Device for detecting trace ions in brine and industrial salt
By setting a take-up box and a rotating shaft to drive the winding roller on the top of the detector body, combined with a cleaning mechanism, the problems of inconvenient wire harness storage and stains are solved, realizing convenient storage and cleaning of wire harnesses and improving the durability of the equipment.
Patent Information
- Application Number
- CN202422996843.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-05
AI Technical Summary
In existing technologies, the wire harness needs to be coiled sequentially in the take-up slot for storage, which is inconvenient, and the surface of the wire harness is prone to getting dirty, which can cause the outer sheath to oxidize and potentially break.
A device for detecting trace ions in brine and industrial salt was designed. It uses a rotating shaft in the take-up box at the top of the detector to drive the winding roller. Combined with a cleaning mechanism, the wire harness is collected by rotating the winding roller, and the surface of the wire harness is cleaned by a sponge during the take-up and unwinding process.
It enables convenient storage and cleaning of wire harnesses, avoids oxidation and breakage of the wire harness sheath, and improves ease of use and equipment durability.
Smart Images

Figure CN223770164U_ABST
Abstract
Description
Technical Field
[0001] This solution belongs to the field of detection devices and equipment, specifically involving a device for detecting trace ions in brine and industrial salt. Background Technology
[0002] In the production process of industrial salt, it is necessary to detect trace ions in the industrial salt, which requires the use of trace ion detection devices.
[0003] A search revealed a utility model patent with authorization announcement number CN210401392U, which discloses a device for detecting trace ions in brine and industrial salt. The device includes a handheld rod, a detector, a connecting line, a detection head, and a take-up assembly. The detector is mounted on the top of the handheld rod, and the top of the detector is connected to the detection head via a connecting line. The take-up assembly is mounted on the top of the detector. This utility model is scientifically sound and reasonable. It utilizes a take-up slot to wind and store the connecting line, and uses a fixing cover to fix the wound and stored connecting line.
[0004] In existing technologies, the wire harness needs to be coiled sequentially in the take-up slot for storage, which is inconvenient. Moreover, the surface of the wire harness is prone to getting dirty, and if it is not cleaned in time, the outer sheath of the wire harness will oxidize and break easily. Utility Model Content
[0005] The purpose of this solution is to provide a device for detecting trace ions in brine and industrial salt, which solves the problem that in the existing technology, the wire harness needs to be coiled sequentially in the take-up slot for storage, which is not convenient. At the same time, it also solves the problem that the surface of the wire harness is easily contaminated with stains, and if not cleaned in time, the outer sheath of the wire harness will easily oxidize and break.
[0006] To achieve the above objectives, this solution provides a trace ion detection device for brine and industrial salt, comprising a detector body, a wire harness extending from the top of the detector body, a detection head at the end of the wire harness, a take-up box fixedly connected to the top of the detector body, the wire harness passing through the take-up box and slidably connected to the take-up box, a rotating shaft mounted on the top of the take-up box via a bearing, a winding roller fixedly connected to the lower end of the rotating shaft, the wire harness wound around the outside of the winding roller, a cleaning mechanism provided on the inner side of the take-up box, a sliding column slidably connected to the top of the take-up box, a washer fixedly connected to the lower end of the sliding column, the washer slidably connected to the outside of the rotating shaft, a pressure ring fixedly connected to the top of the sliding column, and located outside the rotating shaft along with the pressure ring, a limiting disc fixedly connected to the shaft body of the rotating shaft, a limiting pin fixedly connected to the washer, and the limiting pin being inserted into the limiting disc.
[0007] The principle of this solution is as follows: In use, the sliding column is first pushed downward by the pressure ring, and the pad ring at the bottom of the sliding column moves downward simultaneously. Then, the limiting pin on the pad ring separates from the limiting disc on the rotating shaft, thereby releasing the restriction on the rotating shaft. Then, the rotating shaft is rotated by the knob, and the rotating shaft drives the winding roller to rotate. With the cooperation of the stop bar, the wire harness can be wound up. Compared with the existing technology, which requires winding in sequence, this is more convenient. Moreover, during the downward movement of the pad ring, the connecting frame moves down with the pad ring and squeezes the sponge block through the hollow plate, releasing the cleaning agent stored in the sponge block, thereby cleaning the surface of the wire harness during the winding and unwinding process.
[0008] The technical advantage of this solution is that by setting a take-up box on the top of the detector body, the wire harness passes through the take-up box, and then setting a winding roller that rotates through a rotating shaft inside the take-up box, with a stop bar on the winding roller, the wire harness can be wound up and stored by rotating the winding roller, which is more convenient than the existing technology that requires winding in sequence.
[0009] By setting a cleaning mechanism inside the take-up box, the wire harness passes through a hollow sleeve before exiting the take-up box. As the pressure ring pushes the pad ring down through the sliding pin, the connecting bracket moves down with the pad ring and squeezes the sponge block through the hollow plate, releasing the cleaning agent stored in the sponge block. This effectively cleans the surface of the wire harness during take-up and take-out processes.
[0010] Furthermore, a stop bar is fixedly connected to the winding roller. The stop bar assists in winding the wire harness onto the winding roller.
[0011] Furthermore, a knob is fixedly connected to the top of the rotating shaft, and the knob and the rotating shaft are an integral structure. The knob facilitates rotation of the rotating shaft.
[0012] Furthermore, a spring is fitted around the outer side of the sliding column. One end of the spring is fixedly connected to a washer, and the other end of the spring is fixedly connected to the inner surface of the take-up box. The spring allows the elastic force to be applied to the washer.
[0013] Furthermore, the cleaning mechanism includes a fixing block fixedly connected to the inner wall of the cable take-up box. A hollow sleeve is fixedly connected to the end of the fixing block. The cable harness passes through the hollow sleeve and is slidably connected to it. A perforated plate and a sponge block are slidably connected inside the hollow sleeve, with the perforated plate and sponge block in contact with each other. A connecting frame is fixedly connected to the upper end of the perforated plate. The connecting frame passes through the hollow sleeve and is slidably connected to it. The end of the connecting frame is fixedly connected to a washer ring. This cleaning mechanism effectively cleans the surface of the cable harness during the take-up and untake-up process.
[0014] Furthermore, a hollow tube is fixedly connected to the upper interior of the cable take-up box, the hollow tube passing through the take-up box, the lower end of the hollow tube being connected to a hollow sleeve, and a rubber stopper being slidably connected to the inner side of the upper opening of the hollow tube. Cleaning agent can be added to the sponge block through the hollow tube.
[0015] Furthermore, the hollow sleeve has through holes inside, and the positions of the through holes correspond to the sponge block. The through holes facilitate the outflow of cleaning agent and its application to the wire harness. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present utility model.
[0017] Figure 2 This is an embodiment of the present utility model. Figure 1 A front sectional view;
[0018] Figure 3 This is an embodiment of the present utility model. Figure 2 A magnified view of the local structure;
[0019] Figure 4 This is an embodiment of the present utility model. Figure 1 A partial structural diagram.
[0020] The following detailed explanation illustrates the specific implementation methods:
[0021] The reference numerals in the accompanying drawings of the instruction manual include: 1. Frame; 2. Osmanthus hopper; 3. Mixing device; 4. Support; 5. Mounting plate; 6. Material gripping mechanism; 7. Discharge plate; 8. Air pipe valve; 9. Four-hole residual material box; 10. Spreading disc; 11. Material retaining cover; 12. Feed cup; 13. Horizontal support bar; 31. Mounting frame; 32. Cylinder 1; 33. Fixing sleeve; 34. Mixing rod; 61. Fixing seat; 62. Cylinder 2; 63. Push block; 64. Connecting column; 65. Connecting seat; 66. Cylinder 3; 67. Moving plate; 68. Pneumatic gripper; 69. Guide column. Detailed Implementation
[0022] The basic implementation examples are as follows: Figures 1-4 The image shows a device for detecting trace ions in brine and industrial salt. It includes a detector body 1, a wire harness 2 extending from the top of the body 1, a detection head 3 at the end of the wire harness 2, a take-up box 4 fixedly connected to the top of the body 1, the wire harness 2 passing through and slidably connected to the take-up box 4, a rotating shaft 5 mounted on the top of the take-up box 4 via a bearing, a winding roller 6 fixedly connected to the lower end of the rotating shaft 5, and a stop bar 7 fixedly connected to the winding roller 6. The stop bar 7 assists in winding the wire harness 2 onto the winding roller 6, with the wire harness 2 wound around the outside of the winding roller 6.
[0023] like Figure 1 , Figure 2 , Figure 3 , Figure 4 As shown, a sliding column 9 is slidably connected to the top of the take-up box 4. A washer 10 is fixedly connected to the lower end of the sliding column 9. The washer 10 is slidably connected to the outside of the rotating shaft 5. A pressure ring 11 is fixedly connected to the top of the sliding column 9, and is located outside the rotating shaft 5 along with the pressure ring 11. A limiting plate 13 is fixedly connected to the shaft of the rotating shaft 5. A limiting pin 14 is fixedly connected to the washer 10. The limiting pin 14 is inserted into the limiting plate 13. A ring array of locking grooves is formed at the bottom of the limiting plate 13 for the insertion of the limiting pin 14. A knob 15 is fixedly connected to the top of the rotating shaft 5, and the knob 15 and the rotating shaft 5 are an integral structure. The knob 15 facilitates rotation to the rotating shaft 5. A spring 12 is sleeved on the outside of the sliding column 9. One end of the spring 12 is fixedly connected to the washer 10, and the other end of the spring 12 is fixedly connected to the inner surface of the take-up box 4. The spring 12 allows the elastic force to be applied to the washer 10.
[0024] like Figure 3 As shown, a cleaning mechanism 8 is provided inside the cable take-up box 4. This cleaning mechanism 8 cleans the surface of the cable harness 2 during the take-up and untake-up process. The cleaning mechanism 8 includes a fixing block 81 fixedly connected to the inner wall of the cable take-up box 4. A hollow sleeve 82 is fixedly connected to the end of the fixing block 81. The cable harness 2 passes through the hollow sleeve 82 and is slidably connected to it. A perforated plate 83 and a sponge block 84 are slidably connected inside the hollow sleeve 82, and the perforated plate 83 and the sponge block 84 are in contact with each other. A connecting frame 85 is fixedly connected to the upper end of the perforated plate 83, passing through the hollow sleeve 82 and slidably connected to it. The end of the connecting frame 85 is fixedly connected to a washer ring 10. A hollow tube 86 is fixedly connected to the upper interior of the cable take-up box 4, passing through the cable take-up box 4. The lower end of the hollow tube 86 is inserted into the hollow sleeve 82, and a rubber stopper 87 is slidably connected to the inner side of the upper opening of the hollow tube 86. Cleaning agent can be added to the sponge block 84 through the hollow tube 86. The hollow sleeve 82 has a through hole 88 inside, and the position of the through hole 88 corresponds to the position of the sponge block 84 and the wire harness 2. The through hole 88 facilitates the outflow of cleaning agent and its application to the wire harness 2.
[0025] The specific implementation process of this utility model is as follows: In use, the sliding column 9 is first pushed down by the pressure ring 11, and the pad ring 10 at the bottom of the sliding column 9 moves down synchronously. Then, the limiting pin 14 on the pad ring 10 separates from the limiting disk 13 on the rotating shaft 5, thereby releasing the restriction on the rotating shaft 5. Then, the rotating shaft 5 is rotated by the knob 15, and the rotating shaft 5 drives the winding roller 6 to rotate. Then, with the cooperation of the stop rod 7, the wire harness 2 can be wound up. Compared with the prior art, the method of winding in sequence is more convenient. Moreover, during the process of the pad ring 10 moving down, the connecting frame 85 moves down with the pad ring 10, and the sponge block 84 is squeezed by the hollow plate 83, and the cleaning agent stored in the sponge block 84 is released, thereby cleaning the surface of the wire harness 2 during the winding and unwinding process.
[0026] This solution involves setting a take-up box 4 on the top of the detector body 1, through which the wire harness 2 passes. A winding roller 6, which rotates via a rotating shaft 5, is then installed inside the take-up box 4. A stop bar 7 is installed on the winding roller 6. By rotating the winding roller 6, the wire harness 2 can be wound and stored, which is more convenient than the sequential winding method in existing technologies. A cleaning mechanism 8 is installed inside the take-up box 4. Before the wire harness 2 exits the take-up box 4, it passes through a hollow sleeve 82. As the pressure ring 11 pushes the pad ring 10 downwards via the sliding column 9, the connecting frame 85 follows the pad ring 10 downwards, and the hollow plate 83 squeezes the sponge block 84, releasing the cleaning agent stored inside the sponge block 84. This provides cleaning for the surface of the wire harness 2 during the take-up and unwinding process.
[0027] The above descriptions are merely embodiments of this utility model, and common knowledge regarding specific structures and characteristics is not elaborated upon here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the structure of this utility model, and these should also be considered within the scope of protection of this utility model. These modifications will not affect the effectiveness of the implementation of this utility model or the practicality of the patent. The scope of protection claimed in this application shall be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.
Claims
1. A device for detecting trace ions in brine and industrial salt, comprising a detector body, characterized in that: The top of the detector body leads out a wire harness, the end of the wire harness is provided with a detection head, the top of the detector body is fixedly connected with a take-up box, the wire harness penetrates through the take-up box and is in sliding connection with the take-up box, the top of the take-up box is provided with a rotating shaft through a bearing, the lower end of the rotating shaft is fixedly connected with a winding roller, the wire harness is arranged on the outer side of the winding roller, the inner side of the take-up box is provided with a cleaning mechanism, the top of the take-up box is in sliding connection with a sliding column, the lower end of the sliding column is fixedly connected with a spacer ring, the spacer ring is in sliding connection with the outer side of the rotating shaft, the top of the sliding column is fixedly connected with a pressure ring, and the pressure ring is located on the outer side of the rotating shaft, the shaft body of the rotating shaft is fixedly connected with a limiting disc, the spacer ring is fixedly connected with a limiting pin, and the limiting pin is in plug connection with the limiting disc.
2. The device for detecting trace ions in brine and industrial salt according to claim 1, characterized in that: The winding roller is fixedly connected with a blocking rod.
3. The device for detecting trace ions in brine and industrial salt according to claim 1, characterized in that: The top of the rotating shaft is fixedly connected with a rotating knob, and the rotating knob and the rotating shaft are in an integral structure.
4. The device for detecting trace ions in brine and industrial salt according to claim 1, characterized in that: The outer side of the sliding column is sleeved with a spring, one end of the spring is fixedly connected with the spacer ring, and the other end of the spring is fixedly connected to the inner surface of the take-up box.
5. The device for detecting trace ions in brine and industrial salt according to claim 4, characterized in that: The cleaning mechanism comprises a fixed block fixedly connected with the inner wall of the take-up box, the end of the fixed block is fixedly connected with a hollow sleeve, the wire harness penetrates through the hollow sleeve and is in sliding connection with the hollow sleeve, the inside of the hollow sleeve is in sliding connection with a hollow plate and a sponge block, the hollow plate and the sponge block are in contact with each other, the upper end of the hollow plate is fixedly connected with a connecting frame, the connecting frame penetrates through the hollow sleeve and is in sliding connection with the hollow sleeve, and the end of the connecting frame is fixedly connected with the spacer ring.
6. The device for detecting trace ions in brine and industrial salt according to claim 5, characterized in that: The upper end of the take-up box is fixedly connected with a hollow tube inside, the hollow tube penetrates through the take-up box, the lower end of the hollow tube is connected into the hollow sleeve, and the upper end of the hollow tube is in sliding connection with a rubber plug on the inner side of the opening.
7. The device for detecting trace ions in brine and industrial salt according to claim 5, characterized in that: The inside of the hollow sleeve is provided with a through hole, and the position of the through hole corresponds to the sponge block.
Citation Information
Patent Citations
Device for detecting trace ions in brine and industrial salt
CN210401392U