Transparent glass flattening assembly platform mechanism

By setting leveling and side support mechanisms at the four corners of the bottom of the translucent glass assembly platform, rapid and precise leveling and stable support are achieved, solving the problems of low leveling efficiency and secondary tilting of the assembly platform, and improving assembly quality and efficiency.

CN223981411UActive Publication Date: 2026-03-10DALIAN YISHENGDA INTELLIGENT TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

The existing light-transmitting glass assembly platform has low leveling efficiency and is prone to secondary tilting after leveling, resulting in unstable assembly quality and difficulty in meeting the needs of large-scale production.

Method used

A leveling mechanism and a side support mechanism are set at the four corners of the bottom of the assembly platform. The screw and the cap work together to achieve fast and accurate leveling. The side support mechanism supports the leveled platform to prevent it from shifting.

Benefits of technology

It improves the efficiency of light-transmitting glass assembly, ensures the stability and installation quality of the assembly platform, extends the service life of the leveling mechanism, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a light-transmitting glass flat assembling platform mechanism which comprises a working table and an assembling platform arranged on the working table, and an accessory assembling plate is arranged on the assembling platform. Leveling mechanisms are arranged between the four corners of the bottom of the assembling platform and the workbench, and side supporting mechanisms are further arranged between the four corners of the bottom of the assembling platform and the workbench. The utility model relates to the technical field of light-transmitting glass processing and assembling, through the leveling mechanisms arranged at the four corners of the bottom of the assembling platform, leveling can be carried out through rotation of a wrench, rapid and accurate leveling of the assembling platform is achieved, and the assembling efficiency of the light-transmitting glass is improved. And due to the arrangement of the side supporting mechanism, the stability of the assembly platform in the using process is effectively guaranteed, the situation that the assembly platform deviates due to the variable quantity of the leveling mechanism in the operation process is avoided, and the installation quality of the light-transmitting glass is guaranteed. Moreover, the screw thread of the leveling mechanism is effectively protected, the service life of the leveling mechanism is prolonged, and the maintenance cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to light -transmitting glass processing assembly technical field, concretely is a kind of light -transmitting glass flat assembly platform mechanism. BACKGROUND

[0002] In the traditional light-transmitting glass assembly process, it is a technical problem to ensure the completeness of the edge of the light-transmitting glass and the flatness of the carrier. The carrier is usually arranged in the accessory assembly plate, and a mechanical hand is needed to move the accessory assembly plate to the assembly platform during use. The assembly platform is installed on the workbench, and its stability is crucial to the installation quality of the light-transmitting glass.

[0003] In the prior art, the leveling efficiency of the light-transmitting glass assembly platform is low, which cannot meet the needs of large-scale production. At the same time, the leveling accuracy is difficult to guarantee, and after leveling, secondary inclination may occur in subsequent production operations, which may easily lead to unstable light-transmitting glass assembly quality. In view of these problems, it is necessary to study a new type of light-transmitting glass flat assembly platform mechanism to improve the assembly quality and efficiency. UTILITY MODEL CONTENT

[0004] In view of the deficiencies of the prior art, the utility model provides a light-transmitting glass flat assembly platform mechanism, which solves the problems of low leveling efficiency of the existing light-transmitting glass assembly platform and secondary inclination after leveling in subsequent production operations.

[0005] To achieve the above-mentioned purpose, the utility model realizes the following technical scheme: a light-transmitting glass flat assembly platform mechanism, comprising a workbench and an assembly platform arranged on the workbench, wherein the assembly platform is provided with an accessory assembly plate;

[0006] A leveling mechanism is arranged between the bottom corners of the assembly platform and the workbench, for adjusting the flatness of the assembly platform.

[0007] A side support mechanism is further arranged between the bottom corners of the assembly platform and the workbench, for supporting the leveled assembly platform.

[0008] Preferably, an operation gap is arranged between the assembly platform and the workbench for adjusting the leveling mechanism and the side support mechanism, and the leveling mechanism and the side support mechanism are located in the operation gap.

[0009] Preferably, the leveling mechanism comprises:

[0010] A screw rod;

[0011] A cap is screwed on the screw rod and moves up and down on the surface of the screw rod. The cap is rotatably connected to the assembly platform by a rotating piece.

[0012] Preferably, the screw has a first threaded section and a second threaded section on each side, the first threaded section is fixed on the worktable, and the cap is connected to the second threaded section.

[0013] Preferably, the assembly platform is provided with a through hole that can accommodate the length of the screw portion, and the cap is rotatably connected in the through hole through a rotating component.

[0014] Preferably, the top of the through hole is provided with a cap.

[0015] Preferably, the side support mechanism includes:

[0016] A first wedge block and a second wedge block, the first wedge block being fixed on the worktable and the second wedge block being fixed on the assembly platform; the opposing surfaces of the first and second wedge blocks are both inclined surfaces, and the two opposing inclined surfaces form an outwardly opening flared cavity;

[0017] A supporting wedge block is disposed inside the expanded oral cavity, and its upper and lower surfaces respectively abut against the two inclined surfaces;

[0018] The limiting component guides the first wedge block and limits the support wedge block.

[0019] Preferably, the limiting component includes:

[0020] A guide rod is fixed on the second wedge block, and the first wedge block is slidably sleeved on the guide rod;

[0021] An adjusting rod is fixed to the bottom of the guide rod, and the supporting wedge block is sleeved on the transverse adjusting rod and moves laterally on the adjusting rod;

[0022] A locking element is connected to the adjusting rod and abuts against the outside of the support wedge block;

[0023] A spring is sleeved on the adjusting rod, with both ends abutting against the inner side of the support wedge block and the guide rod.

[0024] Preferably, the adjusting rod and the guide rod are perpendicular to each other.

[0025] Preferably, the adjusting rod is a threaded rod, and the locking element is a nut.

[0026] The beneficial effects of this utility model are as follows: By using the translucent glass leveling assembly platform mechanism provided by this utility model, compared with the prior art, the leveling mechanisms set at the four corners of the bottom of the assembly platform allow for leveling using only a wrench, achieving rapid and precise leveling of the assembly platform and improving the assembly efficiency of translucent glass. The side support mechanism effectively ensures the stability of the assembly platform during use, preventing platform offset due to changes in the leveling mechanism during operation, thus ensuring the installation quality of the translucent glass. Furthermore, it effectively protects the screw threads of the leveling mechanism, extending its service life and reducing maintenance costs. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the assembly structure of the assembly platform and workbench of this utility model;

[0028] Figure 2 This utility model Figure 1 Enlarged structural diagram at point A in the middle;

[0029] Figure 3 This is a schematic diagram of the leveling mechanism of this utility model;

[0030] Figure 4 This is a schematic diagram of the side support mechanism of this utility model.

[0031] Explanation of reference numerals in the figure

[0032] 1. Workbench, 2. Assembly platform, 3. Parts assembly plate, 4. Leveling mechanism, 41. Rotating component, 42. Cap, 43. Screw, 5. Side support mechanism, 51. First wedge block, 52. Support wedge block, 53. Second wedge block, 54. Adjusting rod, 55. Locking component, 56. Guide rod, 57. Spring, 6. Cover, 7. Through hole. Detailed Implementation

[0033] To better explain and facilitate understanding of the present invention, a detailed description of the invention is provided below with reference to the accompanying drawings and specific embodiments. The present invention provides a flat assembly platform, including a workbench and an assembly platform disposed on the workbench, with an accessory assembly plate disposed on the assembly platform. It also includes a leveling mechanism and a side support mechanism. The assembly platform is leveled by the leveling mechanisms located at the four corners of its bottom, and after leveling, the side support mechanisms assist the leveling mechanisms in supporting the assembly platform, making the assembly platform more stable during use and preventing the leveling mechanism from deviating and causing the assembly platform to shift during operation.

[0034] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Various changes can be made to the implementation scheme as long as the effects of the present invention can be achieved.

[0035] Those skilled in the art can connect the components in this case sequentially. The specific connection and operation sequence should refer to the working principle described below. The detailed connection methods are well-known technologies in the field. The working principle and process are mainly described below.

[0036] like Figure 1 The light-transparent glass flattening assembly platform mechanism shown includes a workbench 1 for the equipment and an assembly platform 2 set on the workbench 1. The workbench 1 is also equipped with a machine head assembly (not shown) for feeding and assembling light-transparent glass and a robotic arm (not shown) for changing accessory assembly plates 3. The assembly platform 2 is provided with accessory assembly plates 3, which have multiple grooves formed on them for accommodating light-transparent glass carriers.

[0037] like Figure 1 and Figure 2 As shown, a leveling mechanism 4 is provided between the four bottom corners of the assembly platform 2 and the worktable 1. The flatness of the assembly platform 2 is adjusted by the four leveling mechanisms 4 provided at the four bottom corners of the assembly platform 2. At the same time, in this embodiment, a side support mechanism 5 is also provided between the four bottom corners of the assembly platform 2 and the worktable 1. After the leveling mechanism 4 levels the assembly platform 2, the side support mechanism 5 supports the leveled assembly platform 2.

[0038] Furthermore, an operating gap is provided between the assembly platform 2 and the workbench 1 for adjusting the leveling mechanism 4 and the side support mechanism 5. The leveling mechanism 4 and the side support mechanism 5 are located within the operating gap to facilitate the operator to use tools to operate the leveling mechanism 4 and the side support mechanism 5.

[0039] In this embodiment, such as Figure 3 As shown, the leveling mechanism 4 includes a cap 42 and a screw 43. The cap 42 is screwed onto the screw 43 and moves up and down on the surface of the screw 43; the cap 42 is rotatably connected to the assembly platform 2 via a rotating component 41.

[0040] In this embodiment, different threads are machined on both sides of the screw 43, namely a first thread segment with standard M12 threads and a second thread segment with fine M12 threads. The first thread segment is fixed on the worktable 1 and connected to the assembly platform 2, while the cap 42 is connected to the second thread segment.

[0041] In this embodiment, a through hole 7 is provided on the assembly platform 2 to accommodate a portion of the length of the screw 43. A cap 42 is rotatably connected to the through hole 7 via a rotating member 41. The bottom end of the cap 42 extends out of the through hole 7, and the extended portion is polygonal to facilitate the operation of the wrench. A cover 6 is provided at the top of the through hole 7.

[0042] When leveling the assembly platform 2, use a wrench to rotate the cap 42. When the cap 42 is rotated clockwise or counterclockwise, it moves up and down on the screw 43, which simultaneously drives the assembly platform 2 to rise and fall. By using the four caps 42 in conjunction with the external level, the assembly platform 2 is leveled, and finally the accessory assembly plate 3 is flat on the assembly platform 2 so that the head assembly can assemble the lens.

[0043] In this embodiment, such as Figure 4 As shown, the side support mechanism 5 includes a first wedge block 51, a second wedge block 53, a support wedge block 52, and a limiting component. The second wedge block 53 is fixed on the worktable 1, and the first wedge block 51 is fixed on the assembly platform 2, with the two arranged correspondingly. The opposing surfaces of the first wedge block 51 and the second wedge block 53 are both inclined surfaces, forming an outwardly opening cavity. The support wedge block 52 is located inside the cavity, and its upper and lower surfaces respectively abut against the two inclined surfaces. The limiting component guides the first wedge block 51 and limits the support wedge block 52. After the assembly platform 2 is adjusted up and down, the support wedge block 52 is adjusted accordingly to its front and rear positions within the cavity, so that the support wedge block 52 abuts against the first wedge block 51 and the second wedge block 53, supporting the first wedge block 51 and the assembly platform 2.

[0044] The limiting assembly in this embodiment includes an adjusting rod 54, a locking member 55, a guide rod 56, and a spring 57. The adjusting rod 54 and the guide rod 56 are perpendicular to each other. The guide rod 56 is fixed on the second wedge block 53, and the first wedge block 51 is slidably sleeved on the guide rod 56. The adjusting rod 54 is fixed to the bottom of the guide rod 56, and the supporting wedge block 52 is sleeved on the transverse adjusting rod 54 and moves laterally on the adjusting rod 54. The locking member 55 is connected to the adjusting rod 54 and abuts against the outside of the supporting wedge block 52. The spring 57 is sleeved on the adjusting rod 54, and its two ends abut against the inside of the supporting wedge block 52 and the guide rod 56.

[0045] The adjusting rod 54 is a threaded rod, and the locking part 55 is a nut.

[0046] When the assembly platform 2 is adjusted to move up and down, the first wedge block 51 slides up and down on the guide rod 56 to follow the movement of the assembly platform 2. The position of the support wedge block 52 on the adjusting rod 54 is adjusted so that it abuts against the inclined surfaces of the first wedge block 51 and the second wedge block 53. Then, the rotating locking member 55 abuts against the support wedge block 52, so that the first wedge block 51, the support wedge block 52 and the second wedge block 53 form a whole and support it between the assembly platform 2 and the worktable 1. This means that during the use of the assembly platform 2 after it is leveled, the bottom is supported by the leveling mechanism 4 and the side support mechanism 5 at the same time, which effectively protects the threads of the screw 43 in the leveling mechanism 4 and ensures the accuracy after leveling.

[0047] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A light-transmitting glass flat assembly platform mechanism characterized by: The assembly platform is provided with a fitting assembly plate. A leveling mechanism is arranged between the bottom corners of the assembly platform and the workbench to adjust the flatness of the assembly platform. A side support mechanism is arranged between the bottom corners of the assembly platform and the workbench to support the leveled assembly platform.

2. The transparent glass flat assembly platform mechanism according to claim 1, wherein: An operation gap is arranged between the assembly platform and the workbench to adjust the leveling mechanism and the side support mechanism.

3. The transparent glass flat assembly platform mechanism according to claim 1 or 2, characterized in that: The leveling mechanism comprises: A screw rod; A cap is screwed on the screw rod and moves up and down on the surface of the screw rod; the cap is rotatably connected to the assembly platform by a rotating piece.

4. The optical glass flat assembly platform mechanism according to claim 3, wherein: The screw rod is provided with a first threaded segment and a second threaded segment on both sides, and the first threaded segment is fixed on the workbench, and the cap is connected to the second threaded segment.

5. The optical glass flat assembly platform mechanism according to claim 3, wherein: The assembly platform is provided with a through hole capable of accommodating a part of the length of the screw rod, and the cap is rotatably connected to the through hole by a rotating piece.

6. A light-transmitting glass flat assembly platform mechanism according to claim 5, characterized in that: The top of the through hole is provided with a cover.

7. The optical glass flat assembly platform mechanism according to claim 1 or 2, characterized in that: The side support mechanism comprises: A first wedge block and a second wedge block, the first wedge block is fixed on the workbench, and the second wedge block is fixed on the assembly platform; the opposite surfaces of the first wedge block and the second wedge block are both inclined surfaces, and the two opposite inclined surfaces form an outwardly opening flared cavity; A support wedge block is arranged in the flared cavity, and the upper and lower surfaces thereof abut against the two inclined surfaces respectively; A limiting assembly guides the first wedge block and limits the support wedge block.

8. The optical glass flat assembly platform mechanism according to claim 7, wherein: The limiting assembly comprises: A guide rod is fixed on the second wedge block, and the first wedge block is slidably sleeved on the guide rod; An adjusting rod is fixed on the bottom of the guide rod, the support wedge block is sleeved on the transverse adjusting rod and moves transversely on the adjusting rod; A locking piece is connected to the adjusting rod and abuts against the outer side of the support wedge block; A spring is sleeved on the adjusting rod and abuts against the inner side of the support wedge block and the guide rod.

9. A light-transmitting glass flat assembly platform mechanism according to claim 8, characterized in that: The adjusting rod and the guide rod are perpendicular to each other.

10. The optical glass flat assembly platform mechanism according to claim 8, wherein: The adjusting rod is a threaded rod, and the locking piece is a nut.