A flow channel storage mechanism for a Bluetooth headset module
By designing a flow channel storage mechanism for the Bluetooth headset module, the problem of low production efficiency caused by improper arrangement of equipment and personnel between work sections was solved, stable temporary storage and transportation of the carrier was achieved, and production efficiency was improved.
Patent Information
- Application Number
- CN202211726180.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-29
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2042-12-29
AI Technical Summary
During the production of Bluetooth headsets, improper arrangement of equipment processing speed and number of personnel between work sections leads to low production efficiency, excessive employee stress or equipment shutdown.
A Bluetooth headset module flow channel storage mechanism is designed, including a carrier entry and transfer mechanism, a carrier temporary storage mechanism, a carrier exit and transfer mechanism, a carrier track switching mechanism and a carrier blocking mechanism. These mechanisms are used to realize the temporary storage, positioning and conveying switching of Bluetooth headset carriers, thereby ensuring the stability of the production process.
It realizes the stable temporary storage and transportation of Bluetooth headset carriers, avoids the waste of equipment and personnel resources, improves production efficiency, and reduces the occurrence of product abnormalities.
Smart Images

Figure CN116367070B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of module flow channel storage, and in particular relates to a Bluetooth headset module flow channel storage mechanism. Background Art
[0002] Bluetooth headsets are hands-free headsets that apply Bluetooth technology to headphones, freeing users from the tangle of annoying wires and allowing them to be used freely in a variety of ways. Since their introduction, Bluetooth headsets have been a valuable tool for mobile business professionals to improve their efficiency.
[0003] During the production of Bluetooth headsets, each processing section will arrange the connection between personnel and equipment according to different production speeds. The arrangement of equipment processing speed and number of personnel between sections is extremely important. If too many people are arranged, the mechanical processing speed will not keep up with the human processing speed, causing some employees to stop working. If the equipment processing speed is too fast, employees will be under highly stressful working conditions for a long time, which may easily lead to product abnormalities. Controlling the production speed difference between sections requires the arrangement of process engineers and the cooperation of auxiliary equipment. For example, switching between sections requires storage equipment for adjustment to reduce the production pressure of the next section. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to provide a Bluetooth headset module flow channel storage mechanism, which imports the Bluetooth headset carrier into the carrier temporary storage mechanism for temporary storage through the carrier entry transfer mechanism, and then exports the Bluetooth headset carrier temporarily stored on the carrier temporary storage mechanism through the carrier exit transfer mechanism, thereby achieving the purpose of temporarily storing the Bluetooth headset carrier.
[0005] A flow channel storage mechanism for a Bluetooth headset module includes a base frame;
[0006] A conveying device, mounted on the base frame and used to convey the Bluetooth headset carrier;
[0007] A carrier temporary storage mechanism, installed on the base frame and located above the conveying device and used for temporary storage of Bluetooth headset carriers;
[0008] The carrier loading and unloading mechanism is installed on the base frame and is located on the right side of the carrier temporary storage mechanism and is used to lift and transport the Bluetooth headset carrier to the carrier temporary storage mechanism for temporary storage;
[0009] A carrier out-transfer mechanism is installed on the base frame and is located on the left side of the carrier temporary storage mechanism and is used to transport the temporarily stored Bluetooth headset carrier out;
[0010] A carrier track switching mechanism is installed on the base frame and is located below the carrier transfer mechanism and is used for track switching when the Bluetooth headset carrier is transported;
[0011] A carrier blocking mechanism is installed on the base frame and is located on one side of the carrier track switching mechanism and the carrier unloading and transferring mechanism and is used to block the Bluetooth headset carrier during transportation;
[0012] The carrier out-transfer mechanism and the carrier in-transfer mechanism both include a carrier shifting device, a carrier slide and a carrier lifting mechanism. The carrier slide is arranged between the carrier shifting device and the carrier temporary storage mechanism and is used for the sliding displacement of the Bluetooth headset carrier. The carrier lifting mechanism is installed on the base frame and is located below the conveying device and is used for lifting and placing the Bluetooth headset carrier. The material shifting end of the carrier shifting device is arranged above the carrier slide and is used to drive the displacement of the Bluetooth headset carrier.
[0013] Preferably, the carrier shifting device includes a positioning and moving mechanism, a transverse moving cylinder, a lifting cylinder, a shifting frame and a positioning column. The positioning and moving mechanism is installed on the base frame and the movable rod is connected to the transverse moving cylinder. The lifting cylinder is connected to the transverse moving cylinder movable rod and the piston rod is connected to the shifting frame. Several of the positioning columns are connected to the shifting frame and cooperate with the Bluetooth headset carrier; the carrier lifting mechanism includes a material transport lifting cylinder and a carrier lifting plate. The material transport lifting cylinder is installed on the base frame and the piston rod is connected to the carrier lifting plate. A positioning sensor is installed on the carrier lifting plate; the carrier slide includes a slide plate, and a material mouth hole for the Bluetooth headset carrier to pass through is opened on the slide plate, and the material mouth hole is arranged directly above the carrier lifting plate.
[0014] Preferably, the carrier slide of the carrier entry and transfer mechanism includes a left adjustable slide plate, a right adjustable slide plate and an adjusting clamping cylinder, the left adjustable slide plate and the right adjustable slide plate are both slidably connected to the base frame, the left adjustable slide plate and the right adjustable slide plate are symmetrically provided with material mouth grooves for the Bluetooth headset carrier to pass through, the material mouth grooves are arranged directly above the carrier lifting plate, the adjusting clamping cylinder is installed on the base frame and the two piston rods are respectively connected to the left adjustable slide plate and the right adjustable slide plate.
[0015] Preferably, the conveying device includes a reflux mechanism, a tested mechanism and a mechanism to be tested, which are installed on the base frame from right to left in sequence. The reflux mechanism, the tested mechanism and the mechanism to be tested each include a left belt conveyor, a right belt conveyor and a power motor. The left belt conveyor and the right belt conveyor are symmetrically arranged and are transmission-connected to the power motor.
[0016] Preferably, the carrier track changing mechanism includes a track changing cylinder, a track changing push plate, a track changing plate, a placing cylinder, a shifting cylinder, a track changing plate and a track changing frame. The track changing plate is installed on the track changing frame and is located above between the measured mechanism and the mechanism to be measured. The placing cylinder and the shifting cylinder are installed on the base frame and are respectively arranged below the measured mechanism and the mechanism to be measured. The two track changing plates are respectively installed on the piston rods of the placing cylinder and the shifting cylinder and are located between the left belt conveyor and the right belt conveyor. The track changing cylinder is installed on the track changing frame and the piston rod is connected to the track changing push plate. A positioning sensor is provided on the track changing plate.
[0017] Preferably, it also includes a carrier positioning and blocking mechanism, and the two carrier positioning and blocking mechanisms are respectively installed on one side of the carrier lifting mechanism and one side of the transposition cylinder in the carrier entry and transfer mechanism and are used for positioning the Bluetooth headset carrier.
[0018] Preferably, the carrier temporary storage mechanism includes a belt conveyor, a fixed frame, a dividing rod and a blocker group. The belt conveyor is installed on the base frame through the fixed frame. Several dividing rods are installed on the base frame and arranged above the belt conveyor and are used to divide the belt conveyor into several conveying lanes for conveying Bluetooth headset carriers. The blocker group is arranged between the carrier unloading mechanism and the carrier temporary storage mechanism and is used to block the movement of the temporarily stored Bluetooth headset carriers.
[0019] Preferably, the blocker group includes several blockers, which are mounted on a fixed frame and cooperate with the corresponding conveying path; the blocker includes a displacement plate, a telescopic column, a blocking cylinder and a spring, the blocking cylinder is mounted on the fixed frame and the piston rod is connected to the displacement plate, at least one step telescopic hole is provided on the displacement plate, and the spring and telescopic column are arranged in the step telescopic hole.
[0020] Preferably, the carrier blocking mechanism includes a blocking fixed frame, a lifting and positioning cylinder, a positioning plate and a blocking mechanism, the lifting and positioning cylinder is installed on the blocking fixed frame and the piston rod is connected to the positioning plate, a positioning pin is installed on the positioning plate, the blocking mechanism is installed on the blocking fixed frame and is located on one side of the lifting and positioning cylinder and is used to block the movement of the Bluetooth headset carrier; a positioning sensor is provided on the positioning plate.
[0021] Preferably, the blocking mechanism and the carrier positioning blocking mechanism both include a positioning cylinder, a positioning frame and a positioning bearing. The piston rod of the positioning cylinder is connected to the positioning frame. The positioning bearing is installed on the positioning frame and is used to block the movement of the Bluetooth headset carrier. A positioning sensor is provided on the positioning frame.
[0022] Beneficial effects:
[0023] (1) A Bluetooth headset module flow channel storage mechanism of the present invention imports a Bluetooth headset carrier into a carrier temporary storage mechanism for temporary storage through a carrier entry transfer mechanism, and then exports the Bluetooth headset carrier temporarily stored on the carrier temporary storage mechanism through a carrier exit transfer mechanism, thereby achieving the purpose of temporarily storing the Bluetooth headset carrier.
[0024] (2) A Bluetooth headset module flow channel storage mechanism of the present invention completes the positioning of the Bluetooth headset carrier through the carrier positioning blocking mechanism and the blocking mechanism, and at the same time transports a single Bluetooth headset carrier through the carrier blocking mechanism, which facilitates the transport switching of the Bluetooth headset carrier.
[0025] (3) A Bluetooth headset module flow channel storage mechanism of the present invention delivers a single Bluetooth headset carrier through a carrier blocking mechanism, so that the carrier track changing mechanism will not interfere with the track changing movement of the Bluetooth headset carrier, thereby ensuring the stability of the Bluetooth headset carrier track changing.
[0026] (4) A Bluetooth headset module flow channel storage mechanism of the present invention presses down the telescopic column through the positioning column, so that the Bluetooth headset carrier can smoothly pass through the blocker, and at the same time adjusts the position of the telescopic column through the blocking cylinder to achieve the purpose of positioning the next Bluetooth headset carrier by the telescopic column. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 Schematic diagram of the structure of the flow channel storage mechanism;
[0028] Figure 2 It is a structural schematic diagram of the conveying device;
[0029] Figure 3 This is a structural diagram of the carrier entry and transfer mechanism;
[0030] Figure 4 Schematic diagram of the structure of the vehicle track changing mechanism;
[0031] Figure 5 is a structural diagram of a vehicle blocking mechanism;
[0032] Figure 6 It is a structural diagram of the carrier temporary storage mechanism;
[0033] Figure 7 This is a schematic diagram of the structure of the vehicle shifting device;
[0034] 1-base frame, 2-conveyor device, 21-reflow mechanism, 22-tested mechanism, 23-mechanism to be tested, 24-left belt conveyor, 25-right belt conveyor, 3-carrier entry and transfer mechanism, 31-carrier shifting device, 32-carrier slide, 33-carrier lifting mechanism, 34-positioning and moving mechanism, 35-transverse cylinder, 36-lifting cylinder, 37-shifting rack, 38-positioning column, 39-slide plate, 310-material mouth hole, 311-material lifting cylinder, 312-carrier lifting plate, 313-left adjustable slide plate, 314-right adjustable slide plate, 315-material mouth slot, 316-adjusting clamping cylinder, 4-Carrier unloading and transferring mechanism, 5-Carrier temporary storage mechanism, 51-Belt conveyor, 52-Fixed frame, 53-Dividing rod, 54-Blocker group, 55-Blocker, 56-Displacement plate, 57-Telescopic column, 58-Blocking cylinder, 6-Carrier blocking mechanism, 61-Blocking fixed frame, 62-Lifting and positioning cylinder, 63-Positioning plate, 64-Positioning cylinder, 65-Positioning frame, 66-Positioning bearing, 7-Carrier track changing mechanism, 71-Track changing cylinder, 72-Track changing push plate, 73-Track changing plate, 74-Placing cylinder, 75-Transposition cylinder, 76-Track changing plate, 8-Carrier positioning blocking mechanism, 9-Bluetooth headset carrier. DETAILED DESCRIPTION
[0035] The embodiments of the present invention are further described below with reference to the accompanying drawings.
[0036] Example 1
[0037] like Figures 1 to 7 As shown; A Bluetooth headset module flow channel storage mechanism, including a base frame 1;
[0038] A conveying device 2 is installed on the base frame 1 and is used to convey the Bluetooth headset carrier 9;
[0039] A carrier temporary storage mechanism 5 is installed on the base frame 1 and located above the conveying device 2 and is used for temporarily storing the Bluetooth headset carrier 9;
[0040] The carrier loading and unloading mechanism 3 is installed on the base frame 1 and is located on the right side of the carrier temporary storage mechanism 5 and is used to lift the Bluetooth headset carrier 9 and transport it to the carrier temporary storage mechanism 5 for temporary storage;
[0041] The carrier out-transfer mechanism 4 is installed on the base frame 1 and is located on the left side of the carrier temporary storage mechanism 5 and is used to transport the temporarily stored Bluetooth headset carrier 9 out;
[0042] The carrier track switching mechanism 7 is installed on the base frame 1 and is located below the carrier transfer mechanism 3 and is used for track switching when the Bluetooth headset carrier 9 is transported;
[0043] A carrier blocking mechanism 6 is installed on the base frame 1 and is located on one side of the carrier track switching mechanism 7 and the carrier unloading and transferring mechanism 4 and is used to block the Bluetooth headset carrier 9 in transit;
[0044] The carrier out-transfer mechanism 4 and the carrier in-transfer mechanism 3 both include a carrier shifting device 31, a carrier slide 32 and a carrier lifting mechanism 33. The carrier slide 32 is arranged between the carrier shifting device 31 and the carrier temporary storage mechanism 5 and is used for the sliding displacement of the Bluetooth headset carrier 9. The carrier lifting mechanism 33 is installed on the base frame 1 and is located below the conveying device 2 and is used for lifting and placing the Bluetooth headset carrier 9. The material shifting end of the carrier shifting device 31 is arranged above the carrier slide 32 and is used to drive the Bluetooth headset carrier 9 to move.
[0045] Specifically, a Bluetooth headset carrier 9 equipped with Bluetooth headset components is placed on a conveying device 2, and the conveying device 2 sequentially conveys the Bluetooth headset carrier 9 to the next work section; during operation, the carrier track-changing mechanism 7 sequentially conveys excess Bluetooth headset carriers 9 to the track area to be tested, and then the carrier entry transfer mechanism 3 orderly conveys the Bluetooth headset carriers 9 to the carrier temporary storage mechanism 5 for temporary storage. When the temporarily stored Bluetooth headset carriers 9 are exported, the carrier exit transfer mechanism 4 orderly conveys the Bluetooth headset carriers 9 temporarily stored on the carrier temporary storage mechanism 5 to the track area to be tested and to the next work section; the carrier blocking mechanism 6 releases a fixed number of Bluetooth headset carriers 9 and conveys them to the carrier track-changing mechanism 7 or the next work section, so as to avoid the Bluetooth headset carriers 9 being concentratedly conveyed to the carrier track-changing mechanism 7 or the next work section, resulting in adjacent Bluetooth headset carriers. 9 is close to each other due to the conveying force, and the Bluetooth headset carrier 9 is close to each other, which can easily cause the carrier track changing mechanism 7 to work abnormally, and will cause the products in the subsequent section to be piled up, squeezed and deviated, resulting in misalignment; among them, when the carrier entry transfer mechanism 3 is working, the Bluetooth headset carrier 9 in the track area to be tested is lifted into the carrier slide 32 by the carrier lifting mechanism 33, and then the carrier shifting device 31 drives the Bluetooth headset carrier 9 to be temporarily stored on the carrier temporary storage mechanism 5. The working mode of the carrier exit transfer mechanism 4 is opposite to that of the carrier entry transfer mechanism 3. The carrier shifting device 31 drives the Bluetooth headset carrier 9 designated for temporary storage on the carrier temporary storage mechanism 5 to move, and then moves it to the carrier lifting mechanism 33 on the carrier slide 32, and then the carrier lifting mechanism 33 places the Bluetooth headset carrier 9 on the track area to be tested and transports it to the next section.
[0046] In another embodiment of the present invention, the carrier shifting device 31 includes a positioning and moving mechanism 34, a transverse cylinder 35, a lifting cylinder 36, a shifting frame 37 and a positioning column 38. The positioning and moving mechanism 34 is installed on the base frame 1 and the movable rod is connected to the transverse cylinder 35. The lifting cylinder 36 is connected to the movable rod of the transverse cylinder 35 and the piston rod is connected to the shifting frame 37. Several of the positioning columns 38 are connected to the shifting frame 37 and cooperate with the Bluetooth headset carrier 9. ; The carrier lifting mechanism 33 includes a material lifting cylinder 311 and a carrier lifting plate 312. The material lifting cylinder 311 is installed on the base frame 1 and the piston rod is connected to the carrier lifting plate 312. A positioning sensor is installed on the carrier lifting plate 312; the carrier slide 32 includes a slide plate 39. The slide plate 39 is provided with a material mouth hole 310 for the Bluetooth headset carrier 9 to pass through. The material mouth hole 310 is arranged directly above the carrier lifting plate 312.
[0047] Specifically, when the carrier shifting device 31 of the carrier entering the transfer mechanism 3 is working, the carrier lifting plate 312 is driven to rise by the material transport lifting cylinder 311, and then the Bluetooth headset carrier 9 on the track area to be tested in the conveying device 2 is lifted, so that the Bluetooth headset carrier 9 rises to the material mouth hole 310 of the slide plate 39, and is parallel to or higher than 1mm in the slide plate 39; then the lifting cylinder 36 drives the shifting frame 37 to descend, so that the positioning column 38 on the shifting frame 37 is inserted into the positioning hole in the lifted Bluetooth headset carrier 9 to complete the docking, and then the positioning moving mechanism 34 drives the transverse moving cylinder 35 to move, so that the Bluetooth headset carrier 9 that has completed the docking is moved to the specified position on the slide plate 39, and then the piston rod of the transverse moving cylinder 35 pushes the lifting cylinder 36 to move, and then the Bluetooth headset carrier 9 moves from the slide plate 39 to the carrier temporary storage mechanism 5, and finally the lifting cylinder 36 drives the positioning column 38 to Lift and move the Bluetooth headset carrier 9 out of the positioning hole; the working principle of the carrier shifting device 31 in the carrier out-transfer mechanism 4 is that the positioning and moving mechanism 34 drives the transverse cylinder 35 to move, and then the piston rod of the transverse cylinder 35 pushes the lifting cylinder 36 to move, so as to move the Bluetooth headset carrier 9 temporarily stored on the carrier temporary storage mechanism 5 to the track area to be tested and transport it to the next work section, and its Bluetooth headset carrier 9 positioning and grabbing are consistent with the carrier shifting device 31 of the carrier entering the transfer mechanism 3; the Bluetooth headset carrier 9 above the carrier lifting plate 312 is sensed by the positioning sensor on the carrier lifting plate 312; wherein, the positioning and moving mechanism 34 adopts a stepping motor to drive the synchronous pulley, the synchronous pulley drives the synchronous toothed belt, and the synchronous toothed belt adopts two synchronous pulleys to open, so that the synchronous toothed belt drives the transverse cylinder 35 to move, and the transverse cylinder 35 is connected to the base frame 1 through a slide rail to ensure its movement stability.
[0048] In another embodiment of the present invention, the carrier slide 32 of the carrier entry and transfer mechanism 3 includes a left adjustable slide plate 313, a right adjustable slide plate 314 and an adjusting clamping cylinder 316, and the left adjustable slide plate 313 and the right adjustable slide plate 314 are both slidably connected to the base frame 1, and the left adjustable slide plate 313 and the right adjustable slide plate 314 are symmetrically provided with a material mouth groove 315 for the Bluetooth headset carrier 9 to pass through, and the material mouth groove 315 is arranged directly above the carrier lifting plate 312, and the adjusting clamping cylinder 316 is installed on the base frame 1 and the two piston rods are respectively connected to the left adjustable slide plate 313 and the right adjustable slide plate 314.
[0049] Specifically, when the carrier slide 32 of the carrier entry transfer mechanism 3 is working, the adjusting claw cylinder 316 is used to drive the left adjustable slide plate 313 and the right adjustable slide plate 314 to move closer or farther away. When the left adjustable slide plate 313 and the right adjustable slide plate 314 are farther away from each other, the carrier lifting mechanism 33 lifts the Bluetooth headset carrier 9 up and can pass through the material opening slot 315 of the left adjustable slide plate 313 and the right adjustable slide plate 314. When the left adjustable slide plate 313 and the right adjustable slide plate 314 are close to each other, the two material opening slots 315 thereon are close together, so that the Bluetooth headset carrier 9 can move on the track formed by the left adjustable slide plate 313 and the right adjustable slide plate 314 without falling from the material opening slot 315, so that the carrier shifting device 31 drives the Bluetooth headset carrier 9 to move to the specified position.
[0050] In another embodiment of the present invention, the conveying device 2 includes a reflux mechanism 21, a tested mechanism 22 and a tested mechanism 23 installed on the base frame 1 from right to left in sequence. The reflux mechanism 21, the tested mechanism 22 and the tested mechanism 23 each include a left belt conveyor 24, a right belt conveyor 25 and a power motor. The left belt conveyor 24 and the right belt conveyor 25 are symmetrically arranged and are transmission-connected to the power motor.
[0051] Specifically, the reflux mechanism 21 transports the Bluetooth headset carrier 9 back to the previous work section, the tested mechanism 22 is used to transport the Bluetooth headset carrier 9 to the next work section, and the tested mechanism 23 is used to transport the Bluetooth headset carrier 9 to a temporary storage area. The reflux mechanism 21, the tested mechanism 22 and the tested mechanism 23 are all composed of a left belt conveyor 24 and a right belt conveyor 25, and are driven by a power motor to ensure the synchronization of their movement, so that the transportation of the Bluetooth headset carrier 9 remains stable.
[0052] In another embodiment of the present invention, the carrier track changing mechanism 7 includes a track changing cylinder 71, a track changing push plate 72, a track changing plate 73, a placing cylinder 74, a shifting cylinder 75, a track changing plate 76 and a track changing frame. The track changing plate 73 is installed on the track changing frame and is located above between the measured mechanism 22 and the mechanism to be measured 23. The placing cylinder 74 and the shifting cylinder 75 are installed on the base frame 1 and are respectively arranged below the measured mechanism 22 and the mechanism to be measured 23. The two track changing plates 76 are respectively installed on the piston rods of the placing cylinder 74 and the shifting cylinder 75 and are located between the left belt conveyor 24 and the right belt conveyor 25. The track changing cylinder 71 is installed on the track changing frame and the piston rod is connected to the track changing push plate 72; a positioning sensor is provided on the track changing plate 76.
[0053] Specifically, when the Bluetooth headset carrier 9 is switched from the tested mechanism 22 to the tested mechanism 23, the track changing plate 76 is driven to rise by the shifting cylinder 75, so that the Bluetooth headset carrier 9 on the track of the tested mechanism 22 is lifted, and the track changing push plate 72 is driven to move by the track changing cylinder 71, and then the Bluetooth headset carrier 9 is pushed to move by the track changing push plate 72, and then enters the track changing plate 76 on the piston rod of the placing cylinder 74 through the track changing plate 73, and then the track changing plate 76 is driven to descend by the placing cylinder 74, so that the Bluetooth headset carrier 9 on it falls into the track of the tested mechanism 23, thereby completing the track switching; the Bluetooth headset carrier 9 above the track changing plate 76 is sensed by the positioning sensor.
[0054] In another embodiment of the present invention, a carrier positioning and blocking mechanism 8 is further included. The two carrier positioning and blocking mechanisms 8 are respectively installed on one side of the carrier lifting mechanism 33 in the carrier transfer mechanism 3 and one side of the transposition cylinder 75 and are used to position the Bluetooth headset carrier 9.
[0055] Specifically, the Bluetooth headset carrier 9 is positioned during the transportation process through the carrier positioning and blocking mechanism 8, so that the Bluetooth headset carrier 9 during the transportation process is accurately positioned above the track changing plate 76 connected by the carrier lifting mechanism 33 and the shifting cylinder 75, so that the carrier lifting mechanism 33 and the track changing plate 76 can accurately dock the Bluetooth headset carrier 9, ensuring that the Bluetooth headset carrier 9 is accurately transported to the next workstation.
[0056] In another embodiment of the present invention, the carrier temporary storage mechanism 5 includes a belt conveyor 51, a fixed frame 52, a dividing rod 53 and a blocker group 54. The belt conveyor 51 is installed on the base frame 1 through the fixed frame 52. Several dividing rods 53 are installed on the base frame 1 and are arranged above the belt conveyor 51 and are used to divide the belt conveyor 51 into several conveying lanes for conveying Bluetooth headset carriers 9. The blocker group 54 is arranged between the carrier unloading mechanism 4 and the carrier temporary storage mechanism 5 and is used to block the movement of the temporarily stored Bluetooth headset carriers 9.
[0057] Specifically, a number of dividing rods 53 divide the belt conveyor 51 into a number of conveying lanes for temporarily storing Bluetooth headset carriers 9. When the carrier shifting device 31 of the carrier entry transfer mechanism 3 drives the Bluetooth headset carrier 9 to move, the Bluetooth headset carrier 9 will be transported to the corresponding conveying lane for temporary storage according to the situation, and the temporary storage capacity of the Bluetooth headset carrier 9 will be increased. The temporarily stored Bluetooth headset carrier 9 will be blocked by the blocker group 54. At the same time, according to the output situation, the carrier shifting device 31 of the carrier exit transfer mechanism 4 drives the Bluetooth headset carrier 9 in the corresponding conveying lane to move and transport it out, and the blocker group 54 controls the opening of the corresponding conveying lane.
[0058] In another embodiment of the present invention, the blocker group 54 includes a plurality of blockers 55, which are mounted on a fixed frame 52 and cooperate with a corresponding conveying path; the blocker 55 includes a displacement plate 56, a telescopic column 57, a blocking cylinder 58 and a spring, the blocking cylinder 58 is mounted on the fixed frame 52 and the piston rod is connected to the displacement plate 56, at least one stepped telescopic hole is opened on the displacement plate 56, and the spring and the telescopic column 57 are arranged in the stepped telescopic hole.
[0059] Specifically, when the positioning column 38 in the carrier shifting device 31 in the carrier transfer mechanism 4 descends and is inserted into the positioning hole of the Bluetooth headset carrier 9, the positioning column 38 will simultaneously press down the telescopic column 57 to shrink the telescopic column 57, and then the carrier shifting device 31 drives the Bluetooth headset carrier 9 to move the distance of a Bluetooth headset carrier 9, so that the latter Bluetooth headset carrier 9 moves to the position of the previous Bluetooth headset carrier 9, and at the same time, the blocking cylinder 58 drives the displacement plate 56 to shift accordingly, and the blocking cylinder 58 drives the displacement plate 56 to shift and then returns to its original position, so that the telescopic column 57 enters the positioning hole of the latter Bluetooth headset carrier 9, completing the positioning limit of the latter Bluetooth headset carrier 9, and then the previous Bluetooth headset carrier 9 is driven by the carrier shifting device 31 to move to the specified position; the telescopic column 57 returns to its original position through the spring for positioning.
[0060] In another embodiment of the present invention, the carrier blocking mechanism 6 includes a blocking fixed frame 61, a lifting and positioning cylinder 62, a positioning plate 63 and a blocking mechanism. The lifting and positioning cylinder 62 is installed on the blocking fixed frame 61, and the piston rod of the lifting and positioning cylinder 62 is connected to the positioning plate 63. A positioning pin is installed on the positioning plate 63. The blocking mechanism is installed on the blocking fixed frame 61 and is located on one side of the lifting and positioning cylinder 62 and is used to block the movement of the Bluetooth headset carrier 9; a positioning sensor is provided on the positioning plate 63.
[0061] Specifically, after the blocking mechanism blocks the Bluetooth headset carrier 9 in transportation and positions it, the lifting and positioning cylinder 62 drives the positioning plate 63 to rise, so that the positioning pin on the positioning plate 63 is inserted into the positioning hole of the Bluetooth headset carrier 9 after the Bluetooth headset carrier 9 positioned by the blocking mechanism, completing the positioning of the next Bluetooth headset carrier 9, and the Bluetooth headset carrier 9 blocked by the blocking mechanism is controlled by the blocking mechanism to be released and transported to the next work section or the carrier track changing mechanism 7. The positioning sensor is used to determine whether the blocking mechanism blocks the Bluetooth headset carrier 9 to ensure that the blocking mechanism can block and position the next Bluetooth headset carrier 9 when the lifting and positioning cylinder 62 descends.
[0062] In another embodiment of the present invention, the blocking mechanism and the carrier positioning blocking mechanism 8 both include a positioning cylinder 64, a positioning frame 65 and a positioning bearing 66. The piston rod of the positioning cylinder 64 is connected to the positioning frame 65. The positioning bearing 66 is installed on the positioning frame 65 and is used to block the movement of the Bluetooth headset carrier 9. A positioning sensor is provided on the positioning frame 65.
[0063] Specifically, the positioning cylinder 64 drives the positioning frame 65 to rise and fall, so that the positioning bearing 66 moves to the moving track of the Bluetooth headset carrier 9 to block it, and determines whether the Bluetooth headset carrier 9 is blocked by the positioning sensor.
[0064] While the specific embodiments of the present invention have been described in detail above, these are merely exemplary and the present invention is not limited thereto. It will be apparent to those skilled in the art that any equivalent modifications and substitutions to the present invention fall within the scope of the present invention. Therefore, any equivalent changes and modifications made without departing from the spirit and scope of the present invention are encompassed within the scope of the present invention.
Claims
1. A flow channel storage mechanism for a Bluetooth headset module, characterized by: It includes a base frame (1); A conveying device (2), mounted on the base frame (1) and used for conveying the Bluetooth headset carrier (9); A carrier temporary storage mechanism (5), mounted on the base frame (1) and located above the conveying device (2) and used for temporarily storing the Bluetooth headset carrier (9); A carrier loading and unloading mechanism (3) is installed on the base frame (1) and is located on the right side of the carrier temporary storage mechanism (5) and is used to lift and transport the Bluetooth headset carrier (9) to the carrier temporary storage mechanism (5) for temporary storage; A carrier export and transfer mechanism (4) is installed on the base frame (1) and is located on the left side of the carrier temporary storage mechanism (5) and is used to transport the temporarily stored Bluetooth headset carrier (9) out; A carrier track switching mechanism (7) is mounted on the base frame (1) and is located below the carrier transfer mechanism (3) and is used for track switching when the Bluetooth headset carrier (9) is transported; A carrier blocking mechanism (6) is mounted on the base frame (1) and is located on one side of the carrier track switching mechanism (7) and the carrier unloading and transferring mechanism (4) and is used to block the Bluetooth headset carrier (9) in transport; The carrier out-transfer mechanism (4) and the carrier in-transfer mechanism (3) both include a carrier shifting device (31), a carrier slideway (32) and a carrier lifting mechanism (33), wherein the carrier slideway (32) is arranged between the carrier shifting device (31) and the carrier temporary storage mechanism (5) and is used for sliding displacement of the Bluetooth headset carrier (9), and the carrier lifting mechanism (33) is installed on the base frame (1) and is located below the conveying device (2) and is used for lifting and placing the Bluetooth headset carrier (9), and the material shifting end of the carrier shifting device (31) is arranged above the carrier slideway (32) and is used for driving the Bluetooth headset carrier (9) to move; The carrier track changing mechanism (7) includes a track changing cylinder (71), a track changing push plate (72), a track changing plate (73), a placing cylinder (74), a shifting cylinder (75), a track changing plate (76) and a track changing frame. The track changing plate (73) is mounted on the track changing frame and is located above the measured mechanism (22) and the mechanism to be measured (23). The placing cylinder (74) and the shifting cylinder (75) are mounted on the base frame (1) and are respectively arranged below the measured mechanism (22) and the mechanism to be measured (23). The two track changing plates (76) are respectively mounted on the piston rods of the placing cylinder (74) and the shifting cylinder (75) and are located between the left belt conveyor (24) and the right belt conveyor (25). The track changing cylinder (71) is mounted on the track changing frame and its piston rod is connected to the track changing push plate (72). A positioning sensor is provided on the track changing plate (76).
2. A Bluetooth headset module flow channel storage mechanism according to claim 1, characterized in that: The carrier shifting device (31) includes a positioning movement mechanism (34), a transverse cylinder (35), a lifting cylinder (36), a shifting frame (37) and a positioning column (38), wherein the positioning movement mechanism (34) is mounted on the base frame (1) and the movable rod is connected to the transverse cylinder (35), the lifting cylinder (36) is connected to the movable rod of the transverse cylinder (35) and the piston rod is connected to the shifting frame (37), and a plurality of the positioning columns (38) are connected to the shifting frame (37) and cooperate with the Bluetooth headset carrier (9); The carrier lifting mechanism (33) includes a lifting cylinder (311) and a carrier lifting plate (312), wherein the lifting cylinder (311) is mounted on the base frame (1) and the piston rod is connected to the carrier lifting plate (312), and a positioning sensor is mounted on the carrier lifting plate (312); the carrier slideway (32) includes a slideway plate (39), and the slideway plate (39) is provided with a material port hole (310) for the Bluetooth headset carrier (9) to pass through, and the material port hole (310) is arranged directly above the carrier lifting plate (312).
3. A Bluetooth headset module flow channel storage mechanism according to claim 2, characterized in that: The carrier slideway (32) of the carrier entry and transfer mechanism (3) includes a left adjustable slideway plate (313), a right adjustable slideway plate (314) and an adjusting claw cylinder (316), wherein the left adjustable slideway plate (313) and the right adjustable slideway plate (314) are both slidably connected to the base frame (1), and the left adjustable slideway plate (313) and the right adjustable slideway plate (314) are symmetrically provided with a material opening slot (315) for the Bluetooth headset carrier (9) to pass through, and the material opening slot (315) is arranged directly above the carrier lifting plate (312), and the adjusting claw cylinder (316) is installed on the base frame (1) and the two piston rods are respectively connected to the left adjustable slideway plate (313) and the right adjustable slideway plate (314).
4. A Bluetooth headset module flow channel storage mechanism according to claim 1 or 3, characterized in that: The conveying device (2) comprises a return mechanism (21), a measured mechanism (22) and a mechanism to be measured (23) which are sequentially mounted on the base frame (1) from right to left. The return mechanism (21), the measured mechanism (22) and the mechanism to be measured (23) each comprise a left belt conveyor (24), a right belt conveyor (25) and a power motor. The left belt conveyor (24) and the right belt conveyor (25) are symmetrically arranged and are transmission-connected to the power motor.
5. A Bluetooth headset module flow channel storage mechanism according to claim 4, characterized in that: It also includes a carrier positioning and blocking mechanism (8), wherein the two carrier positioning and blocking mechanisms (8) are respectively installed on one side of the carrier lifting mechanism (33) and one side of the transposition cylinder (75) in the carrier entry and transfer mechanism (3) and are used for positioning the Bluetooth headset carrier (9).
6. A Bluetooth headset module flow channel storage mechanism according to claim 5, characterized in that: The carrier temporary storage mechanism (5) includes a belt conveyor (51), a fixing frame (52), a dividing rod (53) and a blocker group (54). The belt conveyor (51) is installed on the base frame (1) through the fixing frame (52). A plurality of the dividing rods (53) are installed on the base frame (1) and arranged above the belt conveyor (51) and are used to divide the belt conveyor (51) into a plurality of conveying lanes for conveying Bluetooth headset carriers (9). The blocker group (54) is arranged between the carrier unloading mechanism (4) and the carrier temporary storage mechanism (5) and is used to block the movement of the temporarily stored Bluetooth headset carriers (9).
7. A Bluetooth headset module flow channel storage mechanism according to claim 6, characterized in that: The blocker group (54) includes a plurality of blockers (55), which are mounted on a fixed frame (52) and cooperate with a corresponding conveying path; the blocker (55) includes a displacement plate (56), a telescopic column (57), a blocking cylinder (58) and a spring, wherein the blocking cylinder (58) is mounted on the fixed frame (52) and the piston rod is connected to the displacement plate (56), and at least one stepped telescopic hole is provided on the displacement plate (56), and the spring and the telescopic column (57) are arranged in the stepped telescopic hole.
8. A Bluetooth headset module flow channel storage mechanism according to claim 1 or 7, characterized in that: The carrier blocking mechanism (6) includes a blocking fixed frame (61), a lifting and positioning cylinder (62), a positioning plate (63) and a blocking mechanism. The lifting and positioning cylinder (62) is installed on the blocking fixed frame (61) and the piston rod is connected to the positioning plate (63). A positioning pin is installed on the positioning plate (63). The blocking mechanism is installed on the fixed frame (61) and is located on one side of the lifting and positioning cylinder (62) and is used to block the movement of the Bluetooth headset carrier (9); a positioning sensor is provided on the positioning plate (63).
9. The flow channel storage mechanism of a Bluetooth headset module according to claim 8, characterized in that: The blocking mechanism and the carrier positioning blocking mechanism (8) both include a positioning cylinder (64), a positioning frame (65) and a positioning bearing (66); the piston rod of the positioning cylinder (64) is connected to the positioning frame (65); the positioning bearing (66) is mounted on the positioning frame (65) and is used to block the movement of the Bluetooth headset carrier (9); and a positioning sensor is provided on the positioning frame (65).
Citation Information
Patent Citations
Bluetooth earphone module flow channel storage mechanism
CN219287725U