Line drawing tool for distinguishing silicon steel sheet types

By installing a marking tool on the slitting equipment and using a pigment tank and marking cotton rope to draw lines on the surface of the silicon steel sheet, the problem of difficulty in distinguishing between ordinary and high-efficiency silicon steel sheets is solved, and efficient and accurate differentiation of silicon steel sheet types is achieved.

CN223406969UActive Publication Date: 2025-10-03ANHUI WANNAN ELECTRIC CO LTD
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Patent Information

Application Number
CN202422566625.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-10-03
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

In the prior art, it is difficult to distinguish between ordinary and high-efficiency silicon steel sheets after removing the packaging, which makes subsequent processes cumbersome and easy to forget, and they cannot be distinguished by appearance.

Method used

A marking tool for distinguishing the types of silicon steel sheets is designed. It is installed above the slitting equipment and includes a fixing frame, a pigment chamber and a marking cotton rope. The marking cotton rope in the pigment chamber is used to draw lines on the surface of the silicon steel sheet. The position of the pigment chamber is adjusted with an adjustment mechanism to distinguish the types of silicon steel sheets.

Benefits of technology

It achieves efficient differentiation between ordinary and high-efficiency silicon steel sheets on the surface of silicon steel sheets, simplifies the differentiation process, and reduces the risk of omissions in manual operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a line drawing tool for distinguishing types of silicon steel sheets, which is mounted on one side of slitting equipment and above the silicon steel sheets, and comprises a fixing frame, a pigment bin and a line drawing cotton rope, the fixing frame is mounted on the slitting equipment, the pigment bin is connected with the fixing frame, pigment is stored in the pigment bin, and the line drawing cotton rope is connected with the fixing frame. One end of the line drawing cotton rope is inserted into the pigment bin and immersed in the pigment, and the other end of the line drawing cotton rope freely falls on the surface of the silicon steel sheet. According to the utility model, the vertical end of the line drawing cotton rope is provided with the pigment, so that when the silicon steel sheet slides, the line drawing cotton rope and the silicon steel sheet do relative motion, the pigment on the vertical end can be used for drawing lines on the surface of the silicon steel sheet, and the common silicon steel sheet and the high-efficiency silicon steel sheet can be identified.
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Description

Technical Field

[0001] The utility model belongs to the technical field of silicon steel sheets, and in particular relates to a line drawing tool for distinguishing types of silicon steel sheets. Background Art

[0002] As the silicon steel sheet industry has developed, customers have increasingly demanded higher performance from silicon steel sheets, resulting in an increasing use of high-efficiency silicon steel sheets. Currently, mainstream ordinary silicon steel sheets and high-efficiency silicon steel sheets are visually indistinguishable, except for the brand names clearly marked on the packaging upon arrival to distinguish between ordinary and high-efficiency. Therefore, after removing the packaging from the entire roll of silicon steel sheet, subsequent processes require labeling of the separated silicon steel sheets, a cumbersome process that is easily forgotten by manual operators. The present invention addresses this problem. Utility Model Content

[0003] The present invention aims to solve the problems in the prior art and provides a marking tool for distinguishing the types of silicon steel sheets. The specific technical solution is as follows:

[0004] A marking tool for distinguishing the types of silicon steel sheets is installed on one side of a slitting device and placed above the silicon steel sheet. The tool includes a fixing frame, a pigment bin, and a marking cotton rope. The fixing frame is installed on the slitting device, the pigment bin is connected to the fixing frame, and the pigment bin stores pigment. One end of the marking cotton rope is inserted into the pigment bin and immersed in the pigment, and the other end of the marking cotton rope hangs freely on the surface of the silicon steel sheet.

[0005] As a further technical solution of the present invention, the paint bins and the line drawing cotton ropes are provided in several groups, and the paint bins of the several groups are equidistantly distributed along the track of the fixed frame, and the paint bins and the line drawing cotton ropes correspond to each other one by one.

[0006] As a further technical solution of the present invention, the fixed frame is connected to the paint bin through an adjustment mechanism, and the adjustment mechanism includes a slide opened along its track in the fixed frame, a rack is laid on the step wall of the slide, a connecting rod is inserted into the slide, and the inserted end of the connecting rod is connected to the gear, the gear engages the rack, and the other end of the connecting rod is connected to the paint bin.

[0007] As a further technical solution of the present invention, the top wall of the slide is connected to a sleeve, and the insertion end of the connecting rod extends into the sleeve to form a telescopic structure.

[0008] As a further technical solution of the present invention, a spring is provided between the sleeve and the gear, and the spring is in a compressed state and forces the gear to be mounted on the step surface of the slideway.

[0009] As a further technical solution of the present invention, the sleeve is slidably connected to the slideway through a dovetail groove and a dovetail block, wherein the dovetail groove is opened along the slideway track, and the dovetail block is slidably connected between the sleeve and the dovetail block.

[0010] As a further technical solution of the present invention, the cross section of the connecting rod is a rectangular structure.

[0011] The beneficial effects of the utility model are as follows:

[0012] (1) In the present application, the hanging end of the line drawing cotton rope is provided with pigment. Therefore, when the silicon steel sheet slides, the line drawing cotton rope and the silicon steel sheet move relative to each other and the pigment on the hanging end can be used to draw lines on the surface of the silicon steel sheet, which is helpful for distinguishing between ordinary silicon steel sheets and high-efficiency silicon steel sheets.

[0013] (2) In the present application, the fixing frame and the pigment bin are connected by an adjustment mechanism, which can drive the pigment bin to move so as to adjust the distance between two adjacent pigment bins, thereby improving the applicability of the device. After the adjustment is completed, the relative position of the fixing frame and the pigment bin can be locked by using a rack and a gear. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 The figure shows the overall structure of a marking tool for distinguishing types of silicon steel sheets;

[0015] Figure 2 shows a schematic structural diagram of the adjustment mechanism;

[0016] Figure 3 Shown Figure 2 A in the figure shows the enlarged structural diagram;

[0017] Figure 4 A schematic diagram of the cross-sectional structure of the connecting rod is shown.

[0018] Legend:

[0019] 100. Slitting equipment; 210. Fixed frame; 220. Paint bin; 230. Cotton rope for drawing lines; 300. Adjusting mechanism; 310. Slideway; 320. Rack; 330. Connecting rod; 340. Gear; 350. Sleeve; 360. Spring; 370. Dovetail groove; 380. Dovetail block. DETAILED DESCRIPTION

[0020] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.

[0021] Figure 1 The figure shows the overall structure of a marking tool for distinguishing types of silicon steel sheets; Figure 1In the invention, a marking tool for distinguishing the types of silicon steel sheets is installed on one side of a slitting device 100 and placed above the silicon steel sheet, comprising a fixing frame 210, a pigment bin 220 and a marking cotton rope 230. The fixing frame 210 is installed on the slitting device 100, and the pigment bin 220 is connected to the fixing frame 210. The pigment bin 220 stores pigment, one end of the marking cotton rope 230 is inserted into the pigment bin 220 and immersed in the pigment, and the other end of the marking cotton rope 230 is freely hanging on the surface of the silicon steel sheet. In actual use, since the marking tool is set above the silicon steel sheet, the marking cotton rope 230 will naturally hang on the surface of the silicon steel sheet due to the interference of gravity, and the pigment will be drawn along the marking line. The trajectory of the cotton rope 230 gradually dyes it, so that the hanging end of the line-drawing cotton rope 230 has pigment. Therefore, when the silicon steel sheet slides, the line-drawing cotton rope 230 and the silicon steel sheet move relative to each other and can use the pigment on the hanging end to draw lines on the surface of the silicon steel sheet, which is conducive to identifying ordinary silicon steel sheets and high-efficiency silicon steel sheets; the pigment bins 220 and the line-drawing cotton ropes 230 are both provided in several groups, and the several groups of pigment bins 220 are equidistantly distributed along the trajectory of the fixed frame 210, and the pigment bins 220 and the line-drawing cotton ropes 230 correspond one to one; that is, along the trajectory of the fixed frame 210, a pigment bin 220 and a line-drawing cotton rope 230 are a group, arranged at equal intervals, which is conducive to dealing with batches of silicon steel sheets.

[0022] Figure 2 shows a schematic structural diagram of the adjustment mechanism 300; Figure 3 Shown Figure 2 A in the figure shows the enlarged structural diagram; Figure 2 and Figure 3In the embodiment, the fixing frame 210 is connected to the paint bin 220 through the adjusting mechanism 300. The adjusting mechanism 300 includes a slideway 310 provided along the track of the fixing frame 210. A rack 320 is provided on the step wall of the slideway 310. A connecting rod 330 is inserted into the slideway 310. The inserted end of the connecting rod 330 is connected to a gear 340. The gear 340 engages with the rack 320. The other end of the connecting rod 330 is connected to the paint bin 220. Under the influence of gravity, the paint bin 220 and the connecting rod 330 are pulled. The guide gear 340 falls and is carried on the step surface of the slide 310. At this time, the gear 340 and the rack 320 are engaged, and the relative position between the paint bin 220 and the fixed frame 210 is locked; it is only necessary to lift the paint bin 220 to make the gear 340 float and leave the step surface of the fixed frame 210. At this time, relative movement is allowed between the paint bin 220 and the fixed frame 210, and the paint bin 220 can be driven to move so as to adjust the distance between two adjacent paint bins 220, thereby improving the applicability of the device; the slide 310 The top wall of the slide 310 is connected to a sleeve 350, and the insertion end of the connecting rod 330 extends into the sleeve 350 to form a telescopic structure; that is, the sleeve 350 is used to limit the lifting trajectory of the connecting rod 330 to prevent the connecting rod 330 from deviating and causing jamming when moving up and down; a spring 360 is provided between the sleeve 350 and the gear 340, and the spring 360 is in a compressed state and forces the gear 340 to be mounted on the step surface of the slide 310; on the basis of gravity, the elastic force of the spring 360 is used to push the gear 340 toward the slide 310 340 applies a pressure to increase the stability of the gear 340 mounted on the step surface of the slide 310 under normal conditions; the sleeve 350 is slidingly connected to the slide 310 through the dovetail groove 370 and the dovetail block 380, wherein the dovetail groove 370 is opened along the track of the slide 310, and the dovetail block 380 is slidingly connected between the sleeve 350 and the dovetail block 380; the dovetail groove 370 and the dovetail block 380 can be used to make the sleeve 350 slidably set in the slide 310, thereby achieving adjustment together with the connecting rod 330 by translation.

[0023] Figure 4 shows a schematic cross-sectional structural diagram of the connecting rod 330; Figure 4 In the figure, the cross section of the connecting rod 330 is a rectangular structure, which is to prevent the connecting rod 330 from rotating during the translation process.

[0024] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same.

Claims

1. A marking tool for distinguishing types of silicon steel sheets, installed on one side of a slitting device (100) and placed above the silicon steel sheets, characterized in that: The invention comprises a fixing frame (210), a pigment bin (220) and a line drawing cotton rope (230), wherein the fixing frame (210) is installed on a slitting device (100), the pigment bin (220) is connected to the fixing frame (210), pigment is stored in the pigment bin (220), one end of the line drawing cotton rope (230) is inserted into the pigment bin (220) and immersed in the pigment, and the other end of the line drawing cotton rope (230) is freely hanging on the surface of the silicon steel sheet.

2. The marking tool for distinguishing types of silicon steel sheets according to claim 1, characterized in that: The pigment bins (220) and the line drawing cotton ropes (230) are both provided in a plurality of groups, and the pigment bins (220) of the plurality of groups are evenly distributed along the track of the fixing frame (210), and the pigment bins (220) and the line drawing cotton ropes (230) correspond to each other one by one.

3. A marking tool for distinguishing types of silicon steel sheets according to claim 2, characterized in that: The fixing frame (210) is connected to the pigment bin (220) via an adjusting mechanism (300). The adjusting mechanism (300) comprises a slideway (310) provided along a track of the fixing frame (210). A rack (320) is provided on a step wall of the slideway (310). A connecting rod (330) is inserted into the slideway (310). The insertion end of the connecting rod (330) is connected to a gear (340). The gear (340) engages with the rack (320). The other end of the connecting rod (330) is connected to the pigment bin (220).

4. The marking tool for distinguishing types of silicon steel sheets according to claim 3, characterized in that: The top wall of the slideway (310) is connected to a sleeve (350), and the insertion end of the connecting rod (330) extends into the sleeve (350) to form a telescopic structure.

5. The marking tool for distinguishing types of silicon steel sheets according to claim 4, characterized in that: A spring (360) is provided between the sleeve (350) and the gear (340), and the spring (360) is in a compressed state and forces the gear (340) to be mounted on the step surface of the slideway (310).

6. The marking tool for distinguishing types of silicon steel sheets according to claim 5, characterized in that: The sleeve (350) is slidably connected to the slideway (310) through a dovetail groove (370) and a dovetail block (380), wherein the dovetail groove (370) is opened along the track of the slideway (310), and the dovetail block (380) is slidably connected between the sleeve (350) and the dovetail block (380).

7. The marking tool for distinguishing types of silicon steel sheets according to claim 6, characterized in that: The cross section of the connecting rod (330) is a rectangular structure.