An automatic line for lighters
By designing an automated production line, precise positioning and displacement of lighters and their bases are achieved, along with automated processing. This solves the problems of low production efficiency and unstable quality in existing technologies, thereby improving production efficiency and reducing costs.
Patent Information
- Application Number
- CN202211017615.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-23
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2042-08-23
AI Technical Summary
The current lighter production process requires a combination of manual labor and machinery, resulting in high production costs and low efficiency. Furthermore, the small gap between the lighter and the base makes direct processing impossible, affecting production quality.
Design an automated lighter production line that uses a transmission mechanism in conjunction with processing and assembly equipment at various locations to achieve precise positioning and displacement between the lighter and its base. Fiber optic positioning is used to achieve automated processing.
It improved the efficiency and quality of lighter production, reduced manual intervention, and lowered production costs.
Smart Images

Figure CN115213681B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of lighter production equipment, in particular to an automatic line for lighters. BACKGROUND
[0002] The lighter is a tool for converting liquid fuel into fire energy, and is used to ignite objects as needed in the existing society. The demand for lighters is huge, so the production speed of lighters needs to be accelerated. The existing lighters are processed by manual and machine cooperation. Since the number of lighters held by the workers is limited, the lighters need to be repeatedly held and processed. The lighters are processed by workers, which increases the production cost and reduces the work efficiency, and cannot guarantee the production quality. In addition, the existing lighter production line cannot move the lighter body together with the base and process it. The gap between the lighters on the base is small, so the lighters cannot be directly processed on the base, which cannot meet the demand of the existing lighter production. SUMMARY
[0003] In view of the problems in the prior art, the present application provides an automatic line for lighters to solve the problems in the background. The present application has a novel structure. When used, the transmission mechanism cooperates with the processing and assembling equipment at each position to realize accurate positioning and displacement of the lighter and the base. When the lighter is positioned by the optical fiber at the corresponding work station, the automatic processing is realized, which effectively improves the work efficiency and quality.
[0004] In order to achieve the above purpose, the present application is realized by the following technical scheme: an automatic line for lighters, comprising an automatic line body, the automatic line body comprising a workbench, the workbench being provided with a transmission mechanism, one end of the transmission mechanism being provided with a feeding mechanism, the workbench being provided with a fire ring assembling mechanism and a gasket assembling mechanism, the gasket assembling mechanism and the fire ring assembling mechanism being oppositely and staggeredly installed, one side of the fire ring assembling mechanism being provided with an igniter assembling mechanism, one side of the igniter assembling mechanism being provided with a spring assembling mechanism, the workbench being provided with a flap assembling mechanism, one side of the flap assembling mechanism being provided with a partition plate assembling mechanism, one side of the partition plate assembling mechanism being provided with a fire wire assembling mechanism, one side of the fire wire assembling mechanism being provided with a cap assembling mechanism, and one end of the workbench being fixedly provided with a fire cover assembling mechanism.
[0005] Further, the transmission mechanism comprises a transmission motor, the transmission motor being provided with a transmission belt, one end of the transmission belt being provided with a displacement mechanism, one end of the displacement mechanism being provided with a positioning cylinder, and the bottom of the transmission belt being provided with a base optical fiber.
[0006] Further, the fire adjusting ring assembly mechanism comprises a fire adjusting ring displacement motor and a fire adjusting ring lifting cylinder, the bottom of the fire adjusting ring lifting cylinder is installed with a fire adjusting ring misalignment cylinder, one side of the fire adjusting ring misalignment cylinder is installed with a fire adjusting ring material feeding cylinder, and the bottom of the fire adjusting ring material feeding cylinder is installed with a fire adjusting ring optical fiber.
[0007] Further, the gasket assembly mechanism comprises a gasket displacement motor and a gasket lifting cylinder, the bottom of the gasket lifting cylinder is installed with a gasket misalignment cylinder, one side of the gasket misalignment cylinder is installed with a gasket material feeding cylinder, and the bottom of the gasket material feeding cylinder is installed with a gasket optical fiber.
[0008] Further, the igniter assembly mechanism comprises a mounting frame, the mounting frame is installed with an igniter fold line lifting cylinder, one side of the igniter fold line lifting cylinder is installed with an igniter misalignment cylinder, one side of the igniter misalignment cylinder is installed with a first feeding motor, the mounting frame is installed with a feeding assembly, one end of the feeding assembly is installed with a stop disc optical fiber, and one side of the stop disc optical fiber is installed with a second feeding motor.
[0009] Further, the other end of the feeding assembly is installed with an igniter material taking optical fiber, one end of the igniter material taking optical fiber is installed with an igniter rotating cylinder, one side of the igniter rotating cylinder is installed with an igniter displacement motor, one side of the igniter displacement motor is installed with an igniter lifting cylinder, the bottom of the igniter lifting cylinder is installed with an igniter misalignment cylinder, and one side of the igniter misalignment cylinder is installed with an igniter finger clamping cylinder.
[0010] Further, the spring assembly mechanism comprises a mounting plate and a spring displacement motor, the mounting plate is installed with a spring misalignment cylinder, one end of the spring misalignment cylinder is installed with a spring air blowing feeding mechanism, the spring air blowing feeding mechanism is installed with a spring material having optical fiber, one side of the spring material having optical fiber is installed with a spring positioning cylinder, and the spring air blowing feeding mechanism and the spring misalignment cylinder are installed with a spring straight vibration.
[0011] Further, one side of the spring displacement motor is installed with a spring assembly lifting cylinder, one side of the spring assembly lifting cylinder is installed with a spring assembly misalignment cylinder, the hinged plate assembly mechanism comprises a fixed frame and a hinged plate assembly displacement motor, the fixed frame is installed with a cam motor, the cam motor is installed with a cam, one side of the cam is installed with a hinged plate straight vibration, one end of the hinged plate straight vibration is installed with a hinged plate positioning cylinder, one side of the hinged plate positioning cylinder is installed with a hinged plate optical fiber and a hinged plate misalignment cylinder, the hinged plate misalignment cylinder and the hinged plate optical fiber are matched, and one side of the hinged plate optical fiber is installed with a pressing cylinder.
[0012] Further, one side of the rocker plate assembly displacement motor is provided with a rocker plate assembly lifting cylinder, one side of the rocker plate assembly lifting cylinder is provided with a rocker plate assembly misalignment cylinder, the bottom of the rocker plate assembly misalignment cylinder is provided with a rocker plate clamping finger cylinder, the baffle plate assembly mechanism comprises a baffle plate displacement motor, one side of the baffle plate displacement motor is provided with a baffle plate assembly lifting cylinder, one side of the baffle plate assembly lifting cylinder is provided with a baffle plate assembly misalignment cylinder, the bottom of the baffle plate assembly misalignment cylinder is provided with a baffle plate fiber, one side of the baffle plate fiber is provided with a baffle plate straight vibration, and one end of the baffle plate straight vibration is provided with a baffle plate circular vibration.
[0013] Further, the ignition wire assembly mechanism comprises an ignition wire displacement motor, one side of the ignition wire displacement motor is provided with an ignition wire assembly lifting cylinder, one side of the bottom of the ignition wire assembly lifting cylinder is provided with an ignition wire assembly misalignment cylinder one and an ignition wire assembly misalignment cylinder two, one end of the ignition wire assembly misalignment cylinder two is provided with an ignition wire fiber, and one side of the ignition wire assembly lifting cylinder is provided with an ignition wire circular vibration.
[0014] Further, the cap assembly mechanism comprises a cap displacement motor and a cap cam displacement motor, one side of the cap displacement motor is provided with a cap assembly positioning cylinder, one side of the bottom of the cap assembly positioning cylinder is provided with a cap assembly misalignment cylinder, one side of the cap assembly misalignment cylinder is provided with a cap assembly lifting cylinder, the cap cam displacement motor is provided with a cap straight vibration, one end of the cap straight vibration is provided with a cap misalignment cylinder, one end of the cap misalignment cylinder is provided with a cap fiber.
[0015] Further, the fireproof cover assembly mechanism comprises a fireproof cover displacement motor, one side of the fireproof cover displacement motor is provided with a fireproof cover assembly cylinder, one side of the fireproof cover assembly cylinder is provided with a fireproof cover assembly misalignment cylinder, one side of the fireproof cover assembly misalignment cylinder is provided with a fireproof cover misalignment cylinder, one end of the fireproof cover misalignment cylinder is provided with a fireproof cover material withdrawal cylinder, one side of the fireproof cover material withdrawal cylinder is provided with a fireproof cover fiber.
[0016] The beneficial effects of the present application: an automatic line of a lighter, comprising a workbench; a transmission mechanism; a fire ring assembly mechanism; a gasket assembly mechanism; an igniter assembly mechanism; a spring assembly mechanism; a flap assembly mechanism; a partition assembly mechanism; a fire line assembly mechanism; a cap assembly mechanism; a fireproof cover assembly mechanism; a feeding mechanism; a transmission motor; a transmission belt; a base optical fiber; a displacement mechanism; a positioning cylinder; a fire ring displacement motor; a fire ring lifting cylinder; a fire ring misalignment cylinder; a fire ring material returning cylinder; a fire ring optical fiber; a gasket displacement motor; a gasket lifting cylinder; a gasket misalignment cylinder; a gasket material returning cylinder; an igniter displacement motor; an igniter lifting cylinder; an igniter misalignment cylinder; an igniter finger clamping cylinder; an igniter material taking optical fiber; an igniter rotating cylinder; a mounting frame; an igniter feeding cylinder; an igniter misalignment cylinder; an igniter broken line lifting cylinder; a feeding motor one; a feeding motor two; a stop disc optical fiber; a mounting plate; a spring misalignment cylinder; a spring air blowing feeding mechanism; a spring material optical fiber; a spring positioning cylinder; a spring straight vibration; a cam motor; a fixed frame; a cam; a flap straight vibration; a flap positioning cylinder; a pressing cylinder; a flap optical fiber; a flap misalignment cylinder.
[0017] 1. The automatic line of the lighter detects the position of the lighter parts through positioning recognition, and uses the control equipment to complete the independent processing of the lighter in steps after detection, processes the lighter through the equipment, provides processing speed on the one hand, and effectively provides processing quality on the other hand.
[0018] 2. The automatic line of the lighter cooperates with the processing and assembly equipment at each position through the transmission mechanism to realize accurate positioning displacement between the lighter and the base, completes positioning of the lighter through the optical fiber when displaced to the corresponding station, realizes automatic processing, and effectively improves work efficiency and quality. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a structure schematic view of the automatic line of the lighter of the present application;
[0020] Figure 2 It is a structure schematic view of the transmission mechanism of the automatic line of the lighter of the present application;
[0021] Figure 3 It is a structure schematic view of the fire ring assembly mechanism of the automatic line of the lighter of the present application;
[0022] Figure 4 It is a structure schematic view of the gasket assembly mechanism of the automatic line of the lighter of the present application;
[0023] Figure 5 It is a structure schematic view of the igniter assembly mechanism of the automatic line of the lighter of the present application;
[0024] Figure 6Structure diagram of spring assembling mechanism of automatic line of lighter;
[0025] Figure 7 Structure diagram of spring assembling mechanism of automatic line of lighter;
[0026] In the figure: 1, workbench; 2, transmission mechanism; 3, fire adjusting ring assembling mechanism; 4, gasket assembling mechanism; 5, igniter assembling mechanism; 6, spring assembling mechanism; 7, rocker plate assembling mechanism; 8, partition plate assembling mechanism; 9, ignition wire assembling mechanism; 10, cap assembling mechanism; 11, fireproof cover assembling mechanism; 12, feeding mechanism; 13, transmission motor; 14, transmission belt; 15, base optical fiber; 16, displacement mechanism; 17, positioning cylinder; 18, fire adjusting ring displacement motor; 19, fire adjusting ring lifting cylinder; 20, fire adjusting ring misalignment cylinder; 21, fire adjusting ring material returning cylinder; 22, fire adjusting ring optical fiber; 23, gasket displacement motor; 24, gasket lifting cylinder; 25, gasket misalignment cylinder; 26, gasket material returning cylinder; 27, igniter displacement motor; 28, igniter lifting cylinder; 29, igniter misalignment cylinder; 30, igniter finger clamping cylinder; 31, igniter material taking optical fiber; 32, igniter rotating cylinder; 33, mounting frame; 34, igniter feeding cylinder; 35, igniter misalignment cylinder; 36, igniter fold line lifting cylinder; 37, feeding motor one; 38, feeding motor two; 39, stop disc optical fiber; 40, mounting plate; 41, spring misalignment cylinder; 42, spring air blowing feeding mechanism; 43, spring material having optical fiber; 44, spring positioning cylinder; 45, spring straight vibration; 46, cam motor; 47, fixed frame; 48, cam; 49, rocker plate straight vibration; 50, rocker plate positioning cylinder; 51, pressing cylinder; 52, rocker plate optical fiber; 53, rocker plate misalignment cylinder. DETAILED DESCRIPTION
[0027] In order to make the technical means, creative features, purposes and effects realized by the present application easy to understand, the present application is further described below in combination with specific embodiments.
[0028] Please refer to Figures 1 to 7The application provides a technical scheme: an automatic line of a lighter, comprising an automatic line body, wherein the automatic line body comprises a workbench 1, a conveying mechanism 2 is installed on the workbench 1, a feeding mechanism 12 is installed at one end of the conveying mechanism 2, a fire ring assembling mechanism 3 and a gasket assembling mechanism 4 are installed on the workbench 1, the gasket assembling mechanism 4 is installed opposite to the fire ring assembling mechanism 3, a lighter assembling mechanism 5 is installed on one side of the fire ring assembling mechanism 3, a spring assembling mechanism 6 is installed on one side of the lighter assembling mechanism 5, a flap assembling mechanism 7 is installed on the workbench 1, a partition plate assembling mechanism 8 is installed on one side of the flap assembling mechanism 7, a fire wire assembling mechanism 9 is installed on one side of the partition plate assembling mechanism 8, a cap assembling mechanism 10 is installed on one side of the fire wire assembling mechanism 9, and a fire cover assembling mechanism 11 is fixed at one end of the workbench 1; the conveying mechanism 2 comprises a conveying motor 13, a conveying belt 14 is installed on the conveying motor 13, a displacement mechanism 16 is installed at one end of the conveying belt 14, a positioning air cylinder 17 is installed at one end of the displacement mechanism 16, and a base optical fiber 15 is installed at the bottom of the conveying belt 14.
[0029] In the embodiment, the fire ring assembling mechanism 3 comprises a fire ring displacement motor 18 and a fire ring lifting air cylinder 19, the bottom of the fire ring lifting air cylinder 19 is provided with a fire ring stagger air cylinder 20, one side of the fire ring stagger air cylinder 20 is provided with a fire ring material returning air cylinder 21, the bottom of the fire ring material returning air cylinder 21 is provided with a fire ring optical fiber 22, the gasket assembling mechanism 4 comprises a gasket displacement motor 23 and a gasket lifting air cylinder 24, the bottom of the gasket lifting air cylinder 24 is provided with a gasket stagger air cylinder 25, one side of the gasket stagger air cylinder 25 is provided with a gasket material returning air cylinder 26, the bottom of the gasket material returning air cylinder 26 is provided with a gasket optical fiber, the lighter assembling mechanism 5 comprises a mounting frame 33, a lighter zigzag lifting air cylinder 36 is installed on the mounting frame 33, one side of the lighter zigzag lifting air cylinder 36 is provided with a lighter stagger air cylinder 35, one side of the lighter stagger air cylinder 35 is provided with a feeding motor one 37, a feeding assembly is installed on the mounting frame 33, one end of the feeding assembly is provided with a stop optical fiber 39, one side of the stop optical fiber 39 is provided with a feeding motor two 38, the other end of the feeding assembly is provided with a lighter material taking optical fiber 31, one end of the lighter material taking optical fiber 31 is provided with a lighter rotating air cylinder 32, one side of the lighter rotating air cylinder 32 is provided with a lighter displacement motor 27, one side of the lighter displacement motor 27 is provided with a lighter lifting air cylinder 28, the bottom of the lighter lifting air cylinder 28 is provided with a lighter stagger air cylinder 29, one side of the lighter stagger air cylinder 29 is provided with a lighter finger clamping air cylinder 30.
[0030] The spring assembly mechanism 6 includes a mounting plate 40 and a spring displacement motor, the mounting plate 40 is provided with a spring misalignment air cylinder 41, one end of the spring misalignment air cylinder 41 is provided with a spring blowing feeding mechanism 42, the spring blowing feeding mechanism 42 is provided with a spring loaded optical fiber 43, one side of the spring loaded optical fiber 43 is provided with a spring positioning air cylinder 44, the spring blowing feeding mechanism 42 and the spring misalignment air cylinder 41 are provided with a spring straight vibration 45, one side of the spring displacement motor is provided with a spring assembly lifting air cylinder, one side of the spring assembly lifting air cylinder is provided with a spring assembly misalignment air cylinder, the flap assembly mechanism 7 includes a fixed frame 47 and a flap assembly displacement motor, the fixed frame 47 is provided with a cam motor 46, the cam motor 46 is provided with a cam 48, one side of the cam 48 is provided with a flap straight vibration 49, one end of the flap straight vibration 49 is provided with a flap positioning air cylinder 50, one side of the flap positioning air cylinder 50 is provided with a flap optical fiber 52 and a flap misalignment air cylinder 53, the flap misalignment air cylinder 53 and the flap optical fiber 52 are matched, one side of the flap optical fiber 50 is provided with a pressing air cylinder 51, one side of the flap assembly displacement motor is provided with a flap assembly lifting air cylinder, one side of the flap assembly lifting air cylinder is provided with a flap assembly misalignment air cylinder, the bottom of the flap assembly misalignment air cylinder is provided with a flap clamping finger air cylinder, the partition plate assembly mechanism 8 includes a partition plate displacement motor, one side of the partition plate displacement motor is provided with a partition plate assembly lifting air cylinder, one side of the partition plate assembly lifting air cylinder is provided with a partition plate assembly misalignment air cylinder, the bottom of the partition plate assembly misalignment air cylinder is provided with a partition plate optical fiber, one side of the partition plate optical fiber is provided with a partition plate straight vibration, one end of the partition plate straight vibration is provided with a partition plate circular vibration, the ignition wire assembly mechanism 9 includes an ignition wire displacement motor, one side of the ignition wire displacement motor is provided with an ignition wire assembly lifting air cylinder, one side of the bottom of the ignition wire assembly lifting air cylinder is provided with an ignition wire assembly misalignment air cylinder one and an ignition wire assembly misalignment air cylinder two, one end of the ignition wire assembly misalignment air cylinder two is provided with an ignition wire optical fiber, one side of the ignition wire assembly lifting air cylinder is provided with an ignition wire circular vibration, the cap assembly mechanism 10 includes a cap displacement motor and a cap cam displacement motor, one side of the cap displacement motor is provided with a cap assembly positioning air cylinder, one side of the bottom of the cap assembly positioning air cylinder is provided with a cap assembly misalignment air cylinder, one side of the cap assembly misalignment air cylinder is provided with a cap assembly lifting air cylinder, the cap cam displacement motor is provided with a cap straight vibration, one end of the cap straight vibration is provided with a cap misalignment air cylinder, one end of the cap misalignment air cylinder is provided with a cap optical fiber, the fire cover assembly mechanism 11 includes a fire cover displacement motor, one side of the fire cover displacement motor is provided with a fire cover assembly air cylinder, one side of the fire cover assembly air cylinder is provided with a fire cover assembly misalignment air cylinder, one side of the fire cover assembly misalignment air cylinder is provided with a fire cover misalignment air cylinder, one end of the fire cover misalignment air cylinder is provided with a fire cover material returning air cylinder,The fireproof cover retreats the material cylinder and is provided with a fireproof cover optical fiber on one side.
[0031] When using the device, first, the lighter base is positioned by the transmission belt 14, and after positioning, the lighter base is moved to the position of the base optical fiber 15, the base 15 detects the position of the base, and the base is moved up by the positioning cylinder 17. During the upward movement, the displacement mechanism 16 starts to act, and the lighter base is moved to the next assembly station. The positioning cylinder 17 and the displacement mechanism 16 return to the original position. When the base optical fiber 15 is bright, the positioning cylinder 17 starts to position, and the displacement mechanism 16 starts to act and moves to the next assembly station. The work steps are repeated in sequence to realize positioning and accurate identification. The displacement mechanism 16 is used by 16 cylinders working synchronously. When entering the fire ring assembly mechanism 3 position, the 5 fire ring optical fibers 22 are bright, the fire ring assembly lifting cylinder 19 is started and lowered to the lighter position to take the material. At the same time of taking the material, the lifting cylinder completes the up and down extrusion, and the lighter body and the base are extruded and limited. Through the extrusion force up and down, the lighter is fixed and will not shake during work. The fire ring displacement motor 18 moves to the designated position to start assembly. The first to fifth assembly does not need to assemble the wrong position. After assembling 5, the fire ring misplacement cylinder 20 misplaces the position of the fire ring optical fiber 22. After misplacement, the other five lighters on the side complete the subsequent repeated operation. Through the fire ring optical fiber 22, the lighter is positioned and installed again. After installation is completed, the base and the lighter are displaced to the next station for assembly, and then enter the gasket assembly mechanism 4 position through the transmission mechanism 14. The gasket assembly lifting cylinder 24 is started and lowered to the lighter on the base position to extrude and limit the lighter. The gasket displacement motor 23 moves to the designated position to start assembly. The first to fifth assembly does not need to assemble the wrong position. After assembling 5, the gasket assembly misplacement cylinder 25 moves to the lighter on the other side to repeat the displacement assembly. The transmission mechanism 14 and the positioning cylinder 17 and the displacement mechanism 16 enter the position of the igniter assembly mechanism 5 in sequence. The igniter is directly vibrated and fed. When the fold line to position optical fiber is bright, the misplacement movement makes the igniter feeding cylinder 34 start to work. The igniter misplacement cylinder 29 returns to the original position, and the fold line lifting cylinder starts to act again and repeats the above action until the secondary feeding full stop optical fiber is bright. The feeding action is temporarily stopped. The igniter after the fold line is directly vibrated and fed. When the igniter to position optical fiber is bright at the same time, the rotary cylinder starts to move to the terminal point. The igniter assembly cylinder starts to descend to the terminal point. The igniter finger clamping cylinder 30 starts to clamp the product. The igniter assembly cylinder returns to the original position. After the rotary cylinder returns, the servo displacement starts, and the igniter is assembled. After 5 products are assembled, the last 5 assemblies need to be misplaced before assembly. After the igniter is installed, the spring is installed;
[0032] In the spring installation, the spring is fed by circular vibration, and the ring induction has a light-emitting diode. When 5 of them are bright and one is not, it needs to be prompted. The spring positioning cylinder moves 44 without a terminal point until the ring induction is in place. If it is not bright, the spring positioning action needs to be repeated, and the spring is misaligned to the terminal point. The spring assembly station moves to the specified assembly station and the assembly positioning cylinder starts working. The spring blow feeding 42 is spring assembly lifting in place and resetting at the same time. The assembly parts move to the next assembly position, the spring blow feeding, the spring assembly lifting in place, and repeat 5 times. The last 5 times need to start the spring misalignment cylinder 41 to make the spring straight vibration and the spring with material barrier 43 misaligned. After that, the lighter is repeatedly assembled at other positions on the base. When installing the flap, the flap is fed by straight vibration 45, the flap optical fiber 52 and the flap are misaligned to the light-emitting diode, and the flap misalignment cylinder 52 moves to the rear home position. The lighter moves the cam motor to start the flap misalignment to the light-emitting diode again. Repeat the flap misalignment until 5 flaps are installed and the flap misalignment to the end point proximity switch is bright. When the flap misalignment to the end point proximity switch is bright, the assembly cylinder starts to descend to the terminal point, starts to vacuum suction, and the assembly cylinder rises to the original point. The misalignment cylinder misaligns to the terminal point to assemble. Repeat 5 times to assemble. When the fireproof cover is assembled, the assembly steps are the same as the cap assembly steps, but the vacuum generator is not needed.
[0033] The foregoing merely illustrates the principles of the application and application of its leading features. This application is not limited to the illustrative embodiments shown and described herein. Rather, the scope of the present application is defined by the appended claims, and other embodiments of this application will be apparent to those skilled in the art from consideration of the specification and practice of the application disclosed herein. Therefore, to the extent that there is disclosed herein an illustrative implementation that could be embodied in any of a number of varied forms, the intent is to support a claim scope that includes any such forms as fall within the scope of claims, and their equivalents. It is therefore required by the claims to refer to any such patentable design that comes within the scope of a claim.
[0034] Furthermore, it should be understood that although the description above relates to embodiments, not every embodiment according to the application contains all features needed to implement the invention. The description is provided for purposes of illustration only and merely implies one of various alternatives to the present invention. Those skilled in the art will recognize immediately that the description is illustrative only and is not intended to be limiting on the overall scope of the present application. Various concepts and embodiments disclosed herein can be modified if necessary, to conform to the patentable claim requirement.
Claims
1. An automatic line of lighters comprising an automatic line body, characterized in that: The automatic line body includes a workbench (1), a transmission mechanism (2) is installed on the workbench (1), one end of the transmission mechanism (2) is provided with a feeding mechanism (12), a fire ring assembly mechanism (3) and a gasket assembly mechanism (4) are installed on the workbench (1), the gasket assembly mechanism (4) is installed opposite and staggered with the fire ring assembly mechanism (3), a lighter assembly mechanism (5) is installed on one side of the fire ring assembly mechanism (3), a spring assembly mechanism (6) is installed on one side of the lighter assembly mechanism (5), a warped plate assembly mechanism (7) is installed on the workbench (1), a partition plate assembly mechanism (8) is installed on one side of the warped plate assembly mechanism (7), a fuse line assembly mechanism (9) is installed on one side of the partition plate assembly mechanism (8), a cap assembly mechanism (10) is installed on one side of the fuse line assembly mechanism (9), a fire cover assembly mechanism (11) is fixed on one end of the workbench (1), the spring assembly mechanism (6) includes a mounting plate (40) and a spring displacement motor, a spring staggered air cylinder (41) is installed on the mounting plate (40), a spring air blowing feeding mechanism (42) is installed on one end of the spring staggered air cylinder (41), a spring material fiber (43) is installed on the spring air blowing feeding mechanism (42), a spring positioning air cylinder (44) is installed on one side of the spring material fiber (43), a spring straight vibration (45) is installed between the spring air blowing feeding mechanism (42) and the spring staggered air cylinder (41), a spring assembly lifting air cylinder is installed on one side of the spring displacement motor, a spring assembly staggered air cylinder is installed on one side of the spring assembly lifting air cylinder, the warped plate assembly mechanism (7) includes a fixed frame (47) and a warped plate assembly displacement motor, a cam motor (46) is installed on the fixed frame (47), a cam (48) is installed on the cam motor (46), a warped plate straight vibration (49) is installed on one side of the cam (48), a warped plate positioning air cylinder (50) is installed on one end of the warped plate straight vibration (49), a warped plate fiber (52) and a warped plate staggered air cylinder (53) are installed on one side of the warped plate positioning air cylinder (50), the warped plate staggered air cylinder (53) and the warped plate fiber (52) are matched, a pressing air cylinder (51) is installed on one side of the warped plate fiber (52), a warped plate assembly lifting air cylinder is installed on one side of the warped plate assembly displacement motor, a warped plate assembly staggered air cylinder is installed on one side of the warped plate assembly lifting air cylinder, a warped plate clamping finger air cylinder is installed at the bottom of the warped plate assembly staggered air cylinder, the partition plate assembly mechanism (8) includes a partition plate displacement motor, a partition plate assembly lifting air cylinder is installed on one side of the partition plate displacement motor, a partition plate assembly staggered air cylinder is installed on one side of the partition plate assembly lifting air cylinder, a partition plate fiber is installed at the bottom of the partition plate assembly staggered air cylinder, a partition plate straight vibration is installed on one side of the partition plate fiber, a partition plate circular vibration is installed on one end of the partition plate straight vibration.
2. An automatic line for lighters according to claim 1, characterized in that: The transmission mechanism (2) includes a transmission motor (13), a transmission belt (14) is installed on the transmission motor (13), one end of the transmission belt (14) is installed with a displacement mechanism (16), one end of the displacement mechanism (16) is installed with a positioning cylinder (17), the bottom of the transmission belt (14) is installed with a base optical fiber (15), the fire adjusting ring assembly mechanism (3) includes a fire adjusting ring displacement motor (18) and a fire adjusting ring lifting cylinder (19), the bottom of the fire adjusting ring lifting cylinder (19) is installed with a fire adjusting ring misalignment cylinder (20), one side of the fire adjusting ring misalignment cylinder (20) is installed with a fire adjusting ring material returning cylinder (21), the bottom of the fire adjusting ring material returning cylinder (21) is installed with a fire adjusting ring optical fiber (22).
3. The automatic line for lighters according to claim 1, characterized in that: The gasket assembly mechanism (4) includes a gasket displacement motor (23) and a gasket lifting cylinder (24), the bottom of the gasket lifting cylinder (24) is installed with a gasket misalignment cylinder (25), one side of the gasket misalignment cylinder (25) is installed with a gasket material returning cylinder (26), the bottom of the gasket material returning cylinder (26) is installed with a gasket optical fiber, the igniter assembly mechanism (5) includes a mounting frame (33), the mounting frame (33) is installed with an igniter fold line lifting cylinder (36), one side of the igniter fold line lifting cylinder (36) is installed with a second igniter misalignment cylinder (35), one side of the second igniter misalignment cylinder (35) is installed with a first feeding motor (37), the mounting frame (33) is installed with a feeding assembly, one end of the feeding assembly is installed with a stop disc optical fiber (39), one side of the stop disc optical fiber (39) is installed with a second feeding motor (38).
4. An automatic line for lighters according to claim 3, characterized in that: The other end of the feeding assembly is installed with an igniter material taking optical fiber (31), one end of the igniter material taking optical fiber (31) is installed with an igniter rotating cylinder (32), one side of the igniter rotating cylinder (32) is installed with an igniter displacement motor (27), one side of the igniter displacement motor (27) is installed with an igniter lifting cylinder (28), the bottom of the igniter lifting cylinder (28) is installed with a first igniter misalignment cylinder (29), one side of the first igniter misalignment cylinder (29) is installed with an igniter finger clamping cylinder (30).
5. The automatic line for lighters according to claim 1, characterized in that: The fuse assembly mechanism (9) includes a fuse displacement motor, one side of the fuse displacement motor is installed with a fuse assembly lifting cylinder, one side of the bottom of the fuse assembly lifting cylinder is installed with a fuse assembly misalignment cylinder one and a fuse assembly misalignment cylinder two, one end of the fuse assembly misalignment cylinder two is installed with a fuse optical fiber, one side of the fuse assembly lifting cylinder is installed with a fuse round vibration.
6. An automatic line for lighters according to claim 1, characterized in that: The cap assembly mechanism (10) comprises a cap displacement motor, a cap cam displacement motor, a cap assembly positioning cylinder mounted on one side of the cap displacement motor, a cap assembly misalignment cylinder mounted on the bottom side of the cap assembly positioning cylinder, a cap assembly lifting cylinder mounted on one side of the cap assembly misalignment cylinder, a cap straight vibration mounted on the cap cam displacement motor, a cap misalignment cylinder mounted on one end of the cap straight vibration, and a cap optical fiber mounted on one end of the cap misalignment cylinder.
7. The automatic line for lighters according to claim 1, characterized in that: The fireproof cover assembly mechanism (11) comprises a fireproof cover displacement motor, a fireproof cover assembly cylinder mounted on one side of the fireproof cover displacement motor, a fireproof cover assembly misalignment cylinder mounted on one side of the fireproof cover assembly cylinder, a fireproof cover misalignment cylinder mounted on one side of the fireproof cover assembly misalignment cylinder, a fireproof cover material withdrawal cylinder mounted on one end of the fireproof cover misalignment cylinder, and a fireproof cover optical fiber mounted on one side of the fireproof cover material withdrawal cylinder.
Citation Information
Patent Citations
Lighter head assembly machine
CN109648316A
Automatic assembly line of AS lighter finished product
CN206382839U
Automatic line of lighters
CN218746089U