Sensor mounting bracket
By designing longitudinal and lateral adjustment mechanisms for the sensor mounting bracket, the problem of the inability to adjust the sensor's installation position and angle was solved, enabling flexible installation of the sensor on different devices and improving its flexibility and versatility.
Patent Information
- Application Number
- CN202520551168.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-03-27
AI Technical Summary
Existing sensor mounting brackets cannot adjust the sensor's mounting position and angle, resulting in poor flexibility and limited versatility in sensor use.
A sensor mounting bracket was designed, comprising a longitudinal adjustment mechanism and a lateral adjustment mechanism. The position and angle of the sensor can be adjusted by a combination of an adjustment plate, a guide rod, and an adjustment seat. The adjustment seat is slidably connected to the guide rod, and the sensor can be detachably fixed to the adjustment seat.
It enables flexible adjustment of the sensor's installation position and angle, allowing the sensor to be placed in any position on any device according to actual needs, thus improving the sensor's flexibility and versatility.
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Figure CN223740471U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to sensor installation technical field especially relates to a sensor installation support. BACKGROUND
[0002] Copper foil is one of the basic materials in the electronic industry, and is widely used in industrial computers, communication equipment and lithium ion batteries due to its excellent bending performance and adhesion. The manufacturing process of electrolytic copper foil mainly includes four processes, including copper dissolving, foil making, post-processing and slitting process. In the copper foil production process, sensors need to be installed on all equipment to detect whether there is copper foil passing. The sensor is generally installed on the bracket. When installing the sensor on the existing sensor mounting bracket (such as the sensor mounting bracket disclosed in application No. 202120328725.9), the installation position and angle of the sensor cannot be adjusted, which leads to the sensor cannot be placed at any position of any equipment, and the sensor has poor flexibility and poor versatility. SUMMARY
[0003] The utility model aims at overcoming the above technical defects, and provides a sensor mounting bracket to solve the technical problems that the sensor mounting bracket in the prior art cannot adjust the installation position and angle of the sensor, which leads to the sensor cannot be placed at any position of any equipment, and the sensor has poor flexibility and poor versatility.
[0004] To achieve the above technical purpose, the technical scheme of the utility model provides a sensor mounting bracket, a longitudinal adjusting mechanism, which includes a plurality of adjusting plates, each adjusting plate is arranged in turn along the direction of copper foil movement, the first adjusting plate is used for fixed connection with the production equipment, the adjacent adjusting plates are fixedly and rotatably connected at the head and tail to adjust the position and inclination angle of the last adjusting plate.
[0005] A transverse adjusting mechanism includes at least one guide rod and an adjusting seat, each guide rod is arranged perpendicular to the direction of copper foil movement, and is fixedly connected with the last adjusting plate, the adjusting seat is fixedly and slidably connected with each guide rod, and the adjusting seat is used to set the sensor.
[0006] Further, the longitudinal adjusting mechanism has two, and the two adjusting mechanisms are oppositely arranged on both sides of the copper foil.
[0007] Further, the longitudinal adjusting mechanism further includes a plurality of shafts, and the adjacent two adjusting plates are fixedly and rotatably connected through the shafts.
[0008] Further, the longitudinal adjusting mechanism further comprises a plurality of first fasteners, one end of each of the first fasteners is detachably and fixedly connected with the rotating shaft, and the other end of each of the first fasteners is detachably and fixedly connected with the corresponding adjusting plate.
[0009] Further, the first fastener is a first bolt, a first screw hole is formed in the adjusting plate, the first bolt passes through the first screw hole and is screwed with the first screw hole, and the inner end of the first bolt abuts against the rotating shaft.
[0010] Further, each of the guide rods is horizontally arranged below the copper foil.
[0011] Further, each of the guide rods is arranged between two longitudinal adjusting mechanisms, and both ends of each of the guide rods are fixedly connected with the last two adjusting plates respectively.
[0012] Further, the adjusting seat comprises a first sliding plate, a second sliding plate, a second fastener and an adjusting piece, the first sliding plate and the second sliding plate are slidingly sleeved on each of the guide rods, one end of the second fastener is detachably and fixedly connected with the first sliding plate, the other end of the second fastener is detachably and fixedly connected with the corresponding guide rod, one end of the adjusting piece is connected with the first sliding plate, and the other end of the adjusting piece is connected with the second sliding plate, so as to adjust the distance between the second sliding plate and the first sliding plate, and a sensor is detachably and fixedly arranged on the second sliding plate.
[0013] Further, the second fastener is a second bolt, a second screw hole is formed in the first sliding plate, the second bolt passes through the second screw hole and is screwed with the second screw hole, and the inner end of the second bolt abuts against the corresponding guide rod.
[0014] Further, the adjusting piece comprises a limiting cap and a screw rod, a third screw hole is formed in the first sliding plate, a receiving cavity is formed in the second sliding plate, the limiting cap is rotationally arranged in the receiving cavity, the screw rod is parallel to the guide rod, one end of the screw rod passes through the third screw hole and rotationally extends into the receiving cavity, the screw rod is screwed with the third screw hole, and the end of the screw rod is fixedly connected with the limiting cap.
[0015] Compared with the prior art, the beneficial effects of the present application include: in use, the first adjusting plate is fixedly connected with the production equipment, the installation position and the installation angle of the sensor can be adjusted according to the actual advancing path of the copper foil, the position and the inclination angle of the last adjusting plate can be adjusted by sequentially rotating each adjusting plate, thereby the position and the angle of the sensor can be adjusted, the distance between the adjusting seat and the copper foil can be adjusted by pushing the adjusting seat to slide along the length direction of each guide rod, thereby the distance between the sensor and the copper foil can be adjusted, the sensor mounting bracket can adjust the installation position and the installation angle of the sensor, the sensor can be placed at any position of any equipment according to actual requirements, the versatility is high, and the flexibility of the sensor use is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 is a three-dimensional structure schematic view of the sensor mounting bracket during installation, provided by the present application;
[0017] Figure 2 is a three-dimensional structure schematic view of the sensor mounting bracket, provided by the present application;
[0018] Figure 3 is a three-dimensional structure schematic view of the adjusting seat of the sensor mounting bracket, provided by the present application;
[0019] In the figure: 1-copper foil, 2-sensor, 100-longitudinal adjusting mechanism, 110-adjusting plate, 120-rotating shaft, 130-first fastener, 200-lateral adjusting mechanism, 210-guide rod, 220-adjusting seat, 221-first sliding plate, 222-second sliding plate, 223-second fastener, 224-adjusting piece. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application will be further described in detail below with reference to the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application, and are not used to limit the present application.
[0021] The present application provides a sensor mounting bracket, which has the structure as Figure 1 - Figure 3As shown, including longitudinal adjustment mechanism 100 and transverse adjustment mechanism 200, the longitudinal adjustment mechanism 100 includes a plurality of adjustment plate 110, each of the adjustment plate 110 is sequentially arranged along the direction of the copper foil 1, the first adjustment plate 110 is used for fixed connection with the production equipment, the adjacent adjustment plate 110 can be fixedly connected to the end of the rotation, in order to adjust the position and inclination angle of the last adjustment plate 110; The transverse adjustment mechanism 200 includes at least one guide rod 210 and adjustment seat 220, each of the guide rod 210 is arranged perpendicular to the direction of the copper foil 1, and is fixedly connected with the last adjustment plate 110, the adjustment seat 220 is fixedly connected with each of the guide rod 210, and the sensor 2 is arranged on the adjustment seat 220.
[0022] In use, the first adjustment plate 110 is fixedly connected with the production equipment, and the installation position and installation angle of the sensor 2 can be adjusted according to the actual advancing path of the copper foil 1. Each of the adjustment plate 110 is sequentially rotated, and the position and inclination angle of the last adjustment plate 110 can be adjusted, so that the position and angle of the sensor 2 can be adjusted. Further, the adjustment seat 220 is slid along the length direction of each of the guide rod 210, and the distance between the adjustment seat 220 and the copper foil 1 can be adjusted, so that the distance between the sensor 2 and the copper foil 1 can be adjusted. The sensor mounting bracket can adjust the installation position and installation angle of the sensor 2, so that the sensor 2 can be placed at any position of any device according to actual needs, and the versatility is high, and the flexibility of the sensor 2 is improved.
[0023] As a preferred embodiment, please refer to Figure 1 and Figure 2 , the longitudinal adjustment mechanism 100 has two, two adjustment mechanisms are oppositely arranged on both sides of the copper foil 1, so that the two ends of each of the guide rod 210 can be fixedly connected with two adjustment plates 110, respectively, and the stability of the sensor 2 installation is improved.
[0024] As a preferred embodiment, please refer to Figure 2 , the longitudinal adjustment mechanism 100 further includes a plurality of shafts 120, and the adjacent two adjustment plates 110 are fixedly connected with the shaft 120, so that the adjacent adjustment plate 110 can be fixedly connected with the shaft 120.
[0025] As a preferred embodiment, please refer to Figure 1The longitudinal adjusting mechanism 100 further comprises a plurality of first fasteners 130, one end of each of the first fasteners 130 is detachably fixedly connected with the rotating shaft 120, the other end of each of the first fasteners 130 is detachably fixedly connected with the corresponding adjusting plate 110, when it is needed to make the adjacent adjusting plates 110 relatively rotate, the other end of each of the first fasteners 130 is disconnected with the corresponding rotating shaft 120, when it is needed to relatively lock the position of the adjacent adjusting plates 110, the other end of each of the first fasteners 130 is detachably fixedly connected with the corresponding rotating shaft 120.
[0026] As a preferred embodiment, refer to Figure 1 The first fastener 130 is a first bolt, the adjusting plate 110 is provided with a first screw hole, the first bolt passes through the first screw hole and is screwed with the first screw hole, the inner end of the first bolt abuts against the rotating shaft 120, by rotating the first bolt in a forward direction or a reverse direction, the inner end of the first bolt can abut against or release the rotating shaft 120, when the inner end of the first bolt abuts against the rotating shaft 120, the rotating shaft 120 can be locked, when the inner end of the first bolt releases the rotating shaft 120, the rotating shaft 120 can rotate, so that the downstream adjusting plate 110 can rotate relative to the upstream adjusting plate 110, the first fastener 130 can also adopt a suitable type of damping member or locking nut, in other embodiments, the rotation of the rotating shaft 120 can also be driven by a suitable type of motor.
[0027] As a preferred embodiment, refer to Figure 1 Each of the guide rods 210 is horizontally arranged below the copper foil 1, so that the guide rods 210 can avoid interfering with the equipment processing the copper foil 1.
[0028] As a preferred embodiment, refer to Figure 1 and Figure 2 Each of the guide rods 210 is arranged between two longitudinal adjusting mechanisms 100, and both ends of each of the guide rods 210 are fixedly connected with the last two adjusting plates 110, so that the stability of the installation of each of the guide rods 210 can be improved.
[0029] As a preferred embodiment, refer to Figure 3The adjusting seat 220 comprises a first sliding plate 221, a second sliding plate 222, a second fastener 223 and an adjusting piece 224. The first sliding plate 221 and the second sliding plate 222 are sleeved on the guide rods 210 respectively. One end of the second fastener 223 is detachably connected with the first sliding plate 221, and the other end of the second fastener 223 is detachably connected with the corresponding guide rod 210. One end of the adjusting piece 224 is connected with the first sliding plate 221, and the other end of the adjusting piece 224 is connected with the second sliding plate 222, so as to adjust the distance between the second sliding plate 222 and the first sliding plate 221. The sensor 2 is detachably arranged on the second sliding plate 222. When the same set of equipment is used to process copper foils 1 with different widths, the distance between the sensor 2 and the copper foil 1 needs to be adjusted in a small range or a large range. When the distance is adjusted in a small range, the distance between the second sliding plate 222 and the first sliding plate 221 can be adjusted by operating the adjusting piece 224, so that the distance between the sensor 2 and the copper foil 1 can be adjusted. When the distance is adjusted in a large range, the other end of the second fastener 223 can be disconnected with the corresponding guide rod 210 by operating the second fastener 223, so that the first sliding plate 221 and the second sliding plate 222 can be moved integrally.
[0030] As a preferred embodiment, please refer to Figure 3 The second fastener 223 is a second bolt. A second screw hole is formed in the first sliding plate 221. The second bolt passes through the second screw hole and is screwed with the second screw hole. The inner end of the second bolt abuts against the corresponding guide rod 210. By rotating the second bolt forward or reversely, the inner end of the second bolt can abut against or release the corresponding guide rod 210. When the inner end of the second bolt abuts against the guide rod 210, the first sliding plate 221 can be locked. When the inner end of the second bolt releases the guide rod 210, the first sliding plate 221 and the second sliding plate 222 can be moved integrally. In other embodiments, the first sliding plate 221 and the second sliding plate 222 can also be driven by a suitable type of air cylinder.
[0031] As a preferred embodiment, the adjusting member 224 comprises a limiting cap and a screw rod, a third threaded hole is formed in the first sliding plate 221, a receiving cavity is formed in the second sliding plate 222, the limiting cap is rotationally arranged in the receiving cavity, the screw rod is parallel to the guide rod 210, one end of the screw rod penetrates through the third threaded hole and rotationally extends into the receiving cavity, the screw rod is screwed with the third threaded hole, and the end of the screw rod is fixedly connected with the limiting cap; by rotating the screw rod in a forward direction or a reverse direction, the second sliding plate 222 can be driven to move along the axial direction of the guide rod 210 according to the driving principle of the threaded connection.
[0032] In order to better understand the present application, the following is combined with Figure 1 Figure 3 The working principle of the technical scheme of the present application is described in detail.
[0033] In use, the first adjusting plate 110 is detachably fixedly connected with the production equipment through screws, the installation position and the installation angle of the sensor 2 can be adjusted according to the actual advancing path of the copper foil 1, the first bolts are sequentially reversely rotated, the inner ends of the first bolts are loosened from the corresponding shafts 120, the shafts 120 can be rotated, the downstream adjusting plate 110 can be rotated relative to the upstream adjusting plate 110, the position and the inclination angle of the last adjusting plate 110 can be adjusted, the position and the angle of the sensor 2 can be adjusted, the first bolts are sequentially forwardly rotated, the inner ends of the first bolts are abutted against the corresponding shafts 120, and the shafts 120 can be locked, when it is necessary to greatly adjust the transverse position of the sensor 2, the second bolts are reversely rotated, the inner ends of the second bolts are loosened from the corresponding guide rods 210, the first sliding plate 221 and the second sliding plate 222 can be integrally moved, the distance between the sensor 2 and the copper foil 1 can be adjusted, the second bolts are forwardly rotated, the inner ends of the second bolts are abutted against the corresponding guide rods 210, and the first sliding plate 221 can be locked, when it is necessary to slightly adjust the transverse position of the sensor 2, the screw rods are forwardly or reversely rotated, the second sliding plate 222 can be driven to move along the axial direction of the guide rod 210, and the distance between the sensor 2 and the copper foil 1 is adjusted; the sensor mounting support can adjust the installation position and the installation angle of the sensor 2, the sensor 2 can be placed at any position of any equipment according to actual requirements, the sensor mounting support has high universality, and the flexibility of use of the sensor 2 is improved.
[0034] The sensor mounting support has the following beneficial effects:
[0035] (1) when the longitudinal position and height of the sensor 2 need to be adjusted, the inner end of each first bolt is loosened from the corresponding rotating shaft 120 by sequentially operating each first bolt, so that the downstream adjusting plate 110 can rotate relative to the upstream adjusting plate 110, thereby adjusting the position and angle of the sensor 2;
[0036] (2) when the same set of equipment is used to process copper foil 1 of different widths, the distance between the sensor 2 and the copper foil 1 needs to be adjusted in a small range or a large range. When the distance is adjusted in a small range, the distance between the second sliding plate 222 and the first sliding plate 221 can be adjusted by operating the screw rod, thereby adjusting the distance between the sensor 2 and the copper foil 1. When the distance is adjusted in a large range, the inner end of the second bolt is loosened from the corresponding guide rod 210 by operating the second bolt, thereby moving the first sliding plate 221 and the second sliding plate 222 as a whole;
[0037] (3) the sensor mounting bracket can adjust the mounting position and angle of the sensor 2, so that the sensor 2 can be placed at any position of any equipment according to actual needs, which has strong universality and improves the flexibility of the sensor 2.
[0038] The specific embodiments of the utility model described above do not constitute a limitation on the protection scope of the utility model. Any other corresponding changes and modifications made according to the technical concept of the utility model should be included in the protection scope of the utility model claims.
Claims
1. A sensor mounting bracket, characterized by, The application relates to a longitudinal adjusting mechanism and a horizontal adjusting mechanism. The longitudinal adjusting mechanism comprises a plurality of adjusting plates, each of which is arranged in sequence along the running direction of the copper foil, the first adjusting plate is fixedly connected with a production device, and the first end and the second end of the adjacent adjusting plates are fixedly and rotatably connected so as to adjust the position and the inclination angle of the last adjusting plate. The horizontal adjusting mechanism comprises at least one guide rod and an adjusting seat, each of the guide rods is arranged perpendicularly to the running direction of the copper foil and is fixedly connected with the last adjusting plate, the adjusting seat is fixedly and slidably connected with each of the guide rods, and a sensor is arranged on the adjusting seat.
2. The sensor mounting bracket of claim 1, wherein, The longitudinal adjusting mechanism comprises two longitudinal adjusting mechanisms which are oppositely arranged on the two sides of the copper foil.
3. The sensor mounting bracket of claim 1, wherein, The longitudinal adjusting mechanism further comprises a plurality of rotating shafts, and the adjacent two adjusting plates are fixedly and rotatably connected through the rotating shafts.
4. The sensor mounting bracket of claim 3, wherein, The longitudinal adjusting mechanism further comprises a plurality of first fasteners, one end of each of the first fasteners is fixedly and detachably connected with the rotating shaft, and the other end of each of the first fasteners is fixedly and detachably connected with the corresponding adjusting plate.
5. The sensor mounting bracket of claim 4, wherein, The first fastener is a first bolt, a first screw hole is formed in the adjusting plate, the first bolt passes through the first screw hole and is screwed with the first screw hole, and the inner end of the first bolt abuts against the rotating shaft.
6. The sensor mounting bracket of claim 1, wherein, Each of the guide rods is horizontally arranged below the copper foil.
7. The sensor mounting bracket of claim 2, wherein, Each of the guide rods is arranged between the two longitudinal adjusting mechanisms, and the two ends of each of the guide rods are fixedly connected with the last two adjusting plates respectively.
8. The sensor mounting bracket of claim 1, wherein, The adjusting seat comprises a first sliding plate, a second sliding plate, a second fastener and an adjusting piece, the first sliding plate and the second sliding plate are slidably sleeved on each of the guide rods, one end of the second fastener is fixedly and detachably connected with the first sliding plate, the other end of the second fastener is fixedly and detachably connected with the corresponding guide rod, one end of the adjusting piece is connected with the first sliding plate, the other end of the adjusting piece is connected with the second sliding plate, the distance between the second sliding plate and the first sliding plate is adjusted, and a sensor is fixedly and detachably arranged on the second sliding plate.
9. The sensor mounting bracket of claim 8, wherein, The second fastener is a second bolt, a second screw hole is formed in the first sliding plate, the second bolt passes through the second screw hole and is screwed with the second screw hole, and the inner end of the second bolt abuts against the corresponding guide rod.
10. The sensor mounting bracket of claim 8, wherein, The adjusting piece comprises a limiting cap and a screw rod, a third screw hole is formed in the first sliding plate, a receiving cavity is formed in the second sliding plate, the limiting cap is rotatably arranged in the receiving cavity, the screw rod is parallel to the guide rod, one end of the screw rod passes through the third screw hole and rotatably extends into the receiving cavity, the screw rod is screwed with the third screw hole, and the end part of the screw rod is fixedly connected with the limiting cap.
Citation Information
Patent Citations
Sensor mounting bracket
CN214066145U