Autoclave feeding platform

By introducing a pit and a transfer trolley into the autoclave feeding platform, combined with the design of tracks and positioning blocks, the problem of low autoclave feeding efficiency was solved, and efficient transfer rack pushing was achieved, thus improving production efficiency.

CN224159052UActive Publication Date: 2026-04-24FUJIAN XINFUXING GLASS INTELLIGENT TECH CO LTD +2
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN XINFUXING GLASS INTELLIGENT TECH CO LTD
Filing Date
2025-05-29
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

The feeding method of the autoclave is inefficient, which limits the production cycle.

Method used

Design a high-pressure reactor loading platform, including a pit and a transfer trolley. By setting multiple tracks and positioning blocks in the pit, the transfer trolley can be precisely docked and moved with the tracks inside the high-pressure reactor, simplifying the process of pushing the transfer frame in.

Benefits of technology

It improved the feeding efficiency of the autoclave, simplified the operation process, and increased the production cycle.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass production, in particular to an autoclave feeding platform which comprises a foundation pit and a transfer trolley. The foundation pit comprises a feeding station, a feeding station and a high-pressure station, and the feeding station communicates with the feeding station and the high-pressure station. The top of the transfer trolley is provided with a first track which can be connected with a track in the autoclave, and the transfer trolley reciprocates between a loading station and a feeding station. According to the utility model, the transfer frame can be conveniently pushed into the autoclave.
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Description

Technical Field

[0001] This utility model relates to the field of glass production technology, and in particular to a high-pressure autoclave feeding platform. Background Technology

[0002] As the core equipment in the production of laminated glass, the autoclave enhances the safety of laminated glass through thermal processes such as pressurization and heating. Due to the tank-like structure of the autoclave, the loading process requires a forklift to lift the transfer rack carrying multiple sheets of laminated glass, repeatedly adjusting the forklift position to align the transfer rack with the tracks inside the autoclave, and finally manually pushing it into the autoclave to complete the loading. This process is inefficient and restricts production cycle time. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a high-pressure autoclave feeding platform that facilitates the insertion of a transfer frame into the high-pressure autoclave.

[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: a high-pressure autoclave feeding platform, including a foundation pit and a transfer trolley; the foundation pit includes a feeding station, a feeding station and a high-pressure station, and the feeding station is connected to the feeding station and the high-pressure station respectively;

[0005] The top of the transfer trolley is equipped with a first track that can connect with the track inside the autoclave. The transfer trolley moves back and forth between the loading station and the feeding station.

[0006] Furthermore, the aforementioned high-pressure reactor feeding platform also includes a first positioning block, which is located at the feeding station; when the transfer trolley abuts against the first positioning block, the first track connects with the track inside the high-pressure reactor.

[0007] Furthermore, the aforementioned high-pressure reactor feeding platform also includes a first positioning block, which is mounted on a transfer trolley. When the first positioning block abuts against the side wall of the feeding station, the first track connects with the track inside the high-pressure reactor.

[0008] Furthermore, the pit is provided with a second track extending from the loading station to the feeding station, and the transfer trolley is slidably mounted on the second track.

[0009] Furthermore, the aforementioned high-pressure autoclave feeding platform also includes a third track, one end of which faces the feeding station, and the third track can receive the first track.

[0010] Furthermore, the aforementioned high-pressure autoclave feeding platform also includes a second positioning block, which is set at the feeding station; when the transfer trolley abuts against the second positioning block, the first track and the third track receive each other.

[0011] Furthermore, the aforementioned high-pressure autoclave feeding platform also includes a second positioning block, which is mounted on a transfer trolley. When the second positioning block abuts against the side wall of the feeding station, the first track and the third track are connected.

[0012] Furthermore, the aforementioned high-pressure reactor feeding platform also includes a fourth track. The pit is L-shaped, and the fourth track is located on one side of the high-pressure reactor. When the third track connects with the first track, the fourth track connects with the discharge end of the first track.

[0013] The beneficial effects of this utility model are as follows: A foundation pit is dug on the workshop floor, and the high-pressure vessel is placed in the high-pressure station so that the track inside the high-pressure vessel is close to the ground level. A transfer trolley that reciprocates between the loading station and the feeding station is added to the foundation pit, so that the transfer trolley can load the transfer frame at the loading station, and then move to the feeding station, so that the first track connects with the track inside the high-pressure vessel. Then the transfer frames can be pushed into the high-pressure vessel one by one. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of a high-pressure reactor feeding platform proposed in this utility model;

[0015] Figure 2 This is a top view of the structure of a high-pressure reactor feeding platform proposed in this utility model;

[0016] Label Explanation:

[0017] 1. Foundation pit; 11. Loading station; 12. Feeding station; 13. High-pressure station; 14. Second track;

[0018] 2. Transfer trolley; 21. First track;

[0019] 3. First positioning block; 4. Third track; 5. Second positioning block; 6. Fourth track; 7. High pressure vessel. Detailed Implementation

[0020] To explain in detail the technical content, objectives, and effects of this utility model, the following description is provided in conjunction with the embodiments and accompanying drawings.

[0021] Please refer to Figure 1 and Figure 2 As shown, this utility model discloses a high-pressure reactor feeding platform, including a foundation pit 1 and a transfer trolley 2; the foundation pit 1 includes a feeding station 11, a feeding station 12 and a high-pressure station 13, the feeding station 12 being connected to the feeding station 11 and the high-pressure station 13 respectively; the top of the transfer trolley 2 is provided with a first track 21 that can be connected to the track inside the high-pressure reactor 7, and the transfer trolley 2 reciprocates between the feeding station 11 and the feeding station 12.

[0022] Working principle: During production, the transfer trolley 2 is moved to the loading station 11, and the transfer frame is pushed onto the first track 21. Simultaneously, the door of the autoclave 7 is opened. Then, the transfer trolley 2 moves with the transfer frame to the feeding station, aligning the first track 21 with the track inside the autoclave 7. The transfer frames can then be pushed into the autoclave 7 one by one. The transfer trolley 2 then returns to the loading station 11 to ensure the autoclave 7 door can be closed. Finally, the autoclave 7 performs high-pressure treatment on the laminated glass.

[0023] In one embodiment where the transfer trolley 2 moves to the feeding station 12 and the first track 21 connects with the inner track of the high-pressure reactor 7, a first positioning block 3 is provided at the feeding station 12; when the transfer trolley 2 abuts against the first positioning block 3, the first track 21 on the transfer trolley 2 connects with the inner track of the high-pressure reactor 7.

[0024] As can be seen from the above, when the transfer trolley 2 enters the feeding station 12 and moves to the designated position, the first positioning block 3 restricts the transfer trolley 2 from continuing to move forward, so that the first track 21 is connected with the track inside the high pressure vessel 7. Then the transfer trolley 2 can be stopped and the transfer frame can be pushed into the high pressure vessel 7 one by one.

[0025] In another embodiment where the transfer trolley 2 moves to the feeding station 12 and the first track 21 connects with the inner track of the autoclave 7, a first positioning block 3 is provided on the transfer trolley 2; when the first positioning block 3 abuts against the side wall of the feeding station 12, the first track 21 on the transfer trolley 2 connects with the inner track of the autoclave 7.

[0026] As can be seen from the above, when the transfer trolley 2 enters the feeding station 12 and moves to the designated position, the first positioning block 3 restricts the transfer trolley 2 from continuing to move forward, so that the first track 21 is connected with the track inside the high pressure vessel 7. Then the transfer trolley 2 can be stopped and the transfer frame can be pushed into the high pressure vessel 7 one by one.

[0027] In some implementations, please refer to Figure 1 and Figure 2 As shown, a second track 14 extending from the loading station 11 to the feeding station 12 is provided in the foundation pit 1, and the transfer trolley 2 is slidably mounted on the second track 14. The second track 14 ensures the direction of movement of the transfer trolley 2 within the foundation pit 1.

[0028] It is worth noting that the first positioning block 3 can be set on the second track 14 at the feeding station 12.

[0029] In some implementations, please refer to Figure 1 and Figure 2As shown, a high-pressure autoclave loading platform also includes a third track 4, one end of which faces the loading station 11. The third track 4 can connect with the first track 21. A transfer rack loaded with laminated glass to be high-pressure processed is slidably placed on the third track 4, and then connected to the first track 21 via the third track 4, allowing the transfer rack to be quickly moved onto the transfer trolley 2.

[0030] In one embodiment where the transfer trolley 2 moves to the loading station 11 and the first track 21 and the third track 4 are connected, a second positioning block 5 is provided at the loading station 11; when the transfer trolley 2 abuts against the second positioning block 5, the first track 21 and the third track 4 are connected.

[0031] As can be seen from the above, when the transfer trolley 2 enters the loading station 11 and moves to the designated position, the second positioning block 5 restricts the transfer trolley 2 from continuing to move forward, so that the first track 21 and the third track 4 can be connected. Then the transfer trolley 2 can be stopped and the transfer frame can be pushed onto the transfer trolley 2 one by one.

[0032] It is worth noting that the second positioning block 5 can be set on the part of the second track 14 located at the loading station 11.

[0033] In another embodiment where the transfer trolley 2 moves to the loading station 11 and the first track 21 and the third track 4 are connected, a second positioning block 5 is provided on the transfer trolley 2; when the second positioning block 5 abuts against the side wall of the loading station 11, the first track 21 and the third track 4 are connected.

[0034] As can be seen from the above, when the transfer trolley 2 enters the loading station 11 and moves to the designated position, the second positioning block 5 restricts the transfer trolley 2 from continuing to move forward, so that the first track 21 and the third track 4 can be connected. Then the transfer trolley 2 can be stopped and the transfer frame can be pushed onto the transfer trolley 2 one by one.

[0035] In some implementations, please refer to Figure 1 and Figure 2 As shown, a high-pressure reactor feeding platform also includes a fourth track 6. The pit 1 is L-shaped, and the fourth track 6 is located on one side of the high-pressure reactor. When the third track 4 is connected to the first track 21, the fourth track 6 is connected to the discharge end of the first track 21.

[0036] After the high-pressure treatment of the laminated glass is completed in the autoclave 7, the transfer trolley 2 loads the transfer frame pushed out from the autoclave 7 at the feeding station 12. Then the transfer trolley 2 moves to the loading station 11, so that the first track 21 receives the third track 4 and the fourth track 6 respectively, thereby quickly pushing the transfer frame on the transfer trolley 2 onto the fourth track 6. The transfer frame moves to the next process according to the fourth track 6. A new batch of transfer frames loaded with laminated glass to be high-pressure treated can be directly moved from the third track 4 onto the transfer trolley 2.

[0037] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. An autoclave loading platform, characterized by: It includes a foundation pit and a transfer trolley; the foundation pit includes a loading station, a feeding station and a high-pressure station, and the feeding station is connected to the loading station and the high-pressure station respectively; The top of the transfer trolley is equipped with a first track that can connect with the track inside the autoclave. The transfer trolley moves back and forth between the loading station and the feeding station.

2. The platform of claim 1, wherein: It also includes a first positioning block, which is set at the feeding station; when the transfer trolley comes into contact with the first positioning block, the first track connects with the track inside the high-pressure reactor.

3. The platform of claim 1, wherein: It also includes a first positioning block, which is set on the transfer trolley. When the first positioning block abuts against the side wall of the feeding station, the first track connects with the track inside the high-pressure reactor.

4. The platform of claim 1, wherein: The pit is provided with a second track extending from the loading station to the feeding station, and the transfer trolley is slidably mounted on the second track.

5. The platform of claim 1, wherein: It also includes a third track, one end of which faces the loading station and can be connected to the first track.

6. The autoclave feeding platform according to claim 5, characterized in that: It also includes a second positioning block, which is set at the loading station; when the transfer trolley comes into contact with the second positioning block, the first track and the third track are connected.

7. The platform of claim 5, wherein: It also includes a second positioning block, which is set on the transfer trolley. When the second positioning block abuts against the side wall of the loading station, the first track and the third track are connected.

8. The platform of claim 5, wherein: It also includes a fourth track. The pit is L-shaped and the fourth track is located on one side of the autoclave. When the third track connects with the first track, the fourth track connects with the discharge end of the first track.