Novel plating line crane communication positioning device
By using optical communication components and laser rangefinder components on electroplating wire cranes, combined with fast fixing components, the problem of corrosion safety hazards of easy short circuit in signal links and RFID card-type induction positioning is solved, and high stability and controllable signal transmission and positioning measurement are achieved.
Patent Information
- Application Number
- CN202421833347.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-07-31
AI Technical Summary
The signal links of existing electroplating wire cranes are prone to short circuits, and the RFID card-type induction positioning method has a potential for corrosion safety.
Optical communication components and laser rangefinder components are used to install them on crane components and track support frames through rapid fixing components to realize signal transmission and positioning measurement.
It solves the problem of easy short-circuiting of signal links, improves the stability of signal transmission and controllability of positioning, and improves installation efficiency through rapid disassembly and assembly and height fine-tuning.
Smart Images

Figure CN222907376U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of electroplating line cranes, in particular to a novel communication and positioning device for electroplating line cranes. Background Art
[0002] Electroplating is the process of plating a thin layer of other metals or alloys on the surface of certain stainless steel workpieces by using the electrolysis principle. It is a process of using electrolysis to attach a metal film to the surface of metal or other material workpieces, so as to prevent metal oxidation (such as rust), improve wear resistance, electrical conductivity, reflectivity, corrosion resistance (such as copper sulfate), and enhance beauty. The outer layer of many coins is also electroplated.
[0003] When electroplating large workpieces such as stainless steel workpieces, a crane is often needed to lift the workpieces. The existing crane uses flat wires for signal connection. After a long time, the circuit will short-circuit, causing mechanical failures. The positioning method uses RFID card-type induction, which requires pulling induction wires. The cards are prone to corrosion when used on electroplating lines, posing a safety hazard. Content of the Utility Model
[0004] The purpose of the utility model is to provide a novel communication and positioning device for electroplating line cranes in order to overcome the deficiencies of the prior art.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is: a novel communication and positioning device for electroplating line cranes, including a track support frame, a crane assembly slidably arranged on the track support frame, an optical communication component arranged on the top of the crane assembly for receiving control signals, and a laser rangefinder component arranged on the side of the track support frame facing the crane assembly for ranging and positioning the crane assembly; both the optical communication component and the laser rangefinder component are installed on the crane assembly and the track support frame through quick-fixing components that can adapt to different sizes and can be finely adjusted in height.
[0006] Preferably, each of the two groups of quick-fixing components includes two support columns with one end respectively arranged on the crane assembly or the track support frame and parallel to each other, two rotating heads respectively rotatably arranged on the other ends of the two support columns, two limiting blocks respectively arranged on both sides of the two rotating heads, a limiting plate sleeved on the two support columns at both ends, two avoidance grooves corresponding to both sides of the insertion holes at both ends of the limiting plate for avoiding the two limiting blocks, two limiting grooves arranged on the other two sides of the insertion holes at both ends of the limiting plate for the two limiting blocks to be inserted after rotation, an opening arranged in the middle of the limiting plate, a support rod horizontally arranged in the opening, a handle rotatably arranged on the support rod, and a cam arranged on the end of the handle away from the two rotating heads.
[0007] Preferably, the optical communication component includes a first connecting member in an L shape arranged on the top of the crane component, two long strip holes vertically arranged on the vertical end of the first connecting member for two support columns to pass through, and an optical communication coupler arranged on the horizontal end of the first connecting member.
[0008] Preferably, the laser rangefinder component includes a second connecting member in an L shape also with two long strip holes arranged on the track support frame, a laser measurement sensor arranged on the horizontal end of the second connecting member, and a reflecting plate arranged on the top of the side of the crane component facing the track support frame for reflecting the signal of the laser measurement sensor.
[0009] Preferably, the four support columns are rectangular and have a square cross-section.
[0010] Due to the application of the above technical solutions, the utility model has the following advantages compared with the prior art:
[0011] The utility model solves the problem of wire routing by setting the optical communication component, and has the characteristics of high coupling efficiency, low insertion loss and high stability. By setting the laser rangefinder component, the speed and critical state can be calculated and monitored at any time. The red laser is convenient for alignment and real-time position measurement, increasing the controllability of positioning. And through the quick fixing component, not only can the laser rangefinder component and the optical communication component be quickly disassembled and assembled, but also the height can be finely adjusted, improving the installation efficiency. Brief Description of the Drawings
[0012] The technical solution of the utility model will be further described below with reference to the drawings:
[0013] Attached Figure 1 is a schematic side structure view of the novel electroplating line crane communication positioning device described in the utility model;
[0014] Attached Figure 2 is a schematic partial enlarged structure view at A of the novel electroplating line crane communication positioning device described in the utility model Figure 1 ;
[0015] Attached Figure 3 is a schematic partial enlarged structure view at B of the novel electroplating line crane communication positioning device described in the utility model Figure 1 ;
[0016] Attached Figure 4 is a schematic front structure view of the crane component of the novel electroplating line crane communication positioning device described in the utility model;
[0017] Attached Figure 5 is a schematic front structure view of the quick fixing component of the novel electroplating line crane communication positioning device described in the utility model;
[0018] Attached Figure 6Schematic diagram of partial side sectional view of the quick-fixing component of the novel electroplating line crane communication positioning device described in the present utility model;
[0019] Appendix Figure 7 Schematic diagram of the side structure of the support column of the novel electroplating line crane communication positioning device described in the present utility model.
[0020] Wherein: 1. Crane component; 2. Optical communication component; 21. First connecting piece; 22. Long strip hole; 23. Optical communication coupler; 3. Laser rangefinder component; 31. Second connecting piece; 32. Laser measurement sensor; 33. Reflector; 4. Quick-fixing component; 41. Support column; 42. Rotating head; 43. Limiting block; 44. Limiting plate; 45. Limiting groove; 46. Avoidance groove; 47. Support rod; 48. Handle; 49. Cam. Specific embodiments
[0021] The present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0022] Appendix Figure 1-7The novel electroplating line crane communication and positioning device described in the present utility model includes a track support frame, a crane assembly 1 slidably arranged on the track support frame, an optical communication component 2 arranged on the top of the crane assembly 1 for receiving control signals, and a laser rangefinder component 3 arranged on the side of the track support frame facing the crane assembly 1 for ranging and positioning the crane assembly 1; both the optical communication component 2 and the laser rangefinder component 3 are installed on the crane assembly 1 and the track support frame through quick-fixing components 4 that can adapt to different sizes and have fine height adjustment; each of the two quick-fixing components 4 includes two support columns 41 with one end respectively arranged on the crane assembly 1 or the track support frame and parallel to each other, two rotating heads 42 respectively rotatably arranged on the other ends of the two support columns 41, two limiting blocks 43 respectively arranged on both sides of the two rotating heads 42, a limiting plate 44 sleeved on the two support columns 41 at both ends, two avoidance grooves corresponding to both sides of the insertion holes at both ends of the limiting plate 44 for avoiding the two limiting blocks 43, two limiting grooves 46 arranged on the other two sides of the insertion holes at both ends of the limiting plate 44 for the two limiting blocks 43 to be inserted after rotation, an opening arranged in the middle of the limiting plate 44, a support rod 47 horizontally arranged in the opening, a handle 48 rotatably arranged on the support rod 47, and a cam 49 arranged on the end of the handle 48 away from the two rotating heads 42; the optical communication component 2 includes a first connecting piece 21 in an L shape arranged on the top of the crane assembly 1, two long strip holes 22 vertically arranged on the vertical end of the first connecting piece 21 for the two support columns 41 to pass through, and an optical communication coupler 23 arranged on the horizontal end of the first connecting piece 21; the laser rangefinder component 3 includes a second connecting piece 31 in an L shape arranged on the track support frame and also having two long strip holes 22, a laser measurement sensor 32 arranged on the horizontal end of the second connecting piece 31, and a reflecting plate 33 arranged on the top of the side of the crane assembly 1 facing the track support frame for reflecting the signal of the laser measurement sensor 32.
[0023] Furthermore, the four support columns 41 are rectangular and have a square cross-section to prevent the first connecting piece 21 and the second connecting piece 31 from flipping.
[0024] During use: First, install the first connecting piece 21 and the second connecting piece 31 equipped with the laser measurement sensor 32 and the optical communication coupler 23 on the top of the crane assembly 1 and the track support frame respectively, so that the four support columns 41 respectively pass through the long strip holes 22 of the first connecting piece 21 and the second connecting piece 31, then the first connecting piece 21 and the second connecting piece 31 can be lifted or lowered for fine height adjustment, and then the limiting plate 44 is sleeved on the two support columns 41. At this time, the limiting blocks 43 on both sides of the rotating head 42 correspond to the avoidance grooves on the limiting plate 44. When the rotating head 42 passes through the limiting plate 44, rotate the rotating head 42 to make the limiting blocks 43 correspond to the limiting grooves 46 on the limiting plate 44.
[0025] Then press down the handle 48. Immediately, the handle 48 drives the cam 49 to squeeze the first connecting member 21 and the second connecting member 31. As a result, the limiting plate 44 also receives a pushing force and moves towards the rotating head 42. Immediately, the limiting block 43 on the rotating head 42 inserts into the limiting groove 46 of the limiting plate 44 to limit the limiting plate 44. Since the limiting plate 44 is limited, the cam 49 locks the first connecting member 21 and the second connecting member 31, thus achieving quick fixation. Subsequently, the lifting component 1 is used for electroplating work. Since the lifting component 1 is a prior art and will not be described in detail.
[0026] The above are only specific application examples of the present invention, which do not constitute any limitation to the protection scope of the present invention. Any technical solutions formed by equivalent transformation or equivalent substitution fall within the scope of the rights protection of the present invention.
Claims
1. A new type of electroplating line crane communication positioning device, characterized by: It comprises a track support frame, a crane assembly slidably arranged on the track support frame, an optical communication assembly arranged on the top of the crane assembly for receiving control signals, and a laser rangefinder assembly arranged on a side of the track support frame facing the crane assembly for measuring the distance and positioning the crane assembly; the optical communication assembly and the laser rangefinder assembly are both installed on the crane assembly and the track support frame through a quick fixing assembly that can adapt to different sizes and can be fine-tuned in height.
2. The new type of electroplating line crane communication positioning device according to claim 1 is characterized by: The two groups of quick fixing components each include two supporting columns one end of which is respectively arranged on the crane component or the track support frame and is parallel to each other, two rotating heads respectively rotatably arranged on the other ends of the two supporting columns, two limit blocks respectively arranged on both sides of the two rotating heads, limit plates at both ends sleeved on the two supporting columns, two avoidance grooves correspondingly arranged on both sides of the two end holes of the limit plate for avoiding the two limit blocks, two limit grooves arranged on the other sides of the two end holes of the limit plate for inserting the two limit blocks after rotation, an opening arranged in the middle of the limit plate, a support rod horizontally arranged in the opening, a handle rotatably arranged on the support rod, and a cam arranged on the end of the handle away from the two rotating heads.
3. The new type of electroplating line crane communication positioning device according to claim 1 is characterized by: The optical communication component comprises an L-shaped first connecting member arranged on the top of the crane component and an optical communication coupler arranged on the horizontal end of the first connecting member.
4. The new type of electroplating line crane communication positioning device according to claim 1 is characterized by: The laser rangefinder assembly includes a second connecting piece arranged on the track support frame and also having two long L-shaped holes, a laser measurement sensor arranged on the horizontal end of the second connecting piece, and a reflection plate arranged on the top of the crane assembly facing the track support frame for reflecting the laser measurement sensor signal.
5. The new type of electroplating line crane communication positioning device according to claim 2 is characterized by: The four support columns are rectangular and have regular cross-sections.