Aluminum ingot carrying forklift with hydraulic structure
By introducing a hydraulic structure and adjustment mechanism into the aluminum ingot handling forklift, the problem of unstable cargo lifting was solved, and the adjustable extension of the pallet length and stable support were achieved, thereby improving handling efficiency and stability.
Patent Information
- Application Number
- CN202520682508.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-04-11
AI Technical Summary
Existing pallet trucks have limited capacity when lifting goods, which may lead to unstable lifting and inconvenient rack adjustment, affecting efficiency.
A hydraulic forklift for transporting aluminum ingots was designed. The motor drives the threaded rod to move the sliding block and the extension block. Combined with the adjustment mechanism of the telescopic block and the support block, the pallet length can be extended and the support can be stabilized, thereby enhancing the lifting stability and load-bearing capacity.
The adjustable extension of the pallet length improves cargo stability and handling efficiency, enhances the stability and load-bearing capacity of the lifted cargo, and makes it more convenient to use.
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Figure CN223879413U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of carrying forklift, concretely to an aluminum ingot carrying forklift with hydraulic structure. BACKGROUND
[0002] The carrying forklift is an industrial carrying vehicle, mainly used for loading, stacking and short-distance transporting of piece pallet goods in various warehouses, logistics centers, factory workshops and other places, and the carrying form of the forklift is usually mainly hydraulic, which has high stability and is flexible to operate, and is widely used.
[0003] However, the current carrying forklift still has some deficiencies, such as the goods on the forklift may shake greatly and be separated from the forklift:
[0004] In order to overcome the low detection efficiency, the prior art (publication number: CN113683027B) discloses a forklift with good stability, which can well stabilize the goods and reduce the horizontal shaking of the goods, so that the goods transported on the vehicle body are not easy to shake greatly and be separated from the forklift during the bumpy driving of the truck, avoiding damage of the goods due to separation, so that the goods can still be used subsequently, thereby improving the normal carrying efficiency of the goods.
[0005] However, the current carrying forklift still has some deficiencies, such as the goods on the forklift may shake greatly and be separated from the forklift: UTILITY MODEL CONTENTS
[0006] The utility model aims at providing an aluminum ingot carrying forklift with hydraulic structure to solve the problem of limited specifications of the carrying forklift when lifting goods and unstable lifting.
[0007] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: an aluminum ingot carrying forklift with hydraulic structure, comprising a vehicle machine, the vehicle machine side is connected with a vehicle-mounted frame, the vehicle-mounted frame side is connected with a supporting plate:
[0008] The supporting plate end part is provided with a sliding groove, the sliding groove is internally provided with a motor, the motor output end part is fixedly provided with a threaded rod, and the sliding groove is internally provided with an adjusting mechanism for improving the stability of the forklift.
[0009] The supporting plate bottom part is symmetrically provided with a first guide groove, and the supporting plate bottom part is provided with a supporting mechanism for improving the supporting strength of the supporting plate.
[0010] Further, the adjusting mechanism comprises a sliding block which is slidably arranged in a sliding groove, the sliding block is threadedly connected to the surface of the threaded rod, and an extension block is fixed to the end of the sliding block.
[0011] Further, the supporting mechanism comprises telescopic blocks which are symmetrically arranged in the bottom of the sliding block, a connecting block is fixed between the telescopic blocks, and a second guide groove is fixed to the bottom of the supporting plate close to the first guide groove.
[0012] Further, two second guide grooves are symmetrically arranged in the bottom of the supporting plate, a first guide block is slidably arranged in the second guide groove, the first guide block is fixed to the bottom of the sliding block, and a second guide block is slidably arranged in the bottom of the sliding block close to the first guide block.
[0013] Further, a spring is telescopically connected between the second guide block and the first guide block, an extension frame is rotatably connected to the bottom of the second guide block and the first guide block, and the bottom of the extension frame is fixed to the upper surface of the connecting block.
[0014] Further, a supporting block is rotatably connected to the inner side of the telescopic block, a fixed block is rotatably connected to the side of the supporting block away from the telescopic block, and the fixed block is fixed to the bottom of the extension block.
[0015] Compared with the prior art, the present utility model has the following beneficial effects:
[0016] 1. The aluminum ingot carrying forklift with a hydraulic structure, the sliding block can move the extension block, the extension block can extend the length of the supporting plate when moving, the supporting plate can lift larger goods after extending the length, the stability and efficiency of the forklift carrying are improved, the supporting block and the supporting plate can form a triangular shape through the telescopic block when the extension block is positioned, the supporting block can support the extension block, and the carrying capacity of the extended extension block is improved;
[0017] 2. The threaded rod is provided, the threaded rod can move the extension block through the threaded mode, thereby realizing the extension of the length of the supporting plate and improving the stability of the supporting plate lifting goods;
[0018] 3. The supporting block is provided, the supporting block can support the extension block, and the stability and carrying capacity of the extension block lifting goods are improved;
[0019] 4. The extension frame is provided, the extension frame can extend the telescopic block, so that the longer the length of the extension block is adjusted, the higher the supporting strength of the telescopic block can provide;
[0020] 5. Set with spring, by spring's elastic force, can be through own thrust when second guide block is not under pressure, push second guide block and first guide block separate distance, so as to pull telescopic block to shrink, prevent support block droop more influence use. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is whole front view solid structure schematic diagram of the utility model;
[0022] Figure 2 It is vehicle-mounted frame amplification solid structure schematic diagram of the utility model;
[0023] Figure 3 It is sliding block amplification solid structure schematic diagram of the utility model;
[0024] Figure 4 It is support block amplification solid structure schematic diagram of the utility model;
[0025] Figure 5 It is telescopic block amplification solid structure schematic diagram of the utility model;
[0026] Figure 6 It is extension frame amplification solid structure schematic diagram of the utility model.
[0027] In the drawing: 1, car machine;2, vehicle-mounted frame;3, supporting plate;301, sliding groove;302, sliding block;303, extension block;304, threaded rod;305, fixed block;306, support block;307, first guide groove;308, telescopic block;309, connecting block;310, second guide groove;311, first guide block;312, second guide block;313, spring;314, extension frame. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0029] Embodiment one, as Figures 1-3The technical scheme is shown in the utility model provides the following technical scheme: in order to solve the problem of unstable specification limit when lifting goods of carrying forklift, disclosed adjusting mechanism: including car machine 1, car machine 1 side is connected with vehicle-mounted frame 2, vehicle-mounted frame 2 side is connected with support plate 3: support plate 3 end is provided with sliding slot 301, motor is installed in sliding slot 301, the output portion of motor is fixed with threaded rod 304, sliding slot 301 is provided with the adjusting mechanism for improving the stability of forklift in inside, adjusting mechanism includes sliding block 302, sliding block 302 is slid in sliding slot 301 inside, sliding block 302 is connected on the surface of threaded rod 304 by screw thread, and the end of sliding block 302 is fixed with extension block 303.
[0030] Before carrying aluminium ingot of carrying forklift, if aluminium ingot is relatively big, can start motor output portion can drive threaded rod 304 to rotate, threaded rod 304 can drive sliding block 302 to threadedly slide when rotating, sliding block 302 can slide through sliding slot 301 when threadedly sliding, sliding block 302 can drive extension block 303 to move when sliding, extension block 303 can extend the length of support plate 3 when moving, support plate 3 can lift bigger goods after length extension, and the stability and efficiency of forklift carrying are improved.
[0031] Embodiment two, as Figure 1 、 Figure 2 、 Figure 4 、 Figure 5 and Figure 6 The technical scheme is shown in the utility model provides the following technical scheme: in order to solve the problem of insufficient bearing capacity of extension block 303 after extension of carrying forklift, on the basis of embodiment one, disclosed support mechanism: the bottom of support plate 3 is provided with first guide slot 307, and support plate 3 is provided with support mechanism for improving the support strength of support plate 3, and the support mechanism includes telescopic block 308, and telescopic block 308 is symmetrically slid through the bottom of sliding block 302, and connecting block 309 is fixed between telescopic block 308, and the bottom of support plate 3 is fixed with second guide slot 310 close to first guide slot 307, and two first guide slots 310 are symmetrically arranged in the bottom of support plate 3, and first guide block 311 is slid through the inside of second guide slot 310, and first guide block 311 is fixed in the bottom of sliding block 302, and second guide block 312 is slid through the bottom of sliding block 302 close to first guide block 311, and spring 313 is telescopically connected between second guide block 312 and first guide block 311, and extension frame 314 is rotatably connected to the bottom of first guide block 311 and second guide block 312, and extension frame 314 is fixed on the upper surface of connecting block 309 on the bottom, and support block 306 is rotatably connected in the inside of telescopic block 308, and fixed block 305 is rotatably connected to the side surface away from telescopic block 308 of support block 306, and fixed block 305 is fixed in the bottom of extension block 303.
[0032] When the extension block 303 of the carrying forklift extends the length of the supporting plate 3, the sliding block 302 can drive the telescopic block 308, the first guide block 311 and the second guide block 312 to move respectively. When the telescopic block 308 moves, it can slide through the first guide groove 307. When the first guide block 311 and the second guide block 312 move, they can both slide through the second guide groove 310. When the sliding block 302 drives the second guide block 312 to move from one side of the second guide groove 310 to the other side, the second guide block 312 can extrude the inner wall of the second guide groove 310. When the second guide block 312 is extruded, it can slide through the sliding block 302. When the second guide block 312 slides, it can extrude the spring 313 through the first guide block 311. When the second guide block 312 is extruded, it can push the extension frame 314 to cross-extend. When the extension frame 314 extends, it can push the connecting block 309 to move. When the connecting block 309 moves, it can drive the telescopic block 308 to extend. When the telescopic block 308 extends, it can push the supporting block 306 to move. When the supporting block 306 moves, it can rotate through the fixed block 305 and the telescopic block 308, and at the same time, the supporting block 306 can extend. When the extension block 303 extends to the specified length, it can be positioned. When the extension block 303 is positioned, the supporting block 306 and the supporting plate 3 through the telescopic block 308 can form a triangular shape. The supporting block 306 can support the extension block 303, which can improve the carrying capacity of the extension block 303 after extension, further improving the stability of the supporting plate 3 when lifting objects. Moreover, the length of the telescopic block 308 and the length of the extension block 303 are proportional, which can strengthen the supporting force of the supporting block 306 according to the needs of use, making it more convenient to use.
[0033] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the utility model shall be included in the protection scope of the utility model.
Claims
1. A hydraulically operated aluminum ingot handling forklift, comprising a vehicle engine (1), wherein a vehicle frame (2) is connected to the side of the vehicle engine (1), and a pallet (3) is connected to the side of the vehicle frame (2), characterized in that: The pallet (3) has a sliding groove (301) at its end. A motor is installed inside the sliding groove (301). A threaded rod (304) is fixed at the output end of the motor. An adjustment mechanism to improve the stability of the forklift is provided inside the sliding groove (301). The bottom of the pallet (3) is symmetrically provided with a first guide groove (307), and the bottom of the pallet (3) is provided with a support mechanism to improve the support strength of the pallet (3).
2. The aluminum ingot handling forklift with a hydraulic structure according to claim 1, characterized in that: The adjustment mechanism includes a sliding block (302), which slides through the sliding groove (301) and is threadedly connected to the surface of the threaded rod (304). An extension block (303) is fixed to the end of the sliding block (302).
3. The aluminum ingot handling forklift with a hydraulic structure according to claim 1, characterized in that: The support mechanism includes telescopic blocks (308), which slide symmetrically through the bottom of the sliding block (302). Connecting blocks (309) are fixed between the telescopic blocks (308), and a second guide groove (310) is fixed to the bottom of the support plate (3) near the first guide groove (307).
4. The aluminum ingot handling forklift with a hydraulic structure according to claim 3, characterized in that: Two second guide grooves (310) are symmetrically opened at the bottom of the tray (3). A first guide block (311) slides through the second guide groove (310). The first guide block (311) is fixed to the bottom of the sliding block (302). A second guide block (312) slides through the sliding block (302) near the bottom of the first guide block (311).
5. The aluminum ingot handling forklift with a hydraulic structure according to claim 4, characterized in that: A spring (313) is telescopically connected between the second guide block (312) and the first guide block (311). An extension frame (314) is rotatably connected to the bottom of the second guide block (312) and the first guide block (311). The bottom of the extension frame (314) is fixed to the upper surface of the connecting block (309).
6. The aluminum ingot handling forklift with a hydraulic structure according to claim 3, characterized in that: The inner side of the telescopic block (308) is rotatably connected to a support block (306), and the side of the support block (306) away from the telescopic block (308) is rotatably connected to a fixing block (305), and the fixing block (305) is fixed to the bottom of the extension block (303).
Citation Information
Patent Citations
A forklift with good stability
CN113683027B