Stable hoisting equipment with adjustable hoisting point
By designing stable lifting equipment with adjustable lifting points, and using adjusters and new clamps to achieve azimuth adjustment and vertical stability, the problem that existing lifting equipment cannot be adjusted in azimuth, improving the practicality and convenience of use of the equipment.
Patent Information
- Application Number
- CN202422029450.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The existing lifting equipment cannot be adjusted in azimuth, which leads to manual intervention for secondary displacement when facing different types of heavy objects, reducing the practicality and convenience of use of the equipment.
A stable lifting equipment with adjustable lifting points is designed, including positioning power control module, vertical rod, regulator, support rod and new clamp. The support rod is driven to rotate through the regulator, and the new clamp is used to replace the original rope control to achieve orientation adjustment and vertical stability of heavy objects.
The orientation adjustment capability of lifting equipment is realized, the need for manual intervention is avoided, the stability and practicality of heavy objects are improved, and the convenience and firmness of the equipment are enhanced.
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Figure CN223016344U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of lifting equipment, in particular to a stable lifting equipment with adjustable lifting points. Background Technique
[0002] Lifting equipment refers to electromechanical equipment used for vertical lifting or vertical lifting and horizontal moving of heavy objects. Its main function is to realize the handling of heavy objects. Therefore, lifting equipment is usually set in docks, warehouses, or construction sites, so that it can improve the handling of relevant heavy objects according to its high-strength bearing capacity and stable displacement effect. At the same time, the effect of adjustable lifting points can avoid the situation of object tilt and overturn caused by the offset of the object's center of gravity. Thus, the characteristic of adjustable lifting points can effectively improve the handling stability of relevant heavy objects;
[0003] However, the existing lifting equipment still has the following defects: Since the current lifting equipment can only handle relevant heavy objects in a straight line direction, when facing different types of heavy objects, the lifting equipment cannot change its direction. Therefore, when directly transporting to the unloading area, manual intervention is required to perform a secondary displacement of the relevant heavy objects. For this reason, it will be reflected that the practicality and convenience of use of the current lifting device will be reduced due to the influence of the factor that the direction cannot be rotated and changed. Summary of the Utility Model
[0004] In view of the above problems, the utility model provides a stable lifting equipment with adjustable lifting points.
[0005] In order to achieve the above object, the utility model is realized through the following technical solutions: A stable lifting equipment with adjustable lifting points, its structure includes: a positioning power control module, a vertical rod, a regulator, a support rod, and a new type of gripper. The upper end of the positioning power control module is fixedly connected to the lower end of the vertical rod. The regulator is embedded in the upper part of the vertical rod and drives the support rod to rotate and swing through the positioning power control module. The support rod penetrates and is movably connected to the regulator. The new type of gripper is embedded in the support rod and is connected in an intersecting manner.
[0006] Furthermore, the regulator is provided with a splicing groove, a parallel layer, a load-bearing plate one, a load-bearing plate two, and a rotator. The splicing groove penetrates through the left surface parts of the load-bearing plate one and the load-bearing plate two through the parallel layer. The parallel layer is arranged between the upper and lower layers of the load-bearing plate one and the load-bearing plate two. The load-bearing plate one and the load-bearing plate two are parallel to each other. The rotator is vertically fixed to the right side parts of the load-bearing plate one and the load-bearing plate two.
[0007] Furthermore, the rotator is provided with a disassembly and assembly part, a locking groove, an auxiliary ring, an electric wheel, and a convex rod. The disassembly and assembly part passes through the central area of the auxiliary ring through the locking groove and enters the convex rod area of the electric wheel. The locking groove passes through the central areas of the auxiliary ring, the electric wheel, and the convex rod. The auxiliary ring and the electric wheel are in the same central area. The convex rod is arranged at the lower center of the electric wheel and is interconnected with the disassembly and assembly part.
[0008] Furthermore, the new gripper is provided with a movable wheel, a balance block, a restraint rod, a welding module, a magnetic attraction block, and a clamping block. The movable wheel is embedded in the balance block. The balance blocks are arranged on the left and right sides of the restraint rod. The welding module is welded to the lower end of the restraint rod. The center of the upper end of the magnetic attraction block is vertically and fixedly connected to the restraint rod through the welding module. The clamping block is arranged at the lower edge part of the magnetic attraction block. The restraint rod carries the balance block and the movable wheel and is embedded in the support rod and is electrically connected to the positioning power control module.
[0009] Furthermore, the splicing groove is circular in shape and is set in the vertical direction. The areas of the first load-bearing plate and the second load-bearing plate are the same. One set of rotators is provided on the right side of each of the first load-bearing plate and the second load-bearing plate and is on the same central vertical line.
[0010] Furthermore, the disassembly and assembly part is a lengthened bolt product. The upper and lower layers of the auxiliary ring are in a finely polished form. The electric wheel and the convex rod form a "T" shape.
[0011] Furthermore, one balance block is provided on each of the left and right sides of the restraint rod and is equipped with multiple spherical movable wheels. The shape of the welding module matches the shape of the restraint rod. Two clamping blocks are carried at the lower end of the magnetic attraction block. Beneficial effects
[0012] Compared with the prior art, the present utility model has the following beneficial effects:
[0013] 1. After the present utility model is further improved by the regulator, based on the parallel effect of the first load-bearing plate and the second load-bearing plate and using the splicing groove, it can be stably installed in the vertical rod area. Therefore, the upper and lower ends of the support rod can be inserted and fixed by two rotators, so that the rotator can rotate through the positioning power module, so as to achieve the effect of driving the orientation change adjustment of the support rod and the new gripper, replacing the original effect of only being able to carry straight and resulting in the need for manual intervention for secondary handling of heavy objects later. Therefore, it can effectively improve the lifting and handling strength of heavy objects and improve the practicality effect of the lifting equipment.
[0014] 2. After the further improvement of the present utility model through the new gripper, based on the balance rod and the movable wheel on the restraint rod, it can slide up, down, left, and right in the center of the support rod in combination with the electric control of the positioning power control module. At the same time, in combination with the welding module, the positions of the magnetic attraction block and the clamping block can be stably changed. Therefore, it can replace the original rope for adjusting the up and down height. The use of the restraint rod can improve the vertical stability during the up and down height adjustment. Furthermore, when the movable wheel moves left and right, it can drive the whole to move left and right on the support rod to achieve the effect of position change, so that it can match the positions of various heavy objects. Finally, the cooperation of the magnetic attraction block and the clamping block can improve the firmness of the heavy object handling and prevent the phenomenon of shaking and instability. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 FIG. is a schematic structural diagram of a stable lifting device with adjustable suspension points of the present utility model.
[0016] Figure 2 FIG. is a three-dimensional structural diagram of an improved regulator of the present utility model.
[0017] Figure 3 FIG. is a three-dimensional structural diagram of an improved rotator of the present utility model.
[0018] Figure 4 FIG. is a three-dimensional structural diagram of an improved new gripper of the present utility model.
[0019] In the figure: positioning power control module - 1, vertical rod - 2, regulator - 3, support rod - 4, new gripper - 5, splicing groove - 31, parallel layer - 32, load-bearing plate 1 - 33, load-bearing plate 2 - 34, rotator - 35, disassembly and assembly part - 351, locking groove - 352, auxiliary ring - 353, electric wheel - 354, convex rod - 355, movable wheel - 51, balance block - 52, restraint rod - 53, welding module - 54, magnetic attraction block - 55, clamping block - 56. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] The technical solutions of the present utility model will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0021] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance. Embodiment
[0022] As Figures 1-4 shown, the present utility model provides a stable lifting device with adjustable lifting points.
[0023] Please refer to Figure 1 , the present utility model provides a stable lifting device with adjustable lifting points, including: a positioning power control module 1, a vertical rod 2, a regulator 3, a support rod 4, and a new type of gripper 5. The upper end of the positioning power control module 1 is fixedly connected to the lower end of the vertical rod 2. The regulator 3 is embedded in the upper end of the vertical rod 2 and drives the support rod 4 to rotate and swing through the positioning power control module 1. The support rod 4 is inserted into and movably connected to the regulator 3. The new type of gripper 5 is embedded in the support rod 4 and is connected in an intersecting manner.
[0024] Please refer to Figure 2 , the present utility model provides a stable lifting device with adjustable lifting points, including: the regulator 3 is provided with a splicing groove 31, a parallel layer 32, a load-bearing plate one 33, a load-bearing plate two 34, and a rotator 35. The splicing groove 31 passes through the left surface parts of the load-bearing plate one 33 and the load-bearing plate two 34 through the parallel layer 32. The parallel layer 32 is arranged between the upper and lower layers of the load-bearing plate one 33 and the load-bearing plate two 34. The load-bearing plate one 33 and the load-bearing plate two 34 are parallel to each other. The rotator 35 is vertically fixed to the right side parts of the load-bearing plate one 33 and the load-bearing plate two 34. The splicing groove 31 is circular in shape and is set in a vertical orientation. The areas of the load-bearing plate one 33 and the load-bearing plate two 34 are the same. One set of the rotator 35 is provided at the right side parts of the load-bearing plate one 33 and the load-bearing plate two 34 respectively and is on the same central vertical line.
[0025] The splicing groove 31 can be completely fitted with the component shape through its circular shape and vertical orientation. The load-bearing plate one 33 and the load-bearing plate two 34 can achieve a stable parallel effect with each other through the same area, avoiding tilting after installation. The rotator 35 can fix the upper and lower ends of the component through two sets of quantities, so as to stably drive the component to adjust the orientation.
[0026] Please refer to Figure 3, the present utility model provides a stable lifting device with adjustable lifting points, including: The rotator 35 is provided with a disassembly and assembly part 351, a locking groove 352, an auxiliary ring 353, an electric wheel 354, and a convex rod 355. The disassembly and assembly part 351 passes through the center area of the auxiliary ring 353 through the locking groove 352 and enters the area of the convex rod 355 of the electric wheel 354. The locking groove 352 passes through the center areas of the auxiliary ring 353, the electric wheel 354, and the convex rod 355. The auxiliary ring 353 and the electric wheel 354 are in the same center area. The convex rod 355 is arranged at the lower center of the electric wheel 354 and is interconnected with the disassembly and assembly part 351. The disassembly and assembly part 351 is a lengthened bolt product. Both the upper and lower layers of the auxiliary ring 353 are in a finely polished state. The electric wheel 354 and the convex rod 355 form a "T" shape;
[0027] The disassembly and assembly part 351 can connect the auxiliary ring 353, the electric wheel 354, the convex rod 355 and other components together through the lengthened bolt product, so that the electric wheel 354 can stably drive components such as the auxiliary ring 353 and the convex rod 355 to rotate. The auxiliary ring 353 can prevent jamming during rotation through the fine polishing of the upper and lower layers. The "T" shape formed by the electric wheel 354 and the convex rod 355 can be vertically embedded in the components to improve the connection stability with the components.
[0028] Please refer to Figure 4 , the present utility model provides a stable lifting device with adjustable lifting points, including: The new type of gripper 5 is provided with a movable wheel 51, a balance weight 52, a restraint rod 53, a welding module 54, a magnetic attraction block 55, and a clamping block 56. The movable wheel 51 is embedded in the balance weight 52. The balance weight 52 is arranged on the left and right sides of the restraint rod 53. The welding module 54 is welded to the lower end of the restraint rod 53. The center of the upper end of the magnetic attraction block 55 is vertically fixedly connected to the restraint rod 53 through the welding module 54. The clamping block 56 is arranged at the lower edge part of the magnetic attraction block 55. The restraint rod 53 carries the balance weight 52 and the movable wheel 51 and is embedded in the support rod 4 and is electrically connected to the positioning power control module 1. There is one balance weight 52 on each of the left and right sides of the restraint rod 53 and it carries multiple spherical movable wheels 51. The shape of the welding module 54 matches the shape of the restraint rod 53. The lower end of the magnetic attraction block 55 carries two clamping blocks 56;
[0029] The balance weight 52 can improve the up and down sliding balance of the restraint rod 53 by being located on the left and right sides of the restraint rod 53. At the same time, the spherical movable wheel 51 can be used for up and down interaction and left and right sliding effects. Therefore, it can replace the original rope restraint process and improve the vertical stability of heavy object handling. The magnetic attraction block 55 can improve the clamping strength of the heavy object according to its own magnetic attraction characteristics and in combination with the two clamping blocks 56.
[0030] The working principle of the present utility model is described as follows:
[0031] First: The stable lifting equipment can determine the positions of the regulator 3 and the support rod 4 through the positioning power control module 1 and the vertical rod 2. Then, the positioning power control module 1 can electronically control the new type of gripper 5 on the regulator 3 and the support rod 4 on the vertical rod 2 through line control, so that the regulator 3 can drive the support rod 4 to rotate and change its orientation, replacing the original movement in only one direction. At the same time, the new type of gripper 5 can replace the original rope control through the vertical movement effect, so as to improve its own vertical movement stability and avoid the occurrence of tilting phenomena, completely avoiding the phenomenon of tilting and instability;
[0032] Second: The load-bearing plate one 33 and the load-bearing plate two 34 of the regulator 3 can be fixedly connected to the vertical rod 2 through the circular splicing groove 31 on the parallel layer 32. Then, the rotators 35 of the load-bearing plate one 33 and the load-bearing plate two 34 can be vertically embedded in the upper and lower layers at one end of the support rod 4. After the support rod 4 is connected to the two groups of rotators 35, the rotators 35 can move through the positioning power control module 1. Finally, according to the position of the heavy object, the rotators 35 can rotate to drive the support rod 4 to adjust its orientation, so that the position of the new type of gripper 5 can match the position of the heavy object;
[0033] Third: The auxiliary ring 353 of the rotator 35 can be attached to the lower layer of the load-bearing plate one 33 or the upper layer of the load-bearing plate two 34. Then, the disassembly and assembly part 351 is vertically embedded through the locking groove 352, so that the disassembly and assembly part 351 can pass through the locking groove 352 into the electric wheel 354 to penetrate the center of the convex rod 355. Therefore, after the convex rod 355 enters the upper and lower ends of the support rod 4, it can be fixed through the disassembly and assembly part 351. Finally, when the electric wheel 354 rotates, it can drive the auxiliary ring 353 to rotate smoothly. At the same time, combined with the cooperation of the disassembly and assembly part 351 and the convex rod 355, it can stably drive the support rod 4 to adjust its orientation. Then, because the disassembly and assembly part 351 is a lengthened bolt product, the effect of quick disassembly, assembly and maintenance can be achieved subsequently;
[0034] Fourth: The restraint rod 53 of the new gripper 5 can be fixedly connected to multiple spherical wheels 51 through the balance blocks 52 on the surface layer. Subsequently, the welding module 54 at the lower end of the restraint rod 53 can fix the center of the upper end of the magnetic attraction block 55. Therefore, the restraint rod 53 can stably slide up and down in the support rod 4 by means of the spherical wheels 51 of the balance block 52 to control the position height of the magnetic attraction block 55. At the same time, when the spherical wheels 51 rotate left and right, the restraint rod 53 can carry the magnetic attraction block 55 to move left and right in the area of the support rod 4 to achieve the effect of position change, so that the magnetic attraction block 55 and the clamping block 56 can match the positions of each heavy object, improving the convenience of carrying multiple heavy objects one by one. Finally, the magnetic attraction block 55 can improve the stability of carrying heavy objects through its own magnetic attraction effect and the clamping characteristics of the clamping block 56, avoiding the phenomenon of shaking and falling off.
[0035] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification.
[0036] Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.
Claims
1. A stable lifting device with adjustable lifting points, the structure of which comprises: A positioning power supply control module (1), a vertical rod (2), a regulator (3), a support rod (4), and a novel clamp (5), characterized in that: the upper end of the positioning power supply control module (1) is fixedly connected to the lower end of the vertical rod (2), the regulator (3) is embedded in the upper end of the vertical rod (2) and drives the support rod (4) to rotate and swing through the positioning power supply control module (1), the support rod (4) is inserted into and movably connected to the regulator (3), and the novel clamp (5) is embedded in the support rod (4) and connected in a cross-shaped manner.
2. A stable lifting device with adjustable lifting points according to claim 1, characterized in that: The regulator (3) is provided with a splicing groove (31), a parallel layer (32), a first load-bearing plate (33), a second load-bearing plate (34), and a rotator (35); the splicing groove (31) penetrates the left side of the surface layer of the first load-bearing plate (33) and the second load-bearing plate (34) through the parallel layer (32); the parallel layer (32) is arranged on the upper and lower layers of the first load-bearing plate (33) and the second load-bearing plate (34); the first load-bearing plate (33) and the second load-bearing plate (34) are parallel to each other; and the rotator (35) is vertically fixed to the right side of the first load-bearing plate (33) and the second load-bearing plate (34).
3. A stable lifting device with adjustable lifting points according to claim 2, characterized in that: The rotator (35) is provided with a disassembly component (351), a locking groove (352), an auxiliary ring (353), an electric wheel (354), and a protruding rod (355); the disassembly component (351) passes through the locking groove (352) and penetrates the center area of the auxiliary ring (353) and enters the protruding rod (355) area of the electric wheel (354); the locking groove (352) penetrates the center area of the auxiliary ring (353), the electric wheel (354), and the protruding rod (355); the auxiliary ring (353) and the electric wheel (354) are located in the same center area; the protruding rod (355) is arranged at the lower center of the electric wheel (354) and is interconnected with the disassembly component (351).
4. A stable lifting device with adjustable lifting points according to claim 1, characterized in that: The novel clamp (5) is provided with a movable wheel (51), a balancing block (52), a restraining rod (53), a welding module (54), a magnetic block (55), and a clamping block (56); the movable wheel (51) is embedded in the balancing block (52); the balancing block (52) is arranged on the left and right sides of the restraining rod (53); the welding module (54) is welded to the lower end of the restraining rod (53); the center of the upper end of the magnetic block (55) is vertically fixedly connected to the restraining rod (53) through the welding module (54); the clamping block (56) is arranged at the lower edge of the magnetic block (55); the restraining rod (53) carries the balancing block (52) and the movable wheel (51) and is embedded in the support rod (4) and is electrically connected to the positioning power supply control module (1).
5. The stable lifting equipment with adjustable lifting points according to claim 2, characterized in that: The splicing groove (31) is circular in shape and is set in a vertical orientation. The areas of the first load-bearing plate (33) and the second load-bearing plate (34) are consistent. The rotator (35) is provided in a group on the right side of the first load-bearing plate (33) and the second load-bearing plate (34) and is located on the same central vertical line.
6. The stable lifting equipment with adjustable lifting points according to claim 3, characterized in that: The disassembly and assembly part (351) is a lengthened bolt product, the upper and lower layers of the auxiliary ring (353) are both finely polished, and the electric wheel (354) and the protruding rod (355) form a "T" shape.
7. The stable lifting equipment with adjustable lifting points according to claim 4, characterized in that: The balancing block (52) is provided with one block on each of the left and right sides of the restraining rod (53) and carries a plurality of spherical movable wheels (51); the shape of the welding module (54) matches the shape of the restraining rod (53); and the lower end of the magnetic block (55) carries two clamping blocks (56).