A warehousing logistics equipped with an adjustable clamping structure and an adjustment method

By designing a warehousing and logistics system that adjusts the clamping structure, the problem that large equipment cannot penetrate into the storage space is solved, and the stable transportation and efficient operation of materials are achieved.

CN115303608BActive Publication Date: 2025-07-25WUXI TRANSTELLA SMARTER LOGISTICS CO LTD
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Patent Information

Application Number
CN202210896332.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-28
Publication Date
2025-07-25
Estimated Expiration
2042-07-28

AI Technical Summary

Technical Problem

Large equipment cannot penetrate deep into the storage space, resulting in the reliance on manpower to store and transport materials, which is inefficient and has a large investment in manpower, which is not conducive to the rapid operation of warehousing and logistics.

Method used

A warehousing logistics system equipped with an adjustable clamping structure is designed, including a base, clamping piece, operating rod, guide beam, limit beam and limit seat. By adjusting the clamping space and support mechanism, the stability and support of materials during the transfer process are ensured.

Benefits of technology

It realizes stable clamping and support of materials during the transfer process, avoids dumping, improves logistics operation efficiency, and reduces manpower investment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a warehousing logistics equipped with an adjustable clamping structure and an adjustment method, which relates to the technical field of warehousing logistics. It includes a base and a warehousing clamping member with a clamping function. An operating rod is inserted in the middle position at the upper end of a cross plate. Two backing plates are respectively vertically and fixedly arranged at the left and right ends of the front side of the upper end of the cross plate. A guiding cross beam is fixedly arranged between the two backing plates. Sliding sleeves slidably sleeved with the guiding cross beam are fixedly arranged at the ends of the two limiting cross beams, and the two limiting cross beams are distributed on both sides of the operating rod. Two limiting seats are fixedly arranged at the two sides of the rear side of the upper end of the cross plate. A limiting tooth groove matching the limiting tooth block is opened at the bottom end of the limiting cross beam, and a plurality of uniformly spaced limiting rods are vertically and fixedly arranged at the upper end of the limiting cross beam. The present invention solves the problems that due to the inability of large equipment to penetrate deep into the warehousing space, the storage and transfer of some materials rely on manual labor, resulting in low efficiency, large investment in manpower, and being not conducive to rapid operation.
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Description

Technical Field

[0001] The present invention relates to the technical field of warehousing logistics, and particularly to a warehousing logistics equipped with an adjustable clamping structure and an adjustment method. Background Art

[0002] With the rapid development of the economy, the logistics system has gradually been improved, facilitating the material needs of people's production and life. By establishing warehousing logistics, it is convenient for the circulation of materials between different places.

[0003] In the actual operation and use of current warehousing logistics, restricted by the material storage space at logistics points, large equipment cannot enter the warehousing space deeply. The storage and transfer of some materials mostly rely on manual operation, resulting in low efficiency and large human input, which is not conducive to the rapid operation of warehousing logistics. Therefore, a warehousing logistics equipped with an adjustable clamping structure and an adjustment method are designed here to solve the above problems. Summary of the Invention

[0004] The purpose of the present invention is to provide a warehousing logistics equipped with an adjustable clamping structure and an adjustment method to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A warehousing logistics equipped with an adjustable clamping structure includes a base and a warehousing clamping member with a clamping function. The base is composed of a horizontal plate and a vertical plate, and is fixedly connected together in a T-shaped structure. Brake universal wheels are rotatably provided at the bottom ends of the horizontal plate and the vertical plate.

[0006] An operating rod is inserted at the middle position of the upper end of the horizontal plate.

[0007] The warehousing clamping member is arranged at the upper end of the horizontal plate. The size of the clamping space is adjusted by the warehousing clamping member to ensure that the warehousing clamping member can stably clamp the outside of the material, so that the material can be stably placed during the transfer process and the phenomenon of tipping can be avoided.

[0008] The warehousing clamping member includes two backing plates, a guiding cross beam, two limiting cross beams and two limiting seats. The two backing plates are respectively vertically and fixedly arranged at the left and right ends of the front side of the upper end of the horizontal plate. The guiding cross beam is fixedly arranged between the two backing plates. Sliding sleeves slidably sleeved on the guiding cross beam are fixedly provided at the ends of the two limiting cross beams, and the two limiting cross beams are distributed on both sides of the operating rod. After the material is placed on the base, the two limiting cross beams are adjusted to slide along the outer wall of the guiding cross beam towards the side close to or away from each other by using the sliding sleeves, so as to adjust the size of the limiting space between the two limiting cross beams.

[0009] Two limiting seats are fixedly arranged on both sides of the rear side of the upper end of the cross plate. The upper end of the limiting seat is provided with limiting tooth blocks, and the bottom end of the limiting cross beam is provided with limiting tooth grooves matching the limiting tooth blocks. After the two limiting cross beams are respectively adjusted to abut against the outer walls of the materials on both sides, rotate the sliding sleeve of the limiting cross beam around the guiding cross beam until the limiting tooth grooves of the limiting cross beam are stuck on the limiting tooth blocks at the corresponding positions, ensuring that the limiting cross beam can stably abut against the outer walls of the materials and will not change its position.

[0010] A plurality of limiting rods evenly spaced are vertically and fixedly arranged at the upper end of the limiting cross beam.

[0011] In a further embodiment, a T-shaped handle is fixedly arranged on the side wall of the top end of the operating rod.

[0012] In a further embodiment, a support mechanism is arranged at one end of the bottom end of the vertical plate away from the cross plate. The support mechanism is used to rotate and adjust the orientation at the end of the vertical plate, facilitating the insertion into a narrow space to support the goods to be transported.

[0013] The support mechanism includes a support block. An articulated notch is formed at one end of the bottom end of the vertical plate away from the cross plate. A connecting block is fixedly arranged on the side wall of the support block, and a tooth column is fixedly arranged at the end of the connecting block. The two axial ends of the tooth column are respectively rotationally connected to the upper and lower side walls inside the articulated notch through pin shafts. The support block rotates in the articulated notch by using the tooth column, and the orientation of the support block can be adjusted, so as to change the support direction and help to insert into a narrow space for operation.

[0014] In a further embodiment, an adjustment cavity is arranged inside the cross plate and the vertical plate, and the adjustment cavity is communicated with the inside of the articulated notch. An adjustment mechanism for the direction of the support block is arranged inside the adjustment cavity, and the direction of the support block is precisely adjusted by using the adjustment mechanism to meet the requirements of material transportation.

[0015] In a further embodiment, the adjustment mechanism includes a first bevel gear, a second bevel gear and a transmission rod. The transmission rod is rotatably arranged inside the adjustment cavity. Third bevel gears are fixedly arranged at both axial ends of the transmission rod. The operating rod is rotatably inserted into the upper end surface of the cross plate. A connecting rod extending rotationally to the upper end surface of the cross plate is fixedly arranged on the side wall of the first bevel gear, and the end of the connecting rod is fixedly connected to the bottom end surface of the operating rod. The first bevel gear meshes with one of the third bevel gears, the second bevel gear meshes with the other third bevel gear, and the second bevel gear is rotatably arranged on the inner wall of the adjustment cavity. The side wall of the second bevel gear extends into the inside of the articulated notch, and meshes with the outer wall of the tooth column. By rotating the operating rod, the first bevel gear can be driven to rotate inside the adjustment cavity. The rotating first bevel gear drives one of the third bevel gears to rotate, and the transmission rod rotates synchronously with the rotating first bevel gear. The other third bevel gear can rotate synchronously, and the second bevel gear rotates following the third bevel gear, so that the tooth column can be rotated forward and backward inside the articulated notch.

[0016] According to the support direction requirement of the support block, only by rotating and adjusting the toothed column can the adjustment requirement of the support block be met.

[0017] In a further embodiment, extension support plates are fixedly provided on both side walls of the support block.

[0018] Preferably, based on the above-mentioned adjustment method of the storage clamping member in warehousing logistics, the following steps are included:

[0019] A1. After the materials are placed on the base, use the storage clamping member to adjust the size of the clamping space to ensure that the storage clamping member can stably clamp the outside of the materials, so as to ensure that the materials can be stably placed during the transfer process and avoid the phenomenon of tipping over.

[0020] Compared with the prior art, the beneficial effects of the present invention are:

[0021] The present invention is a warehousing logistics equipped with an adjustable clamping structure and an adjustment method, which solves the problem that due to the inability of large equipment to penetrate deep into the warehousing space, the storage and transfer of some materials rely on manual operation, resulting in low efficiency, large manpower input, and being unfavorable to the rapid operation of warehousing logistics. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is a schematic diagram of the main structure of the present invention;

[0023] Figure 2 It is a side view of the partial structure of the present invention;

[0024] Figure 3 It is a top view of the partial structure of the present invention.

[0025] In the figure: 1, cross plate; 11, longitudinal plate; 12, operating rod; 13, T-shaped handle; 2, storage clamping member; 21, backing plate; 22, guiding cross beam; 23, sliding sleeve; 24, limiting cross beam; 25, limiting seat; 26, limiting tooth block; 27, limiting rod; 3, support mechanism; 31, support block; 32, extension support plate; 33, connecting block; 34, toothed column; 4, adjustment mechanism; 41, transmission rod; 42, third bevel gear; 43, first bevel gear; 44, second bevel gear. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0026] The technical solutions in the embodiments of the present invention will be clearly and completely described below. Apparently, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0027] Embodiment 1

[0028] Please refer toFigures 1-3 , this embodiment provides a warehousing logistics equipped with an adjustable clamping structure and an adjustment method, including a base and a warehousing clamp 2 with a clamping function. The base is composed of a cross plate 1 and a longitudinal plate 11, and is fixedly connected together in a T-shaped structure. Brake universal wheels are rotatably provided at the bottom ends of the cross plate 1 and the longitudinal plate 11. The cross plate 1 and the longitudinal plate 11 form the base and are used as a support base. By placing the materials to be transported and transferred on the support base, the support base can be conveniently moved through the brake universal wheels, achieving the purpose of rapid transportation and transfer.

[0029] An operating rod 12 is inserted in the middle position at the upper end of the cross plate 1. By setting the operating rod 12, it is convenient to apply force to push the overall structure to move.

[0030] A T-shaped handle 13 is fixedly provided on the side wall at the top end of the operating rod 12. Holding the T-shaped handle 13 by hand is convenient for applying force, and the overall structure is assisted to move through the operating rod 12.

[0031] The warehousing clamp 2 is arranged at the upper end of the cross plate 1. After the materials are placed on the base, the clamping space size is adjusted by using the warehousing clamp 2 to ensure that the warehousing clamp 2 can stably clamp the outside of the materials, ensuring that the materials can be stably placed during the transfer process and avoiding the phenomenon of tipping.

[0032] The warehousing clamp 2 includes two backing plates 21, a guiding cross beam 22, two limiting cross beams 24 and two limiting seats 25. The two backing plates 21 are respectively vertically and fixedly arranged at the left and right ends of the front side at the upper end of the cross plate 1. The guiding cross beam 22 is fixedly arranged between the two backing plates 21. Sliding sleeves 23 slidably sleeved on the guiding cross beam 22 are fixedly provided at the ends of the two limiting cross beams 24, and the two limiting cross beams 24 are distributed on both sides of the operating rod 12. After the materials are placed on the base, the two limiting cross beams 24 are adjusted to slide along the outer wall of the guiding cross beam 22 towards the side of approaching or separating from each other by using the sliding sleeves 23, so as to adjust the size of the limiting space between the two limiting cross beams 24.

[0033] Two limiting seats 25 are fixedly arranged at the two sides of the rear side at the upper end of the cross plate 1. A limiting tooth block 26 is arranged at the upper end of the limiting seat 25. A limiting tooth groove matching the limiting tooth block 26 is opened at the bottom end of the limiting cross beam 24. After the two limiting cross beams 24 are respectively adjusted to abut against the outer walls of the materials on both sides, the sliding sleeve 23 of the limiting cross beam 24 is rotated around the guiding cross beam 22 until the limiting tooth groove of the limiting cross beam 24 is stuck on the limiting tooth block 26 at the corresponding position, ensuring that the limiting cross beam 24 can stably abut against the outer wall of the materials and will not change its position.

[0034] In addition, a plurality of limiting rods 27 evenly spaced are vertically and fixedly arranged at the upper end of the limiting cross beam 24. A fence is formed by using the plurality of limiting rods 27 to further enhance the stability during the material operation process.

[0035] Support rods can also be added on both sides of the vertical plate 11 to enhance the support stability of the materials.

[0036] Embodiment 2

[0037] Please refer to Figures 1-3 , and further improvements are made on the basis of Embodiment 1:

[0038] When the materials are stored in a place with a relatively narrow space, the cross plate 1 and the vertical plate 11 are not convenient to extend into the narrow space to transfer the materials, which affects the material transfer efficiency. By providing a support mechanism 3 at one end of the bottom end of the vertical plate 11 away from the cross plate 1, the support mechanism 3 is used to rotate and adjust the orientation at the end of the vertical plate 11, so as to facilitate extending into the narrow space to support the goods to be transferred.

[0039] The support mechanism 3 includes a support block 31. An articulated notch is opened at one end of the bottom end of the vertical plate 11 away from the cross plate 1. A connecting block 33 is fixedly provided on the side wall of the support block 31, and a tooth column 34 is fixedly provided at the end of the connecting block 33. The two axial ends of the tooth column 34 are respectively rotationally connected to the upper and lower side walls inside the articulated notch through pin shafts. The support block 31 rotates in the articulated notch by using the tooth column 34, and the orientation of the support block 31 can be adjusted, so as to change the support direction and help extend into the narrow space for operation.

[0040] An adjustment cavity is provided inside the cross plate 1 and the vertical plate 11, and the adjustment cavity is communicated with the inside of the articulated notch. An adjustment mechanism 4 for the direction of the support block 31 is provided inside the adjustment cavity, and the adjustment mechanism 4 is used to precisely adjust the direction of the support block 31 to meet the requirements of material transfer.

[0041] The adjustment mechanism 4 includes a first bevel gear 43, a second bevel gear 44 and a transmission rod 41. The transmission rod 41 is rotatably arranged inside the adjustment cavity. Third bevel gears 42 are fixedly provided at both axial ends of the transmission rod 41. The operating rod 12 is rotatably inserted into the upper end surface of the cross plate 1. A connecting rod that rotates and extends to the upper end surface of the cross plate 1 is fixedly provided on the side wall of the first bevel gear 43, and the end of the connecting rod is fixedly connected to the bottom end surface of the operating rod 12. The first bevel gear 43 meshes with one of the third bevel gears 42, the second bevel gear 44 meshes with the other third bevel gear 42, and the second bevel gear 44 is rotatably arranged on the inner wall of the adjustment cavity. The side wall of the second bevel gear 44 extends out of the adjustment cavity and enters the articulated notch, and meshes with the outer wall of the tooth column 34. By rotating the operating rod 12, the first bevel gear 43 can be driven to rotate in the adjustment cavity. The rotating first bevel gear 43 drives one of the third bevel gears 42 to rotate, and the transmission rod 41 rotates synchronously with the rotating first bevel gear 43. The other third bevel gear 42 can rotate synchronously, and the second bevel gear 44 rotates following the third bevel gear 42, so that the tooth column 34 can be rotated forward and backward inside the articulated notch.

[0042] According to the support direction requirement of the support block 31, only by rotating and adjusting the toothed column 34 can the adjustment requirement of the support block 31 be met.

[0043] By fixedly providing extension support plates 32 on both side walls of the support block 31, the extension support plates 32 are used to enhance the stability of material transfer.

[0044] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A warehousing and logistics device equipped with an adjustable clamping structure, comprising a base and a warehousing clamping member (2) with a clamping function. The base is composed of a cross plate (1) and a longitudinal plate (11), and is fixedly connected together in a T-shaped structure. Brake universal wheels are rotatably provided at the bottom ends of the cross plate (1) and the longitudinal plate (11). It is characterized in that: An operating rod (12) is inserted at the middle position of the upper end of the cross plate (1); The storage clamping member (2) is arranged at the upper end of the cross plate (1); The storage clamping member (2) includes two backing plates (21), a guiding cross beam (22), two limiting cross beams (24) and two limiting seats (25). The two backing plates (21) are respectively and vertically fixedly arranged at the left and right ends of the front side of the upper end of the cross plate (1). The guiding cross beam (22) is fixedly arranged between the two backing plates (21). Sliding sleeves (23) which are slidably sleeved with the guiding cross beam (22) are fixedly arranged at the ends of the two limiting cross beams (24). The two limiting cross beams (24) are distributed on both sides of the operating rod (12). The two limiting seats (25) are fixedly arranged at the two sides of the rear side of the upper end of the cross plate (1). A limiting tooth block (26) is arranged at the upper end of the limiting seat (25). A limiting tooth groove which is matched with the limiting tooth block (26) is formed at the bottom end of the limiting cross beam (24); A plurality of limiting rods (27) which are evenly spaced are vertically and fixedly arranged at the upper end of the limiting cross beam (24); A support mechanism (3) is arranged at one end of the bottom end of the longitudinal plate (11) far away from the cross plate (1); The support mechanism (3) includes a support block (31). A hinge notch is formed at one end of the bottom end of the longitudinal plate (11) far away from the cross plate (1). A connecting block (33) is fixedly arranged on the side wall of the support block (31). A tooth column (34) is fixedly arranged at the end of the connecting block (33). The two axial ends of the tooth column (34) are respectively rotationally connected with the upper and lower side walls inside the hinge notch through pin shafts; An adjusting cavity is arranged inside the cross plate (1) and the longitudinal plate (11), and the adjusting cavity is communicated with the inside of the hinge notch. An adjusting mechanism (4) in the direction of the support block (31) is arranged inside the adjusting cavity; Extension support plates (32) are fixedly arranged on both side walls of the support block (31).

2. The warehousing and logistics device equipped with an adjustable clamping structure according to claim 1, characterized in that: A T-shaped handle (13) is fixedly arranged on the side wall of the top end of the operating rod (12).

3. The warehousing and logistics device equipped with an adjustable clamping structure according to claim 1, characterized in that: The adjusting mechanism (4) includes a first bevel gear (43), a second bevel gear (44) and a transmission rod (41). The transmission rod (41) is rotatably arranged inside the adjusting cavity. Third bevel gears (42) are fixedly arranged at both axial ends of the transmission rod (41). The operating rod (12) is rotationally inserted on the upper end surface of the cross plate (1). A connecting rod which rotates and extends to the upper end surface of the cross plate (1) is fixedly arranged on the side wall of the first bevel gear (43), and the end of the connecting rod is fixedly connected with the bottom end surface of the operating rod (12). The first bevel gear (43) is meshed with one of the third bevel gears (42). The second bevel gear (44) is meshed with the other third bevel gear (42). The second bevel gear (44) is rotatably arranged on the inner wall of the adjusting cavity. The side wall of the second bevel gear (44) extends out of the inside of the adjusting cavity and enters the hinge notch, and is meshed with the outer wall of the tooth column (34).

4. Adjustment method of the storage gripper used in warehousing logistics. For a warehousing logistics device equipped with an adjustable clamping structure according to claim 1, it is characterized in that, Comprising the following steps: A1. After the materials are placed on the base, the clamping space of the warehousing clamping member (2) is adjusted to ensure that the warehousing clamping member (2) can stably clamp the outside of the materials, so as to ensure that the materials can be stably placed during the transfer process and avoid the phenomenon of tipping over.

Citation Information

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