Novel titanium composite plate hoisting tool
Patent Information
- Application Number
- CN202522405366.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-13
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-11-13
AI Technical Summary
[0015]1. This utility model achieves length adjustment through the coordinated movement of the lateral sliding component and the limiting component. The operator slides the slider to drive the pushing component to move laterally. After adjusting the distance between the two contact plates, the limiting tooth plate engages and locks with the fixed tooth plate under the action of the first spring. This movement process realizes the positioning and firm locking of titanium composite plates of different lengths, effectively preventing displacement and sliding during the hoisting process, and effectively improving the adaptability and safety of hoisting operations.
Smart Images

Figure CN224754045U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of hoisting tool technology, and in particular relates to a novel titanium composite plate hoisting tool. Background Technology
[0002] Titanium composite plate is a bimetallic layered composite material made by using industrial pure titanium or titanium alloy as the cladding layer and carbon steel or stainless steel as the base layer, through processes such as explosive bonding or rolling bonding. It combines the excellent corrosion resistance and biocompatibility of titanium with the high strength and low cost advantages of the base material. It is widely used in the manufacture of key equipment such as corrosion-resistant pressure vessels, storage tanks, and pipelines in the fields of chemical industry, marine engineering, power and environmental protection. In the manufacturing and installation of titanium composite plate equipment, it is often necessary to lift and transfer large titanium composite plate blanks or semi-finished products. Lifting tools are essential devices for safe and efficient handling.
[0003] Existing titanium composite plate lifting tools still have some problems in use. For example, most existing titanium composite plate lifting tools adopt fixed clamping structures or simple lifting tools with single specifications. The clamping spacing is fixed and can only adapt to plates of specific lengths. They cannot be flexibly adjusted according to the actual length of the plate. The height of the clamping plate is not adjustable, which cannot effectively adapt to the clamping needs of titanium composite plates of different thicknesses. For plates that are too thick, they may not be clamped stably, and for plates that are too thin, they may not be able to support them effectively. This leads to the need to equip multiple specifications of lifting tools in actual production, which increases equipment costs and management complexity.
[0004] To address these issues, we provide a novel titanium composite plate hoisting tool. Utility Model Content
[0005] The purpose of this utility model is to provide a new type of titanium composite plate hoisting tool. By cooperating with the horizontal adjustment mechanism and the vertical adjustment mechanism, it solves the problem that existing titanium composite plate hoisting tools use fixed clamping structures or simple hoisting tools with single specifications and fixed clamping spacing.
[0006] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution.
[0007] This utility model relates to a novel titanium composite plate hoisting tool, comprising a hoisting plate, with hoisting rings fixedly connected to the four corners of the top of the hoisting plate, and lateral adjustment mechanisms provided on both sides of the bottom of the hoisting plate. The lateral adjustment mechanism includes a vertical plate fixedly connected to the bottom of the hoisting plate, a lateral sliding component fixedly connected inside the vertical plate, and a pushing component provided on one side of the vertical plate. The bottom of the hoisting plate is provided with a vertical adjustment mechanism, which includes a contact plate provided on one side of the vertical plate, a support plate provided inside the contact plate, and fixing components provided on both sides of the contact plate.
[0008] The present invention is further configured such that the transverse sliding assembly includes a crossbar fixedly connected inside the vertical plate and a slider slidably connected to the surface of the crossbar.
[0009] The present invention is further configured such that the pushing component includes an adjusting plate disposed on one side of the vertical plate, and a hydraulic cylinder fixedly connected to one side of the adjusting plate.
[0010] The present invention is further configured such that a limiting component is provided on both the front and rear sides of the hoisting plate. The limiting component includes a fixed toothed plate fixedly connected to the front and rear sides of the hoisting plate, a limiting toothed plate meshing with the bottom of the fixed toothed plate, a pull rod fixedly connected to the bottom of the limiting toothed plate, a first spring fixedly connected to the bottom of the limiting toothed plate, and a limiting rod sleeved inside the first spring.
[0011] The present invention is further configured such that an anti-slip pad is fixedly connected to one side of the contact plate, and the tray is L-shaped.
[0012] The present invention is further configured such that a reset assembly is provided inside the contact plate, the reset assembly including a second spring fixedly connected to the top of the contact plate, and a reset rod sleeved inside the second spring.
[0013] The present invention is further configured such that the fixing component includes a fixing frame fixedly connected to both sides of the contact plate, a third spring fixedly connected to one side of the fixing frame, a connecting rod sleeved inside the third spring, a locking tooth plate fixedly connected to one end of the connecting rod, and teeth that mesh with the locking tooth plate are provided on both sides of the support plate.
[0014] The present invention has the following beneficial effects.
[0015] 1. This utility model achieves length adjustment through the coordinated movement of the lateral sliding component and the limiting component. The operator slides the slider to drive the pushing component to move laterally. After adjusting the distance between the two contact plates, the limiting tooth plate engages and locks with the fixed tooth plate under the action of the first spring. This movement process realizes the positioning and firm locking of titanium composite plates of different lengths, effectively preventing displacement and sliding during the hoisting process, and effectively improving the adaptability and safety of hoisting operations.
[0016] 2. This utility model achieves height adjustment through the coordinated movement of the fixing component and the resetting component. The operator pulls the connecting rod to disengage the locking tooth plate from the teeth, thereby moving the pallet up and down to the desired height. After being released, the locking tooth plate is reset and engaged under the action of the third spring. This movement process allows the L-shaped pallet to match the bottom contour of titanium composite plates of different thicknesses, providing stable support. Combined with the lateral clamping driven by the hydraulic cylinder, a reliable constraint is formed, effectively avoiding the risk of slippage and overturning of the plates during hoisting.
[0017] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0018] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below.
[0019] Figure 1 This is a three-dimensional view of a novel titanium composite plate hoisting tool.
[0020] Figure 2 This is a structural diagram of the lateral adjustment mechanism in a novel titanium composite plate hoisting tool.
[0021] Figure 3 This is a structural diagram of the lateral sliding component in a novel titanium composite plate hoisting tool.
[0022] Figure 4 This is a front view of the contact plate and support plate in a novel titanium composite plate hoisting tool.
[0023] Figure 5 This is a structural diagram of the fixing components in a novel titanium composite plate hoisting tool.
[0024] In the attached diagram: 1. Lifting plate; 2. Lifting ring; 3. Lateral adjustment mechanism; 31. Vertical plate; 32. Lateral sliding assembly; 321. Horizontal bar; 322. Slider; 33. Pushing assembly; 331. Adjusting plate; 332. Hydraulic cylinder; 4. Vertical adjustment mechanism; 41. Contact plate; 42. Support plate; 43. Fixing assembly; 431. Fixing frame; 432. Third spring; 433. Connecting rod; 434. Locking toothed plate; 5. Limiting assembly; 51. Fixing toothed plate; 52. Limiting toothed plate; 53. Pull rod; 54. First spring; 55. Limiting rod; 6. Anti-slip pad; 7. Reset assembly; 71. Second spring; 72. Reset rod. Detailed Implementation
[0025] The technical solutions of the present utility model will be described below with reference to the accompanying drawings. The described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0026] Example 1
[0027] Please see Figures 1-5 This utility model is a novel titanium composite plate hoisting tool, including a hoisting plate 1. Hoisting rings 2 are fixedly connected to the four corners of the top of the hoisting plate 1. A horizontal adjustment mechanism 3 is provided on both sides of the bottom of the hoisting plate 1. The horizontal adjustment mechanism 3 includes a vertical plate 31 fixedly connected to the bottom of the hoisting plate 1, a horizontal sliding component 32 fixedly connected inside the vertical plate 31, and a pushing component 33 provided on one side of the vertical plate 31. A vertical adjustment mechanism 4 is provided at the bottom of the hoisting plate 1. The vertical adjustment mechanism 4 includes a contact plate 41 provided on one side of the vertical plate 31, a support plate 42 provided inside the contact plate 41, and a fixing component 43 provided on both sides of the contact plate 41.
[0028] Specifically: The horizontal adjustment mechanism 3 achieves length adjustment through its internal horizontal sliding component 32. The operator slides the slider 322 connected to the surface of the crossbar 321, which drives the push component 33 fixed on the slider 322 to move horizontally as a whole. This process realizes flexible adjustment of the clamping distance between the two contact plates 41, so that it can match the hoisting requirements of titanium composite plates of different lengths and provide accurate positioning for subsequent stable clamping. The vertical adjustment mechanism 4 achieves height adjustment through its internal fixing component 43 and reset component 7. The operator pulls the connecting rod 433 outward, so that the locking tooth plate 434 overcomes the elastic force of the third spring 432 and disengages from the teeth on both sides of the support plate 42. At this time, the L-shaped support plate 42 can be moved up and down to change its extension length. This process realizes adjustment of the height of the bearing surface of the support plate 42, so that it can stably support the bottom of titanium composite plates of different thicknesses and prevent the titanium composite plates from falling.
[0029] Example 2
[0030] Please see Figures 1-5 Based on Embodiment 1, the transverse sliding assembly 32 includes a crossbar 321 fixedly connected inside the vertical plate 31, and a slider 322 slidably connected to the surface of the crossbar 321. The surface of the crossbar 321 is provided with a scale. There are two crossbars 321 and four sliders 322. The pushing assembly 33 includes an adjusting plate 331 disposed on one side of the vertical plate 31, and a hydraulic cylinder 332 fixedly connected to one side of the adjusting plate 331. The adjusting plate 331 is fixedly connected to one side of the slider 322. The output end of the hydraulic cylinder 332 contacts the contact plate 4. 1. Fixed connection: Limiting components 5 are provided on both the front and rear sides of the lifting plate 1. The limiting components 5 include a fixed toothed plate 51 fixedly connected to the front and rear sides of the lifting plate 1, a limiting toothed plate 52 engaged with the bottom of the fixed toothed plate 51, a pull rod 53 fixedly connected to the bottom of the limiting toothed plate 52, a first spring 54 fixedly connected to the bottom of the limiting toothed plate 52, and a limiting rod 55 sleeved inside the first spring 54. A pull through hole is provided on the top of the contact plate 41, and the pull rod 53 is located inside the limiting through hole. Limiting components are provided on both sides of the top of the contact plate 41. A through hole is provided, and a limiting rod 55 is located inside the limiting through hole. The bottom of the first spring 54 is fixedly connected to the top of the contact plate 41. An anti-slip pad 6 is fixedly connected to one side of the contact plate 41. The support plate 42 is L-shaped. A reset assembly 7 is provided inside the contact plate 41. The reset assembly 7 includes a second spring 71 fixedly connected to the top of the contact plate 41, and a reset rod 72 sleeved inside the second spring 71. A reset through hole is provided inside the support plate 42, and the reset rod 72 is located inside the reset through hole. The bottom of the second spring 71 is fixedly connected to the top of the support plate 42. The fixing component 43 includes a fixing frame 431 fixedly connected to both sides of the contact plate 41, a third spring 432 fixedly connected to one side of the fixing frame 431, a connecting rod 433 sleeved inside the third spring 432, a locking tooth plate 434 fixedly connected to one end of the connecting rod 433, teeth that mesh with the locking tooth plate 434 are provided on both sides of the support plate 42, and inlet and outlet through slots that are adapted to the locking tooth plate 434 are provided on both sides of the contact plate 41, and a movable through hole is provided inside the fixing frame 431, with the connecting rod 433 located inside the movable through hole.
[0031] Specifically: The lateral sliding component 32 is used to adjust the position of the surface sliding pushing component 33, allowing the pushing component 33 to adapt to the clamping requirements of titanium composite plates of different lengths. Through the pushing component 33, the hydraulic cylinder 332 drives the contact plate 41 closer to the titanium composite plate, enabling both sides of the titanium composite plate to contact the contact plate 41. Through the setting of the limiting component 5, after adjusting the position of the slider 322 and the contact plate 41, the limiting toothed plate 52 engages with the fixed toothed plate 51, preventing slippage during hoisting. The pad 6 protects the side of the titanium composite plate. With the reset component 7, when the extension length of the support plate 42 is adjusted, after the fixing component 43 is lost, the extension and retraction of the second spring 71 drives the support plate 42 to reset upward. With the fixing component 43, when the extension length of the support plate 42 needs to be adjusted, the connecting rod 433 is pulled to lock the toothed plate 434 and disengage it from the teeth. At this time, the support plate 42 can be pushed up and down to adjust its height to meet the clamping requirements of titanium composite plates of different thicknesses.
[0032] The working principle of this utility model is as follows: When in use, first adjust the position of the pushing components 33 on both sides according to the length of the titanium composite plate to be hoisted. First, pull down the pull rod 53. The pull rod 53 drives the limiting tooth plate 52 to disengage from the fixed tooth plate 51. At this time, manually slide the slider 322 in the transverse sliding component 32 to drive the pushing component 33 on it to move laterally along the crossbar 321, thereby adjusting the distance between the contact plates 41 on both sides to a suitable position. After releasing the pull rod 53, the limiting tooth plate 52 is pushed upward to engage with the fixed tooth plate 51 under the reset action of the first spring 54. Then, according to the thickness of the titanium composite plate, pull the connecting rod 433 in the fixed component 43 outward to make the locking tooth plate 434 overcome the elastic force of the third spring 432 and disengage from the teeth on both sides of the support plate 42. At this time, move the L-shaped support plate 42 up and down to accurately adjust its extension length. After the adjustment is completed, release the connecting rod 433. The locking tooth plate 434 resets under the action of the third spring 432 and re-engages with the teeth, firmly fixing the support plate 42.
[0033] Once the dimensions are adjusted, the hydraulic cylinder 332 in the push assembly 33 is activated. The output end of the hydraulic cylinder 332 pushes the contact plate 41 and its anti-slip pad 6 towards the side of the titanium composite plate smoothly and applies a stable clamping force. At the same time, the L-shaped support plate 42, which has been adjusted to the correct height, steadily supports the plate from the bottom. During hoisting, the lifting equipment lifts the entire lifting device through the lifting ring 2. The titanium composite plate is safely hoisted under the combined action of the clamping of the contact plates 41 on both sides and the support of the bottom support plate 42, effectively preventing it from swaying or slipping in the air.
[0034] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A novel titanium composite plate hoisting tool, comprising a hoisting plate (1), characterized in that: The top four corners of the lifting plate (1) are all fixedly connected with lifting rings (2); The bottom sides of the hoisting plate (1) are provided with a horizontal adjustment mechanism (3). The horizontal adjustment mechanism (3) includes a vertical plate (31) fixedly connected to the bottom of the hoisting plate (1), a horizontal sliding component (32) fixedly connected inside the vertical plate (31), and a pushing component (33) provided on one side of the vertical plate (31). The bottom of the hoisting plate (1) is provided with a vertical adjustment mechanism (4). The vertical adjustment mechanism (4) includes a contact plate (41) disposed on one side of the vertical plate (31), a support plate (42) disposed inside the contact plate (41), and fixing components (43) disposed on both sides of the contact plate (41).
2. The novel titanium composite plate hoisting tool according to claim 1, characterized in that: The lateral sliding assembly (32) includes a crossbar (321) fixedly connected inside the vertical plate (31) and a slider (322) slidably connected to the surface of the crossbar (321).
3. The novel titanium composite plate hoisting tool according to claim 1, characterized in that: The pushing assembly (33) includes an adjustment plate (331) disposed on one side of the vertical plate (31) and a hydraulic cylinder (332) fixedly connected to one side of the adjustment plate (331).
4. The novel titanium composite plate hoisting tool according to claim 1, characterized in that: Limiting components (5) are provided on both the front and rear sides of the hoisting plate (1). The limiting components (5) include a fixed toothed plate (51) fixedly connected to the front and rear sides of the hoisting plate (1), a limiting toothed plate (52) meshing with the bottom of the fixed toothed plate (51), a pull rod (53) fixedly connected to the bottom of the limiting toothed plate (52), a first spring (54) fixedly connected to the bottom of the limiting toothed plate (52), and a limiting rod (55) sleeved inside the first spring (54).
5. The novel titanium composite plate hoisting tool according to claim 1, characterized in that: An anti-slip pad (6) is fixedly connected to one side of the contact plate (41), and the tray (42) is L-shaped.
6. The novel titanium composite plate hoisting tool according to claim 1, characterized in that: The contact plate (41) is provided with a reset assembly (7), which includes a second spring (71) fixedly connected to the top of the contact plate (41) and a reset rod (72) sleeved inside the second spring (71).
7. The novel titanium composite plate hoisting tool according to claim 1, characterized in that: The fixing component (43) includes a fixing frame (431) fixedly connected to both sides of the contact plate (41), a third spring (432) fixedly connected to one side of the fixing frame (431), a connecting rod (433) sleeved inside the third spring (432), and a locking tooth plate (434) fixedly connected to one end of the connecting rod (433). Both sides of the support plate (42) are provided with teeth that mesh with the locking tooth plate (434).