Multi-layer storage equipment for glass
By introducing a dual lifting drive mechanism and gear transmission system into the glass storage equipment, the problem that the existing equipment could not feed and discharge materials at the same time was solved, and efficient storage and transportation of multi-layer glass was achieved.
Patent Information
- Application Number
- CN202422597287.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-10-28
AI Technical Summary
Existing glass storage equipment cannot achieve simultaneous feeding and unloading operations on different storage levels, resulting in low work efficiency and lack of practicality.
It adopts dual lifting drive mechanisms, namely the first lifting drive mechanism and the second lifting drive mechanism, which respectively control the feeding and discharging operations of the glass placement mechanism, and realizes efficient transportation of multi-layer storage equipment through the gear transmission system.
It realizes the simultaneous feeding and discharging of glass on different layers in multi-layer storage equipment, improving the working efficiency and practicality of the equipment.
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Figure CN223328277U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass production equipment, in particular to a multi-layer storage device for glass. Background Art
[0002] Glass products are fragile, especially high-value-added glass. In order to avoid damage to the products during handling and transportation, the traditional packaging method is to ensure the safety of the glass itself, generally placing the glass layer by layer in the glass rack, and to facilitate the storage and transportation of a large number of glass products, the glass products are generally stacked and placed on the shelf. For example, Chinese patent CN218433095U describes a vertical multi-layer glass storage warehouse, including a main frame, multiple vertical glass channels and multiple storage layer units arranged up and down; at least one of the multiple storage layer units is a lifting storage layer unit; a lifting mechanism is provided on the main frame, and the number of lifting mechanisms is equal to the number of lifting storage layer units, and they are connected one-to-one to drive the lifting storage layer units to rise and fall; the lifting storage layer unit includes a storage layer rack and multiple conveying units; multiple vertical glass channels are arranged on the main frame and are arranged at intervals perpendicular to the glass conveying direction, and each conveying unit in the same lifting storage layer unit is respectively arranged in a vertical glass channel.
[0003] When the glass in the storage unit is fully loaded, the above-mentioned equipment can only discharge a single layer of single glass before feeding new glass into the storage unit. It is impossible to simultaneously feed and discharge glass from different storage layers, thereby reducing the working efficiency of the equipment and the overall practicality of the equipment. Utility Model Content
[0004] In order to overcome the defects of the prior art, the utility model provides a multi-layer storage device for glass.
[0005] The technical solution adopted by the utility model to solve its technical problems is: a multi-layer storage device for glass, including a rack, wherein a plurality of glass placement mechanisms are layered and arranged side by side inside the rack, and a first lifting drive mechanism and a second lifting drive mechanism are movably provided on one side of the rack, and the first lifting drive mechanism and the second lifting drive mechanism are connected to the glass placement mechanism so that the first lifting drive mechanism and the second lifting drive mechanism can both drive the glass placement mechanism to operate.
[0006] This solution further describes that a rack is provided on one side of the frame close to the first lifting drive mechanism and the second lifting drive mechanism;
[0007] The first lifting drive mechanism includes a support base, a lifting module and a driving module. The support base is arranged on one side of the machine base, the lifting module is arranged on the side of the support base close to the frame, the lifting module is connected to the rack, the driving module is arranged on the surface of the support base, and the driving module is connected to the glass placement mechanism.
[0008] This solution further describes that a first sliding component is provided between the support seat and the frame, a fixed end of the first sliding component is provided on the surface of the frame, and a sliding end of the first sliding component is connected to the support seat.
[0009] This solution further describes that the lifting module includes a first drive motor and a first gear. The first drive motor is arranged on the surface of the support base. The output end of the first drive motor extends through the support base toward the frame. The first gear is arranged at the output end of the first drive motor, and the first gear is engaged with the rack.
[0010] Specifically, the driving module includes an ejection cylinder, a base plate and a power output assembly. The ejection cylinder is arranged on one side of the support seat, the base plate is arranged at the movable end of the ejection cylinder, the bottom surface of the base plate is provided with a second sliding assembly, the fixed end of the second sliding assembly is provided on the inner surface of the support seat, the sliding end of the second sliding assembly is connected to the base plate, the upper surface of the base plate is provided with a power output assembly, and the power output assembly is connected to the glass placement mechanism.
[0011] Specifically, the power output assembly includes a second drive motor and a second gear. The second drive motor is arranged on the upper surface of the base plate. A mounting plate is provided on one side of the second drive motor. The output end of the second drive motor passes through the mounting plate. The second gear is provided at the output end of the second drive motor. A third gear is provided on the side of the mounting plate close to the second gear. One side of the third gear is engaged with the second gear, and the other side of the third gear is connected to the glass placement mechanism.
[0012] More specifically, the glass placement mechanism includes a roller mounting frame and a transmission module. The roller mounting frame is arranged inside the frame. A plurality of conveying rubber rollers are arranged inside the roller mounting frame. One end of each conveying rubber roller passes through the roller mounting frame and is provided with a first transmission bevel gear. The transmission module is arranged on a side of the roller mounting frame close to the first transmission bevel gear, and the transmission module is connected to the first transmission bevel gear and the third gear.
[0013] Furthermore, the transmission module includes a support block and a transmission rod, the support block is arranged on one side of the roller mounting frame close to the first transmission bevel gear, the transmission rod is movably arranged inside the support block, a fourth gear and a fifth gear are arranged at both ends of the transmission rod, the fourth gear is engaged with the third gear, the fifth gear is connected to the second lifting drive mechanism, and the surface of the transmission rod close to the first transmission bevel gear is provided with a second transmission bevel gear engaged with it.
[0014] It should be noted that the second lifting drive mechanism has the same structure as the first lifting drive mechanism.
[0015] Further description of this solution: a feed lifting platform and a discharge lifting platform are provided at both ends of the frame, the discharge end of the feed lifting platform faces the feed end of the glass placement mechanism, and the feed end of the discharge lifting platform faces the discharge end of the glass placement mechanism.
[0016] The beneficial effect of the present invention is that when performing glass storage operations, the present invention can feed the glass to the feed end of the glass placement mechanism on different layers through the feed lifting platform, and subsequently, by starting the first drive module, the corresponding glass placement mechanism can be driven to move, and the glass in the feed lifting platform can be moved into the glass placement mechanism, or the glass already placed in the glass placement mechanism can be moved to the discharge lifting platform. At the same time, a second drive module is provided in the device, and the structure of the second drive module is consistent with that of the first drive module, so that the device can realize feeding or discharging operations on the glass in the two groups of glass placement mechanisms located on different layers separately through two groups of lifting drive mechanisms, thereby improving the working efficiency of the device and increasing the overall practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the overall structure of the multi-layer storage equipment of the utility model;
[0018] Figure 2 This is a schematic diagram of the combined structure of the frame, glass placement mechanism, first lifting drive mechanism and second lifting drive mechanism of the utility model;
[0019] Figure 3 This is a schematic diagram of the structure of the first lifting drive mechanism of the utility model Figure 1 ;
[0020] Figure 4 This is a schematic diagram of the structure of the first lifting drive mechanism of the utility model Figure 2 ;
[0021] Figure 5 This is a structural diagram of the glass placement mechanism of the utility model;
[0022] Figure 6 for Figure 5A magnified view of the structure at point A;
[0023] Figure 7 for Figure 5 A magnified view of the structure at point B.
[0024] As shown in the figure: frame 1, glass placement mechanism 2, roller mounting frame 21, transmission module 22, support block 221, transmission rod 222, fourth gear 223, fifth gear 224, second transmission bevel gear 225, conveying rubber roller 23, first transmission bevel gear 24, first lifting drive mechanism 3, support base 31, lifting module 32, first drive motor 321, first gear 322, drive module 33, ejection cylinder 331, bottom plate 332, power output assembly 334, second drive motor 3341, second gear 3342, mounting plate 3343, third gear 3344, second lifting drive mechanism 4, rack 5, first sliding assembly 6, second sliding assembly 7, feed lifting platform 8, and discharge lifting platform 9. DETAILED DESCRIPTION
[0025] The following further describes specific embodiments of the present invention in conjunction with the accompanying drawings. It should be noted that the descriptions of these embodiments are intended to aid understanding of the present invention and do not constitute limitations on the present invention. Furthermore, the technical features involved in the various embodiments of the present invention described below may be combined with one another as long as they do not conflict with one another.
[0026] As attached Figure 1 、 2 As shown in Figures 3, 4, 5, 6 and 7, the utility model provides a multi-layer storage equipment for glass, including a rack 1, a plurality of glass placement mechanisms 2 are layered and arranged side by side inside the rack 1, a first lifting drive mechanism 3 and a second lifting drive mechanism 4 are movably provided on one side of the rack 1, and the first lifting drive mechanism 3 and the second lifting drive mechanism 4 are connected to the glass placement mechanism 2 so that the first lifting drive mechanism 3 and the second lifting drive mechanism 4 can drive the glass placement mechanism 2 to operate.
[0027] Subsequently, a feed lifting platform 8 and a discharge lifting platform 9 are set at both ends of the frame 1, the discharge end of the feed lifting platform 8 faces the feed end of the glass placement mechanism 2, and the feed end of the discharge lifting platform 9 faces the discharge end of the glass placement mechanism 2.
[0028] It should be noted that the feed lifting platform 8 and the discharge lifting platform 9 are commonly used glass lifting and conveying platforms on the market, and no detailed description is given here.
[0029] When glass storage and unloading operations are required: first place the glass on the feeding lifting platform 8, then start the feeding lifting platform 8 to feed the glass to the feeding end of the glass placement mechanism 2 on different layers, then start the first lifting drive mechanism 3 to drive the corresponding glass placement mechanism 2 to move, so that the glass in the feeding lifting platform 8 can be moved into the glass placement mechanism 2, or the glass already placed in the glass placement mechanism 2 can be moved to the unloading lifting platform 9;
[0030] Similarly, a second lifting drive mechanism 4 is provided in the present device. The second lifting drive mechanism 4 has the same structure as the first lifting drive mechanism 3, and can also drive the corresponding glass placement mechanism 2 to move through the second lifting drive mechanism 4, so that the glass in the feeding lifting platform 8 can be moved into the glass placement mechanism 2, or the glass already placed on the glass placement mechanism 2 can be moved to the discharging lifting platform 9, so that the present device can use two sets of lifting drive mechanisms to separately realize feeding or discharging operations on the glass in two sets of glass placement mechanisms 2 located on different layers, thereby improving the working efficiency of the present device and increasing the overall practicality of the present device.
[0031] As attached Figure 1 、 2 As shown in Figures 3, 4, 5, 6 and 7, a rack 5 is provided on the side of the frame 1 close to the first lifting drive mechanism 3 and the second lifting drive mechanism 4. The first lifting drive mechanism 3 includes a support base 31, a lifting module 32 and a driving module 33. The support base 31 is provided on one side of the base, and the lifting module 32 is provided on the side of the support base 31 close to the frame 1. The lifting module 32 is connected to the rack 5, and the driving module 33 is provided on the surface of the support base 31. The driving module 33 is connected to the glass placing mechanism 2, so that the operation of the glass placing mechanism 2 can be controlled by the driving module 33.
[0032] The lifting module 32 includes a first drive motor 321 and a first gear 322. The first drive motor 321 is disposed on the surface of the support base 31. The output end of the first drive motor 321 extends through the support base 31 toward the frame 1. The first gear 322 is disposed at the output end of the first drive motor 321 and meshes with the rack 5.
[0033] The driving module 33 includes an ejection cylinder 331, a base plate 332 and a power output assembly 334. The ejection cylinder 331 is arranged on one side of the support seat 31, and the base plate 332 is arranged at the movable end of the ejection cylinder 331. The bottom surface of the base plate 332 is provided with a second sliding assembly 7. The fixed end of the second sliding assembly 7 is provided on the inner surface of the support seat 31. The sliding end of the second sliding assembly 7 is connected to the base plate 332. The upper surface of the base plate 332 is provided with a power output assembly 334. The power output assembly 334 is connected to the glass placement mechanism 2.
[0034] Therefore, when the first lifting drive mechanism 3 drives the feeding or discharging operation of the glass in the glass placement mechanism 2: first start the first drive motor 321 of the lifting module 32, so that the first drive motor 321 drives the first gear 322 to rotate forward and reverse, and then the first gear 322 engages with the rack 5, so as to realize the rising or falling operation of the first lifting drive mechanism 3, so that the support base 31 and the drive module 33 can be moved to the drive input of the glass placement mechanism 2 that needs to be controlled.
[0035] It should be noted that a first sliding component 6 is provided between the support base 31 and the frame 1. The fixed end of the first sliding component 6 is provided on the surface of the frame 1, and the sliding end of the first sliding component 6 is connected to the support base 31. When the lifting module 32 drives the support base 31 to move, it can be guided by the first sliding component 6, thereby avoiding the position displacement of the support base 31 when rising or falling, and ensuring that the support base 31 can move normally.
[0036] The power output assembly 334 includes a second drive motor 3341 and a second gear 3342. The second drive motor 3341 is arranged on the upper surface of the base plate 332. A mounting plate 3343 is provided on one side of the second drive motor 3341. The output end of the second drive motor 3341 passes through the mounting plate 3343. The second gear 3342 is provided at the output end of the second drive motor 3341. A third gear 3344 is provided on one side of the mounting plate 3343 close to the second gear 3342. One side of the third gear 3344 is meshed with the second gear 3342, and the other side of the third gear 3344 is connected to the glass placement mechanism 2.
[0037] When the support base 31 and the driving module 33 located on the surface of the support base 31 move to the driving input of the glass placement mechanism 2 at the specified position: by activating the pushing cylinder 331, the bottom plate 332 and the power output assembly 334 can be pushed toward the glass placement mechanism 2 by the pushing cylinder 331, so that the third gear 3344 of the power output assembly 334 can be connected to the glass placement mechanism 2. Subsequently, a second sliding assembly 7 is provided on the bottom surface of the bottom plate 332. By providing the second sliding assembly 7, the stability of the bottom plate 332 and the power output assembly 334 during movement can be ensured, and a guiding function can also be achieved.
[0038] Subsequently, when the third gear 3344 is connected to the glass placement mechanism 2, the second drive motor 3341 is started to drive the second gear 3342 to rotate. The second gear 3342 and the third gear 3344 are engaged with each other, so that the second gear 3342 can drive the third gear 3344 to rotate. When the third gear 3344 rotates, it can drive the glass placement mechanism 2 to rotate.
[0039] As attached Figure 1 、 2 As shown in Figures 3, 4, 5, 6 and 7, the glass placing mechanism 2 includes a roller mounting frame 21 and a transmission module 22. The roller mounting frame 21 is arranged inside the frame 1. A plurality of conveying rubber rollers 23 are arranged inside the roller mounting frame 21. One end of each conveying rubber roller 23 passes through the roller mounting frame 21 and is provided with a first transmission bevel gear 24. The transmission module 22 is arranged on a side of the roller mounting frame 21 close to the first transmission bevel gear 24. The transmission module 22 is connected to the first transmission bevel gear 24 and the third gear 3344.
[0040] The transmission module 22 includes a support block 221 and a transmission rod 222. The support block 221 is arranged on one side of the roller mounting frame 21 close to the first transmission bevel gear 24. The transmission rod 222 is movably arranged inside the support block 221. The fourth gear 223 and the fifth gear 224 are arranged at both ends of the transmission rod 222. The fourth gear 223 is meshed with the third gear 3344. The surface of the transmission rod 222 close to the first transmission bevel gear 24 is provided with a second transmission bevel gear 225 meshed with it.
[0041] When the third gear 3344 of the power output assembly 334 rotates, the fourth gear 223 is meshed with the third gear 3344, so that the third gear 3344 can drive the fourth gear 223 in the transmission module 22 to rotate, and the fourth gear 223 can drive the transmission rod 222 to rotate. After the transmission rod 222 rotates, it can drive the second transmission bevel gear 225 to rotate, and the second transmission bevel gear 225 is meshed with the first transmission bevel gear 24 to drive the first transmission bevel gear 24 to rotate. When the first transmission bevel gear 24 rotates, it can drive the conveying rubber roller 23 to rotate, so that the feeding operation and the discharging operation are realized through the rotation of the conveying rubber roller 23.
[0042] It should be noted that a fifth gear 224 is provided at the end of the transmission rod 222 away from the fourth gear 223, and the second lifting drive mechanism 4 has the same structure as the first lifting drive mechanism 3, so that the function realized by the second lifting drive mechanism 4 is consistent with the first lifting drive mechanism 3, and the fifth gear 224 is connected to the second lifting drive mechanism 4, so that the second lifting drive mechanism 4 can be coordinated with the fifth gear 224 in the glass placing mechanism 2 on different layers, and the conveying rubber roller 23 in the glass placing mechanism 2 can also be rotated, so that the feeding or discharging operation of the glass in the glass placing mechanism 2 can also be independently realized.
[0043] The embodiments of the present invention are described in detail above with reference to the accompanying drawings, but the present invention is not limited to the described embodiments. It is apparent to those skilled in the art that various changes, modifications, substitutions, and variations to these embodiments may be made without departing from the principles and spirit of the present invention, and these changes and modifications still fall within the scope of protection of the present invention.
Claims
1. A multi-layer storage device for glass, comprising a rack (1), characterized in that: The frame (1) has a plurality of glass placement mechanisms (2) arranged in layers and arranged side by side. A first lifting drive mechanism (3) and a second lifting drive mechanism (4) are movably provided on one side of the frame (1). The first lifting drive mechanism (3) and the second lifting drive mechanism (4) are connected to the glass placement mechanism (2) so that the first lifting drive mechanism (3) and the second lifting drive mechanism (4) can both drive the glass placement mechanism (2) to operate.
2. A multi-layer storage device for glass according to claim 1, characterized in that: A rack (5) is provided on one side of the frame (1) close to the first lifting drive mechanism (3) and the second lifting drive mechanism (4); The first lifting drive mechanism (3) comprises a support base (31), a lifting module (32) and a driving module (33); the support base (31) is arranged on one side of the machine base; the lifting module (32) is arranged on a side of the support base (31) close to the frame (1); the lifting module (32) is connected to the rack (5); the driving module (33) is arranged on the surface of the support base (31); and the driving module (33) is connected to the glass placement mechanism (2).
3. The multi-layer storage equipment for glass according to claim 2, characterized in that: A first sliding component (6) is provided between the support seat (31) and the frame (1), a fixed end of the first sliding component (6) is provided on the surface of the frame (1), and a sliding end of the first sliding component (6) is connected to the support seat (31).
4. The multi-layer storage equipment for glass according to claim 2, characterized in that: The lifting module (32) comprises a first drive motor (321) and a first gear (322), wherein the first drive motor (321) is arranged on the surface of the support base (31), the output end of the first drive motor (321) passes through the support base (31) and extends toward the frame (1), and the first gear (322) is arranged at the output end of the first drive motor (321), and the first gear (322) is engaged with the rack (5).
5. The multi-layer storage equipment for glass according to claim 2, characterized in that: The driving module (33) includes a pushing cylinder (331), a base plate (332) and a power output assembly (334), wherein the pushing cylinder (331) is arranged on one side of the support seat (31), and the base plate (332) is arranged at the movable end of the pushing cylinder (331). A second sliding assembly (7) is arranged on the bottom surface of the base plate (332), and a fixed end of the second sliding assembly (7) is arranged on the inner surface of the support seat (31). The sliding end of the second sliding assembly (7) is connected to the base plate (332), and a power output assembly (334) is arranged on the upper surface of the base plate (332). The power output assembly (334) is connected to the glass placement mechanism (2).
6. The multi-layer storage equipment for glass according to claim 5, characterized in that: The power output assembly (334) includes a second drive motor (3341) and a second gear (3342). The second drive motor (3341) is arranged on the upper surface of the base plate (332). A mounting plate (3343) is provided on one side of the second drive motor (3341). The output end of the second drive motor (3341) passes through the mounting plate (3343). The second gear (3342) is provided at the output end of the second drive motor (3341). A third gear (3344) is provided on one side of the mounting plate (3343) close to the second gear (3342). One side of the third gear (3344) is meshed with the second gear (3342), and the other side of the third gear (3344) is connected to the glass placement mechanism (2).
7. The multi-layer storage equipment for glass according to claim 6, characterized in that: The glass placement mechanism (2) comprises a roller mounting frame (21) and a transmission module (22); the roller mounting frame (21) is arranged inside the frame (1); a plurality of conveying rubber rollers (23) are arranged inside the roller mounting frame (21); one end of each conveying rubber roller (23) passes through the roller mounting frame (21) and is provided with a first transmission bevel gear (24); the transmission module (22) is arranged on a side of the roller mounting frame (21) close to the first transmission bevel gear (24); the transmission module (22), the first transmission bevel gear (24), and the third gear (3344) are connected.
8. The multi-layer storage equipment for glass according to claim 7, characterized in that: The transmission module (22) comprises a support block (221) and a transmission rod (222). The support block (221) is arranged on a side of the roller mounting frame (21) close to the first transmission bevel gear (24). The transmission rod (222) is movably arranged inside the support block (221). A fourth gear (223) and a fifth gear (224) are arranged at both ends of the transmission rod (222). The fourth gear (223) is meshed with the third gear (3344). The fifth gear (224) is connected to the second lifting drive mechanism (4). A second transmission bevel gear (225) meshed with the first transmission bevel gear (24) is arranged on the surface of the transmission rod (222) close to the first transmission bevel gear (24).
9. The multi-layer storage equipment for glass according to claim 8, characterized in that: The second lifting drive mechanism (4) has the same structure as the first lifting drive mechanism (3).
10. The multi-layer storage equipment for glass according to claim 1, characterized in that: A feeding lifting platform (8) and a discharging lifting platform (9) are provided at both ends of the frame (1); the discharging end of the feeding lifting platform (8) faces the feeding end of the glass placement mechanism (2), and the feeding end of the discharging lifting platform (9) faces the discharging end of the glass placement mechanism (2).
Citation Information
Patent Citations
Vertical multi-layer glass storage warehouse
CN218433095U