Logistics double-fork-arm elevator
By incorporating a tiltable conveyor belt and adjustable components into the logistics double forklift lift, the problem of existing equipment being unable to adapt to the transportation of items with height differences is solved, enabling more convenient and safer goods transportation.
Patent Information
- Application Number
- CN202423146605.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Existing logistics double-forklift lifts cannot meet the needs of transporting items with height differences, and cannot achieve effective item transport in special scenarios.
By setting a tiltable first conveyor belt and an adjustable tilt angle second conveyor belt on the lifting platform, combined with a drive unit and an adjustment component, the tilting and directional adjustment of items can be realized, adapting to the transportation of items with different height differences.
This improves the ease of use of the double forklift lift for logistics, enabling it to adapt to diverse material transportation needs and reducing the risk of damage to goods.
Smart Images

Figure CN223534211U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technology in the field of logistics and transportation, and in particular to a logistics double forklift lift. Background Technology
[0002] Double scissor lifts are industrial transport equipment widely used in warehousing, logistics, and manufacturing. Their main function is to vertically lift goods using double scissor arms and a hydraulic system. These machines are typically made of robust steel, offering high load-bearing capacity and stability, making them suitable for locations requiring frequent handling of heavy goods.
[0003] With the development of the logistics system, the number of goods handled by warehouses every day is enormous. This huge volume of goods brings about a variety of demands. However, the existing logistics double-claw lifts are basically horizontally adjustable planar conveyors, which cannot adapt to some special scenarios. For example, the vertically adjustable logistics double-claw lifts cannot transport goods with height differences to the logistics conveyor line. Utility Model Content
[0004] In view of this, the present invention addresses the deficiencies of the existing technology and its main purpose is to provide a logistics double forklift lift. It solves the problem that existing logistics double forklift lifts are basically horizontally adjustable planar conveyors, which cannot adapt to some special scenarios, such as transporting items with height differences to the logistics conveyor line, which is something that vertically adjustable logistics double forklift lifts cannot do.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a logistics double forklift lift, including a base and a lifting platform mounted on the base and driven by a drive component. The lifting platform is connected to a carrier component via an adjustment component. The carrier component includes a first conveyor belt and a second conveyor belt that are movably connected. One side of the first conveyor belt is movably connected to the lifting platform.
[0006] During operation, the first conveyor belt is tilted on the lifting platform by the support of the auxiliary rod in the adjustment assembly on one side of the first conveyor belt.
[0007] When it is necessary to change the direction of the conveying of the items, the tilt angle of the second conveyor belt is changed to match that of the first conveyor belt as the support member in the adjusting assembly moves on the support block.
[0008] Furthermore, the adjustment assembly includes a cylinder disposed on the upper surface of the lifting platform, an auxiliary rod that can be inserted into the inner cavity of the cylinder, and the auxiliary rod is movably connected to the lower end surface of the first conveyor belt.
[0009] Furthermore, a support block is located on the lower end face of the lifting platform. The support block is slatted and has an opening in the middle. A rod connected to the support member is located inside the opening.
[0010] Furthermore, the support member is elongated, with multiple slots at equal intervals at its lower end for engaging with the rod body, and the end of the support member away from the rod body is movably connected to the second conveyor belt.
[0011] Furthermore, the slot includes a first opening on the lower edge of the support and an extension extending to the side of the first opening, and the rod engages with the extension.
[0012] Furthermore, the first conveyor belt and the second conveyor belt each include two opposing first plate frames and second plate frames, and a rotating roller disposed between the two first plate frames and the two second plate frames.
[0013] Furthermore, the auxiliary rod is movably connected to the lower end of the first plate frame, and the support member is movably connected to the lower end of the second plate frame.
[0014] Furthermore, a friction cylinder is fitted onto the rotating roller, and the surface of the friction cylinder is rough.
[0015] Furthermore, the drive unit includes a drive cylinder mounted on the base and a cross connecting rod, with the output shaft of the drive cylinder connected to the cross connecting rod.
[0016] Furthermore, wheels are provided at the bottom of the base.
[0017] Compared with the prior art, this utility model has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solution, by setting the first conveyor belt on the lifting platform and supporting it with an auxiliary rod, the first conveyor belt can be changed from a horizontal to an inclined state, so that the items located above the first conveyor belt can be slidably transported. Then, by moving the second conveyor belt, which is movably connected to the first conveyor belt, the second conveyor belt can also be adjusted to adapt to the first conveyor belt by adjusting its tilt angle and guide the items transported on the first conveyor belt, thereby improving the user's more convenient way of use.
[0018] To more clearly illustrate the structural features and effects of this utility model, the following detailed description of this utility model is provided in conjunction with the accompanying drawings and specific embodiments. Attached Figure Description
[0019] Figure 1 This is a perspective view of Embodiment 1 of this utility model.
[0020] Figure 2 This is a side view of Embodiment 1 of this utility model.
[0021] Figure 3 This is a side cross-sectional view of the adjustment component of Embodiment 1 of this utility model.
[0022] Figure 4 This is a diagram illustrating the support member of Embodiment 1 of this utility model.
[0023] Explanation of reference numerals in the attached diagram:
[0024] 10 bases, 11 wheels;
[0025] 20 Drive unit, 21 Drive cylinder, 22 Cross link;
[0026] 30 lifting platform;
[0027] 40 Adjustment component, 41 Auxiliary rod, 42 Support component, 4211 First opening, 4212 Extension opening, 43 Support block, 431 Opening, 432 Rod body, 44 Insert tube;
[0028] 50 Bearing component, 51 First conveyor belt, 511 First plate frame, 52 Second conveyor belt, 521 Second plate frame, 53 Rotary roller, 531 Friction cylinder. Detailed Implementation
[0029] Please refer to Figure 1-4 As shown, it illustrates the specific structure of a preferred first embodiment of the present invention, which is a logistics double forklift lift, including a base 10 and a lifting platform 30 disposed on the base 10 and driven by a drive member 20. The lifting platform 30 is connected to a carrier member 50 through an adjustment component 40. The carrier member 50 includes a first conveyor belt 51 and a second conveyor belt 52 that are movably connected. One side of the first conveyor belt 51 is movably connected to the lifting platform 30.
[0030] During operation, the first conveyor belt 51 is tilted on the lifting platform 30 by the support of the auxiliary rod 41 in the adjusting component 40 on one side.
[0031] When the direction of item transport needs to be changed, the tilt angle of the second conveyor belt 52 is changed to match the first conveyor belt 51 as the support member 42 in the adjusting assembly 40 moves on the support block 43. Compared with existing logistics double forklifts, where the lifting platform can only be adjusted horizontally up and down for goods transport, this logistics double forklift, by using the first conveyor belt 51 set on the lifting platform 30 and supported by the auxiliary rod 41, allows the first conveyor belt 51 to be tilted from horizontal to inclined, so that items above the first conveyor belt 51 can be transported by sliding. Furthermore, by using the second conveyor belt 52, which is movably connected to the first conveyor belt 51, the second conveyor belt 52 can also be adjusted by moving the support member 42 on the support block 43 to match the first conveyor belt 51 and guide the items transported on the first conveyor belt 51, thereby providing users with a more convenient way to use the equipment.
[0032] It should be noted that the lifting platform 30 moves horizontally up and down as driven by the output shaft of the drive unit 20, so that the first conveyor belt 51 on the lifting platform 30 can be adapted to other logistics transportation equipment to facilitate the transportation of goods.
[0033] like Figure 2As shown, exemplarily, the adjustment component 40 includes an insert 44 disposed on the upper end face of the lifting platform 30. An auxiliary rod 41 can be inserted and removed into the inner cavity of the insert 44, and the auxiliary rod 41 is movably connected to the lower end face of the first conveyor belt 51. When the first conveyor belt 52 needs to be tilted to cooperate with other logistics equipment, by installing the insert 44 on the upper end face of the lifting platform 30, away from the second conveyor belt 52, and with the opening of the insert 44 corresponding to the first conveyor belt 51, the operator can take the auxiliary rod 41 movably connected to the lower part of the first conveyor belt 51 and insert it into the insert 44, so that the first conveyor belt 51 changes from a horizontal state to an inclined state. Since the insert 44 is disposed on the lifting platform 30, it also provides support for the first conveyor belt 51.
[0034] like Figure 4 As shown, for example, a support block 43 is disposed on the lower end face of the lifting platform 30. The support block 43 is slatted and has an opening 431 in the middle. A rod 432 connected to the support member 42 is disposed in the opening 431. In order to allow the support member 42 to adjust the inclination of the second conveyor belt 52 by moving on the support block 43, the support block 43 is slatted and longitudinally arranged. The support block 43 has an opening 431 in the middle. The rod 432 is fixed in the opening 431. The support member 42 supports the second conveyor belt 52 by engaging with the rod 432.
[0035] It should be noted that there are at least two rods 432, and the distance between the two rods 432 is sufficient for the support member 42 to be inserted and moved, so that the support member 42 can better adjust the inclination of the second conveyor belt 52.
[0036] like Figure 3 As shown, for example, the support member 42 is elongated, with multiple slots 421 at equal intervals at its lower end for engaging with the rod 432. The end of the support member 42 away from the rod 432 is movably connected to the second conveyor belt 52. To enable the support member 42 to engage with the rod 432, the support member 42 is also designed as an elongated strip that can pass through the opening 431, and the bottom wall of the support member 42 has multiple slots 421 arranged at equal intervals. When the support member 42 moves on the support block 43, the slots 421 engage with the rod 432 to position the adjusted support member 42.
[0037] like Figure 3As shown, exemplarily, the slot 421 includes a first opening 4211 on the lower edge of the support member 42 and an extension opening 4212 extending to the side of the first opening 4211, with the rod 432 engaging with the extension opening 4212. To ensure a tighter engagement between the slot 421 and the rod 432 and prevent accidental detachment, the slot 421 is configured with the first opening 4211 and the extension opening 4212 communicating with each other. The extension opening 4212 is located on the side of the first opening 4211 adjacent to the force direction of the support member 42, so that when the support member 42 is squeezed by the second conveyor belt 52, the inner wall of the extension opening 4212 abuts against the rod 432 to support the second conveyor belt 52.
[0038] like Figure 3 As shown, exemplarily, the first conveyor belt 51 and the second conveyor belt 52 each include two opposing first plate frames 511 and second plate frames 521, and a rotating roller 53 disposed between the two first plate frames 511 and the two second plate frames 521. Compared with a belt conveyor, the conveyor belt using rotating rollers 53 has multiple rotating rollers 53 arranged at equal intervals, each rotating roller 53 being independent. This makes it easier for items on the first conveyor belt 51 and the second conveyor belt 52 to move with the rotation of the rotating rollers 53 after the first conveyor belt 51 and the second conveyor belt 52 are tilted. In addition, the rotating rollers 53 do not require additional driving components, while belt conveyors sometimes require additional driving components, thus reducing the cost of transporting items.
[0039] like Figure 3 As shown, for example, the auxiliary rod 41 is movably connected to the lower end of the first plate frame 511, and the support member 42 is movably connected to the lower end of the second plate frame 521. The auxiliary rod 41 and the support member 42 can be connected to the first plate frame 511 and the second plate frame 521 respectively through the connecting rod, so that the auxiliary rod 41 and the support member 42 can be positioned and can rotate around the connecting rod.
[0040] like Figure 3 As shown, for example, a friction cylinder 531 is fitted onto the rotating roller 53, and the surface of the friction cylinder 531 is rough. Because the surface of the rotating roller 53 is smooth, when conveying certain special items, the rotation of the rotating roller 53 will accelerate the conveying speed of the items, which may cause some items to be damaged. Therefore, the friction cylinder 531 is fitted onto the rotating roller 53, and the rough texture of the surface of the friction cylinder 531 increases the friction between the items in contact with it, thereby reducing the conveying speed of the items and avoiding damage to the items caused by excessive conveying speed.
[0041] The drive unit 20 includes a drive cylinder 21 mounted on the base 10 and a cross connecting rod 22, with the output shaft of the drive cylinder 21 connected to the cross connecting rod 22.
[0042] The base 10 has wheels 11 at its bottom.
[0043] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the technical scope of the present utility model. Therefore, any minor modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model shall still fall within the scope of the technical solution of the present utility model.
Claims
1. A logistics double forklift lift, comprising a base (10) and a lifting platform (30) disposed on the base (10) and driven by a drive member (20), characterized in that: The lifting platform (30) is connected to a carrier (50) via an adjusting component (40). The carrier (50) includes a first conveyor belt (51) and a second conveyor belt (52) that are movably connected. One side of the first conveyor belt (51) is movably connected to the lifting platform (30). During operation, the first conveyor belt (51) is tilted on the lifting platform (30) by the support of the auxiliary rod (41) in the adjustment assembly (40) on one side of the first conveyor belt (51). When it is necessary to change the direction of the conveying of the items, as the support member (42) in the adjustment component (40) moves on the support block (43), the tilt angle of the second conveyor belt (52) is changed to match the first conveyor belt (51).
2. The logistics double forklift lift according to claim 1, characterized in that: The adjustment component (40) includes a tube (44) disposed on the upper end face of the lifting platform (30), the auxiliary rod (41) can be inserted and removed into the inner cavity of the tube (44), and the auxiliary rod (41) is movably connected to the lower end face of the first conveyor belt (51).
3. A logistics double forklift lift according to claim 1, characterized in that: The support block (43) is located on the lower end face of the lifting platform (30). The support block (43) is slatted and has an opening (431) in the middle. The opening (431) contains a rod (432) connected to the support member (42).
4. A logistics double forklift lift according to claim 3, characterized in that: The support member (42) is long and narrow, with multiple slots (421) at equal intervals at its lower end that engage with the rod (432). The end of the support member (42) away from the rod (432) is movably connected to the second conveyor belt (52).
5. A logistics double forklift lift according to claim 4, characterized in that: The slot (421) includes a first opening (4211) on the lower edge of the support (42) and an extension opening (4212) extending to the side of the first opening (4211), and the rod (432) engages with the extension opening (4212).
6. A logistics double forklift lift according to claim 1, characterized in that: The first conveyor belt (51) and the second conveyor belt (52) respectively include two opposing first plate frames (511) and second plate frames (521), and a roller (53) disposed between the two first plate frames (511) and the two second plate frames (521).
7. A logistics double forklift lift according to claim 6, characterized in that: The auxiliary rod (41) is movably connected to the lower end of the first plate frame (511), and the support member (42) is movably connected to the lower end of the second plate frame (521).
8. A logistics double forklift lift according to claim 6, characterized in that: A friction cylinder (531) is sleeved on the rotating roller (53), and the surface of the friction cylinder (531) is rough.
9. A logistics double forklift lift according to claim 1, characterized in that: The drive unit (20) includes a drive cylinder (21) mounted on the base (10) and a cross connecting rod (22), the output shaft of the drive cylinder (21) being connected to the cross connecting rod (22).
10. A logistics double forklift lift according to claim 1, characterized in that: The base (10) is equipped with wheels (11) at its bottom.