Printing roller conveying belt

By designing an inclined transport base plate and rolling element structure for the printing roller conveyor belt, the problem of low efficiency in short-distance printing roller transport was solved, achieving efficient, convenient, and low-cost printing roller transport, which meets the automation needs of small and medium-sized production lines.

CN223765272UActive Publication Date: 2026-01-06CHENGDU YUNCHENG PLATE MAKING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520341986.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-01-06
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

In the existing technology, the short-distance transportation of printing rollers between different devices during the printing roller processing is inefficient and labor-intensive. Furthermore, the initial investment cost of automated equipment is high, and the equipment occupies a large space, making it difficult to adapt to the needs of small and medium-sized production lines or complex process connections.

Method used

A printing roller conveyor belt was designed, including an inclined transport base plate and rolling elements. The rolling elements are distributed inclined inwards, and the printing roller slides to the lower end of the base plate by its own weight or light thrust, so as to achieve efficient and low-cost short-distance transmission.

Benefits of technology

It enables efficient, convenient, and low-cost short-distance transportation of printing rollers between different processes, reduces manual labor intensity, lowers equipment costs and space requirements, and meets the needs of small and medium-sized production lines.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223765272U_ABST
    Figure CN223765272U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of printing equipment, in particular to a plate roller conveying belt. The transportation bottom plate is arranged, the multiple sets of rolling pieces are arranged on the two sides of the transportation bottom plate at intervals, the rolling pieces are obliquely distributed towards the inner side of the transportation bottom plate by 45 degrees, and the whole transportation bottom plate is obliquely arranged; during use, the printing roller is placed on the rolling piece from the high end of the conveying bottom plate, the printing roller slides to the low end of the conveying bottom plate along the pulleys by means of the gravity of the printing roller or light pushing power to the printing roller, the whole process is excessive in power, repeated back-and-forth conveying is not needed, and efficient, low-cost and convenient short-distance conveying can be achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of printing equipment, specifically to a printing roller conveyor belt. Background Technology

[0002] The processing of printing roller semi-finished products involves multiple core processes such as curling, welding, and grinding. Furthermore, before and after surface treatment processes such as electroplating and spraying, the printing roller semi-finished products need to be frequently transferred between different equipment over short distances.

[0003] In existing technologies, transportation between fixed processes mainly relies on manual handling or auxiliary tools such as handcarts and electric vehicles. Manual handling requires complete human effort to load, unload, and transfer printing rollers, which is not only inefficient and labor-intensive but also poses safety hazards. While handcarts or electric vehicles can partially reduce labor consumption, they still require manual operation of the printing rollers for loading, unloading, and path control, making continuous operation difficult and severely restricting transportation efficiency. In addition, some factories use automated equipment such as conveyor belts for short-distance transportation, but these have drawbacks such as high initial investment costs, large equipment footprint, and insufficient flexibility, making them unsuitable for small and medium-sized production lines or complex process connections.

[0004] In summary, there is an urgent need for a printing roller conveyor belt that can efficiently, cost-effectively, and conveniently transport materials over short distances between different processes in the printing roller manufacturing process. Utility Model Content

[0005] To address the aforementioned problems, this utility model provides a printing roller conveyor belt that enables efficient, low-cost, and convenient short-distance transportation between different processes in the printing roller manufacturing process.

[0006] The technical solution of this utility model is: a printing roller conveyor belt, including a transport base plate, with rolling elements spaced apart on both sides of the transport base plate, the rolling elements being inclined towards the inside of the transport base plate, the transport base plate being inclined as a whole, and the high end of the transport base plate being the printing roller placement end, so that the printing roller slides along the rolling elements until it reaches the bottom end of the transport base plate to complete the transmission.

[0007] Preferably, the transport base plate is a rectangular transport plate, with angle steel fixed on both sides of its long side, and the angle steel is used to install the rolling element.

[0008] Preferably, the rolling element includes a support and a roller, the roller being rotatably connected to the support, the support being perpendicular to the angle steel and at a certain angle to the transport base plate.

[0009] Preferably, the support is set at a 45° angle to the transport base plate, and the rollers are distributed at a 45° angle toward the inside of the transport base plate.

[0010] Preferably, the rolling elements are spaced apart along both sides of the transport base plate, wherein the rolling elements on both sides of the transport base plate are staggered.

[0011] Preferably, the interval between adjacent rolling elements is 18cm to 22cm.

[0012] Preferably, the transport base plate is provided with three legs, the height of the three legs gradually decreasing, thereby forming a high end and a low end of the transport base plate.

[0013] Preferably, the tilt angle of the transport base plate is adjustable.

[0014] Preferably, the support leg is also provided with casters.

[0015] Preferably, a steel plate is vertically fixed to the lower end of the transport base plate, and a buffer pad is provided on the inner side of the steel plate.

[0016] The beneficial effects of this utility model are:

[0017] This application features a transport base plate with multiple sets of rolling elements spaced apart on both sides. The rolling elements are inclined inward at a 45° angle towards the inside of the transport base plate, and the entire transport base plate is inclined. In use, the printing roller is placed on the rolling elements from the high end of the transport base plate. The printing roller slides along the pulley to the low end of the transport base plate by its own weight or by a gentle push. The entire process requires no excessive power and does not require repeated back-and-forth transmission, enabling efficient, low-cost, and convenient short-distance transmission. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is the front view of this utility model.

[0020] Explanation of reference numerals in the attached figures:

[0021] 1-Transport base plate, 2-Rolling parts, 21-Manufacturing, 22-Roller, 3-Angle steel, 4-Support legs, 5-Wheel casters, 6-Steel plate, 61-Buffer pad. Detailed Implementation

[0022] The embodiments of this utility model will be further described below with reference to the accompanying drawings.

[0023] Example 1:

[0024] like Figures 1 to 2As shown, a printing roller conveyor belt includes a transport base plate 1. Rolling elements 2 are spaced apart on both sides of the transport base plate 1, and the rolling elements 2 are inclined inwards towards the transport base plate 1. The transport base plate 1 is inclined overall, with the high end of the transport base plate 1 serving as the printing roller placement end, allowing the printing roller to slide along the rolling elements 2 until it reaches the bottom of the transport base plate 1, completing the transport. The transport base plate 1 is a rectangular plate, with angle steel 3 fixed to both sides of its long side. The angle steel 3 is used to install the rolling elements 2. The width of the transport base plate 1 can be set to 40cm, and the length is set according to the actual length of the equipment in the process. Specifically, the specifications of the transport base plate 1 can be set according to the actual situation. The angle steel 3 can be fixed to both sides of the long side of the transport base plate 1 by welding or bolting. Figure 1 As shown, the angle steel 3 forms an equilateral right triangle on both sides of the transport base plate 1. The angle steel 3 enhances the edge deformation resistance of the transport base plate 1 and also facilitates the installation and maintenance of the rolling element 2.

[0025] Specifically, the rolling element 2 includes a support 21 and a roller 22. The roller 22 is rotatably connected to the support 21. The support 21 is perpendicular to the angle steel 3 and forms a certain angle with the transport base plate 1. The support 21 can be made of metal plate, with one end welded or bolted to the angle steel 3 and the other end rolledly connected to the roller 22, such as through a pin connection. The surface of the roller 22 is smooth or covered with a rubber layer. When the printing roller contacts the roller 22, the roller 22 rotates freely as the printing roller slides.

[0026] Specifically, the support 21 is set at a 45° angle to the transport base plate 1, and the rollers 22 are inclined inward at a 45° angle towards the transport base plate 1. The inclination angle is achieved by the angle of the support 21. The printing roller slides along the inclined surface of the rollers 22 and is limited by the rollers 22 on both sides to prevent derailment. The 45° inclination angle forms a V-shaped guide groove, which constrains the sliding trajectory of the printing roller, and the rollers 22 on both sides clamp the printing roller to prevent lateral displacement.

[0027] Specifically, the rolling elements 2 are spaced apart along both sides of the transport base plate 1, with the rolling elements 2 on both sides of the transport base plate 1 being staggered. The rolling elements 2 on the left and right sides are arranged alternately along the long side of the transport base plate 1 with a constant spacing, and the stagger distance can be set to 1 / 2 of the width of a single rolling element 2. When the printing roller slides, it alternately contacts the left and right rollers 22, forming continuous support; the staggered layout distributes the weight of the printing roller, reduces local pressure, and at the same time avoids the printing roller from contacting the gap between the two rollers 22 simultaneously, improving the smoothness of sliding.

[0028] Specifically, the interval between adjacent rolling elements 2 is 18cm to 22cm. When the rolling elements 2 are fixed to the angle steel 3 by bolts, the spacing is adjustable. The spacing adjustment can be achieved through the pre-reserved mounting holes in the angle steel 3. Preferably, the interval between the rolling elements 2 can be set to 20cm. Furthermore, in actual use, the spacing can be selected according to the length of the printing roller to ensure that each printing roller contacts at least 3 sets of rolling elements 2.

[0029] Specifically, the transport base plate 1 is provided with three support legs 4, the height of which gradually decreases, thus forming a high end and a low end of the transport base plate 1. The support legs 4 can be steel columns, which can be bolted to the transport base plate 1 via flanges. The length of each support leg 4 can be selected differently. Furthermore, the height of the support legs 4 can be adjusted by adjusting bolts or shims, thereby controlling the tilt angle, such as from 5° to 15°, to adapt to the sliding speed requirements of rollers of different weights, and also to facilitate disassembly and handling.

[0030] Furthermore, the tilt angle of the transport base plate 1 is adjustable. Alternatively, the support leg 4 can be configured as a telescopic structure, such as a sleeve design, where the inner and outer tubes are height-adjustable via a locking bolt passing through the positioning holes of the inner and outer tubes to fix the height. This allows the height of the support leg 4 to be adjustable. By loosening the locking bolt, manually adjusting the telescopic length of the support leg 4, and then locking it again, the tilt angle can be changed.

[0031] Specifically, the support leg 4 is also equipped with casters 5, which facilitates the movement of the entire equipment according to different processes.

[0032] Furthermore, a steel plate 6 is vertically fixed to the lower end of the transport base plate 1, and a buffer pad 61 is provided on the inner side of the steel plate 6. The height of the steel plate 6 can be set to 1.2 to 1.5 times the diameter of the printing roller, and it is fixed by welding. The buffer pad 61 is made of rubber or polyurethane and is fixed to the inner side of the steel plate 6 by adhesive or bolts. When the printing roller slides to the lower end, it impacts the buffer pad 61, absorbing the impact energy and protecting the surface of the printing roller. Furthermore, protective railings can also be provided on both sides of the transport base plate 1.

[0033] In use, this application first adjusts the slope of the transport base plate 1 according to the weight of the printing roller, and then places the printing roller on the rolling element 2 from the high end. The rollers 22 on both sides clamp and guide it. The printing roller slides along the inclined rollers 22 under its own weight or slight thrust. The staggered layout ensures continuous support. When the printing roller slides to the low end, it hits the buffer pad 61 and stops smoothly for subsequent operations. After completion, the printing roller is moved from the low end to the next process or stored in a collection trough. Then, the brakes of the universal wheels 5 can be unlocked, and the conveyor belt can be pushed to the new work station and re-fixed. The whole process does not require much power and does not require repeated back-and-forth transmission, which can achieve efficient, low-cost, and convenient short-distance transmission. Through adjustable parameters (spacing, slope, height), it can be compatible with various printing roller specifications.

[0034] The embodiments described above merely illustrate specific implementations of this utility model, and while the descriptions are detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these modifications and improvements all fall within the protection scope of this utility model.

Claims

1. A plate roller conveyor belt comprising a transport base plate (1), characterized in that, The transportation bottom plate (1) is provided with rolling members (2) on both sides, which are inclinedly distributed to the inner side of the transportation bottom plate (1), the transportation bottom plate (1) is inclinedly arranged as a whole, the high end of the transportation bottom plate (1) is the plate roller placing end, and the low end is the transmission terminal, the plate roller slides along the rolling members (2) until the transmission is completed at the bottom end of the transportation bottom plate (1).

2. A blanket roll transfer belt according to claim 1, wherein, The transportation bottom plate (1) is a rectangular plate, and angle steels (3) are fixedly arranged on both sides of the long side of the transportation bottom plate (1), and the angle steels (3) are used for mounting the rolling members (2).

3. A blanket roll transfer belt according to claim 2, wherein, The rolling member (2) comprises a support (21) and a roller (22), the roller (22) is rotatably connected with the support (21), and the support (21) is arranged perpendicularly to the angle steel (3) and at a certain angle to the transportation bottom plate (1).

4. A blanket roll transfer belt according to claim 3, wherein, The support (21) is arranged at an angle of 45° between the support (21) and the transportation bottom plate (1), and the roller (22) is inclinedly distributed to the inner side of the transportation bottom plate (1) at an angle of 45°.

5. A blanket roll transfer belt according to claim 4, wherein, The rolling members (2) are arranged at intervals along both sides of the transportation bottom plate (1), wherein the rolling members (2) on both sides of the transportation bottom plate (1) are arranged in a staggered manner.

6. A blanket roll transfer belt according to claim 5, wherein, The interval between adjacent rolling members (2) is 18cm-22cm.

7. A blanket roll transfer belt according to claim 6, wherein, The transportation bottom plate (1) is provided with three supporting legs (4), the heights of the three supporting legs (4) gradually decrease, so as to form the high end of the transportation bottom plate (1) and the low end of the transportation bottom plate (1).

8. A blanket roll transfer belt according to claim 7, wherein, The inclination angle of the transportation bottom plate (1) is adjustable.

9. A blanket roll according to claim 8, wherein, Universal wheels (5) are further arranged on the supporting legs (4).

10. A blanket roll according to claim 9, wherein, A steel plate (6) is vertically fixed to the low end of the transportation bottom plate (1), and a buffer pad (61) is arranged on the inner side of the steel plate (6).