Intelligent electric compact shelving emergency stop device

By introducing track structure, moving structure and braking auxiliary mechanism into the smart electric dense frame, the sliding and tilt problems of the dense frame during emergency braking are solved, and a more stable emergency braking effect is achieved.

CN223241947UActive Publication Date: 2025-08-19SHANGHAI LANSHENG ELECTRONICS TECH
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422948325.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-08-19
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

The smart electric dense rack is prone to slip due to inertia during emergency braking and has the risk of tilting down, so the emergency braking effect is not good.

Method used

An intelligent electric dense rack emergency stop device is designed, including a rail structure, a moving structure, a driving mechanism and a braking auxiliary mechanism. Through the meshing of gears and tooth plates and the elastic action of the torsion spring, the emergency braking and stability of the dense rack are improved.

Benefits of technology

Effectively prevent the dense frame from slipping and tilting during emergency braking, improving the braking effect and stability and ensuring safety.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223241947U_ABST
    Figure CN223241947U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of electric compact shelving, in particular to an intelligent electric compact shelving emergency stop device. The intelligent electric compact shelving emergency stop device comprises track structures, a compact shelving body is installed on the two track structures through a moving structure, and a driving mechanism and a braking auxiliary mechanism are further installed at the lower end of the compact shelving body; the track structure comprises a bottom plate; the number of the moving structures is two, the number of any one moving structure is two, and each moving structure comprises two rolling wheels. The driving mechanism is in transmission connection with one moving structure; and the brake auxiliary mechanism is in transmission connection with the other set of moving structure, comprises a gear which can be meshed with the toothed plate, and can generate rotation opposite to the direction of the roller when the compact shelving body is in a moving state during meshing. According to the intelligent electric emergency stop device for the compact shelving, the emergency braking effect of the compact shelving can be further improved, and meanwhile the braking stability of the compact shelving is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of electric compact shelving, in particular to an intelligent electric compact shelving emergency stop device. Background Art

[0002] Intelligent electric compact shelving is a modern storage device that integrates multiple advanced technologies to achieve efficient management and access of archives.

[0003] There are generally multiple compact shelving units in the same track system, and all of them can move along the track to change the distance between two adjacent compact shelving units. When taking and placing items, the distance between the two can be increased to allow staff to enter; in the storage state, the distance between the two can be reduced to reduce the space occupied by the entire device. The compact shelving unit itself is relatively heavy, especially when fully loaded with items, so a relatively large kinetic energy drive is required to achieve the movement of the compact shelving unit. At the same time, the movement adjustment is achieved by rollers. After the emergency braking of the rollers, short-distance slippage is likely to occur due to inertia, and the emergency braking effect is relatively poor; and in the emergency braking state, the compact shelving unit is prone to tilting and may fall down. Summary of the Invention

[0004] In order to solve the above technical problems, the utility model provides an intelligent electric compact shelving emergency stop device.

[0005] The technical solution adopted by the utility model to solve its technical problems is:

[0006] An intelligent electric compact shelving emergency stop device comprises two track structures, on which a compact shelving body is movably mounted via a movable structure, and a driving mechanism and a braking auxiliary mechanism are further mounted at the lower end of the compact shelving body;

[0007] The track structure includes a bottom plate, a vertical plate is vertically welded at a position away from the center of the upper end of the bottom plate, the upper end of the vertical plate is integrally connected to a horizontally arranged horizontal plate, and a rolling track is formed between the bottom plate, the vertical plate and the horizontal plate, and a tooth plate is fixed to the lower end of the horizontal plate and is arranged along the length direction and located at the top of the rolling track;

[0008] The movable structure is composed of two sets distributed front and back, and each set of the movable structure has two sets. The movable structure includes two rollers rolling on the bottom plate, and one of the rollers is located in the rolling track;

[0009] The driving mechanism is in transmission connection with one set of the movable structures, and is used to drive the movable structure to drive the compact shelving body to move along the length direction of the track structure;

[0010] The braking auxiliary mechanism is connected to another set of the movable structures in a transmission manner, and includes a gear that can engage with the tooth plate, and can generate a rotation in the opposite direction to the roller when the compact shelving body is in a moving state when engaged, and is used to drive the set of movable structures to generate a movement in the opposite direction to the compact shelving body to achieve emergency braking of the compact shelving body.

[0011] Preferably, the width of the bottom plate is greater than twice the width of the transverse plate, and a positioning rail is fixed to the upper end of the bottom plate.

[0012] Preferably, the movable structure also includes a first mounting frame, which is fixed to the lower end of the compact shelving body, and a wheel axle is rotatably connected to the first mounting frame. The roller is fixed on the wheel axle, and the circumferential outer wall of the roller also has an annular groove, and the positioning track is embedded in the annular groove, and the tooth plate corresponds to the position of the annular groove.

[0013] Preferably, the distance between the roller and the transverse plate is less than 3 mm, while the distance between the tooth plate and the bottom of the annular groove is greater than 3 mm.

[0014] Preferably, the driving mechanism includes a motor, the motor is fixed to the lower end of the compact shelving body, and a concentrically arranged first driving pulley is fixed to the output end of the motor;

[0015] In the moving structure that is transmission-connected to the driving mechanism, a first driven pulley that is concentrically arranged is also fixed on the wheel shaft, and the first driven pulley and the first driving pulley are connected via a first transmission belt.

[0016] Preferably, the brake assist mechanism further comprises a second mounting frame, the second mounting frame being fixed to the lower end of the compact shelving body, a cylinder being further fixed on the second mounting frame, the output end of the cylinder being vertically downward, and a third mounting frame being fixed to the output end, a fixed shaft extending to the inside of the raceway being fixed on the third mounting frame, a rotatable sleeve being sleeved on the fixed shaft, the gear being concentrically fixed to one end of the sleeve, and a concentrically arranged second driving pulley being fixed to the other end of the sleeve;

[0017] In the moving structure transmission-connected to the brake assist mechanism, a concentrically arranged second driven pulley is fixed on the wheel shaft, and the second driven pulley is connected to the second driving pulley via a second transmission belt.

[0018] Preferably, the cylinder is used to drive the gear to move in the vertical direction. When the gear moves to the highest position, it engages with the tooth plate, and the second transmission belt is in a taut state.

[0019] Preferably, a through hole is further provided in the center of the gear, the diameter of the through hole being larger than the diameter of the fixed shaft, and a torsion spring sleeved on the outside of the fixed shaft is fixed inside the through hole, and one end of the torsion spring is pressed against the third mounting bracket to generate an elastic force opposite to the rotation direction of the gear when the gear rotates.

[0020] Preferably, a plurality of reinforcing plates are fixed to the circumferential outer wall of the sleeve, and the reinforcing plates, the gears and the second driving pulley are all fixed to each other.

[0021] Compared with related technologies, the intelligent electric compact shelving emergency stop device provided by the present invention has the following beneficial effects:

[0022] 1. A rolling track for the rollers is formed between the bottom plate, vertical plate and horizontal plate to meet the needs of the rollers' movement. At the same time, it can limit one of the rollers. That is, when the roller is in an emergency braking state, the horizontal plate at the uppermost end limits the vertical movement and floating amount of the roller to avoid the entire compact shelving from tilting and falling, thereby improving the stability of the compact shelving during emergency braking.

[0023] 2. During emergency braking, the cylinder drives the gear upward, so that the gear and the toothed plate are engaged. Therefore, when the compact shelving continues to slide due to inertia, the gear engaged with the toothed plate will rotate and drive the second driving pulley to rotate together through the sleeve. The second driving pulley drives the axle to rotate through the second transmission belt and the second driven pulley, so that the roller on the axle rotates together. The direction in which the compact shelving is driven by the roller is opposite to the direction in which the compact shelving slides due to inertia, further improving the effect of emergency braking on the compact shelving.

[0024] 3. There is also a torsion spring between the gear and the fixed shaft. When the gear rotates, it will generate a force on the torsion spring and at the same time be subjected to a reaction force from the torsion spring. The elastic force of the torsion spring can buffer the slippage caused by inertia of the compact shelving, achieve a significant offset of inertia, and have a certain auxiliary effect on the braking of the compact shelving. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 This is a structural schematic diagram of a preferred embodiment of the intelligent electric compact shelving emergency stop device provided by the utility model.

[0026] Figure 2 This is a schematic diagram of the track structure shown in the utility model Figure 1 .

[0027] Figure 3 This is a schematic diagram of the track structure shown in the utility model Figure 2 .

[0028] Figure 4This is a structural diagram of the track structure and the moving structure shown in the present invention.

[0029] Figure 5 This is a structural schematic diagram of the lower end of the compact shelving body shown in the present invention.

[0030] Figure 6 This is a structural diagram of the driving mechanism and the moving structure shown in the present invention.

[0031] Figure 7 The utility model shown in Figure 6 Schematic diagram of the explosion structure.

[0032] Figure 8 This is a structural diagram of the brake assist mechanism and the moving structure shown in the present invention.

[0033] Figure 9 The utility model shown in Figure 8 Schematic diagram of the explosion structure;

[0034] Figure 10 The utility model shown in Figure 9 Schematic diagram of the structure with partial section.

[0035] Numbers in the figure: 1, track structure; 11, bottom plate; 12, positioning track; 13, vertical plate; 14, horizontal plate; 15, tooth plate.

[0036] 2. The main body of the compact shelving.

[0037] 3. Mobile structure; 31. First mounting frame; 32. Axle; 33. Roller; 34. Ring groove.

[0038] 4. Driving mechanism; 41. Motor; 42. First driving pulley; 43. First driven pulley; 44. First transmission belt.

[0039] 5. Brake assist mechanism; 51. Second mounting frame; 52. Cylinder; 53. Third mounting frame; 54. Fixed shaft; 55. Sleeve; 56. Gear; 57. Second driving pulley; 58. Reinforcement plate; 59. Torsion spring; 510. Second driven pulley; 511. Second transmission belt. DETAILED DESCRIPTION

[0040] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0041] The specific implementation of the present invention is described in detail below with reference to specific embodiments.

[0042] See also Figures 1 to 10 The utility model provides an intelligent electric compact shelving emergency stop device, which includes two track structures 1, a compact shelving body 2, a moving structure 3, a driving mechanism 4 and a braking auxiliary mechanism 5.

[0043] The compact shelving body 2 is mounted on the track structure 1 via two sets of movable structures 3 , while the driving mechanism 4 and the brake assist mechanism 5 are fixed to the lower end of the compact shelving body 2 and are respectively connected to the two sets of movable structures 3 in a transmission manner.

[0044] For track structure 1 and mobile structure 3, see Figures 2 to 4 The track structure 1 includes a base plate 11, a vertical plate 13 is vertically welded at a position away from the center of the upper end of the base plate 11, and a horizontally arranged cross plate 14 is integrally connected to the upper end of the vertical plate 13. A raceway is formed between the base plate 11, the vertical plate 13 and the cross plate 14. A tooth plate 15 is fixed at the lower end of the cross plate 14 along the length direction and located at the top of the raceway. A positioning track 12 is also fixed at the upper end of the base plate 11.

[0045] Among them, the width of the bottom plate 11 is greater than twice the width of the cross plate 14; at the same time, the movable structure 3 includes a first mounting frame 31, the first mounting frame 31 is fixed to the lower end of the compact shelving body 2, and a wheel axle 32 is rotatably connected to the first mounting frame 31, and two rollers 33 are fixed on the wheel axle 32. The circumferential outer wall of the roller 33 also has an annular groove 34, and the positioning track 12 is embedded in the annular groove 34, and the tooth plate 15 corresponds to the position of the annular groove 34.

[0046] The distance between the roller 33 and the transverse plate 14 is less than 3 mm, while the distance between the tooth plate 15 and the bottom of the annular groove 34 is greater than 3 mm.

[0047] It should be noted that: in the mobile structure 3, the first mounting frame 31 is fixed to the lower end of the compact shelving body 2, and the roller 33 rolls on the base plate 11, thereby supporting the compact shelving body 2 and moving the compact shelving body 2; at the same time, a positioning track 12 is set at the upper end of the base plate 11, and the positioning track 12 is embedded in the annular groove 34 in the roller 33, which is used to limit the roller 33 and make the connection between the two more compact.

[0048] There are two groups of rollers 33, one of which is located inside the raceway, so it can be restricted by the cross plate 14. That is, when the compact shelving body 2 makes an emergency stop, the cross plate 14 can be used to limit the displacement and floating amount of the roller 33 in the vertical direction, thereby avoiding the compact shelving body 2 from tilting at a large angle and preventing the compact shelving body 2 from tipping over.

[0049] The distance between the roller 33 and the cross plate 14 is less than 3 mm, while the distance between the tooth plate 15 and the bottom of the annular groove 34 is greater than 3 mm. Therefore, the maximum displacement of the roller 33 in the vertical direction is 3 mm. Within this range, the roller 33 will not contact the tooth plate 15, thereby having a certain protective effect on both the roller 33 and the tooth plate 15.

[0050] For drive mechanism 4, see Figure 6 and Figure 7 The driving mechanism 4 includes a motor 41, which is fixed to the lower end of the compact shelving body 2, and a concentrically arranged first driving pulley 42 is fixed to the output end of the motor 41.

[0051] In the mobile structure 3 that is transmission-connected to the driving mechanism 4 , a concentrically arranged first driven pulley 43 is fixed on the wheel shaft 32 , and the first driven pulley 43 and the first driving pulley 42 are connected via a first transmission belt 44 .

[0052] It should be noted that: in the driving mechanism 4, the motor 41 can directly drive the first active pulley 42 to rotate, and then drive the wheel shaft 32 to rotate through the first transmission belt 44 and the first driven pulley 43, and then drive the roller 33 to rotate, thereby realizing the movement of the entire compact shelving body 2.

[0053] When braking, the stop motor 41 operates to stop the rotation of the roller 33 and the movement of the compact shelving body 2 .

[0054] For brake assist mechanism 5, see Figures 8 to 10 The brake assist mechanism 5 includes a second mounting frame 51, which is fixed to the lower end of the compact shelving body 2. A cylinder 52 is also fixed on the second mounting frame 51, and the output end of the cylinder 52 is vertically downward, and a third mounting frame 53 is fixed to the output end. A fixed shaft 54 extending to the inside of the raceway is fixed on the third mounting frame 53, and a rotatable sleeve 55 is sleeved on the fixed shaft 54. A gear 56 is fixed at one end of the sleeve 55, and a concentrically arranged second active pulley 57 is fixed at the other end of the sleeve 55. The cylinder 52 drives the gear 56 to move in the vertical direction. When the gear 56 moves to the highest position, it engages with the tooth plate 15, and the second transmission belt 511 is in a taut state.

[0055] In the mobile structure 3 that is transmission-connected to the brake assist mechanism 5 , a concentrically arranged second driven pulley 510 is also fixed on the axle 32 , and the second driven pulley 510 and the second driving pulley 57 are connected via a second transmission belt 511 .

[0056] At the same time, a through hole is opened in the center of the gear 56. The aperture of the through hole is larger than the diameter of the fixed shaft 54, and a torsion spring 59 is fixed inside the through hole and is sleeved on the outside of the fixed shaft 54. One end of the torsion spring 59 is pressed against the third mounting bracket 53, which is used to generate an elastic force in the opposite direction of rotation to the gear 56 when the gear 56 rotates.

[0057] A plurality of reinforcing plates 58 are fixed to the circumferential outer wall of the sleeve 55 , and the reinforcing plates 58 , the gear 56 , and the second driving pulley 57 are all fixed to each other.

[0058] It should be noted that: in the brake assist mechanism 5, the cylinder 52 can drive the third mounting frame 53 to perform lifting movements, and drive the sleeve 55 and the gear 56 to move together through the fixed shaft 54, so as to realize the lifting and lowering adjustment of the gear 56. When the gear 56 moves to the highest position, it can engage with the tooth plate 15; and if the compact shelving body 2 slips due to inertia, the gear 56 will rotate, and then drive the second driving pulley 57 to rotate together through the sleeve 55. The second driving pulley 57 drives the axle 32 to rotate together through the second transmission belt 511 and the second driven pulley 510, and then drives the roller 33 on the axle 32 to rotate, and the rotation direction of the roller 33 is opposite to the sliding direction of the compact shelving body 2, thereby improving the grip of the roller 33, thereby further improving the braking effect of the device.

[0059] A torsion spring 59 is also provided between the gear 56 and the fixed shaft 54. When the gear 56 rotates, it will generate an action force on the torsion spring 59, and at the same time it will be subjected to a reaction force from the torsion spring 59. The elastic force of the torsion spring 59 can buffer the slippage caused by inertia of the compact shelving, achieve a significant offset of inertia, and have a certain auxiliary effect on the braking of the compact shelving.

[0060] When the gear 56 is in the highest position, it is meshed with the tooth plate 15, and the gear 56 and the second driving pulley 57 are also installed on the sleeve 55, so the second driving pulley 57 will also produce a displacement relative to the second driven pulley 510. At this time, the distance between the two will increase, so that the second transmission belt 511 is in a taut state, so that transmission can be achieved between the second driving pulley 57 and the second driven pulley 510; and after the compact shelving body 2 is stagnant, the gear 56 is driven downward by the cylinder 52 to disengage it from the tooth plate 15, and at the same time, the second transmission belt 511 is converted from a taut state to a relaxed state. In this state, the transmission effect cannot be achieved, so the sleeve 55 is basically not subject to any restriction, and the torsion spring 59 can release the accumulated elastic potential energy and return to the initial state.

[0061] As for the reinforcing plate 58, it is fixed to the outside of the sleeve 55 and is connected to the gear 56 and the second driving pulley 57. It can further improve the strength of the sleeve 55, reduce the torque applied to the sleeve 55, and improve the service life of the device.

[0062] The above are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. An intelligent electric compact shelving emergency stop device, comprising two track structures (1), on which a compact shelving body (2) is movably mounted via a movable structure (3), and a driving mechanism (4) and a brake assist mechanism (5) are further mounted at the lower end of the compact shelving body (2), characterized in that: The track structure (1) includes a base plate (11), a vertical plate (13) is vertically welded at a position away from the center of the upper end of the base plate (11), the upper end of the vertical plate (13) is integrally connected with a horizontally arranged transverse plate (14), and a rolling track is formed between the base plate (11), the vertical plate (13) and the transverse plate (14), and a tooth plate (15) is fixed to the lower end of the transverse plate (14) along the length direction and located at the top of the rolling track; The movable structure (3) is composed of two sets distributed front and back, and each set of the movable structure (3) has two members. The movable structure (3) includes two rollers (33) rolling on the bottom plate (11), and one of the rollers (33) is located in a rolling track. The driving mechanism (4) is in transmission connection with one set of the moving structures (3), and is used to drive the moving structure (3) to drive the compact shelving body (2) to move along the length direction of the track structure (1); The braking auxiliary mechanism (5) is transmission-connected to another set of the mobile structures (3), and includes a gear (56) that can mesh with the toothed plate (15), and can generate a rotation in the opposite direction to the roller (33) when the compact shelving body (2) is in a moving state when meshed, so as to drive the set of the mobile structures (3) to generate a movement in the opposite direction to the compact shelving body (2) to realize emergency braking of the compact shelving body (2).

2. The intelligent electric compact shelving emergency stop device according to claim 1, characterized in that: The width of the bottom plate (11) is greater than twice the width of the transverse plate (14), and a positioning rail (12) is fixed to the upper end of the bottom plate (11).

3. The intelligent electric compact shelving emergency stop device according to claim 1, characterized in that: The mobile structure (3) further includes a first mounting frame (31), the first mounting frame (31) being fixed to the lower end of the compact shelving body (2), a wheel shaft (32) being rotatably connected to the first mounting frame (31), the roller (33) being fixed to the wheel shaft (32), the circumferential outer wall of the roller (33) also having an annular groove (34), and the positioning track (12) being embedded in the annular groove (34), and the tooth plate (15) being located corresponding to the position of the annular groove (34).

4. The intelligent electric compact shelving emergency stop device according to claim 3 is characterized in that: The distance between the roller (33) and the transverse plate (14) is less than 3 mm, while the distance between the tooth plate (15) and the bottom of the annular groove (34) is greater than 3 mm.

5. The intelligent electric compact shelving emergency stop device according to claim 1, characterized in that: The driving mechanism (4) includes a motor (41), the motor (41) is fixed to the lower end of the compact shelving body (2), and a concentrically arranged first driving pulley (42) is fixed to the output end of the motor (41); In the mobile structure (3) that is transmission-connected to the drive mechanism (4), a first driven pulley (43) that is concentrically arranged is also fixed on the wheel shaft (32), and the first driven pulley (43) and the first driving pulley (42) are connected via a first transmission belt (44).

6. The intelligent electric compact shelving emergency stop device according to claim 1, characterized in that: The brake assist mechanism (5) further comprises a second mounting frame (51), the second mounting frame (51) being fixed to the lower end of the compact rack body (2), a cylinder (52) being fixed to the second mounting frame (51), the output end of the cylinder (52) being vertically downward, and a third mounting frame (53) being fixed to the output end, a fixed shaft (54) extending to the inside of the raceway being fixed to the third mounting frame (53), a rotatable sleeve (55) being sleeved on the fixed shaft (54), the gear (56) being concentrically fixed to one end of the sleeve (55), and a concentrically arranged second driving pulley (57) being fixed to the other end of the sleeve (55); In the mobile structure (3) that is transmission-connected to the brake assist mechanism (5), a concentrically arranged second driven pulley (510) is also fixed on the wheel shaft (32), and the second driven pulley (510) and the second driving pulley (57) are connected via a second transmission belt (511).

7. The intelligent electric compact shelving emergency stop device according to claim 6, characterized in that: The cylinder (52) is used to drive the gear (56) to move in a vertical direction. When the gear (56) moves to the highest position, it engages with the toothed plate (15), and the second transmission belt (511) is in a taut state.

8. The intelligent electric compact shelving emergency stop device according to claim 6, characterized in that: A through hole is also provided at the center of the gear (56), the diameter of which is larger than the diameter of the fixed shaft (54), and a torsion spring (59) sleeved on the outside of the fixed shaft (54) is fixed inside the through hole, one end of the torsion spring (59) is pressed against the third mounting frame (53), and is used to generate an elastic force in the opposite direction of rotation to the gear (56) when the gear (56) rotates.

9. The intelligent electric compact shelving emergency stop device according to claim 6, characterized in that: A plurality of reinforcing plates (58) are also fixed to the circumferential outer wall of the sleeve (55), and the reinforcing plates (58), the gear (56), and the second driving pulley (57) are all fixed to each other.