Variable cigarette transfer device
By designing a variable cigarette transfer device with an inclined transfer plate, sliding protrusions, and lifting components, the problems of low efficiency and high consumption of manpower and material resources in existing transfer devices are solved, achieving efficient transfer and reducing the intensity of manual operation.
Patent Information
- Application Number
- CN202423292607.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The existing transfer equipment has low transfer efficiency and consumes a lot of manpower and material resources for loading and unloading.
A variable cigarette transfer device is designed, including first and second transfer plates that are tilted, equipped with sliding protrusions and L-shaped plates to facilitate plate position adjustment, lifting components to facilitate material transfer, guide wheels and pushers to improve mobility.
It improved the efficiency of cigarette transportation, reduced the intensity of manual operation, and met the needs of modern tobacco logistics.
Smart Images

Figure CN223560402U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a transfer technology field, specifically, relate to a variable cigarette transfer device. BACKGROUND
[0002] In the tobacco production needs to use the transfer device of tobacco, however, the existing transfer device transfer efficiency is low, and the feeding and discharging consume more manpower and material resources. INVENTION CONTENTS
[0003] The utility model provides a variable cigarette transfer device, solve the problem of the existing transfer device transfer efficiency is low in prior art, and the feeding and discharging consume more manpower and material resources.
[0004] The technical scheme of the utility model is as follows:
[0005] A variable cigarette transfer device, characterized by comprising the mounting bracket for setting on the ground, the mounting bracket has the first transfer plate and the second transfer plate for supporting material, the first transfer plate and the second transfer plate are all arranged with a plurality of rotating rollers in the interval,
[0006] The first transfer plate and the second transfer plate are all arranged from top to bottom along the Y axis direction, and the first transfer plate and the second transfer plate are all inclinedly arranged on the mounting bracket, and the first transfer plate is arranged from low to high along the X axis positive direction, and the second transfer plate is arranged from high to low along the X axis positive direction.
[0007] Further, the utility model provides a supporting plate arranged at the end of the second transfer plate along the X axis negative direction, and the supporting plate is used for supporting the material sliding down from the first transfer plate.
[0008] As a further technical scheme, the first transfer plate has sliding protrusions on both sides along the Y axis direction, and the utility model further comprises an L-shaped plate arranged on the mounting bracket, the L-shaped plate has a first end and a second end, the second end is arranged on the mounting bracket along the Y axis direction, the first end is arranged on the mounting bracket along the X axis direction, and the L-shaped plate has a sliding groove, the sliding protrusions are arranged in the sliding groove, and the sliding protrusions are used for driving the first transfer plate to slide from the first end to the second end after sliding in the sliding groove, and the first transfer plate and the second transfer plate are in the same plane after the first transfer plate slides on the L-shaped plate.
[0009] As a further technical scheme, the first end of the L-shaped plate has a plurality of grooves, and the utility model further comprises a fixed rod fixedly arranged on the first transfer plate at one end and insertedly arranged in the grooves at the other end, and the fixed rod is used for fixing the first transfer plate on the first end after being inserted in the grooves.
[0010] As a further technical solution, a lifting assembly for driving the lifting of the supporting plate is arranged on the mounting frame, and the supporting plate is arranged to abut against the first transfer plate or the second transfer plate after moving on the mounting frame.
[0011] As a further technical solution, the lifting assembly comprises a mounting rod rotatably arranged on the mounting frame, and an axis direction of the mounting rod is arranged along the Y-axis direction, and a fixed pulley is rotatably arranged at both ends of the mounting rod, and two pulling ropes are arranged around the fixed pulleys, and both ends of the pulling ropes are fixedly connected with the supporting plate and the counterweight.
[0012] As a further technical solution, a guide rod with an axis direction arranged along the Z-axis direction is arranged on the mounting frame, and a guide sleeve is arranged on both the supporting plate and the counterweight, and the supporting plate and the counterweight are slidably arranged on the guide rod through the guide sleeves.
[0013] As a further technical solution, a set of directional wheels and a set of steering wheels are arranged at the bottom of the mounting frame, and a push handle is arranged on the mounting frame.
[0014] As a further technical solution, the supporting plate has a guide slope, and the guide slope is arranged in parallel with the second transfer plate.
[0015] The working principle and beneficial effects of the present application are as follows:
[0016] In the present application, the first transfer plate and the second transfer plate are arranged on the mounting frame. Both the first transfer plate and the second transfer plate are made of high-strength material to ensure stability and durability when carrying materials. The first transfer plate is arranged in an inclined manner from top to bottom along the Y-axis direction, and a plurality of rotating rollers are uniformly and spacedly arranged on the surface of the first transfer plate to facilitate smooth sliding and transfer of the materials. The second transfer plate is arranged in an inclined manner from bottom to top along the Y-axis direction to form an effective material conveying channel. In order to improve the transfer efficiency of the materials, the inclination angle of the first transfer plate is designed to be 15 degrees, and the inclination angle of the second transfer plate is designed to be 10 degrees to ensure that the materials can smoothly slide under the action of gravity to the supporting plate. The supporting plate is arranged at the negative end of the second transfer plate, which can effectively receive the materials sliding down from the first transfer plate, and then slide the materials down to the second transfer plate, thereby increasing the efficiency of loading the materials into the device. The design of the device not only improves the transfer efficiency of the cigarettes, but also reduces the strength of manual operation, and meets the needs of modern tobacco logistics. BRIEF DESCRIPTION OF DRAWINGS
[0017] The present application will be further described in detail below in combination with the drawings and specific embodiments.
[0018] Figure 1The first visual angle shaft structure schematic view of the utility model shows;
[0019] Figure 2 The second visual angle shaft structure schematic view of the utility model shows;
[0020] Figure 3 The Figure 2 The A partial enlargement structure schematic view of the utility model shows.
[0021] In the figure: 1, mounting frame, 2, first transfer plate, 3, second transfer plate, 4, rotating roller, 5, supporting plate, 6, sliding protrusion, 7, L-shaped plate, 8, first end, 9, second end, 10, sliding groove, 11, groove, 12, fixed rod, 13, lifting assembly, 14, mounting rod, 15, fixed pulley, 16, pull rope, 17, counterweight, 18, guide rod, 19, directional wheel, 20, steering wheel, 21, push handle, 22, guide slope, 23, guide sleeve. DETAILED DESCRIPTION
[0022] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with 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 are involved in the protection scope of the utility model.
[0023] EMBODIMENT
[0024] A variable cigarette transfer device is characterized in that it comprises a mounting frame 1 arranged on the ground, the mounting frame 1 is provided with a first transfer plate 2 and a second transfer plate 3 for supporting materials, a plurality of rotating rollers 4 are arranged on the first transfer plate 2 and the second transfer plate 3 at intervals.
[0025] The first transfer plate 2 and the second transfer plate 3 are arranged from top to bottom along the Y-axis direction, and the first transfer plate 2 and the second transfer plate 3 are inclinedly arranged on the mounting frame 1, and the first transfer plate 2 is arranged from low to high along the positive direction of the X-axis, and the second transfer plate 3 is arranged from high to low along the positive direction of the X-axis.
[0026] Further comprising a supporting plate 5 arranged at the end of the second transfer plate 3 along the negative direction of the X-axis, the supporting plate 5 is used for supporting the materials sliding down from the first transfer plate 2.
[0027] As a specific embodiment, as Figure 1As shown, the device includes a stable mounting frame 1, on which a first transfer plate 2 and a second transfer plate 3 are arranged. Both the first transfer plate 2 and the second transfer plate 3 are made of high-strength materials to ensure stability and durability when carrying materials. The first transfer plate 2 is arranged obliquely from top to bottom along the Y-axis direction, and multiple rotating rollers 4 are uniformly spaced on its surface to facilitate smooth sliding and transfer of materials. The second transfer plate 3 is arranged obliquely from bottom to top along the Y-axis direction, forming an effective material transfer channel. To improve the transfer efficiency of materials, the inclination angle of the first transfer plate 2 is designed to be 15 degrees, while the inclination angle of the second transfer plate 3 is designed to be 10 degrees, ensuring that the materials can smoothly slide under the action of gravity to the supporting plate 5. The supporting plate 5 is arranged at the negative end of the second transfer plate 3, which can effectively receive the materials sliding down from the first transfer plate 2, and then slide the materials down to the second transfer plate 3, thereby increasing the efficiency of loading materials into the device. The design of the device not only improves the transfer efficiency of cigarettes, but also reduces the strength of manual operation, adapting to the needs of modern tobacco logistics.
[0028] As a further technical solution, the first transfer plate 2 has sliding protrusions 6 on both sides along the Y-axis direction, and an L-shaped plate 7 is arranged on the mounting frame 1. The L-shaped plate 7 has a first end 8 and a second end 9, the second end 9 is arranged on the mounting frame 1 along the Y-axis direction, the first end 8 is arranged on the mounting frame 1 along the X-axis direction, and the L-shaped plate 7 has a sliding groove 10 on the top, the sliding protrusions 6 are slidingly arranged in the sliding groove 10, and the sliding protrusions 6 are used to drive the first transfer plate 2 to slide from the first end 8 to the second end 9 after sliding in the sliding groove 10. After the first transfer plate 2 slides on the L-shaped plate 7, the first transfer plate 2 and the second transfer plate 3 are in the same plane.
[0029] In this embodiment, the first transfer plate 2 is designed with sliding protrusions 6 on both sides along the Y-axis direction, allowing the first transfer plate 2 to slide flexibly on the L-shaped plate 7. The L-shaped plate 7 is fixed on the mounting frame 1 and has two parts: the first end 8 is arranged along the X-axis direction, and the second end 9 is arranged along the Y-axis direction. The upper surface of the L-shaped plate 7 is provided with sliding grooves 10, which match the sliding protrusions 6 and allow the first transfer plate 2 to slide freely in the sliding grooves 10. In actual operation, when it is necessary to adjust the position of the first transfer plate 2 to adapt to different material transfer requirements, the sliding protrusions 6 move along the sliding grooves 10, driving the first transfer plate 2 to smoothly slide from the first end 8 to the second end 9 of the L-shaped plate 7. This design allows the first transfer plate 2 to move horizontally along the X-axis direction while maintaining the relative position and angle with the second transfer plate 3. When the first transfer plate 2 slides to the second end 9 of the L-shaped plate 7, the first transfer plate 2 and the second transfer plate 3 will be in the same plane, making it more convenient during unloading, thereby further improving the efficiency of unloading.
[0030] As a further technical solution, the first end 8 of the L-shaped plate 7 has a plurality of grooves 11, and further comprises a fixed rod 12 fixedly arranged at one end on the first transfer plate 2 and telescopically arranged at the other end in the groove 11, and after the fixed rod 12 is telescopically arranged in the groove 11, the fixed rod 12 is used to fix the first transfer plate 2 on the first end 8.
[0031] In this embodiment, the first end 8 of the L-shaped plate 7 has a plurality of grooves 11, and the grooves 11 are used to receive the fixed rod 12 to achieve the stable fixing position of the first transfer plate 2. In actual application, one end of the fixed rod 12 is fixedly arranged on the first transfer plate 2, and the other end is designed in a telescopically arranged form so as to be telescopically arranged in the groove 11 of the first end 8 of the L-shaped plate 7, so as to be telescopically arranged in the groove 11 of the first end 8 of the L-shaped plate 7. The material of the fixed rod 12 is selected to be high-strength steel or engineering plastic to ensure the durability and reliability under high-load working conditions. When the fixed rod 12 is telescopically arranged in the groove 11, the first transfer plate 2 is fixedly arranged on the first end 8 of the L-shaped plate 7, so as to prevent displacement or tilting during material transfer, and to ensure smooth and safe transfer. When unloading is required, the first transfer plate 2 is removed from the L-shaped plate 7, and then the first transfer plate 2 is telescopically arranged in the groove 11, so that the first transfer plate 2 and the second transfer plate 3 are located in the same plane, thereby facilitating unloading.
[0032] As a further technical solution, a lifting assembly 13 is further arranged on the mounting frame 1 to drive the supporting plate 5 to move up and down, and after the supporting plate 5 moves on the mounting frame 1, the supporting plate 5 is abutted against the first transfer plate 2 or the second transfer plate 3.
[0033] This scheme further comprises the lifting assembly 13, the lifting assembly 13 drives the supporting plate 5 to move between the first transfer plate 2 and the second transfer plate 3, after the material falls from the first transfer plate 2 to the supporting plate 5, the supporting plate 5 slides downward along the Z axis and abuts against the second transfer plate 3, and then the material is delivered to the second transfer plate 3, and then the lifting assembly 13 drives the supporting plate 5 to abut against the first transfer plate 2.
[0034] As a further technical solution, the lifting assembly 13 comprises a mounting rod 14 rotatably arranged on the mounting frame 1, and an axis direction of the mounting rod 14 is arranged along the Y axis direction, both ends of the mounting rod 14 are rotatably arranged with a fixed pulley 15, and the lifting assembly 13 further comprises two pulling ropes 16 wound on the fixed pulley 15, and both ends of the pulling rope 16 are fixedly connected with the supporting plate 5 and a counterweight 17 respectively.
[0035] In this embodiment, as shown in Figure 1 , Figure 2 and Figure 3As shown, the core of the lifting assembly 13 is a mounting rod 14 mounted on the mounting frame 1, the axis direction of the mounting rod 14 is arranged along the Y-axis direction, which ensures the verticality during lifting. The two ends of the mounting rod 14 are rotatably provided with fixed pulleys 15, which are used to guide the movement of the pulling rope 16, reduce friction and improve lifting efficiency. The pulling rope 16 is wound around the fixed pulleys 15, and the two ends are respectively fixedly connected with the supporting plate 5 and the counterweight 17. The gravity of the counterweight 17 assists the lifting of the supporting plate 5, so that the lifting operation is more stable and labor-saving. After the material slides onto the supporting plate 5, the pulling rope 16 is tensioned, the counterweight 17 is lowered due to gravity, and the supporting plate 5 is driven to rise through the guidance of the fixed pulley 15. Conversely, when the supporting plate 5 needs to be lowered, the counterweight 17 is lifted by tightening the pulling rope 16, thereby driving the supporting plate 5 to descend. Through the use of the counterweight 17, the additional energy consumption is reduced, and a self-balancing lifting system is realized.
[0036] As a further technical solution, the mounting frame 1 is provided with a guide rod 18 with an axis direction along the Z-axis direction, and the supporting plate 5 and the counterweight 17 are both provided with a guide sleeve, and the supporting plate 5 and the counterweight 17 are slidably arranged on the guide rod 18 through the guide sleeve.
[0037] In this embodiment, in order to ensure the stability and accuracy of the supporting plate 5 and the counterweight 17 during lifting, the mounting frame 1 is provided with a guide rod 18 with an axis direction along the Z-axis direction. This design makes the supporting plate 5 and the counterweight 17 move along a straight line perpendicular to the ground during lifting, thereby ensuring the accuracy and stability of the lifting operation.
[0038] As shown in Figure 1 and Figure 2 As a further technical solution, the bottom of the mounting frame 1 is provided with a set of directional wheels 19 and a set of steering wheels 20, and a push handle 21 is arranged on the mounting frame 1.
[0039] As a further technical solution, the supporting plate 5 has a guide slope, and the guide slope is arranged in parallel with the second transfer plate 3.
[0040] In this embodiment, the bottom of the mounting frame 1 is equipped with a set of directional wheels 19 and a set of steering wheels 20, so that the entire transfer device can be flexibly moved and positioned on the ground. The directional wheels 19 are responsible for maintaining the stability of the transfer device in a straight line direction, while the steering wheels 20 allow the operator to easily change the direction of the transfer device to adapt to different work sites and transfer needs. In order to facilitate operation, the mounting frame 1 is also specially provided with a push handle 21, the position and design of which takes into account ergonomics, so that the operator can easily push the entire device without the need for additional auxiliary tools. The provision of the push handle 21 not only improves the moving efficiency of the transfer device, but also reduces the labor intensity of the operator.
[0041] The above is only a preferred embodiment of the present application, and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A variable cigarette transfer device, characterized in that, The utility model provides a material conveying device, including the mount (1) for setting on the ground, the mount (1) has the first transfer plate (2) and the second transfer plate (3) for supporting material on it, a plurality of rotating rollers (4) are arranged on the first transfer plate (2) and the second transfer plate (3) and are arranged at intervals, The first transfer plate (2) and the second transfer plate (3) are arranged from top to bottom along the Y axis direction, and the first transfer plate (2) and the second transfer plate (3) are arranged obliquely on the mount (1), and the first transfer plate (2) is arranged from low to high along the positive direction of the X axis, and the second transfer plate (3) is arranged from high to low along the positive direction of the X axis. It also includes a supporting plate (5) arranged at the end of the second transfer plate (3) along the negative direction of the X axis, which is used to support the material sliding down from the first transfer plate (2).
2. A variable cigarette transport device according to claim 1, wherein, The first transfer plate (2) has a sliding protrusion (6) on both sides along the Y axis direction, and an L-shaped plate (7) is arranged on the mount (1), the L-shaped plate (7) has a first end (8) and a second end (9), the second end (9) is arranged on the mount (1) along the Y axis direction, the first end (8) is arranged on the mount (1) along the X axis direction, and the L-shaped plate (7) has a sliding groove (10) on the top, the sliding protrusion (6) is arranged in the sliding groove (10), and after the sliding protrusion (6) slides in the sliding groove (10), it is used to drive the first transfer plate (2) to slide from the first end (8) to the second end (9), and after the first transfer plate (2) slides on the L-shaped plate (7), the first transfer plate (2) and the second transfer plate (3) are in the same plane.
3. A variable cigarette transport device according to claim 2, wherein, The first end (8) of the L-shaped plate (7) has a plurality of grooves (11), and a fixed rod (12) is fixedly arranged at one end on the first transfer plate (2) and is inserted into the groove (11) at the other end, and after the fixed rod (12) is inserted into the groove (11), it is used to fix the first transfer plate (2) on the first end (8).
4. A variable cigarette transport device according to claim 1, wherein, It also includes a lifting assembly (13) arranged on the mount (1) for driving the supporting plate (5) to lift, and after the supporting plate (5) moves on the mount (1), it is used to abut against the first transfer plate (2) or the second transfer plate (3).
5. A variable cigarette transport device according to claim 4, wherein, The lifting assembly (13) includes a mounting rod (14) rotatably arranged on the mount (1), and the axis direction of the mounting rod (14) is arranged along the Y axis direction, and the mounting rod (14) is rotatably arranged with a fixed pulley (15) at both ends, and two pulling ropes (16) are wound around the fixed pulley (15), and the two ends of the pulling rope (16) are fixedly connected with the supporting plate (5) and a counterweight (17) respectively.
6. A variable cigarette transport device according to claim 5, wherein, The mounting frame (1) is provided with a guide rod (18) arranged along the Z-axis direction, the support plate (5) and the counterweight (17) are both provided with a guide sleeve (23), and the support plate (5) and the counterweight (17) are slidably arranged on the guide rod (18) through the guide sleeve (23).
7. A variable cigarette transport device according to claim 1, wherein, The bottom of the mounting frame (1) is provided with a set of directional wheels (19) and a set of steering wheels (20), and a push handle (21) is arranged on the mounting frame (1).
8. A variable cigarette transport device according to claim 1, wherein, The support plate (5) has a guide inclined surface (22), and the guide inclined surface (22) and the second transfer plate (3) are arranged in parallel.