Bluetooth earphone flat cable code scanning device
By designing a Bluetooth headphone cable scanning device that uses components such as dialing and feeding mechanisms and hydraulic cylinders, the product stacking problem caused by uneven lying in the prior art is solved, and accurate scanning and efficient statistics are achieved.
Patent Information
- Application Number
- CN202421678382.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-07-16
AI Technical Summary
In the existing Bluetooth headset cable scanning device, the material discharge mechanism is uneven and causes products to stack, affecting the efficiency of scanning processing.
A Bluetooth headphone line scanning device is designed, and the power is outputted by a dialing and material distribution mechanism, so that the headphone lines are distributed to the conveyor belt and oblique cards in batches, and the combination of hydraulic cylinders, push rods, lifting blocks, movable rods, angle expansion bars, electric rotating rods and brush rods is achieved to achieve accurate scanning.
Through segmented dialing and precise scanning, statistical errors can be reduced, code scanning efficiency can be improved, and products can be effectively distributed and scanned.
Smart Images

Figure CN223007649U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of Bluetooth headset wire harnesses, in particular to a Bluetooth headset wire harness scanning device. Background Art
[0002] In the process of Bluetooth headset production, many technological processes are inevitably used. Actions such as bending, extrusion, deformation, and shaping also require a large number of mechanical devices to meet the technological requirements. For the wire harness used in Bluetooth headsets, coding and scanning operations are generally required at the end of production for the convenience of later identification of wire harnesses and statistics.
[0003] When the existing wire harness scanning device is in use, for example, the application number CN202011221969.3 relates to the technical field of Bluetooth headset production machinery, specifically a Bluetooth headset wire harness scanning device, including a fixed bottom plate, a fixed upper plate, four support frames, and an installation side plate. Guide side plates are symmetrically installed on the fixed upper plate. A transmission mechanism is installed on the side of the installation side plate. The transmission mechanism is connected to a feeding mechanism and a discharging mechanism. The feeding mechanism and the discharging mechanism are located on the front of the installation side plate. A pressing mechanism is arranged above the discharging mechanism. A scanning device is arranged on the right side of the discharging mechanism. There is a stack of orderly arranged wire harnesses between the discharging mechanism and the pressing mechanism. The scanning device contains a single wire harness. However, in the above technology, the discharging mechanism is not flat, which will cause the stacking phenomenon of the product after rising and placing during discharging, and is not conducive to effective scanning processing. Therefore, the utility model proposes a Bluetooth headset wire harness scanning device to solve the problems existing in the prior art. Summary of the Utility Model
[0004] In view of the above problems, the utility model proposes a Bluetooth headset wire harness scanning device. The Bluetooth headset wire harness scanning device mainly uses the output power of the sorting and feeding mechanism to output and run the earphone wires. After the hydraulic cylinder of the scanning mechanism outputs power to run the lifting block to a suitable height, under the mutual cooperation of the movable rod, the angle-expanding strip, the electric rotating rod, and the brush rod, the product can be effectively sorted into the conveyor belt and the inclined card in batches, so as to effectively achieve the effect of accurate scanning and ensure the reduction of statistical errors.
[0005] To achieve the purpose of the utility model, the utility model is realized through the following technical solutions: A Bluetooth headset wire harness scanning device includes a loading and feeding component and a scanning mechanism. One end inside of the loading and feeding component is provided with a sorting component connected by a hinge. The inner side of the loading and feeding component is provided with a sorting and feeding mechanism connected by a socket. The upper side of the loading and feeding component is provided with a scanning mechanism assembled by bolts.
[0006] The scanning mechanism includes an assembly base, a horizontal plate, a fixed suspension seat, a scanner, a hydraulic cylinder, a push rod, a lifting block, a movable rod, an angle-expanding strip, an electric rotating rod, and a brush rod. The assembly base is bolted to the upper side of the feeding component. A horizontal plate is arranged above the assembly base. The scanner is bolted to the inner side of the outer end of the horizontal plate through the fixed suspension seat. A push rod connecting the output end of the hydraulic cylinder is arranged on the inner bottom side of the horizontal plate. The bottom end of the push rod is provided with a lifting block. The two inner sides of the lifting block are movably connected with the angle-expanding strip through the movable rod. An electric rotating rod is arranged on the inner side of the lifting block, and a brush rod is arranged on the outer side of the electric rotating rod.
[0007] As a preferred embodiment of the present invention, the movable rod and the angle-expanding strip are symmetrically distributed with respect to the central axis of the lifting block, and the brush rods are annularly and equally angularly distributed with respect to the central axis of the electric rotating rod.
[0008] As a preferred embodiment of the present invention, the feeding component includes a cushion block, a backing plate, a shell-opening cabin, an upper fixed guide wheel set, a lower fixed guide wheel set, a bolt substrate, an inclined plate, and a material guiding rod. The cushion block is arranged on the top side of the backing plate, and the shell-opening cabin is arranged on the top side of the backing plate. The output end of the shell-opening cabin is bolted to the material guiding rod through the inclined plate.
[0009] As a preferred embodiment of the present invention, a material guiding rod is arranged on the inner side of the middle part of the shell-opening cabin, and an upper fixed guide wheel set and a lower fixed guide wheel set which are parallel to each other are arranged on the inner side of one end of the shell-opening cabin.
[0010] As a preferred embodiment of the present invention, the sorting component includes a hinge rod, an inclined rod, a hinge frame, an elastic telescopic rod, a parallel hinge rod, and an arc-shaped strip. The hinge rod is hinged to the inner side above the shell-opening cabin. An inclined rod for installing the arc-shaped strip is arranged on one side of the hinge rod. A hinge frame is arranged on the inner side of the inclined rod, and the hinge frame is hinged to the parallel hinge rod through the elastic telescopic rod.
[0011] As a preferred embodiment of the present invention, the sorting and feeding mechanism includes an output rod, a driving motor, a conveyor belt, and inclined cards. The output rod is arranged on the inner side of the other end of the shell-opening cabin. The output rod is connected to the output end of the driving motor. The conveyor belt is wound around the output rod, and multiple groups of inclined cards which are parallel to each other are arranged on the outer side of the conveyor belt.
[0012] The beneficial effects of the present invention are:
[0013] This utility model mainly utilizes the power output of the sorting and feeding mechanism to output the headphone cable. After the hydraulic cylinder of the scanning mechanism outputs power to move the lifting block to an appropriate height, through the mutual cooperation of the movable rod, the angle-expanding strip, the electric rotating rod, and the brush rod, the product can be effectively sorted into the conveyor belt and the inclined card in batches, achieving an effective and accurate scanning effect, and ensuring a reduction in statistical errors. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a three-dimensional structural schematic diagram of this utility model;
[0015] Figure 2 is a side three-dimensional structural schematic diagram of this utility model;
[0016] Figure 3 is a three-dimensional structural schematic diagram of the sorting component and the sorting and feeding mechanism of this utility model;
[0017] Figure 4 is a three-dimensional structural schematic diagram of the scanning mechanism of this utility model.
[0018] Among them: 1. Loading and feeding component; 101. Pad block; 102. Base plate; 103. Shell-opening cabin; 104. Upper fixed guide wheel set; 105. Lower fixed guide wheel set; 106. Bolt base plate; 107. Inclined plate; 108. Guide rod; 2. Sorting component; 201. Hinge rod; 202. Inclined rod; 203. Hinge frame; 204. Elastic telescopic rod; 205. Parallel hinge rod; 206. Arc-shaped strip; 3. Sorting and feeding mechanism; 301. Output rod; 302. Driving motor; 303. Conveyor belt; 304. Inclined card; 4. Scanning mechanism; 401. Assembly base; 402. Cross plate; 403. Fixed hanging seat; 404. Scanner; 405. Hydraulic cylinder; 406. Push rod; 407. Lifting block; 408. Movable rod; 409. Angle-expanding strip; 4010. Electric rotating rod; 4011. Brush rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] To deepen the understanding of this utility model, the following will further elaborate on this utility model in combination with embodiments. These embodiments are only used to explain this utility model and do not constitute a limitation to the protection scope of this utility model.
[0020] According to Figures 1-4 as shown, this embodiment proposes a Bluetooth headset cable scanning device, including a loading and feeding component 1 and a scanning mechanism 4. A sorting component 2 connected by a hinge is arranged inside one end of the loading and feeding component 1, a sorting and feeding mechanism 3 connected by a socket is arranged on the inner side of the loading and feeding component 1, and a scanning mechanism 4 assembled by bolts is arranged on the upper side of the loading and feeding component 1;
[0021] The scanning mechanism 4 includes an assembly base 401, a cross plate 402, a fixed suspension base 403, a scanner 404, a hydraulic cylinder 405, a push rod 406, a lifting block 407, a movable rod 408, an angle-expanding strip 409, an electric rotating rod 4010, and a brush rod 4011. The assembly base 401 is bolted to the upper side of the loading and feeding assembly 1. A cross plate 402 is arranged above the assembly base 401. The scanner 404 is bolted to the inner side of the outer end of the cross plate 402 through the fixed suspension base 403. The push rod 406 connecting the output end of the hydraulic cylinder 405 is arranged on the inner bottom side of the cross plate 402. The lifting block 407 is arranged at the bottom end of the push rod 406. The angle-expanding strip 409 is movably connected to the inner sides of both ends of the lifting block 407 through the movable rod 408. The electric rotating rod 4010 is arranged on the inner side of the lifting block 407, and the brush rod 4011 is arranged on the outer side of the electric rotating rod 4010.
[0022] The movable rod 408 and the angle-expanding strip 409 are symmetrically distributed with respect to the central axis of the lifting block 407, and the brush rods 4011 are annularly and equally angularly distributed with respect to the central axis of the electric rotating rod 4010.
[0023] In this embodiment, when the headphone cable runs through the sorting and feeding mechanism 3, the hydraulic cylinder 405 outputs power to drive the operation of the output end, so that the push rod 406 drives the lifting block 407 to run to a suitable height. By starting the electric rotating rod 4010 to output power to drive the rotation of the brush rod 4011, the movable rod 408 and the angle-expanding strip 409 can place the headphone cable parallel into the conveyor belt 303 and the inclined card 304, so that the scanner 404 at the bottom end of the fixed suspension base 403 can accurately scan and count the headphone cable.
[0024] The loading and feeding assembly 1 includes a cushion block 101, a backing plate 102, a shell-opening chamber 103, an upper fixed guide wheel set 104, a lower fixed guide wheel set 105, a bolt substrate 106, an inclined plate 107, and a guide rod 108. The cushion block 101 is arranged on the top side of the backing plate 102, and the shell-opening chamber 103 is arranged on the top side of the backing plate 102. The output end of the shell-opening chamber 103 is bolted to the guide rod 108 through the inclined plate 107.
[0025] In this embodiment, after the scanning mechanism 4 accurately scans and counts the headphone cable on the sorting and feeding mechanism 3, finally, the operation of the sorting and feeding mechanism 3 enables the headphone cable to be output from the device through the inclined plate 107 on one side of the bolt substrate 106, achieving the effect of discharging.
[0026] The guide rod 108 is arranged inside the middle of the shell-opening chamber 103, and the upper fixed guide wheel set 104 and the lower fixed guide wheel set 105 are arranged inside one end of the shell-opening chamber 103 and are distributed in parallel.
[0027] In this embodiment, during use, after placing the device at the processing location through the cushion block 101, backing plate 102, and housing opening compartment 103, the sorting assembly 2, sorting and feeding mechanism 3, and scanning mechanism 4 are assembled in sequence. After the upper guide wheel set 104 and the lower guide wheel set 105 rotate output, the headphone cable is introduced.
[0028] The sorting assembly 2 includes a hinge rod 201, an inclined rod 202, a hinge frame 203, an elastic telescopic rod 204, a parallel hinge rod 205, and an arc-shaped strip 206. The hinge rod 201 is hinge-connected to the inner upper side of the housing opening compartment 103. An inclined rod 202 for installing the arc-shaped strip 206 is provided on one side of the hinge rod 201. A hinge frame 203 is provided on the inner side of the inclined rod 202, and the hinge frame 203 is hinge-connected to a parallel hinge rod 205 through an elastic telescopic rod 204.
[0029] In this embodiment, after the headphone cable is introduced into the upper guide wheel set 104 and the lower guide wheel set 105, the headphone cable runs to the inner side of the arc-shaped strip 206 after rotational introduction. In this way, the inclined rod 202, hinge frame 203, elastic telescopic rod 204, and parallel hinge rod 205 are lifted due to inertia. After lifting, the headphone cable naturally falls onto the slope of the housing opening compartment 103 and is input onto the conveyor belt 303 and the inclined card 304 through the rotation of the guiding rod 108.
[0030] The sorting and feeding mechanism 3 includes an output rod 301, a driving motor 302, a conveyor belt 303, and an inclined card 304. The output rod 301 is arranged on the inner side of the other end of the housing opening compartment 103. The output rod 301 is connected to the output end of the driving motor 302. The conveyor belt 303 is wound around the output rod 301, and multiple groups of parallel inclined cards 304 are arranged on the outer side of the conveyor belt 303.
[0031] In this embodiment, then the pneumatic driving motor 302 outputs power to drive the operation of the output end, so that the driving motor 302 outputs power to drive the output rod 301 to operate to drive the conveyor belt 303 and the inclined card 304 to effectively process the headphone cable.
[0032] The working principle of the earphone cable scanning device for Bluetooth headsets is as follows: When in use, place the device at the processing location through the cushion block 101, backing plate 102, and shell-opening chamber 103. Then assemble the sorting component 2, sorting and feeding mechanism 3, and scanning mechanism 4 in sequence. After the upper fixed guide wheel set 104 and the lower fixed guide wheel set 105 rotate output, the earphone cable is guided. When the earphone cable is guided into the upper fixed guide wheel set 104 and the lower fixed guide wheel set 105, it runs to the inner side of the arc bar 206 after rotational guidance. In this way, the inclined rod 202, hinge frame 203, elastic telescopic rod 204, and parallel hinge rod 205 are lifted due to inertia. After lifting, the earphone cable naturally falls onto the slope of the shell-opening chamber 103 and is input onto the conveyor belt 303 and the inclined card 304 through the rotation of the guide rod 108. Then, the pneumatic drive motor 302 outputs power to drive the output end to operate, so that the drive motor 302 outputs power to drive the output rod 301 to operate, driving the conveyor belt 303 and the inclined card 304 to effectively process the earphone cable. When the earphone cable runs through the sorting and feeding mechanism 3, the hydraulic cylinder 405 outputs power to drive the output end to operate, so that the push rod 406 drives the lifting block 407 to run to an appropriate height. By starting the electric rotating rod 4010 to output power to drive the rotation of the brush rod 4011, the movable rod 408 and the angle-expanding bar 409 can place the earphone cable parallel into the conveyor belt 303 and the inclined card 304, enabling the scanner 404 at the bottom of the fixed hanging seat 403 to accurately scan and count the earphone cable. After the scanning mechanism 4 accurately scans and counts the earphone cable on the sorting and feeding mechanism 3, finally, the operation of the sorting and feeding mechanism 3 causes the earphone cable to be output from the device through the inclined plate 107 on one side of the bolt substrate 106, achieving the effect of discharging materials.
[0033] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A Bluetooth headset cable scanning device, comprising a feeding component (1) and a scanning mechanism (4), characterized in that: A hinged distribution assembly (2) is provided on the inner side of one end of the carrying and feeding assembly (1), a sleeve-connected distribution and feeding mechanism (3) is provided on the inner side of the carrying and feeding assembly (1), and a bolt-assembled scanning mechanism (4) is provided on the upper side of the carrying and feeding assembly (1); The scanning mechanism (4) comprises an assembly base (401), a horizontal plate (402), a fixed hanger (403), a scanner (404), a hydraulic cylinder (405), a push rod (406), a lifting block (407), a movable rod (408), an angle expansion strip (409), an electric rotating rod (4010) and a brush rod (4011), wherein the assembly base (401) is bolted to the upper side of the loading and feeding assembly (1), and a horizontal plate (402) is arranged above the assembly base (401), and the outer end of the horizontal plate (402) is provided with a screw thread. The side of the horizontal plate (402) is bolted with a scanner (404) through a fixed suspension seat (403), the inner bottom side of the horizontal plate (402) is provided with a push rod (406) connected to the output end of the hydraulic cylinder (405), the bottom end of the push rod (406) is provided with a lifting block (407), the inner sides of both ends of the lifting block (407) are movably connected with an expansion angle strip (409) through a movable rod (408), the inner side of the lifting block (407) is provided with an electric rotating rod (4010), and the outer side of the electric rotating rod (4010) is provided with a brush rod (4011).
2. A Bluetooth headset cable scanning device according to claim 1, characterized in that: The movable rods (408) and the angle expansion strips (409) are symmetrically distributed around the central axis of the lifting block (407), and the brush rods (4011) are distributed in a circular manner at equal angles around the central axis of the electric rotating rod (4010).
3. The Bluetooth headset cable scanning device according to claim 1, characterized in that: The loading and feeding assembly (1) comprises a cushion block (101), a cushion plate (102), an open shell cabin (103), an upper fixed guide wheel group (104), a lower fixed guide wheel group (105), a bolt base plate (106), an inclined plate (107) and a material guide rod (108); the cushion plate (102) is arranged on the top side of the cushion block (101), and the open shell cabin (103) is arranged on the top side of the cushion plate (102); the output end of the open shell cabin (103) is bolted to the material guide rod (108) via the inclined plate (107).
4. The Bluetooth headset cable scanning device according to claim 3, characterized in that: A material guide rod (108) is arranged on the inner side of the middle of the open shell chamber (103), and an upper fixed guide wheel group (104) and a lower fixed guide wheel group (105) which are parallel to each other are arranged on the inner side of one end of the open shell chamber (103).
5. The Bluetooth headset cable scanning device according to claim 3, characterized in that: The distribution assembly (2) comprises a hinged rod (201), an inclined rod (202), an articulated frame (203), an elastic telescopic rod (204), a parallel articulated rod (205) and an arc strip (206); the hinged rod (201) is hingedly connected to the upper inner side of the open shell cabin (103); a tilted rod (202) for mounting the arc strip (206) is arranged on one side of the hinged rod (201); an articulated frame (203) is arranged on the inner side of the inclined rod (202); and the articulated frame (203) is hingedly connected to the parallel articulated rod (205) via the elastic telescopic rod (204).
6. The Bluetooth headset cable scanning device according to claim 3, characterized in that: The distribution and feeding mechanism (3) comprises an output rod (301), a driving motor (302), a conveyor belt (303) and an oblique card (304); the output rod (301) is arranged on the inner side of the other end of the open shell cabin (103); the output rod (301) is connected to the output end of the driving motor (302); the output rod (301) is wound with a conveyor belt (303); and a plurality of groups of parallel distributed oblique card (304) are arranged on the outer side of the conveyor belt (303).
Citation Information
Patent Citations
Bluetooth earphone flat cable code scanning device
CN112312264A