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CN-224225858-U - Automatic change storage handling equipment

CN224225858UCN 224225858 UCN224225858 UCN 224225858UCN-224225858-U

Abstract

The application relates to the field of storage and transportation and discloses automatic storage and transportation equipment, which comprises a transportation support, wherein a rotating frame is arranged on the transportation support, a fixed frame is arranged on the rotating frame, a fixed groove is formed in the fixed frame, a supporting rod is arranged in the fixed groove, a spring is sleeved on the supporting rod, the fixed frame is connected with a placing plate through a movable connecting plate, a supporting side plate is arranged on the side of the placing plate, a sheave is further arranged on the rotating frame, a limit groove is formed in the sheave, an adjusting circular plate is arranged on one side of the sheave, and a limit deflector rod is arranged on the adjusting circular plate.

Inventors

  • CHENG HUI
  • ZHU JIANYING

Assignees

  • 合肥邦汇自动化设备有限公司

Dates

Publication Date
20260512
Application Date
20250619

Claims (5)

  1. 1. Automatic change storage handling equipment, including transporting support (1), its characterized in that is provided with swivel mount (2) on transporting support (1), install fixed frame (3) on swivel mount (2), fixed slot (4) have been seted up on fixed frame (3), install bracing piece (5) in fixed slot (4), the cover is equipped with spring (6) on bracing piece (5), fixed frame (3) are connected with through movable connection board (7) and place board (8), place board (8) side and be provided with support curb plate (9), still install sheave (10) on swivel mount (2), limit groove (11) have been seted up on sheave (10), sheave (10) one side is provided with adjusts plectane (12), install spacing driving lever (13) on adjusting plectane (12), install auto-lock driving motor (14) on transporting support (1), auto-lock driving motor (14) are connected with swivel mount (2).
  2. 2. The automatic storage and handling equipment according to claim 1, wherein the movable connecting plate (7) is movably connected with the fixed frame (3) through a supporting rod (5) and a spring (6), and the spring (6) is positioned in the fixed groove (4) and is used for buffering the impact force received by the placing plate (8).
  3. 3. The automatic storage and handling equipment according to claim 1, wherein the limit deflector rod (13) is matched with the limit groove (11) and used for limiting the rotation angle of the grooved wheel (10), and the grooved wheel (10) is linked with the rotating frame (2).
  4. 4. An automated warehouse handling equipment as claimed in claim 1, wherein the placement plate (8) and support side plates (9) comprise a material carrying structure, the support side plates (9) being adapted to prevent material from sliding off the sides of the placement plate (8).
  5. 5. The automatic storage and handling equipment according to claim 1, wherein the self-locking driving motor (14) is used for driving the rotating frame (2) to rotate so as to adjust the position of the placing plate (8), and the rotating frame (2) is rotationally connected with the transferring support (1).

Description

Automatic change storage handling equipment Technical Field The application relates to the field of warehouse handling, in particular to automatic warehouse handling equipment. Background The storage handling equipment is equipment for carrying out operations such as transporting, carrying, loading and unloading and the like on cargoes in a storage environment, common types comprise a forklift, a stacker, an Automatic Guided Vehicle (AGV) and the like, and the efficient carrying and storage of materials are realized in a diversified mode, so that the storage operation efficiency is improved, and the labor intensity is reduced. However, when the existing storage and conveying equipment is used, the materials conveyed by the conveying belt are generally directly dropped onto the conveying frame, and in the falling process of the materials, large impact force is generated due to gravity and falling speed and continuously acts on the supporting part below the conveying frame, so that fatigue damage of the supporting part, such as cracking of a welding part, structural deformation and the like, is easily caused. The service life of the carrying frame is shortened, potential safety hazards (such as material dropping caused by damage of the carrying frame, damage to goods or endangerment of personnel) can be caused, the operation cost can be increased by frequent maintenance and replacement of the supporting part, and the warehousing operation efficiency is reduced. In view of the above related art, the inventors believe that there is a defect that the material falls on the transfer rack to cause impact damage, and therefore, an automated warehouse handling device is proposed to solve the above problem. Disclosure of utility model In order to solve the problem of impact damage caused by falling of materials on a transfer frame, the application provides automatic storage and handling equipment. The application provides automatic warehouse handling equipment which adopts the following technical scheme: The utility model provides an automatic change storage handling equipment, includes and transports the support, be provided with the swivel mount on transporting the support, install the fixed frame on the swivel mount, the fixed slot has been seted up on the fixed frame, install the bracing piece in the fixed slot, the cover is equipped with the spring on the bracing piece, the fixed frame is connected with through the fly leaf and places the board, it is provided with the support curb plate to place the board side, still install the sheave on the swivel mount, the spacing groove has been seted up on the sheave, sheave one side is provided with adjusts the plectane, install spacing driving lever on the adjustment plectane, install self-locking driving motor on transporting the support, self-locking driving motor is connected with the swivel mount. Preferably, the movable connecting plate is movably connected with the fixed frame through the supporting rod and the spring, and the spring is positioned in the fixed groove and used for buffering the impact force received by the placing plate. Preferably, the limit deflector rod is matched with the limit groove and used for limiting the rotation angle of the grooved wheel, and the grooved wheel is linked with the rotating frame. Preferably, the placing plate and the supporting side plate form a material bearing structure, and the supporting side plate is used for preventing materials from sliding from the side edge of the placing plate. Preferably, the self-locking driving motor is used for driving the rotating frame to rotate, so that the position of the placing plate is adjusted, and the rotating frame is rotationally connected with the transferring support. In summary, the application has the following beneficial technical effects: Through the self-locking driving motor, the rotating frame is driven to rotate, the grooved wheels and the limiting deflector rod are matched, the position of the placing plate can be accurately adjusted, the materials can be conveniently carried and stored, the automation degree and the efficiency of storage and carrying are improved, and the labor intensity of workers is reduced. Drawings FIG. 1 is a schematic overall structure of an embodiment of the application; FIG. 2 is a schematic view of the structure of the placement plate in the embodiment of the application; FIG. 3 is a schematic view of the sheave structure in the example of the application; The reference numerals indicate that 1, a transferring bracket, 2, a rotating bracket, 3, a fixed frame, 4, a fixed groove, 5, a supporting rod, 6, a spring, 7, a movable connecting plate, 8, a placing plate, 9, a supporting side plate, 10, a sheave, 11, a limiting groove, 12, an adjusting circular plate, 13, a limiting deflector rod and 14, and a self-locking driving motor. Detailed Description The application is described in further detail below with reference to fig. 1-3. The embodiment of