Power integrated universal hoisting process device

CN224646459UActive Publication Date: 2026-08-18CHONGQING TIEMA IND GRP
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521478998.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-15
Publication Date
2026-08-18
Estimated Expiration
2035-07-15

AI Technical Summary

Technical Problem

[0002]在兵器行业中,特种车辆产业迅速发展且定制化程度较高,科研产品层出不穷,其动力传动系统不断更新迭代,导致其动力一体化复杂多变,其吊装工艺装置也随之变化,采用专用吊装工艺装置会增加制造成本和周期

Benefits of technology

[0024](1)本实用新型的动力一体化万能吊装工艺装置,根据吊点数量及位置调整横梁和吊滑块的数量及位置,配合葫芦吊具可实现任意吊点的升降,实现万能吊装。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224646459U_ABST
    Figure CN224646459U_ABST
Patent Text Reader

Abstract

The utility model discloses a power integration omnipotent hoisting process device, including hoist body, upper lifting ring, crossbeam and lower lifting ring. The hoist body is the square ring frame structure of a plurality of bar connections, and each upper lifting ring for fixing the device is installed at four corners of the upper surface of the frame. The inner side wall surface of the frame two ends is divided into inclined surface section and vertical surface section, and the inclined surface section faces the side of the upper lifting ring to facilitate the crossbeam loading. The bottom surface of the crossbeam is equipped with the sliding slot, and a plurality of lower lifting rings are installed in the sliding slot to hoist the workpiece. The power integration omnipotent hoisting process device related in the utility model can adjust the number and position of the crossbeam and the lower lifting ring and realize self-locking, replaces the power integration special hoisting process device, reduces the manufacturing cost and improves the production efficiency.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of special vehicle assembly and adjustment, specifically a power-integrated universal hoisting process device. Background Technology

[0002] In the weapons industry, the special vehicle sector is developing rapidly and is highly customized, with a constant stream of research and development products. Their power transmission systems are continuously updated and iterated, leading to complex and varied power integration. Consequently, their lifting processes and equipment also change. Using specialized lifting equipment would increase manufacturing costs and time. Therefore, it is necessary to design a universal lifting device. Utility Model Content

[0003] The purpose of this utility model is to provide a universal lifting device with integrated power, including a lifting body, an upper lifting ring, a crossbeam, and a lower lifting ring.

[0004] The lifting device body is a square ring frame structure made up of several rods connected together, and an upper lifting ring is installed at each of the four corners of the upper surface of the frame.

[0005] The inner walls at both ends of the frame are divided into inclined sections and vertical sections, with the inclined sections facing upwards to the side where the lifting ring is located.

[0006] Several crossbeams are placed at intervals on the inclined section, and the bottom surface of the crossbeams is provided with a sliding groove, in which several lower lifting rings are installed.

[0007] The lower lifting ring includes a slider, a connecting rod, and a lifting ring body. One end of the connecting rod is connected to the lifting ring body, and the other end is connected to the slider. The slider is embedded in a groove.

[0008] When in use, the lower lifting ring is equipped with a workpiece.

[0009] Furthermore, the lifting device body is a one-piece molded structure.

[0010] Furthermore, the lifting device body is composed of four rod-shaped components connected vertically. The inner sidewalls of two oppositely arranged rod-shaped components extend obliquely downward from the top to form an inclined section, which connects with the vertical section. The vertical section is perpendicular to the upper and lower surfaces of the rod-shaped components.

[0011] Furthermore, in use, the crossbeam can move on the inclined section.

[0012] Furthermore, the contact surface between the crossbeam and the inclined section is inclined surface I.

[0013] Furthermore, the inclined surface I and the inclined surface section are coated with an anti-slip layer.

[0014] Furthermore, in use, the slider can move within the groove.

[0015] Furthermore, the outer contour of the slider is adapted to the shape of the groove.

[0016] Furthermore, the chute includes rectangular chute and trapezoidal chute.

[0017] The rectangular slide and the trapezoidal slide have rectangular and isosceles trapezoidal cross sections, respectively.

[0018] The lower bottom surface of the trapezoidal slide is connected to the rectangular slide, while the upper bottom surface is located at the opening of the slide groove, so that the slide groove tends to taper from the bottom to the opening.

[0019] The slider includes rectangular blocks and trapezoidal blocks.

[0020] The rectangular block and the trapezoidal block have rectangular and isosceles trapezoidal cross sections, respectively.

[0021] The lower base of the trapezoidal block is connected to the rectangular block, while the upper base is connected to the connecting rod.

[0022] Furthermore, the inclined surface II of the trapezoidal slide and the inclined surface III of the trapezoidal block are coated with an anti-slip layer.

[0023] The technical effects of this utility model are undeniable, and its beneficial effects are as follows:

[0024] (1) The power-integrated universal hoisting process device of this utility model can adjust the number and position of the crossbeam and the lifting block according to the number and position of the hoisting points, and can realize the lifting of any hoisting point by cooperating with the hoisting tool, thus realizing universal hoisting.

[0025] (2) The universal lifting process device with integrated power of this utility model forms a V-shaped fit between the lifting body and the crossbeam and between the lifting block and the slide groove, and the inclined surface is sprayed with an anti-slip layer. It achieves self-locking through the lifting gravity and has the advantages of simple structure, safety and reliability, convenient operation and wide applicability. Attached Figure Description

[0026] Figure 1 This is an isometric drawing of the universal hoisting process device of this utility model;

[0027] Figure 2 These are three views of the universal hoisting process device of this utility model;

[0028] Figure 3 These are three views of the lifting device body of this utility model;

[0029] Figure 4 These are three views of the crossbeam of this utility model;

[0030] Figure 5 These are the three views of the lifting slider of this utility model.

[0031] In the figure: 1. Lifting device body; 2. Upper lifting ring; 3. Crossbeam; 4. Lower lifting ring; 401. Slider; 402. Connecting rod; 403. Lifting ring body; 5. Inclined section; 6. Slide groove; 7. Inclined surface I; 8. Inclined surface II; 9. Inclined surface III. Detailed Implementation

[0032] The present invention will be further described below with reference to embodiments, but it should not be construed as the scope of the present invention being limited to the following embodiments. Various substitutions and modifications made based on ordinary technical knowledge and conventional methods in the art without departing from the above-described technical concept of the present invention should be included within the protection scope of the present invention.

[0033] Example 1:

[0034] A universal lifting device with integrated power includes a lifting body 1, an upper lifting ring 2, a crossbeam 3, and a lower lifting ring 4.

[0035] The lifting device body 1 is a square ring frame structure formed by connecting several rods. Each of the four corners on the upper surface of the frame is equipped with an upper lifting ring 2 for fixing the device.

[0036] The inner wall surfaces at both ends of the frame are divided into inclined sections 5 and vertical sections, with the inclined sections 5 facing upwards to the side where the lifting ring 2 is located.

[0037] Several crossbeams 3 are placed at intervals on the inclined section 5. The bottom surface of the crossbeams 3 is provided with a sliding groove 6, and several lower lifting rings 4 are installed in the sliding groove 6.

[0038] The lower lifting ring 4 includes a slider 401, a connecting rod 402 and a lifting ring body 403. One end of the connecting rod 402 is connected to the lifting ring body 403 and the other end is connected to the slider 401. The slider 401 is embedded in the sliding groove 6.

[0039] When in use, the lower lifting ring 4 is equipped with a workpiece.

[0040] Example 2:

[0041] The main structure of this embodiment is the same as that of embodiment 1. Furthermore, the lifting device body 1 is an integrally formed structure.

[0042] Example 3:

[0043] The main structure of this embodiment is the same as any one of embodiments 1 to 2. Furthermore, the lifting body 1 is composed of four rod-shaped components connected vertically. The inner sidewalls of two oppositely arranged rod-shaped components extend obliquely downward from the top to form an inclined section 5, which is connected to the vertical section. The vertical section is perpendicular to the upper and lower surfaces of the rod-shaped components.

[0044] Example 4:

[0045] The main structure of this embodiment is the same as any one of embodiments 1 to 3. Furthermore, in use, the crossbeam 3 can move on the inclined section 5.

[0046] Example 5:

[0047] The main structure of this embodiment is the same as any one of embodiments 1 to 4. Furthermore, the contact surface between the crossbeam 3 and the inclined section 5 is inclined surface I7.

[0048] Example 6:

[0049] The main structure of this embodiment is the same as any one of embodiments 1 to 5. Furthermore, the inclined surface I7 and the inclined surface segment 5 are coated with an anti-slip layer.

[0050] Example 7:

[0051] The main structure of this embodiment is the same as any one of embodiments 1 to 6. Furthermore, in use, the slider 401 can move within the slide groove 6.

[0052] Example 8:

[0053] The main structure of this embodiment is the same as any one of embodiments 1 to 7. Furthermore, the outer contour of the slider 401 is adapted to the shape of the groove 6.

[0054] Example 9:

[0055] The main structure of this embodiment is the same as any one of embodiments 1 to 8. Furthermore, the slide 6 includes a rectangular slide and a trapezoidal slide.

[0056] The rectangular slide and the trapezoidal slide have rectangular and isosceles trapezoidal cross sections, respectively.

[0057] The lower bottom surface of the trapezoidal slide is connected to the rectangular slide, while the upper bottom surface is located at the opening of the slide groove 6, so that the slide groove 6 tends to taper from the bottom to the opening.

[0058] The slider 401 includes a rectangular block and a trapezoidal block.

[0059] The rectangular block and the trapezoidal block have rectangular and isosceles trapezoidal cross sections, respectively.

[0060] The lower base of the trapezoidal block is connected to the rectangular block, while the upper base is connected to the connecting rod 402.

[0061] Example 10:

[0062] The main structure of this embodiment is the same as any one of embodiments 1 to 9. Furthermore, the inclined surface II8 of the trapezoidal slide and the inclined surface III9 of the trapezoidal block are coated with an anti-slip layer.

[0063] Example 11:

[0064] The main structure of this embodiment is the same as any one of embodiments 1 to 10. Furthermore, a power-integrated universal hoisting process device includes a hoisting body 1, an upper hoisting ring 2, a crossbeam 3, a lower hoisting ring 4, an inclined section 5, a slide 6, an inclined surface of the crossbeam, an inclined surface of the slide 6, and an inclined surface of the lower hoisting ring.

[0065] The lifting device body 1 is equipped with upper lifting rings 2 on all four sides.

[0066] The inclined sections 5 are symmetrically arranged on the lifting device body 1.

[0067] The crossbeam 3 is mounted on the inclined surface 5 of the lifting device body 1. The inclined surfaces at both ends of the crossbeam 3 and the inclined surface section 5 form a V-shaped fit. The crossbeam 3 can move freely on the inclined surface section 5 and achieves self-locking through the lifting gravity.

[0068] The groove 6 is inside the crossbeam 3.

[0069] The inclined surfaces of the slide grooves are symmetrically arranged on the slide groove 6.

[0070] The lower lifting ring 4 is installed on the inclined surface of the slide groove 6 inside the crossbeam 3. The inclined surfaces of the lower lifting ring 4 at both ends form a V-shaped fit with the inclined surface of the slide groove. The lower lifting ring 4 can move freely in the slide groove 6 and achieves self-locking by the lifting gravity.

[0071] The inclined section 5, the inclined surface of the crossbeam, the inclined surface of the slide groove, and the inclined surface of the lower lifting ring are coated with an anti-slip layer.

Claims

1. A universal lifting process device with integrated power, characterized in that: It includes the lifting device body (1), the upper lifting ring (2), the crossbeam (3) and the lower lifting ring (4); The lifting device body (1) is a square ring frame structure made up of several rods connected together, and an upper lifting ring (2) is installed at each of the four corners of the upper surface of the frame. The inner wall surfaces at both ends of the frame are divided into inclined sections (5) and vertical sections, with the inclined sections (5) facing upwards to the side where the lifting ring (2) is located; Several crossbeams (3) are placed at intervals on the inclined section (5). The bottom surface of the crossbeams (3) is provided with a groove (6). Several lower lifting rings (4) are installed in the groove (6). The lower lifting ring (4) includes a slider (401), a connecting rod (402) and a lifting ring body (403). One end of the connecting rod (402) is connected to the lifting ring body (403), and the other end is connected to the slider (401). The slider (401) is embedded in the sliding groove (6). When in use, the lower lifting ring (4) is equipped with a workpiece.

2. The universal lifting process device with integrated power according to claim 1, characterized in that: The lifting device body (1) is a one-piece molded structure.

3. The universal lifting process device with integrated power according to claim 1, characterized in that: The lifting device body (1) is composed of four rod-shaped components connected vertically. The inner sidewalls of two oppositely arranged rod-shaped components extend obliquely downward from the top to form an inclined section (5), which connects with the vertical section. The vertical section is perpendicular to the upper and lower surfaces of the rod-shaped components.

4. The universal lifting process device with integrated power as described in claim 1, characterized in that: When in use, the crossbeam (3) can move on the inclined section (5).

5. The universal lifting process device with integrated power according to claim 1, characterized in that: The contact surface between the crossbeam (3) and the inclined section (5) is inclined surface I (7).

6. The universal lifting process device with integrated power according to claim 5, characterized in that: The inclined surface I (7) and the inclined surface section (5) are coated with an anti-slip layer.

7. The universal lifting device with integrated power system according to claim 1, characterized in that: In use, the slider (401) can move within the groove (6).

8. The universal lifting process device with integrated power according to claim 1, characterized in that: The outer contour of the slider (401) is adapted to the shape of the groove (6).

9. The universal lifting process device with integrated power according to claim 1, characterized in that: The chute (6) includes a rectangular chute and a trapezoidal chute; The rectangular slide and the trapezoidal slide have rectangular and isosceles trapezoidal cross sections, respectively; The lower bottom surface of the trapezoidal slide is connected to the rectangular slide, while the upper bottom surface is located at the opening of the groove (6), so that the groove (6) tends to contract from the bottom to the opening. The slider (401) includes a rectangular block and a trapezoidal block; The rectangular block and the trapezoidal block have rectangular and isosceles trapezoidal cross sections, respectively; The lower surface of the trapezoidal block is connected to the rectangular block, while the upper surface is connected to the connecting rod (402).

10. The universal lifting process device with integrated power according to claim 9, characterized in that: The inclined surface II (8) of the trapezoidal slide and the inclined surface II (9) of the trapezoidal block are coated with an anti-slip layer.