Clamp structure of aluminum plate ingot lifting appliance
By designing an adjustable-angle clamping component, the problem that the clamping structure of the aluminum ingot lifting tool could not adapt to different placement positions was solved, thus improving the clamping effect of the aluminum ingot.
Patent Information
- Application Number
- CN202520445264.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-03-14
AI Technical Summary
The existing aluminum plate ingot lifting clamp structure has a low clamping effect because the clamping jaw assembly is fixed in position and the clamping angle cannot be adjusted.
A clamping assembly was designed, comprising a rotating part, a rotating rod, a rotating frame, a positioning plate, a limiting component, an assembly frame, a locking component, and a jaw component. Through the cooperation of the plug-in component and the locking component, the angle of the jaw component can be adjusted and fixed to adapt to aluminum ingots placed in different positions.
It achieves effective clamping of aluminum ingots in different positions, improving the clamping effect.
Smart Images

Figure CN223792781U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lifting tool technology, and in particular to a clamp structure for an aluminum plate ingot lifting tool. Background Technology
[0002] Aluminum ingots are large and heavy, making them difficult to transport manually. They are usually transported using aluminum ingot lifting devices. However, traditional clamp structures are inconvenient to disassemble and repair when the clamp teeth are damaged.
[0003] The prior art (CN221565537U) discloses a clamp structure for an aluminum plate ingot lifting tool, including a lifting tool body. The front of the lifting tool body is provided with an installation groove, and a jaw assembly is inserted and connected to the inner side of the installation groove. A fixing mechanism is provided on the left side of the lifting tool body. The lifting tool body is connected to the jaw assembly through the fixing mechanism. When disassembling, since the handle is connected and installed through a connecting rod and a sliding plate, the handle is used to pull the connecting rod to drive the sliding plate to slide, so that the clamping block and the connecting block are separated, thereby facilitating the disassembly and maintenance of the jaw assembly.
[0004] However, with the above method, since the position of the jaw assembly on the lifting device is fixed, it is impossible to adjust the clamping angle of the clamping part of the lifting device for aluminum ingots placed in different positions, resulting in a lower clamping effect. Utility Model Content
[0005] The purpose of this utility model is to provide a clamping structure for an aluminum ingot lifting device, which aims to solve the problem that the clamping structure of the existing aluminum ingot lifting device has a low clamping effect because the position of the jaw components on the lifting device body is fixed, and therefore the clamping angle of the clamping part of the lifting device body cannot be adjusted for aluminum ingots placed in different positions.
[0006] To achieve the above objectives, this utility model provides a clamping structure for an aluminum plate ingot lifting device, including a lifting device body and a clamping assembly;
[0007] The clamping assembly includes a rotating part, a rotating rod, a rotating frame, a positioning plate, a limiting component, an assembly frame, two locking components, a plug-in component, and a jaw component;
[0008] The rotating part is fixedly connected to the lifting device body and located on one side of the lifting device body; the rotating rod is fixedly connected to the rotating part and located on one side of the rotating part; the rotating frame is rotatably connected to the rotating rod and located on one side of the rotating rod; the positioning plate is fixedly connected to the rotating frame and located on the side of the rotating frame near the rotating rod; the positioning plate has multiple limiting grooves, and the multiple limiting grooves are respectively located on one side of the positioning plate; the limiting member is disposed on one side of the rotating rod; the assembly frame is fixedly connected to the rotating frame and located on one side of the rotating frame; the two locking members are respectively disposed on both sides of the assembly frame; the plug-in member is located inside the assembly frame; the jaw member is disposed on one side of the plug-in member.
[0009] The limiting component includes a limiting block, a locking screw, and a pin. The limiting block is fixedly connected to the rotating rod and is located on one side of the rotating rod. The locking screw is threadedly connected to the limiting block and is located on one side of the limiting block. The pin is fixedly connected to the locking screw and is located on one side of the locking screw.
[0010] The locking component includes a locking screw and a knob. The locking screw is threadedly connected to the assembly frame and is located on one side of the assembly frame. The knob is fixedly connected to the locking screw and is located on one side of the locking screw.
[0011] The connector includes a connecting part and a socket. The connecting part is fixedly connected to the jaws and is located on one side of the jaws. The socket is fixedly connected to the connecting part and is located on one side of the connecting part.
[0012] The clamping component includes a clamping plate and a plurality of clamping teeth. The clamping plate is fixedly connected to the connecting part and is located on one side of the connecting part. The plurality of clamping teeth are respectively fixedly connected to the clamping plate and are respectively located on one side of the clamping plate.
[0013] This utility model discloses a clamping structure for an aluminum ingot lifting device. The clamping jaws are inserted into the assembly frame via a connector. Two locking members are then operated to abut the connector, completing the assembly of the clamping jaws. Subsequently, depending on the clamping condition of the aluminum ingot, the rotating frame is rotated on the rotating rod of the rotating part to adjust the assembly angle of the clamping jaws. Then, the limiting member is inserted into the corresponding limiting groove on the positioning plate to fix the position of the clamping jaws. This solves the problem of existing aluminum ingot lifting device clamping structures where the position of the clamping jaws on the lifting device body is fixed, making it impossible to adjust the clamping angle of the clamping part of the lifting device body for aluminum ingots placed in different positions, resulting in a low clamping effect. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0016] Figure 2 This is a top view of the entire utility model.
[0017] Figure 3 This is a front view of the entire utility model.
[0018] Figure 4 This is a side view of the entire utility model.
[0019] 101-Lifting device body, 102-Rotating part, 103-Rotating rod, 104-Rotating frame, 105-Positioning plate, 106-Limiting component, 107-Assembly frame, 108-Locking component, 109-Plug-in component, 110-Jaw component, 111-Limiting groove, 112-Limiting block, 113-Locking screw, 114-Pin, 115-Locking screw, 116-Knob, 117-Connecting part, 118-Plug-in socket, 119-Jaw plate, 120-Jaw teeth. Detailed Implementation
[0020] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.
[0021] Please see Figures 1-4 ,in, Figure 1 This is a schematic diagram of the overall structure of this utility model. Figure 2 This is a top view of the entire utility model. Figure 3 This is a front view of the entire utility model. Figure 4 This is a side view of the entire utility model.
[0022] This utility model provides a clamping structure for an aluminum ingot lifting device: it includes a lifting device body 101 and a clamping assembly. The clamping assembly includes a rotating part 102, a rotating rod 103, a rotating frame 104, a positioning plate 105, a limiting member 106, an assembly frame 107, two locking members 108, a plug-in member 109, and a jaw member 110. The positioning plate 105 has multiple limiting grooves 111. The limiting member 106 includes a limiting block 112, a locking screw 113, and a pin 114. Component 108 includes a locking screw 115 and a knob 116. The connector 109 includes a connecting part 117 and a connector 118. The jaw component 110 includes a jaw plate 119 and multiple jaw teeth 120. The aforementioned solution solves the problem that the existing aluminum ingot lifting device's clamping structure has a low clamping effect because the position of the jaw components on the lifting device body 101 is fixed, and therefore the clamping angle of the clamping part of the lifting device body 101 cannot be adjusted for aluminum ingots placed in different positions.
[0023] In this specific embodiment, the lifting device body 101 is assembled on the aluminum ingot lifting device in conjunction with the clamping assembly to clamp and lift the aluminum ingot.
[0024] The rotating part 102 is fixedly connected to the lifting device body 101 and located on one side of the lifting device body 101; the rotating rod 103 is fixedly connected to the rotating part 102 and located on one side of the rotating part 102; the rotating frame 104 is rotatably connected to the rotating rod 103 and located on one side of the rotating rod 103; the positioning plate 105 is fixedly connected to the rotating frame 104 and located on the side of the rotating frame 104 near the rotating rod 103; multiple limiting grooves 111 are respectively located on one side of the positioning plate 105; the limiting member 106 is disposed on one side of the rotating rod 103; the assembly frame 107 is fixedly connected to the rotating frame 104 and located on one side of the rotating frame 104; two locking members 108 are respectively disposed on both sides of the assembly frame 107; the plug-in member 109 is located inside the assembly frame 107; the jaw member 11... The clamping jaw 110 is inserted into the assembly frame 107 through the connector 109. Then, the two locking parts 108 are operated to abut against the connector 109 to complete the assembly of the clamping jaw 110. Subsequently, according to the clamping situation of the aluminum ingot, the rotating frame 104 is turned on the rotating rod 103 on the rotating part 102 to adjust the assembly angle of the clamping jaw 110. Then, the limiting part 106 is operated to insert into the limiting groove 111 at the corresponding position on the positioning plate 105 to fix the position of the clamping jaw 110. This solves the problem that the clamping structure of the existing aluminum ingot lifting tool is not effective because the position of the clamping jaw assembly on the lifting tool body 101 is fixed, and therefore the clamping angle of the clamping part of the lifting tool body 101 cannot be adjusted for aluminum ingots in different positions, resulting in a low clamping effect.
[0025] Secondly, the limiting block 112 is fixedly connected to the rotating rod 103 and is located on one side of the rotating rod 103; the locking screw 113 is threadedly connected to the limiting block 112 and is located on one side of the limiting block 112; the pin 114 is fixedly connected to the locking screw 113 and is located on one side of the locking screw 113. Twisting the locking screw 113 rotates it on the limiting block 112, so that the pin 114 is inserted into the limiting groove 111 at the corresponding position on the positioning plate 105, thereby fixing the position of the rotating frame 104.
[0026] Meanwhile, the locking screw 115 is threadedly connected to the assembly frame 107 and is located on one side of the assembly frame 107; the knob 116 is fixedly connected to the locking screw 115 and is located on one side of the locking screw 115. Twisting the knob 116 causes the locking screw 115 to be inserted into the connector 109 to complete the assembly of the jaw piece 110.
[0027] In addition, the connecting part 117 is fixedly connected to the jaw member 110 and is located on one side of the jaw member 110; the plug-in seat 118 is fixedly connected to the connecting part 117 and is located on one side of the connecting part 117. The connecting part 117 is used to support the assembly of the plug-in seat 118, and the plug-in seat 118 is used to insert into the assembly frame 107 to assemble the jaw member 110.
[0028] Furthermore, the jaw plate 119 is fixedly connected to the connecting part 117 and is located on one side of the connecting part 117; the plurality of jaw teeth 120 are respectively fixedly connected to the jaw plate 119 and are respectively located on one side of the jaw plate 119; the jaw member 110 is used to support the plurality of jaw teeth 120, thereby increasing the strength of clamping the aluminum plate ingot through the plurality of jaw teeth 120.
[0029] When using this utility model, the clamping jaw 110 is inserted into the assembly frame 107 through the plug-in seat 118 on the connecting part 117. Then, the knob 116 is turned to insert the locking screw 115 into the plug-in 109 to complete the assembly of the clamping jaw 110. After the assembly of the clamping jaw 110 is completed, the rotating frame 104 is turned on the rotating rod 103 on the rotating part 102 according to the clamping condition of the aluminum ingot to adjust the assembly angle of the clamping jaw 110. Twisting the locking screw 113 rotates the limiting block 112, causing the pin 114 to insert into the corresponding limiting groove 111 on the positioning plate 105, thus fixing the position of the rotating frame 104 and the position of the jaw component 110. This solves the problem that the existing aluminum ingot lifting clamp structure has a low clamping effect because the position of the jaw component on the lifting clamp body 101 is fixed, making it impossible to adjust the clamping angle of the clamping part of the lifting clamp body 101 for aluminum ingots placed in different positions.
[0030] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art will understand that all or part of the processes for implementing the above embodiments and equivalent variations made in accordance with the claims of this application are still within the scope of this application.
Claims
1. A clamping structure for an aluminum plate ingot lifting device, comprising a lifting device body, characterized in that, It also includes clamping components; The clamping assembly includes a rotating part, a rotating rod, a rotating frame, a positioning plate, a limiting component, an assembly frame, two locking components, a plug-in component, and a jaw component; The rotating part is fixedly connected to the lifting device body and located on one side of the lifting device body; the rotating rod is fixedly connected to the rotating part and located on one side of the rotating part; the rotating frame is rotatably connected to the rotating rod and located on one side of the rotating rod; the positioning plate is fixedly connected to the rotating frame and located on the side of the rotating frame closer to the rotating rod; the positioning plate has multiple limiting grooves, and the multiple limiting grooves are respectively located on one side of the positioning plate; the limiting member is disposed on one side of the rotating rod; the assembly frame is fixedly connected to the rotating frame and located on one side of the rotating frame; the two locking members are respectively disposed on both sides of the assembly frame; The connector is located inside the assembly frame; The clamping jaws are located on one side of the connector.
2. The clamp structure of the aluminum plate ingot lifting tool as described in claim 1, characterized in that, The limiting component includes a limiting block, a locking screw, and a pin. The limiting block is fixedly connected to the rotating rod and is located on one side of the rotating rod. The locking screw is threadedly connected to the limiting block and is located on one side of the limiting block. The pin is fixedly connected to the locking screw and is located on one side of the locking screw.
3. The clamp structure of the aluminum plate ingot lifting tool as described in claim 2, characterized in that, The locking component includes a locking screw and a knob. The locking screw is threadedly connected to the assembly frame and is located on one side of the assembly frame. The knob is fixedly connected to the locking screw and is located on one side of the locking screw.
4. The clamp structure of the aluminum plate ingot lifting tool as described in claim 3, characterized in that, The connector includes a connecting part and a socket. The connecting part is fixedly connected to the jaws and is located on one side of the jaws. The socket is fixedly connected to the connecting part and is located on one side of the connecting part.
5. The clamp structure of the aluminum plate ingot lifting tool as described in claim 4, characterized in that, The clamping jaws include a clamping jaw plate and a plurality of clamping teeth. The clamping jaw plate is fixedly connected to the connecting portion and is located on one side of the connecting portion. The plurality of clamping teeth are respectively fixedly connected to the clamping jaw plate and are respectively located on one side of the clamping jaw plate.
Citation Information
Patent Citations
Clamp structure of aluminum plate ingot lifting appliance
CN221565537U