Auxiliary equipment for production based on electromechanical equipment

By introducing a cushioning frame and a roller shift mechanism for adjusting the height into the auxiliary equipment for electromechanical equipment production, the problem of easy equipment damage during transportation is solved, and the stable transfer and protection of the equipment is achieved.

CN223266801UActive Publication Date: 2025-08-26JIANGSU SHENGZHOU ELECTRIC POWER TECH CO LTD
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Patent Information

Application Number
CN202422517775.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-08-26
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

Existing transportation devices for the production of mechanical and electrical equipment are prone to bumps during movement, resulting in poor reliability, especially when road surfaces are unstable.

Method used

An auxiliary equipment including cushioning frame, steering shaft, wheel box, roller, lift screw sleeve, lift screw and other components is designed. Through the roller shift mechanism that adjusts the height, the stable transfer of electromechanical equipment is achieved. The rollers are used to roll on the ground, the steering shaft steering constraints, the lift screw adjust the height and the sliding constraints of the slider to ensure the stability of the equipment during transportation.

Benefits of technology

It improves the stability and reliability of electromechanical equipment during transportation, avoids bumps and damage caused by unstable road surfaces, and enhances the protection effect of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electromechanical equipment production, in particular to auxiliary equipment based on electromechanical equipment production, which is provided with a height-adjustable roller moving mechanism, so that the electromechanical equipment is convenient to transfer and move, and the reliability is improved; comprising a cushioning frame, steering shafts, wheel boxes, idler wheels, a supporting frame, a lifting threaded sleeve, a lifting threaded rod, a twisting disc, a restraining sliding sleeve, a restraining sliding strip, a shaft frame, a roller shaft, a transfer roller and a rotating restraining sleeve, the four corner sides of the bottom end of the cushioning frame are rotationally connected with the middles of the top ends of one set of wheel boxes through one set of steering shafts correspondingly, and one set of idler wheels are rotationally arranged on the inner side of each set of wheel boxes correspondingly; the outer side of the middle of the top end of the cushioning frame is connected with the bottom end of the supporting frame, the interiors of the front side and the rear side of the top end of the supporting frame are connected with the outer sides of the constraint sliding sleeves respectively, the inner wall of each constraint sliding sleeve is slidably connected with the outer wall of the corresponding constraint sliding strip, multiple sets of roller shafts are longitudinally and rotationally connected into the shaft frame, and the outer wall of each set of roller shafts is connected with the inner wall of the corresponding transfer roller.
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Description

Technical Field

[0001] The utility model relates to the technical field of electromechanical equipment production, in particular to an auxiliary equipment for electromechanical equipment production. Background Art

[0002] Electromechanical equipment generally refers to machinery, electrical appliances, and electrical automation equipment. In construction, it generally refers to machinery and plumbing equipment, excluding geotechnical, carpentry, rebar, and masonry equipment. Unlike hardware, it generally refers to finished products that achieve a specific function.

[0003] Its production requires corresponding devices to assist in transportation. The existing patent announcement number CN210047526U is a transportation device for electromechanical equipment production, which is equipped with a shock-absorbing mechanism and a buffering force mechanism, which can effectively reduce shock to prevent damage to it, thereby protecting it. When the road surface is uneven, the weight of the item itself will cause the first curved plate to squeeze the two second curved plates, thereby causing the second curved plates to move outward and squeeze the shock-absorbing spring column to perform initial shock absorption. Conversely, the second curved plate will also squeeze the first curved plate, and the first curved plate has good toughness. At this time, when the second curved plate squeezes the first curved plate to make the first curved plate upward, it will use the cooperation of the movable rod and the movable shaft to push it slightly to both sides, and then squeeze the shock-absorbing cylinder to perform secondary shock absorption, thereby achieving the best shock absorption effect, solving the problem that the existing transportation device does not have a shock absorption effect, and when it transports some important and fragile parts, it will cause damage to the parts when encountering speed bumps or uneven roads.

[0004] Since the device has a movement difference when in use, it is prone to collision and has poor reliability. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the utility model provides an auxiliary equipment for electromechanical equipment production, which is equipped with a roller shifting mechanism with adjustable height to facilitate the transfer and movement of electromechanical equipment and improve reliability.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an auxiliary equipment for electromechanical equipment production, comprising a cushioning frame, a steering shaft, a wheel box, a roller, a support frame, a lifting screw sleeve, a lifting screw, a twisting plate, a constraint sliding sleeve, a constraint sliding bar, an axle frame, a roller shaft, a transfer roller and a rotation constraint sleeve, wherein the four corner sides of the bottom end of the cushioning frame are respectively connected to the middle of the top end of a group of wheel boxes through a group of steering shafts, a group of rollers are rotatably provided on the inner side of each group of wheel boxes, the outer side of the middle of the top end of the cushioning frame is connected to the bottom end of the support frame, and the inner side of the middle of the top end of the support frame is connected to the outer side of the lifting screw sleeve The connection is that the inner wall of the lifting screw sleeve is screwed to the outer wall of the lifting screw, the bottom end of the lifting screw is connected to the middle of the top of the screw disk, the outer side of the top of the lifting screw is rotatably connected to the inner side of the rotation constraint sleeve, the top of the rotation constraint sleeve is connected to the middle of the bottom end of the shaft frame, the middle of the front and back sides of the bottom end of the shaft frame are respectively connected to the top of a group of constraint slides, the front and back sides of the top of the support frame are respectively connected to the outer side of a group of constraint slides, the inner wall of each group of constraint slides is respectively slidably connected to the outer wall of a group of constraint slides, and multiple groups of rollers are longitudinally connected to the inside of the shaft frame, and the outer wall of each group of rollers is respectively connected to the inner wall of a group of transfer rollers.

[0007] Preferably, it further comprises brake pads and pedal pads, and a group of brake pads are movably provided on the inner side of each group of wheel boxes, and the outer side of the brake pads is connected to the inner side of the pedal pads.

[0008] Preferably, it also includes a through slot, a limit frame, a nut and a threaded rod. Multiple groups of through slots are longitudinally arranged inside the left and right sides of the shaft frame. The left and right sides of the bottom end of the limit frame are respectively connected to the top end of a group of threaded rods, and the outer side of the threaded rod and the inner side of the nut are detachably screwed.

[0009] Preferably, it also includes a tightening nut, a tightening screw and a tightening handle. The middle part of one side of the outer end of the rotation constraint sleeve is connected to the inner side of the tightening nut, the inner wall of the tightening nut is threadedly connected to the outer wall of the tightening screw, and the outer side of the tightening screw is connected to the middle part of the inner side of the tightening handle.

[0010] Preferably, it further comprises a push handle frame and a push handle rod, the rear ends of the shock absorbing frame are respectively connected to the lower sides of the inner ends of a group of push handle frames, and the upper sides of the inner ends of the two groups of push handle frames are connected to the left and right sides of the push handle rod.

[0011] Preferably, it further comprises a limiting piece, and the bottom end of each group of the constraint slide bars is respectively connected to the middle part of the top end of a group of limiting pieces.

[0012] Compared with the prior art, the present invention provides an auxiliary device for electromechanical equipment production, which has the following beneficial effects:

[0013] The bottom ends of the four sets of rollers of the cushioning frame contact the ground, and the rollers are constrained by the wheel box to roll on the ground, and are constrained by the steering shaft to move the cushioning frame to the corresponding position. Then, according to the transfer height, the lifting screw is rotated by turning the screw disk, and the lifting screw is threaded with the lifting screw sleeve and is constrained by the rotation of the rotation constraint sleeve, and the two sets of constraint slides are constrained by the sliding of the constraint slide sleeve to make the axle frame rise and fall to the same height. Then, the lifting screw and the lifting screw sleeve are self-locked to fix the height of the axle frame. The electromechanical equipment is moved to the top of the transfer roller, and the transfer roller is constrained by the roller shaft to move to the top of the axle frame, and then it is transferred. A roller shifting mechanism with adjustable height is set to facilitate the transfer and movement of electromechanical equipment and improve reliability. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is an axial view of the schematic structural diagram of the utility model;

[0015] Figure 2 For this utility model Figure 1 Right view of;

[0016] Figure 3 For this utility model Figure 1 Rear view;

[0017] Figure 4 For this utility model Figure 1 Bottom view of .

[0018] Markings in the attached figure: 1. shock-absorbing frame; 2. steering shaft; 3. wheel box; 4. roller; 5. support frame; 6. lifting screw sleeve; 7. lifting screw; 8. screw plate; 9. constraint sleeve; 10. constraint slide; 11. axle frame; 12. roller shaft; 13. transfer roller; 14. rotation constraint sleeve; 15. brake pad; 16. pedal; 17. slot; 18. limit frame; 19. nut; 20. tightening screw sleeve; 21. tightening screw; 22. tightening wrench; 23. push handle frame; 24. push handle rod; 25. limit plate; 26. threaded rod. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention. Example

[0020] See also Figure 1-4, an auxiliary equipment based on electromechanical equipment production, including a shock absorbing frame 1, a steering shaft 2, a wheel box 3, a roller 4, a support frame 5, a lifting screw sleeve 6, a lifting screw 7, a screw plate 8, a constraint sleeve 9, a constraint slide 10, an axle frame 11, a roller 12, a transfer roller 13 and a rotation constraint sleeve 14, the four corner sides of the bottom end of the shock absorbing frame 1 are respectively connected to the middle part of the top end of a group of wheel boxes 3 through a group of steering shafts 2, and a group of rollers 4 are respectively provided on the inner side of each group of wheel boxes 3. The shock absorbing frame 1 The outer side of the middle of the top is connected to the bottom of the support frame 5, the inner side of the middle of the top of the support frame 5 is connected to the outer side of the lifting screw sleeve 6, the inner wall of the lifting screw sleeve 6 is screwed to the outer wall of the lifting screw 7, the bottom end of the lifting screw 7 is connected to the middle of the top of the screw disk 8, the outer side of the top of the lifting screw 7 is rotatably connected to the inner side of the rotation constraint sleeve 14, the top of the rotation constraint sleeve 14 is connected to the middle of the bottom end of the shaft frame 11, the middle of the front and rear sides of the bottom end of the shaft frame 11 are respectively connected to the top of a group of constraint slides 10, the front end of the support frame 5 The inside of the rear side is respectively connected to the outer side of a group of constraint sliding sleeves 9, and the inner wall of each group of constraint sliding sleeves 9 is respectively slidably connected to the outer wall of a group of constraint sliding strips 10. The inside of the shaft frame 11 is longitudinally connected to multiple groups of rollers 12, and the outer wall of each group of rollers 12 is respectively connected to the inner wall of a group of transfer rollers 13; the bottom end of the shock absorbing frame 1 contacts the ground through the four groups of rollers 4, and the rollers 4 are constrained by the wheel box 3 to roll on the ground, and are constrained by the steering shaft 2 to move the shock absorbing frame 1 to the corresponding position, and then according to the transfer height By twisting the screw disk 8, the lifting screw 7 rotates, and the lifting screw 7 is threadedly matched with the lifting screw sleeve 6, and is constrained by the rotation of the rotation constraint sleeve 14, and the two sets of constraint slides 10 are slidably constrained on the inside of the constraint slide sleeve 9, so that the shaft frame 11 is lifted and lowered to a level height, and then the lifting screw 7 and the lifting screw sleeve 6 are self-locked to fix the height of the shaft frame 11, and the electromechanical equipment is moved to the top of the transfer roller 13, and the transfer roller 13 is constrained by the roller shaft 12 to move to the top of the shaft frame 11, and then the transfer is carried out.

[0021] The vehicle frame 10 further includes brake pads 15 and pedal pads 16. A set of brake pads 15 is movably provided on the inner side of each wheel box 3. The outer side of the brake pads 15 is connected to the inner side of the pedal pads 16. By stepping on the pedal pads 16, the brake pads 15 can be moved to act on the outer side of the roller 4 to stop the vehicle frame 1, thereby fixing the position of the shock absorbing frame 1 and improving stability.

[0022] It also includes through slots 17, limit frames 18, nuts 19 and threaded rods 26. Multiple groups of through slots 17 are longitudinally arranged on the left and right sides of the shaft frame 11. The left and right sides of the bottom end of the limit frame 18 are respectively connected to the top of a group of threaded rods 26, and the outer side of the threaded rods 26 and the inner side of the nuts 19 are detachably screwed together. By selecting the corresponding through slots 17 on both sides, the limit frame 18 can be inserted into the through slots 17 through the threaded rods 26, and fixed by screwing the nuts 19 on the protruding side of the threaded rods 26, so that the limit frame 18 is fixed relative to the shaft frame 11, which is convenient for limiting.

[0023] The jacking screw 21 is screwed to the top of the lifting screw 7 so that the lifting screw 7 can be tightened.

[0024] It also includes a push handle frame 23 and a push handle rod 24. The two ends of the rear side of the shock-absorbing frame 1 are respectively connected to the lower side of the inner end of a group of push handle frames 23, and the upper sides of the inner ends of the two groups of push handle frames 23 are connected to the left and right sides of the push handle rod 24. By holding the push handle rod 24, the push handle frame 23 can be connected to the shock-absorbing frame 1 for movement, thereby improving convenience.

[0025] It also includes a limiting piece 25, and the bottom end of each group of constraint slides 10 is respectively connected to the middle part of the top end of a group of limiting pieces 25; the limiting piece 25 can limit the bottom of the constraint slide 10 to prevent the constraint slide 10 from sliding upward on the inside of the constraint sleeve 9, thereby improving reliability.

[0026] In summary, when an auxiliary equipment for electromechanical equipment production is in use, the cushioning frame 1 contacts the ground through the bottom ends of the four groups of rollers 4. By holding the push handle rod 24, the cushioning frame 1 can be connected to the push handle frame 23. The rollers 4 are constrained by the wheel box 3 to roll on the ground, and the steering shaft 2 is used to constrain the cushioning frame 1 to move to the corresponding position. By stepping on the pedal 16, the brake pad 15 can be activated to act on the outer side of the roller 4 to brake, so that the position of the cushioning frame 1 is fixed. Then, according to the transportation height, the lifting screw 7 is rotated by twisting the screw disk 8. The lifting screw 7 is threadedly fitted with the lifting screw sleeve 6 and is rotationally constrained by the rotating constraint sleeve 14, and the two groups of constraint slides 10 are slidably constrained on the inner side of the constraint sleeve 9, so that the shaft frame 11 is lifted and lowered to a level height. The tightening screw 22 can be tightened to tighten the tightening screw When the rod 21 rotates, the tightening screw 21 is threadedly matched with the tightening screw sleeve 20, which can act inward on the corresponding position on the outside of the lifting screw 7 to tighten it, preventing the lifting screw 7 from circumferential movement. The lifting screw 7 and the lifting screw sleeve 6 are then self-locked by the threads, so that the height of the shaft frame 11 is fixed. The electromechanical equipment is moved to the top of the transfer roller 13, and the transfer roller 13 is constrained by the roller shaft 12 to move to the top of the shaft frame 11. The corresponding two-side through-grooves 17 are selected, and the limit frame 18 can be inserted into the through-grooves 17 through the threaded rod 26, and fixed by the nut 19 on the protruding side of the threaded rod 26, so that the limit frame 18 is fixed relative to the shaft frame 11, which is convenient for limiting and then transporting. In addition, the bottom of the constraint slide 10 can be limited by the limiting piece 25 to prevent the constraint slide 10 from sliding upward on the inner side of the constraint sleeve 9, thereby improving reliability.

[0027] This shock absorbing frame 1 is a well-known device purchased directly from the market by those skilled in the art. Here we only use it without making any structural or functional improvements to it, and we will not go into details here.

[0028] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An auxiliary equipment for electromechanical equipment production, characterized in that: The invention comprises a cushioning frame (1), a steering shaft (2), a wheel box (3), a roller (4), a support frame (5), a lifting screw sleeve (6), a lifting screw (7), a twisting plate (8), a constraint sliding sleeve (9), a constraint sliding bar (10), an axle frame (11), a roller shaft (12), a transfer roller (13) and a rotation constraint sleeve (14). The four corner sides of the bottom end of the cushioning frame (1) are respectively connected to the middle of the top end of a group of wheel boxes (3) through a group of steering shafts (2). A group of rollers (4) are rotatably provided on the inner side of each group of wheel boxes (3). The outer side of the middle of the top end of the cushioning frame (1) is connected to the bottom end of the support frame (5). The inner side of the middle of the top end of the support frame (5) is connected to the outer side of the lifting screw sleeve (6). The inner wall of the lifting screw sleeve (6) is connected to the lifting screw. The outer wall of the lowering screw (7) is screw-connected, the bottom end of the lifting screw (7) is connected to the middle of the top end of the screw plate (8), the outer side of the top end of the lifting screw (7) is rotatably connected to the inner side of the rotation constraint sleeve (14), the top end of the rotation constraint sleeve (14) is connected to the middle of the bottom end of the shaft frame (11), the middle of the front and rear sides of the bottom end of the shaft frame (11) are respectively connected to the top end of a group of constraint slides (10), the front and rear sides of the top end of the support frame (5) are respectively connected to the outer side of a group of constraint slides (9), the inner wall of each group of constraint slides (9) is respectively slidably connected to the outer wall of a group of constraint slides (10), the inner side of the shaft frame (11) is longitudinally rotatably connected to multiple groups of rollers (12), and the outer wall of each group of rollers (12) is respectively connected to the inner wall of a group of transfer rollers (13).

2. The auxiliary equipment for electromechanical equipment production according to claim 1, characterized in that: It also includes brake pads (15) and pedal pads (16), and each group of wheel boxes (3) is movably provided with a group of brake pads (15) on the inner side, and the outer side of the brake pads (15) is connected to the inner side of the pedal pad (16).

3. The auxiliary equipment for electromechanical equipment production according to claim 1, characterized in that: It also includes a through slot (17), a limiting frame (18), a nut (19) and a threaded rod (26), wherein a plurality of through slots (17) are longitudinally arranged inside the left and right sides of the shaft frame (11), and the left and right sides of the bottom end of the limiting frame (18) are respectively connected to the top end of a group of threaded rods (26), and the outer side of the threaded rod (26) and the inner side of the nut (19) are detachably screwed together.

4. The auxiliary equipment for electromechanical equipment production according to claim 1, characterized in that: It also includes a tightening nut (20), a tightening screw (21) and a tightening hand (22), wherein the middle part of one side of the outer end of the rotation constraint sleeve (14) is connected to the inner side of the tightening nut (20), the inner wall of the tightening nut (20) is screwedly connected to the outer wall of the tightening screw (21), and the outer side of the tightening screw (21) is connected to the middle part of the inner side of the tightening hand (22).

5. The auxiliary equipment for electromechanical equipment production according to claim 1, characterized in that: It also includes a push handle frame (23) and a push handle rod (24), wherein the two ends of the rear side of the shock absorbing frame (1) are respectively connected to the lower side of the inner end of a group of push handle frames (23), and the upper sides of the inner ends of the two groups of push handle frames (23) are connected to the left and right sides of the push handle rod (24).

6. The auxiliary equipment for electromechanical equipment production according to claim 1, characterized in that: It also includes a limiting piece (25), and the bottom end of each group of the constraint slides (10) is respectively connected to the middle part of the top end of a group of limiting pieces (25).

Citation Information

Patent Citations

  • Transportation device for electromechanical equipment production

    CN210047526U