (23) is detachably connected with the left side arm, and a mounting through hole (30) is formed in the left side arm mounting block (23);
the right side arm mounting block II (25), the right side arm mounting block II (25) is detachably connected with the right side arm, and a mounting through hole (30) is formed in the right side arm mounting block II (25);
the left side arm mounting block II (26) is detachably connected with the right side arm, and a mounting through hole (30) is formed in the left side arm mounting block II (26);
a right cross rod positioning block I (11) and a right cross rod positioning block II (12) are sequentially arranged at the right end of the cross rod (10), a right cross rod mounting block I (111) and a right cross rod mounting block II (121) are detachably arranged on the right cross rod positioning block I (11), and mounting through holes (30) are formed in the right cross rod mounting block I (111) and the right cross rod mounting block II (121);
the upper part of the right cross rod positioning block II (12) is also provided with a right cross rod mounting block III (122) and a right cross rod mounting block IV (123), the right cross rod mounting block III (122) and the right cross rod mounting block IV (123) are respectively detachably fixed with the right cross rod positioning block II (12), and the free ends of the right cross rod mounting block III (122) and the right cross rod mounting block IV (123) are provided with mounting through holes (30);
the left end of the cross rod (10) is provided with a first left cross rod positioning block (13), a second left cross rod positioning block (14), a third left cross rod positioning block (15) and a fourth left cross rod positioning block (16), wherein the first left cross rod positioning block (13), the second left cross rod positioning block (14), the third left cross rod positioning block (15) and the fourth left cross rod positioning block (16) are detachably connected with the cross rod, and installation through holes (30) are formed in the first left cross rod positioning block (13), the second left cross rod positioning block (14), the third left cross rod positioning block (15) and the fourth left cross rod positioning block (16).
2. The integrated instrument panel cross beam module of claim 1, wherein the first right cross beam mounting block (111) is provided with a fixing through hole, the second right cross beam mounting block (121) is provided with a fixing through hole, and the mounting through hole (30) is provided at the free ends of the first right cross beam mounting block (111) and the second right cross beam mounting block (121).
3. The integrated instrument panel cross member module of claim 1, wherein the second right arm mounting block (25) comprises a second right arm mounting block connecting end and a second right arm mounting block free end, the second right arm mounting block free end being provided with a mounting through hole (30).
4. The integrated instrument panel beam module according to claim 1, wherein the left arm mounting block I (23) comprises a side arm mounting block connecting end (231) and a side arm mounting block free end (232), the side arm mounting block connecting end (231) is provided with a fixing hole, the outer arm of the left side arm is provided with a projection (24) which is in the same shape as the left arm mounting block connecting end (231), the projection (24) is provided with a fixing hole, and the position of the fixing hole is in the same position as the position of the fixing hole arranged on the left arm mounting block connecting end (231).
5. The integral instrument panel beam module according to claim 1, wherein the free ends of the side arms (20) are provided with first step surfaces (201), the end of the connecting block (21) is provided with second step surfaces (211) matched with the first step surfaces (201), and the free ends of the side arms (20) are provided with fixing holes, and the positions of the fixing holes are consistent with the positions of the fixing holes on the connecting block (21).
CN202022771154.4U 2020-11-26 2020-11-26 Integral instrument board beam module Active CN214165144U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022771154.4U CN214165144U (en) 2020-11-26 2020-11-26 Integral instrument board beam module

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Application Number Priority Date Filing Date Title
CN202022771154.4U CN214165144U (en) 2020-11-26 2020-11-26 Integral instrument board beam module

Publications (1)

Publication Number Publication Date
CN214165144U true CN214165144U (en) 2021-09-10

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CN202022771154.4U Active CN214165144U (en) 2020-11-26 2020-11-26 Integral instrument board beam module

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115158485A (en) * 2022-06-28 2022-10-11 重庆长安汽车股份有限公司 Steering support beam assembly and automobile

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115158485A (en) * 2022-06-28 2022-10-11 重庆长安汽车股份有限公司 Steering support beam assembly and automobile
CN115158485B (en) * 2022-06-28 2023-10-27 重庆长安汽车股份有限公司 Steering support beam assembly and automobile

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