Watercolor pen processing device with automatic feeding and discharging

CN224796651UActive Publication Date: 2026-09-25LISHUI HONGDU STATIONERY CO LTD
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Patent Information

Application Number
CN202521627013.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-01
Publication Date
2026-09-25
Estimated Expiration
2035-08-01

AI Technical Summary

Technical Problem

[0003]水彩笔在进行加工的时候,通常会加工多种颜色的水彩笔,每种颜色生产多个,然后通过人工从每种颜色的水彩笔中挑出一支,然后放置在传动带上进行输送,从而对水彩笔进行组合,该种组合方式效率较慢,增加生产时间,因此,本领域技术人员提供了一种带有自动上下料的水彩笔加工装置,以解决上述背景技术中提出的问题

Benefits of technology

1、本实用新型通过设置放置盒、传动带和隔板的配合使用,放置盒的数量与水彩笔的颜色数量一致,将同一种颜色的水彩笔放置在同一个放置盒的内腔,通过对传动辊进行旋转,从而对传动带进行传动,且每次传动的距离和两个隔板之间的距离一致,从而使得不同颜色的水彩笔位于两个隔板之间,实现快速对不同颜色水彩笔进行组合的效果。

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Abstract

The utility model relates to watercolor pen processing technical field, and disclose a kind of watercolor pen processing device with automatic feeding and discharging, including operation platform, the recess is opened in the top of operation platform, the inner chamber of recess is rotatably connected with transmission roller, the quantity of transmission roller is two, the surface of two transmission roller is commonly provided with transmission belt, and the top of operation platform is provided with placing box.This watercolor pen processing device with automatic feeding and discharging, by setting placing box, transmission belt and the cooperation use of baffle, the number of placing box is consistent with the color number of watercolor pen, watercolor pen of same color is placed in the inner chamber of same placing box, by rotating transmission roller, transmission belt is driven, and the distance of each transmission and the distance between two baffle are consistent, so that watercolor pen of different colors is located between two baffle, realize the effect of quickly combining watercolor pen of different colors.
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Description

Technical Field

[0001] This utility model relates to the field of watercolor pen processing technology, specifically a watercolor pen processing device with automatic loading and unloading. Background Technology

[0002] Watercolor pens are a type of painting tool that uses water as a dilution medium. Their core characteristics are vibrant colors and diverse brushstrokes, making them suitable for children's drawing, teaching demonstrations, and professional art creation.

[0003] When processing watercolor pens, multiple watercolor pens of various colors are usually produced, with multiple pens of each color manufactured. Then, one pen is manually selected from each color and placed on a conveyor belt for transport, thus assembling the watercolor pens. This assembly method is inefficient and increases production time. Therefore, those skilled in the art have provided a watercolor pen processing device with automatic loading and unloading to solve the problems mentioned in the background art. Utility Model Content

[0004] The purpose of this invention is to provide a watercolor pen processing device with automatic loading and unloading to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: A watercolor pen processing device with automatic loading and unloading includes an operating table. The top of the operating table has a groove, and the inner cavity of the groove is rotatably connected to two drive rollers. The surfaces of the two drive rollers are jointly provided with a drive belt. The top of the operating table is provided with several placement boxes. The surface of the drive belt is fixedly connected to several partitions. The side of the operating table is provided with an isolation mechanism that works in conjunction with the placement boxes.

[0006] As a further embodiment of this utility model: the isolation mechanism includes a support plate fixedly connected to one side of the operating table, two straight plates fixedly connected to the top of the operating table, a rotating rod rotatably connected between the opposite sides of the two straight plates, multiple sets of teeth fixedly connected to the surface of the rotating rod, each set of teeth having several teeth, the number of sets of teeth being the same as the number of placement boxes, and two toothed plates slidably connected to one side of the placement box, both of the toothed plates engaging with the teeth.

[0007] As a further embodiment of this utility model: a first motor is fixedly connected to one side of one of the straight plates, the output end of the first motor passes through the straight plate and is fixedly connected to one end of the rotating rod; a second motor is fixedly connected to one side of the operating table, the output end of the second motor passes through the operating table and is fixedly connected to one end of one of the transmission rollers.

[0008] As a further embodiment of this utility model: a fixed plate is fixedly connected to the top of the support plate, an electric telescopic rod is fixedly connected to one side of the fixed plate, and the telescopic end of the electric telescopic rod passes through the fixed plate and is fixedly connected to a push plate.

[0009] As a further embodiment of this utility model: a support platform is fixedly connected to one side of the operating table, a weighing platform is fixedly connected to the top of the support platform, a placement plate is placed on the top of the weighing platform, and a placement groove is provided on the top of the placement plate.

[0010] As a further embodiment of this utility model: the placement box includes a straight shell and an inclined shell, the straight shell and the inclined shell are connected, a connecting plate is fixedly connected to the bottom of the inclined shell, and one end of the connecting plate is fixedly connected to the top of the support plate.

[0011] As a further embodiment of this utility model: an elastic sheet is fixedly connected to the surface of the straight shell, and a compression rod that cooperates with the elastic sheet is fixedly connected to the surface of the rotating rod.

[0012] Compared with the prior art, the beneficial effects of this utility model are: 1. This utility model uses a combination of a placement box, a transmission belt, and partitions. The number of placement boxes is the same as the number of watercolor pen colors. Watercolor pens of the same color are placed in the inner cavity of the same placement box. By rotating the transmission roller, the transmission belt is driven. The distance of each transmission is the same as the distance between the two partitions, so that watercolor pens of different colors are located between the two partitions, achieving the effect of quickly combining watercolor pens of different colors.

[0013] 2. This utility model uses an isolation mechanism to rotate the rotating rod in the forward direction so that a watercolor pen is positioned between two toothed plates. Then, the rotating rod is rotated in the reverse direction so that the top toothed plate blocks the watercolor pen, while the watercolor pen positioned between the two toothed plates falls onto the transmission belt. This achieves the effect of feeding one watercolor pen with each forward and reverse rotation of the rotating rod. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of a watercolor pen processing device with automatic loading and unloading. Figure 2 This is a schematic diagram of a watercolor pen processing device with automatic loading and unloading, including a box, operating table, and transmission belt. Figure 3 In a watercolor pen processing device with automatic loading and unloading Figure 2 A magnified view of a section at point A in the middle; Figure 4 This is a schematic diagram of a watercolor pen processing device with automatic loading and unloading, which includes a box, a transmission belt, and a transmission roller. Figure 5 In a watercolor pen processing device with automatic loading and unloading Figure 4 A magnified view of a section at point B in the middle; Figure 6 This is a schematic diagram of the straight shell and the inclined shell in a watercolor pen processing device with automatic loading and unloading. Figure 7 In a watercolor pen processing device with automatic loading and unloading Figure 6 A magnified view of a section at point C; Figure 8 This is a cross-sectional schematic diagram of the transmission belt and transmission roller in a watercolor pen processing device with automatic loading and unloading. Figure 9 This is a cross-sectional schematic diagram of the straight shell and toothed plate in a watercolor pen processing device with automatic loading and unloading.

[0015] In the diagram: 1. Operating platform; 2. Isolation mechanism; 201. Support plate; 202. Straight plate; 203. Rotating rod; 204. Tooth; 205. Toothed plate; 3. Groove; 4. Transmission roller; 5. Transmission belt; 6. Placement box; 7. Partition plate; 8. First motor; 9. Second motor; 10. Fixing plate; 11. Electric telescopic rod; 12. Push plate; 13. Support platform; 14. Weighing platform; 15. Placement plate; 16. Placement slot; 17. Straight shell; 18. Inclined shell; 19. Connecting plate; 20. Elastic sheet; 21. Extrusion rod. Detailed Implementation

[0016] Please see Figure 1-9 A watercolor pen processing device with automatic loading and unloading includes an operating table 1. The top of the operating table 1 has a groove 3. The inner cavity of the groove 3 is rotatably connected to a transmission roller 4. There are two transmission rollers 4. The surfaces of the two transmission rollers 4 are jointly provided with a transmission belt 5. The top of the operating table 1 is provided with a placement box 6. There are several placement boxes 6. The surface of the transmission belt 5 is fixedly connected with a partition 7. There are several partitions 7. An isolation mechanism 2 is provided on one side of the operating table 1 to cooperate with the placement box 6.

[0017] Specifically, the isolation mechanism 2 includes a support plate 201 fixedly connected to one side of the operating table 1. Two straight plates 202 are fixedly connected to the top of the operating table 1. A rotating rod 203 is rotatably connected between the opposite sides of the two straight plates 202. Multiple sets of teeth 204 are fixedly connected to the surface of the rotating rod 203. The number of teeth 204 in each set is several. The number of sets of teeth 204 is the same as the number of placement boxes 6. Two toothed plates 205 are slidably connected to one side of the placement box 6. Both toothed plates 205 are engaged with the teeth 204.

[0018] Through the above technical solution, the number of placement boxes 6 is consistent with the number of watercolor pen colors. Watercolor pens of the same color are placed in the inner cavity of the same placement box 6. By rotating the transmission roller 4, the transmission belt 5 is driven, and the distance of each transmission is consistent with the distance between the two partitions 7. This allows watercolor pens of different colors to be located between the two partitions 7, achieving the effect of quickly combining watercolor pens of different colors. When feeding, the rotating rod 203 is rotated in the forward direction, so that a watercolor pen is located between the two toothed plates 205. Then, the rotating rod 203 is rotated in the reverse direction, so that the top toothed plate 205 blocks the watercolor pen, and the watercolor pen located between the two toothed plates 205 falls onto the transmission belt 5. This achieves the effect of feeding one watercolor pen for every one forward and reverse rotation of the rotating rod 203.

[0019] Specifically, a first motor 8 is fixedly connected to one side of one of the straight plates 202. The output end of the first motor 8 passes through the straight plate 202 and is fixedly connected to one end of the rotating rod 203. A second motor 9 is fixedly connected to one side of the operating table 1. The output end of the second motor 9 passes through the operating table 1 and is fixedly connected to one end of one of the transmission rollers 4.

[0020] Through the above technical solution, a first motor 8 is set to drive the rotating rod 203 to rotate in both directions, thereby realizing the reciprocating movement of the toothed plate 205. A second motor 9 is set to drive the transmission roller 4 to rotate, thereby realizing the transmission of the transmission belt 5.

[0021] Specifically, a fixed plate 10 is fixedly connected to the top of the support plate 201, and an electric telescopic rod 11 is fixedly connected to one side of the fixed plate 10. The telescopic end of the electric telescopic rod 11 passes through the fixed plate 10 and is fixedly connected to a push plate 12.

[0022] Through the above technical solution, by setting up a fixed plate 10, an electric telescopic rod 11 and a push plate 12 in cooperation, multiple watercolor pens of different colors are continuously fed, so that the push plate 12 is aligned with the two partitions 7. At this time, the feeding is stopped and the electric telescopic rod 11 is activated, so that the push plate 12 pushes the watercolor pens to one side of the operating table 1, thereby achieving the effect of feeding watercolor pens.

[0023] Specifically, a support platform 13 is fixedly connected to one side of the operating table 1, a weighing platform 14 is fixedly connected to the top of the support platform 13, a placement plate 15 is placed on the top of the weighing platform 14, and a placement groove 16 is opened on the top of the placement plate 15.

[0024] Through the above technical solution, by setting up a weighing platform 14, a placement plate 15 and a support platform 13 in cooperation, the push plate 12 pushes the watercolor pen. When the watercolor pen is pushed to one side of the operating table 1, the watercolor pen will fall into the inner cavity of the placement slot 16. Then, the weighing platform 14 weighs multiple watercolor pens. When the value remains unchanged, it is possible to quickly determine whether the number of watercolor pens is qualified.

[0025] Specifically, the placement box 6 includes a straight shell 17 and an inclined shell 18, which are connected. A connecting plate 19 is fixedly connected to the bottom of the inclined shell 18, and one end of the connecting plate 19 is fixedly connected to the top of the support plate 201.

[0026] Through the above technical solution, by setting the inclined shell 18 and the straight shell 17 to work together, when the user places the watercolor pen in the inclined shell 18, the inner bottom surface of the inclined shell 18 is inclined, so that the watercolor pen can enter the straight shell 17. The watercolor pens entering the straight shell 17 are arranged in a vertical row, which can better achieve the effect of feeding one watercolor pen for each forward and reverse rotation of the rotating rod 203.

[0027] Specifically, an elastic sheet 20 is fixedly connected to the surface of the straight shell 17, and a compression rod 21 that works in conjunction with the elastic sheet 20 is fixedly connected to the surface of the rotating rod 203.

[0028] Through the above technical solution, by setting the elastic sheet 20 and the squeezing rod 21 to work together, when the rotating rod 203 is rotated, the squeezing rod 21 will be driven to move in a ring, thereby causing the squeezing rod 21 to push the elastic sheet 20, which will cause the placement box 6 to vibrate slightly, thereby assisting the watercolor pen to enter the straight shell 17.

[0029] The working principle of this utility model is as follows: the number of placement boxes 6 is consistent with the number of watercolor pen colors. Watercolor pens of the same color are placed inside the same placement box 6. The transmission roller 4 rotates, thereby driving the transmission belt 5. The distance of each transmission is consistent with the distance between the two partitions 7, thus allowing different colored watercolor pens to be positioned between the two partitions 7, achieving a rapid combination of different colored watercolor pens. During feeding, the rotating rod 203 rotates forward, placing one watercolor pen between the two toothed plates 205. Then, the rotating rod 203 rotates in the reverse direction, causing the top toothed plate 205 to separate the watercolor pen. The watercolor pens located between the two toothed plates 205 fall onto the transmission belt 5, thus achieving the effect of feeding one watercolor pen for each forward and reverse rotation of the rotating rod 203. This continues to transport multiple watercolor pens of different colors, aligning the push plate 12 with the two partitions 7. At this point, the transport stops, and the electric telescopic rod 11 is activated, causing the push plate 12 to push the watercolor pens to one side of the operating table 1, thereby achieving the effect of feeding the watercolor pens. The watercolor pens will fall into the inner cavity of the placement slot 16, and then the weighing platform 14 will weigh the multiple watercolor pens. When the value remains unchanged, it is possible to quickly determine whether the quantity of watercolor pens is qualified.

[0030] The above are merely preferred embodiments of this utility model, but the scope of protection of this utility model is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this utility model, based on the technical solution and inventive concept of this utility model, should be included within the scope of protection of this utility model.

Claims

1. A watercolor pen processing device with automatic loading and unloading, comprising an operating table (1), characterized in that: The top of the operating table (1) is provided with a groove (3), and the inner cavity of the groove (3) is rotatably connected to a transmission roller (4). There are two transmission rollers (4), and the surfaces of the two transmission rollers (4) are jointly provided with a transmission belt (5). The top of the operating table (1) is provided with a placement box (6), and there are several placement boxes (6). The surface of the transmission belt (5) is fixedly connected with a partition (7), and there are several partitions (7). One side of the operating table (1) is provided with an isolation mechanism (2) that works in conjunction with the placement box (6).

2. The watercolor pen processing device with automatic loading and unloading as described in claim 1, characterized in that: The isolation mechanism (2) includes a support plate (201) fixedly connected to one side of the operating table (1). Two straight plates (202) are fixedly connected to the top of the operating table (1). A rotating rod (203) is rotatably connected between the opposite sides of the two straight plates (202). Multiple sets of teeth (204) are fixedly connected to the surface of the rotating rod (203). The number of teeth (204) in each set is several. The number of sets of teeth (204) is the same as the number of placement boxes (6). Two toothed plates (205) are slidably connected to one side of the placement box (6). Both toothed plates (205) are engaged with the teeth (204).

3. The watercolor pen processing device with automatic loading and unloading according to claim 2, characterized in that: A first motor (8) is fixedly connected to one side of one of the straight plates (202). The output end of the first motor (8) passes through the straight plate (202) and is fixedly connected to one end of the rotating rod (203). A second motor (9) is fixedly connected to one side of the operating table (1). The output end of the second motor (9) passes through the operating table (1) and is fixedly connected to one end of one of the transmission rollers (4).

4. A watercolor pen processing device with automatic loading and unloading according to claim 2, characterized in that: A fixed plate (10) is fixedly connected to the top of the support plate (201), and an electric telescopic rod (11) is fixedly connected to one side of the fixed plate (10). The telescopic end of the electric telescopic rod (11) passes through the fixed plate (10) and is fixedly connected to a push plate (12).

5. A watercolor pen processing device with automatic loading and unloading according to claim 1, characterized in that: A support platform (13) is fixedly connected to one side of the operating table (1), and a weighing platform (14) is fixedly connected to the top of the support platform (13). A placement plate (15) is placed on the top of the weighing platform (14), and a placement groove (16) is opened on the top of the placement plate (15).

6. A watercolor pen processing device with automatic loading and unloading according to claim 2, characterized in that: The placement box (6) includes a straight shell (17) and an inclined shell (18), which are connected. A connecting plate (19) is fixedly connected to the bottom of the inclined shell (18), and one end of the connecting plate (19) is fixedly connected to the top of the support plate (201).

7. A watercolor pen processing device with automatic loading and unloading according to claim 6, characterized in that: An elastic sheet (20) is fixedly connected to the surface of the straight shell (17), and a pressing rod (21) that cooperates with the elastic sheet (20) is fixedly connected to the surface of the rotating rod (203).