Glass piece storage device for glass processing

CN224602992UActive Publication Date: 2026-08-07ZHANGZHOU HIGH-TECH ZONE XIAOYU GLASS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHANGZHOU HIGH-TECH ZONE XIAOYU GLASS CO LTD
Filing Date
2025-07-28
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]经检索,专利公开号为CN218490262U的专利公开了一种玻璃加工用玻璃件存放料盒,虽然该装置在使用时通过将玻璃件放置到调节夹板和固定板之间,转动螺纹杆即可将玻璃件夹紧,可以有效避免玻璃件在料盒主体的内部发生晃动,但该装置在进行使用时由于玻璃件需收纳于料盒内部空间,操作人员在存取过程中,需频繁探入料盒内部进行操作,不仅增加了操作难度与劳动强度,且因玻璃件处于封闭空间内,导致取放过程极为不便,严重影响生产效率与操作安全性

Benefits of technology

[0012] The casters give the trolley flexible steering capabilities, allowing operators to easily move the equipment around the workshop and adapt to the glass parts transportation needs of different workstations; the welded grip frame is ergonomically designed to provide operators with a stable grip point.

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Abstract

The utility model relates to glass piece storage technical field especially relates to a glass piece storage equipment for glass processing, its technical scheme includes: the cart, install the storage box on the cart, the storage box is in the sliding sleeve and has the holding plate, the bottom end surface of storage box installs the hydraulic pipe, the hydraulic pipe is injected with hydraulic oil, one end of hydraulic pipe is provided with the pedal, the one end of hydraulic pipe away from the pedal is provided with the guide frame, the holding plate is fixedly installed with first clamping frame and fixed block, the fixed block is installed with the connecting frame through the reset spring, the bottom end surface of pedal is fixedly installed with first connecting rod, the bottom end surface of first connecting rod is installed with first piston, first piston is in the sliding sleeve and is connected in the hydraulic pipe, the utility model satisfies the glass piece storage, can through the treading action for driving inside to carry out the unfolding when storing, avoids the inconvenience of storage and taking, and clamps the limit position when storing.
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Description

Technical Field

[0001] This utility model relates to the field of glass storage technology, specifically to a glass storage device for glass processing. Background Technology

[0002] Glass, as a typical amorphous solid material, possesses a stable shape retention capability due to its unique random atomic arrangement. This material is formed by a controlled gradient cooling process of glass molten metal solution, solidifying through a gradual increase in viscosity; it is a complex multi-component mixture system. In the modern construction field, glass, with its excellent wind insulation and light transmission properties, has become an indispensable building material. Furthermore, by introducing metal oxides or salt additives, colored glass with specific optical properties can be produced. Using physical strengthening or chemical treatment processes, high-strength, high-safety tempered glass and other functional products can also be obtained. In the industrial production process of glass products, storage boxes, as intermediate storage devices, play a crucial role in temporarily storing glass parts awaiting processing.

[0003] A search revealed that patent CN218490262U discloses a glass storage box for glass processing. While this device effectively prevents the glass from shifting inside the box by clamping it between an adjusting plate and a fixing plate and rotating a threaded rod, the operation requires frequent access to the box by the operator. This increases operational difficulty and labor intensity, and the enclosed space makes retrieval extremely inconvenient, severely impacting production efficiency and operational safety. These technical shortcomings urgently need to be addressed through structural optimization and functional improvements to meet the storage needs of modern glass processing. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a glass parts storage device for glass processing, which solves the problems mentioned in the background art.

[0005] The solution to the above-mentioned technical problems provided by this utility model is as follows:

[0006] A glass parts storage device for glass processing includes a trolley, on which a storage box is installed, and a holding plate is slidably sleeved inside the storage box.

[0007] A hydraulic pipe is installed on the bottom surface of the storage box. Hydraulic oil is injected into the hydraulic pipe. A pedal is provided at one end of the hydraulic pipe, and a guide frame is provided at the end of the hydraulic pipe away from the pedal.

[0008] A first clamping frame and a fixing block are fixedly installed on the holding plate, and a connecting frame is installed on the fixing block by means of a return spring.

[0009] Based on the above technical solution, the present invention can be further improved as follows.

[0010] Furthermore, the trolley is equipped with casters at its bottom end and a grip frame is welded onto the trolley.

[0011] The beneficial effects of adopting the above-mentioned further solutions are:

[0012] The casters give the trolley flexible steering capabilities, allowing operators to easily move the equipment around the workshop and adapt to the glass parts transportation needs of different workstations; the welded grip frame is ergonomically designed to provide operators with a stable grip point.

[0013] Furthermore, a first connecting rod is fixedly installed on the bottom end face of the pedal, and a first piston is installed on the bottom end face of the first connecting rod. The first piston is slidably sleeved inside the hydraulic pipe.

[0014] The beneficial effects of adopting the above-mentioned further solutions are:

[0015] The first piston and the first connecting rod form a lever linkage structure. When the operator steps on the pedal, the first piston converts the mechanical energy of the pedal into the pressure energy of the hydraulic oil, realizing the amplification and stable transmission of force. The sliding seal design of the piston ensures that the hydraulic oil is leak-free, maintains the system pressure stability, and ensures the reliability of subsequent transmission actions.

[0016] Furthermore, a second connecting rod is fixedly installed on the bottom end face of the guide frame, and a second piston is installed on the bottom end face of the second connecting rod. The second piston is slidably sleeved inside the hydraulic pipe.

[0017] The beneficial effects of adopting the above-mentioned further solutions are:

[0018] The second piston and the second connecting rod convert the pressure energy of the hydraulic oil back into linear mechanical energy, driving the guide frame to move. The dual-piston structure forms a closed-loop hydraulic circuit, making the lifting and lowering movement of the guide frame smooth and controllable. It can drive the holding plate to move upward and unfold. After the glass pieces are placed, the personnel release the pedal, allowing the holding plate to move downward by its own weight. When moving downward, the piston cooperates with the resistance of the hydraulic oil to avoid moving downward too fast and causing a collision. After moving downward, it enters the storage box for storage.

[0019] Furthermore, the guide frame is slidably sleeved inside the storage box, and the guide frame is fixedly connected to the holding plate.

[0020] The beneficial effects of adopting the above-mentioned further solutions are:

[0021] The sliding sleeve design between the guide frame and the storage box provides a movement track for the holding plate, preventing it from shifting or jamming during lifting and lowering; the fixed connection structure ensures that the power of the guide frame can be completely transmitted to the holding plate, realizing the smooth lifting and lowering of the holding plate, which makes it convenient for operators to store and retrieve glass items.

[0022] Furthermore, a second clamping frame is welded inside the connecting frame, and the second clamping frame and the first clamping frame are used to clamp the glass piece.

[0023] The beneficial effects of adopting the above-mentioned further solutions are:

[0024] When storing glass items, personnel can place the glass items on the inner wall of the first and second clamping frames on the holding plate. The double clamping frame structure forms a symmetrical clamping force, which firmly fixes the glass items from both sides, effectively dispersing the stress generated by the weight of the glass and the vibration during transportation, and preventing the glass from breaking due to single-point force. The second clamping frame is connected to the return spring through the connecting frame. After clamping, the connecting frame can be unfolded by the return spring after the screw is released from the pressure on the connecting frame.

[0025] Furthermore, a screw is threadedly installed inside the fixing block, the screw compresses and limits the connecting frame, and a handle is installed on the screw.

[0026] The beneficial effects of adopting the above-mentioned further solutions are:

[0027] Operators can adjust the screw insertion depth by rotating the handle to control the displacement of the connecting frame, thereby controlling the position and clamping force of the second clamping frame. The self-locking thread, combined with the pulling characteristics of the return spring, keeps the clamping force stable, preventing the clamping frame from loosening due to vibration during transportation. At the same time, the handle design conforms to hand operating habits, improving the convenience and efficiency of adjustment.

[0028] This utility model provides a glass parts storage device for glass processing. It has the following beneficial effects:

[0029] This equipment combines a trolley with a storage box, enabling flexible transportation and centralized storage of glass components within the processing workshop. The omnidirectional wheels and grip design allow operators to easily move the equipment to different workstations, while the lifting mechanism of the holding plate utilizes hydraulic principles; the lifting and lowering of the holding plate is controlled by stepping on a pedal, facilitating the loading and unloading of glass components. When the glass components are stored in the storage box, not only is space saved, but damage caused by external impacts is also effectively prevented.

[0030] Employing a symmetrical clamping structure with a first and second clamping frame, coupled with an adjustment mechanism using a return spring and screw, the clamping force can be precisely adjusted according to the size of the glass component, ensuring its stability during transportation. The dual protection of the threaded self-locking feature and spring tension effectively prevents loosening due to vibration or accidental impact, greatly reducing the risk of glass breakage. Attached Figure Description

[0031] The accompanying drawings, which are included to provide a further understanding of the present invention and form part of this application, illustrate exemplary embodiments of the present invention and are used to explain the present invention, but do not constitute an undue limitation of the present invention.

[0032] In the attached diagram:

[0033] Figure 1 This is a front view schematic diagram of the present invention;

[0034] Figure 2 This is a rear view schematic diagram of the present invention;

[0035] Figure 3 This is a top view of the holding plate of this utility model;

[0036] Figure 4 This is a cross-sectional schematic diagram of the hydraulic pipe of this utility model.

[0037] The attached diagram lists the components represented by each number as follows:

[0038] 1. Trolley; 2. Storage box; 3. Holding plate; 301. First clamping frame; 302. Return spring; 303. Fixing block; 304. Screw; 305. Connecting frame; 306. Second clamping frame; 4. Hydraulic pipe; 401. Pedal; 402. Guide frame; 403. First connecting rod; 404. First piston; 405. Second connecting rod; 406. Second piston. Detailed Implementation

[0039] The technical solutions of the present utility model 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 utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0040] Please see Figures 1 to 4 As shown, the embodiments provided by this utility model are as follows:

[0041] Example 1

[0042] A glass parts storage device for glass processing includes a trolley 1, a storage box 2 installed on the trolley 1, and a holding plate 3 slidably sleeved inside the storage box 2.

[0043] A hydraulic pipe 4 is installed on the bottom surface of the storage box 2. Hydraulic oil is injected into the hydraulic pipe 4. A pedal 401 is provided at one end of the hydraulic pipe 4, and a guide frame 402 is provided at the other end of the hydraulic pipe 4 away from the pedal 401.

[0044] A first clamping frame 301 and a fixing block 303 are fixedly installed on the holding plate 3. A connecting frame 305 is installed on the fixing block 303 via a return spring 302.

[0045] The bottom surface of the trolley 1 is equipped with casters, and a grip frame is welded on the trolley 1. The casters enable the trolley 1 to turn flexibly, allowing operators to easily push the equipment to move around the workshop and adapt to the glass parts transportation needs of different workstations. The welded grip frame conforms to the ergonomic design, providing operators with a stable grip point.

[0046] A second clamping frame 306 is welded inside the connecting frame 305. The second clamping frame 306 and the first clamping frame 301 are used to clamp the glass pieces. When storing the glass pieces, personnel can place them on the holding plate 3, which is located on the inner wall of the first clamping frame 301 and the second clamping frame 306. The double clamping frame structure forms a symmetrical clamping force, which firmly fixes the glass pieces from both sides, effectively dispersing the stress generated by the weight of the glass and the vibration during transportation, and preventing the glass from breaking due to single-point force. The second clamping frame 306 is connected to the return spring 302 through the connecting frame 305. After clamping, the connecting frame 305 can be unfolded by the return spring 302 after the screw 304 is released from the pressure on the connecting frame 305.

[0047] A screw 304 is threadedly installed inside the fixing block 303. The screw 304 presses and limits the connecting frame 305. A handle is installed on the screw 304. The operator can adjust the screw depth of the screw 304 by rotating the handle, thereby controlling the displacement of the connecting frame 305, and thus the position and clamping force of the second clamping frame 306. The self-locking thread and the pulling characteristics of the return spring 302 keep the clamping force stable, preventing the clamping frame from loosening due to vibration during transportation. At the same time, the handle design conforms to the hand operation habits, improving the convenience and efficiency of adjustment.

[0048] Example 2

[0049] To facilitate the removal and storage of glass components by unfolding the interior, for example, such as Figures 1 to 4 As shown, this utility model also includes:

[0050] A first connecting rod 403 is fixedly installed on the bottom end face of the pedal 401, and a first piston 404 is installed on the bottom end face of the first connecting rod 403. The first piston 404 is slidably sleeved in the hydraulic pipe 4. The first piston 404 and the first connecting rod 403 form a lever linkage structure. When the operator steps on the pedal 401, the first piston 404 converts the mechanical energy of the pedal 401 into the pressure energy of the hydraulic oil, realizing the amplification and stable transmission of force. The sliding seal design of the piston ensures that there is no leakage of hydraulic oil, maintains the stability of system pressure, and ensures the reliability of subsequent transmission actions.

[0051] A second connecting rod 405 is fixedly installed on the bottom end face of the guide frame 402. A second piston 406 is installed on the bottom end face of the second connecting rod 405. The second piston 406 is slidably sleeved in the hydraulic pipe 4. The second piston 406 and the second connecting rod 405 convert the pressure energy of the hydraulic oil back into linear mechanical energy, driving the guide frame 402 to move. The double piston structure forms a closed-loop hydraulic circuit, making the lifting and lowering movement of the guide frame 402 smooth and controllable. It can drive the holding plate 3 to move upward and unfold. After the glass pieces are placed, the personnel release the pedal 401, allowing the holding plate 3 to move downward by its own weight. When moving downward, the piston cooperates with the resistance of the hydraulic oil to avoid moving downward too fast and causing a collision. After moving downward, it enters the storage box 2 for storage.

[0052] The guide frame 402 is slidably sleeved inside the storage box 2. The guide frame 402 is fixedly connected to the holding plate 3. The sliding sleeve design of the guide frame 402 and the storage box 2 provides a movement track for the holding plate 3, preventing it from deviating or getting stuck during the lifting process. The fixed connection structure ensures that the power of the guide frame 402 can be completely transmitted to the holding plate 3, realizing the smooth lifting of the holding plate 3, which makes it convenient for operators to store and retrieve glass parts.

[0053] Working principle:

[0054] The operator holds the handle of the trolley 1 and uses the flexible steering capability of the casters to push the equipment to the workstation where the glass parts are stored or retrieved.

[0055] When the operator steps on pedal 401, the first piston 404 slides down the hydraulic pipe 4 via the first connecting rod 403, converting mechanical energy into hydraulic pressure energy. The hydraulic pressure drives the second piston 406 to move upward, which in turn drives the guide frame 402 to slide upward within the storage tank 2 via the second connecting rod 405. This causes the holding plate 3, which is fixedly connected to the guide frame 402, to rise onto the storage tank 2.

[0056] Place the glass piece on the holding plate 3, positioning it between the first clamping frame 301 and the second clamping frame 306. Rotate the handle on the screw 304, causing the screw 304 to screw into the fixing block 303 and press against the connecting frame 305, thus moving the second clamping frame 306 toward the first clamping frame 301 until both form a stable clamping force on the glass piece, maintaining the clamped state through thread self-locking.

[0057] Release pedal 401, and the weight of the holding plate 3 and the glass components causes the second piston 406 to move downwards, causing the hydraulic oil to flow back. The resistance of the hydraulic oil slows down the downward movement, preventing impact, and the holding plate 3 smoothly descends into the storage box 2, completing the storage of the glass components.

[0058] Repeat the steps to raise the holding plate 3, rotate the handle on the screw 304 to release the pressure on the connecting frame 305, the return spring 302 pushes the connecting frame 305 and the second clamping frame 306 back to their original positions, release the clamp on the glass piece, remove the glass piece, and then release the pedal 401 again to make the holding plate 3 fall back into the storage box 2.

[0059] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0060] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A glass storage device for glass processing, comprising a trolley (1), wherein a storage box (2) is mounted on the trolley (1), and a holding plate (3) is slidably sleeved inside the storage box (2), characterized in that: The storage box (2) is equipped with a hydraulic pipe (4) at its bottom end. Hydraulic oil is injected into the hydraulic pipe (4). A pedal (401) is provided at one end of the hydraulic pipe (4). A guide frame (402) is provided at the end of the hydraulic pipe (4) away from the pedal (401). The holding plate (3) is fixedly installed with a first clamping frame (301) and a fixing block (303), and a connecting frame (305) is installed on the fixing block (303) via a return spring (302).

2. The glass storage device for glass processing according to claim 1, characterized in that: The bottom end of the trolley (1) is equipped with casters, and a grip frame is welded onto the trolley (1).

3. The glass storage device for glass processing according to claim 1, characterized in that: The bottom end face of the pedal (401) is fixedly installed with a first connecting rod (403), and the bottom end face of the first connecting rod (403) is installed with a first piston (404), which is slidably sleeved in the hydraulic pipe (4).

4. The glass storage device for glass processing according to claim 1, characterized in that: The bottom end face of the guide frame (402) is fixedly installed with a second connecting rod (405), and the bottom end face of the second connecting rod (405) is installed with a second piston (406), which is slidably sleeved in the hydraulic pipe (4).

5. The glass storage device for glass processing according to claim 4, characterized in that: The guide frame (402) is slidably sleeved inside the storage box (2), and the guide frame (402) is fixedly connected to the holding plate (3).

6. The glass storage device for glass processing according to claim 1, characterized in that: The connecting frame (305) is welded with a second clamping frame (306), and the second clamping frame (306) and the first clamping frame (301) are used to clamp the glass piece.

7. The glass storage device for glass processing according to claim 1, characterized in that: A screw (304) is threadedly installed inside the fixing block (303). The screw (304) presses and limits the connecting frame (305). A handle is installed on the screw (304).

Citation Information

Patent Citations

  • Glass piece storage box for glass processing

    CN218490262U