AG multi-station rack

By designing the AG multi-station material rack, the problem of small slide volume of existing fixtures is solved, the etching efficiency and yield are improved, the needs of different product parts are adapted, and the filling plate is quickly replaced.

CN223176016UActive Publication Date: 2025-08-01合肥金龙浩科技有限公司
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Patent Information

Application Number
CN202422254511.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-08-01
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The existing fixtures used to fix AG glass products have small volumes, resulting in low production efficiency.

Method used

A AG multi-station material rack is designed, including a partition plate, a left support plate, a right support plate and a beam rod. Suction cups are provided on both sides of the partition plate, a water outlet is provided between the left support plate and the right support plate, and the cross beam rod is connected to the two. Combined with magnetic suction components, a robot is quickly connected. There are hollow holes on the left support plate and the right support plate to support the flow of potions and adapt to different product sizes.

Benefits of technology

Improves etching efficiency, ensures that the product parts are in full contact with the potion, improves the etching yield, reduces the problem of dissimilar colors, and supports rapid replacement of the barrier plate to adapt to different product parts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an AG multi-station material frame which comprises a partition plate, a left supporting plate, a right supporting plate and a cross beam rod. The multiple partition plates are sequentially arranged between the left supporting plate and the right supporting plate at intervals, the partition plates are strip-shaped hollow plates, and the two ends of each partition plate are fixed to the left supporting plate and the right supporting plate correspondingly; the front face and the back face of the partition plate are each provided with a plurality of suction cups arranged at intervals in the length direction of the partition plate, and the suction cups arranged on the front face of the partition plate and the suction cups arranged on the back face of the partition plate are arranged in a staggered mode in the arrangement direction. Water passing openings are formed in the positions, between every two adjacent partition plates, of the left supporting plate and the right supporting plate; the beam rod is located at the top ends of the left supporting plate and the right supporting plate and connects the two. According to the utility model, the etching efficiency can be improved, the full contact between the product and the liquid medicine can be ensured, and the etching yield of the product is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass processing, and particularly relates to an AG multi-station material rack. Background Technique

[0002] AG anti-glare glass (Anti-Glare Glass) products are made through special chemical treatment processes. Its characteristic is that the original reflective surface of the glass is changed into a matte diffuse reflection surface. The AG glass can make the reflection effect blurred, not only prevent glare but also reduce the reflectance, reduce light and shadow, and has strong anti-corrosion and anti-scratch properties on the surface of the anti-glare product. Combined with a video imaging screen, it can form a transparent anti-glare and anti-reflection screen, solve the problems of reflection and glare generated by electronic video screens and imaging screens under ambient light sources, and improve the image quality.

[0003] In the production process of AG glass, it is necessary to use a fixture to fix the product parts, and then place the fixture together with the product parts in the medicine for chemical process treatment. However, the existing fixtures for fixing products have a small single-piece loading capacity and low efficiency. Content of the Utility Model

[0004] In order to solve the technical problems existing in the background technique, the utility model proposes an AG multi-station material rack.

[0005] An AG multi-station material rack proposed by the utility model includes: partition boards, left support plates, right support plates, and cross beams;

[0006] There are multiple partition boards, which are arranged at intervals in sequence between the left support plate and the right support plate. The partition boards are strip-shaped hollow plates, and both ends of each are respectively fixed to the left support plate and the right support plate; multiple suction cups are respectively arranged on both the front and back surfaces of the partition board at intervals along its length direction, and the suction cups arranged on the front surface of the partition board are staggered with the suction cups arranged on its back surface in the arrangement direction;

[0007] Water passing holes are respectively arranged at the positions of the left support plate and the right support plate between every two adjacent partition boards;

[0008] The cross beam is located at the top of the left support plate and the right support plate and connects the two.

[0009] Preferably, it further includes a magnetic attraction component, and the magnetic attraction component includes an electromagnet for installation on a manipulator and an adsorption block fixedly installed on the cross beam.

[0010] Preferably, the left support plate and the right support plate are both provided with hollow holes.

[0011] Preferably, both the left support plate and the right support plate respectively include a main board body and a sub-card board. The lower edge of the main board body is provided with a plurality of upper card slots arranged at intervals, and upper grooves provided between every two adjacent upper card slots. The upper edge of the sub-card board is provided with a plurality of lower card slots and lower grooves provided between every two adjacent lower card slots. The upper card slots on the main board body are respectively stuck on the upper edges of the respective partition plates one by one, the lower card slots on the sub-card board are respectively stuck on the lower edges of the respective baffle plates one by one, and a water passing opening is formed by the space between the upper grooves on the main board body and the lower grooves on the sub-card board.

[0012] Preferably, the main board body includes a lower board body part and an upper board body part, and the width of the upper board body part is narrower than that of the lower board body part. The upper board body part is provided with beam passing holes. The two ends of the cross beam rod are respectively inserted into the beam passing holes on the left support plate and the right support plate to form a fixation.

[0013] Preferably, the beam passing hole is a polygonal hole, and the cross beam rod is a polygonal rod matching it.

[0014] Preferably, the beam passing hole is a quadrilateral hole, and the cross beam rod is a quadrilateral rod.

[0015] Preferably, the upper board body part is separated into opposite first side parts and second side parts by an opening groove provided in the middle thereof. Beam passing holes are respectively provided on both the first side part and the second side part. There are two cross beam rods. The two ends of one cross beam rod are respectively inserted into the beam passing holes on the first side parts of the left support plate and the right support plate, and the two ends of the other cross beam rod are respectively inserted into the beam passing holes on the second side parts of the left support plate and the right support plate.

[0016] Preferably, the side walls on both sides of the opening groove are inclined plane walls inclined in the outer direction.

[0017] In the present utility model, a plurality of suction cups arranged at intervals along the length direction are respectively provided on both the front and back sides of the partition plate, and the suction cups provided on the front side of the partition plate and the suction cups provided on the back side thereof are arranged in a staggered manner in the arrangement direction. Water passing openings are respectively provided at the positions of the left support plate and the right support plate between every two adjacent partition plates. The cross beam rod is located at the top of the left support plate and the right support plate and connects the two. The design of this structure can not only improve the etching efficiency, but also ensure that the product parts are fully contacted with the chemical solution, and improve the yield of product etching. Description of the Drawings

[0018] Figure 1 is a schematic structural diagram of an AG multi-station material rack proposed by the present utility model;

[0019] Figure 2 is a partial exploded view of an AG multi-station material rack proposed by the present utility model. Detailed Embodiment

[0020] Refer to Figure 1-2, an AG multi-station rack proposed by the present utility model includes: a partition plate 1, a left support plate 2, a right support plate 3, and a cross beam rod 6;

[0021] A plurality of partition plates 1 are provided and arranged at intervals in sequence between the left support plate 2 and the right support plate 3. The partition plate 1 is a strip-shaped hollow plate, and both ends thereof are respectively fixed to the left support plate 2 and the right support plate 3. A plurality of suction cups 4 are respectively provided on the front and back surfaces of the partition plate 1 and arranged at intervals along its length direction. The suction cups 4 provided on the front surface of the partition plate 1 and the suction cups 4 provided on its back surface are arranged in a staggered manner in the arrangement direction. Water passing holes 5 are respectively provided at the positions of the left support plate 2 and the right support plate 3 between every two adjacent partition plates 1. The cross beam rod 6 is located at the top of the left support plate 2 and the right support plate 3 and connects the two.

[0022] During operation, the manipulator grabs the cross beam rod 6 to transfer the rack into a pool filled with liquid medicine and drives the rack to shake in the pool. The suction cups 4 on the front and back surfaces of the partition plate 1 enable products to be adsorbed on both sides thereof. The water passing holes 5 on the left support plate 2 and the right support plate 3 can ensure that when the rack shakes in the pool, the liquid medicine in the pool can flow between the partition plates 1 to ensure sufficient contact between the product and the liquid medicine.

[0023] As can be seen from the above, this structural design can not only improve the etching efficiency but also ensure sufficient contact between the product and the liquid medicine, thereby improving the yield of product etching.

[0024] Furthermore, an AG multi-station rack proposed by the present utility model further includes a magnetic attraction assembly. The magnetic attraction assembly includes an electromagnet for being installed on the manipulator and an adsorption block 8 fixedly installed on the cross beam rod 6. The manipulator makes the electromagnet and the adsorption block 8 attract or separate through electromagnetic adsorption, thereby realizing the rapid connection and separation between the manipulator and the rack.

[0025] Furthermore, hollow holes are provided on both the left support plate 2 and the right support plate 3 in this embodiment to enable better flow and intercommunication of the liquid medicine, thereby further reducing the problem of different colors caused to the product during production.

[0026] In addition, the left support plate 2 and the right support plate 3 in this embodiment each include a main board body a1 and a sub-card board a2. The lower edge of the main board body a1 is provided with a plurality of upper card slots arranged at intervals, and upper grooves provided between every two adjacent upper card slots. The upper edge of the sub-card board a2 is provided with a plurality of lower card slots and lower grooves provided between every two adjacent lower card slots. The upper card slots on the main board body a1 are respectively clamped on the upper edges of the respective partition plates 1, and the lower card slots on the sub-card board a2 are respectively clamped on the lower edges of the respective baffle plates. Moreover, a water passage is formed between the upper grooves on the main board body a1 and the lower grooves on the sub-card board a2. That is, both ends of the partition plate 1 are fixedly clamped by the main board body a1 and the sub-card board a2. When the sub-card board a2 is removed, the partition plate 1 will be in a completely detachable state, so that longer or shorter partition plates 1 can be replaced according to the change of the size of the product parts, or wider or narrower partition plates 1 can be replaced, or the damaged partition plate 1 can be directly replaced.

[0027] Furthermore, the main board body a1 includes a lower board body part and an upper board body part, and the width of the upper board body part is narrower than that of the lower board body part to facilitate the adsorption and removal of the product parts and reduce the shaking resistance.

[0028] The upper board body part is provided with beam-through holes, and the beam-through holes are polygonal holes, such as triangular holes, quadrilateral holes, or pentagonal holes, etc. The cross beam rod 6 is a polygonal rod matching therewith. Both ends of the cross beam rod 6 are respectively inserted into the beam-through holes on the left support plate 2 and the right support plate 3 to form a fixation. The design of the cross beam rod 6 and the beam-through holes enables the distance between the left support plate 2 and the right support plate 3 to be adjusted arbitrarily according to the length of the partition plate 1, and enables each component to enter a disassembled and assembled state. Moreover, the structural design of the polygonal hole and the polygonal rod can ensure that the cross beam rod 6 will not rotate inside the cross beam hole.

[0029] Furthermore, the upper board body part is separated into an opposite first side part and a second side part by an opening groove 7 provided in the middle thereof. Beam-through holes are respectively provided on both the first side part and the second side part. There are two cross beam rods 6. One end of one cross beam rod 6 is respectively inserted into the beam-through holes on the first side parts of the left support plate 2 and the right support plate 3, and the two ends of the other cross beam rod 6 are respectively inserted into the beam-through holes on the second side parts of the left support plate 2 and the right support plate 3. The design of the opening groove 7 can not only reduce the surface area of the support plate, further increase the flowing and intercommunication effect of the liquid medicine, but also facilitate the adsorption and removal of the product parts on the middle partition plate 1.

[0030] Moreover, the side walls on both sides of the opening groove 7 in this embodiment are inclined side walls inclined in the outer direction to increase the structural stability of the first side part and the second side part.

[0031] The above are only the preferred specific embodiments of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and the inventive concept of the present utility model, making equivalent substitutions or changes, shall be covered by the protection scope of the present utility model.

Claims

1. An AG multi-station rack, characterized in that, Including: Partition boards (1), left support plates (2), right support plates (3), and cross beams (6); There are multiple partition boards (1), which are arranged at intervals in sequence between the left support plate (2) and the right support plate (3). The partition board (1) is a strip-shaped hollow board, and both ends of it are respectively fixed on the left support plate (2) and the right support plate (3). Multiple suction cups (4) are respectively arranged on both the front and back sides of the partition board (1) at intervals along its length direction, and the suction cups (4) arranged on the front side of the partition board (1) are arranged in a staggered manner in the arrangement direction with the suction cups (4) arranged on its back side; Water passing openings (5) are respectively arranged at the positions of the left support plate (2) and the right support plate (3) between every two adjacent partition boards (1); The cross beam (6) is located at the top ends of the left support plate (2) and the right support plate (3) and connects the two.

2. The AG multi-station rack according to claim 1, characterized in that It further includes a magnetic attraction assembly, and the magnetic attraction assembly includes an electromagnet for being installed on a manipulator and an adsorption block (8) fixedly installed on the cross beam (6).

3. The AG multi-station storage rack according to claim 1, wherein, Hollow holes are arranged on both the left support plate (2) and the right support plate (3).

4. The AG multi-station rack according to any one of claims 1-3, characterized in that The left support plate (2) and the right support plate (3) respectively include a main board body (a1) and a sub-card board (a2). Multiple upper card slots arranged at intervals and upper grooves arranged between every two adjacent upper card slots are provided at the lower edge of the main board body (a1). Multiple lower card slots and lower grooves arranged between every two adjacent lower card slots are provided at the upper edge of the sub-card board (a2). The upper card slots on the main board body (a1) are respectively clamped on the upper edges of the respective partition boards (1), and the lower card slots on the sub-card board (a2) are respectively clamped on the lower edges of the respective baffle plates, and the space between the upper grooves on the main board body (a1) and the lower grooves on the sub-card board (a2) forms the water passing opening (5).

5. The AG multi-station storage rack according to claim 4, wherein, The main board body (a1) includes a lower board body part and an upper board body part, and the width of the upper board body part is narrower than that of the lower board body part. A beam passing hole is provided on the upper board body part; both ends of the cross beam (6) respectively penetrate into the beam passing holes on the left support plate (2) and the right support plate (3) to form a fixation.

6. The AG multi-station storage rack according to claim 5, wherein The beam passing hole is a polygonal hole, and the cross beam (6) is a polygonal rod matching it.

7. The AG multi-station storage rack according to claim 6, wherein, The beam passing hole is a quadrilateral hole, and the cross beam (6) is a quadrilateral rod.

8. The AG multi-station storage rack according to claim 5, characterized in that, The upper board body part is separated into opposite first side parts and second side parts by an opening groove (7) provided in the middle thereof. Beam passing holes are respectively provided on both the first side part and the second side part; there are two cross beams (6). Both ends of one cross beam (6) respectively penetrate into the beam passing holes on the first side parts of the left support plate (2) and the right support plate (3), and both ends of the other cross beam (6) respectively penetrate into the beam passing holes on the second side parts of the left support plate (2) and the right support plate (3).

9. The AG multi-station rack according to claim 8, wherein, The side walls on both sides of the opening groove (7) are inclined side walls inclined towards the outer side direction.