Automatic oiling and assembling all-in-one machine for electronic cigarette

By designing a fully automated e-cigarette oil filling and assembly machine, the problems of low efficiency and unstable product quality in existing technologies have been solved, achieving efficient and stable automated production.

CN223773137UActive Publication Date: 2026-01-09SHENZHEN LABORLESS TECH CORP LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423204507.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-01-09
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing e-cigarette filling equipment requires manual operation, resulting in low efficiency. Furthermore, improper installation of the silicone plug and loose sealing of the outer shell affect product quality and stability.

Method used

An integrated automatic oil injection and assembly machine was designed, which includes an oil injection device, a silicone plug installation assembly, a shell pressing assembly, and a feeding mechanism to achieve fully automated production. It adopts a high-precision gear pump and a stainless steel oil injection needle, combined with multi-axis motion and cylinder positioning to improve positioning accuracy and production efficiency.

Benefits of technology

It achieves a high degree of automation, improves production efficiency, reduces manual intervention, ensures product quality stability and pass rate, and reduces processing costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223773137U_ABST
    Figure CN223773137U_ABST
Patent Text Reader

Abstract

The utility model discloses an electronic cigarette automatic oiling and assembling all-in-one machine which comprises a box body and a machine cover, the machine cover is arranged above the box body, a machine table is arranged in the box body, and an oiling device, a silica gel plug installation assembly, a detection module, a shell pressing assembly, a discharging mechanism and a linear conveying unit are arranged on the machine table. A touch screen, a control button, a cooling fan and a safety grating are arranged at the front parts of the box body and the hood, a pressure regulating valve assembly and a power switch are mounted at the side end of the box body, and a warning lamp is mounted at the top of the box body. The device has the advantages of high automation degree, high production efficiency and stable product quality.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of electronic cigarette manufacturing technology, and more specifically, to an improvement of an automatic oil filling and assembly machine. Background Technology

[0002] An electronic atomizer is a device that atomizes e-liquid using high temperature and high pressure. During the production process and after the e-liquid is depleted, e-liquid needs to be refilled into the atomizer. Currently, electronic atomizers typically use automated refilling. Existing refilling equipment requires manual placement of the e-cigarette module into the fixture for positioning, followed by refilling. After refilling, the machine is stopped and the refilled e-cigarette module is removed. This method not only requires frequent manual loading and unloading but also necessitates the manufacture of numerous fixtures to accommodate products of different sizes, thus failing to achieve high refilling efficiency and low refilling costs.

[0003] The installation of silicone plugs and the pressing of the outer shell require workers to have high operating skills and experience. Manual operation is not only inefficient, but also prone to quality problems such as improper installation of silicone plugs and loose pressing of the outer shell, which reduces the product qualification rate and stability. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides an automatic e-cigarette filling and assembly machine, which has the advantages of high automation, high production efficiency, and stable product quality. It solves the problems of low efficiency and poor quality caused by manual operation, such as improper installation of silicone plugs and loose shell pressing, which reduce the product qualification rate and stability.

[0005] To achieve the aforementioned advantages of high automation, high production efficiency, and stable product quality, the specific technical solution adopted by this utility model is as follows: It includes a housing and a machine cover. The machine cover is located above the housing. A machine platform is installed inside the housing. The machine platform is equipped with an oil injection device, a silicone plug installation assembly, a detection module, a shell pressing assembly, a feeding mechanism, and a linear conveying unit. The front of the housing and machine cover is equipped with a touch screen, control buttons, a cooling fan, and a safety light curtain. A pressure regulating valve assembly and a power switch are installed on the side of the housing. A warning light is installed on the top.

[0006] Furthermore, the oil injection device includes an oil injection tank, an oil injection pump, an oil pump support frame, a Z-axis support frame, a lead screw Z-axis, an adjusting plate, an oil pipe fixing block, an oil injection needle, and a needle adjusting block. The oil injection tank is located on the lower side of the housing. The oil pump support frame and the Z-axis support frame are mounted on the housing machine platform. An array of oil injection pumps are arranged on the oil pump support frame. The Z-axis support frame is located on the left side of the oil pump support frame. The lead screw Z-axis is mounted on the Z-axis support frame. The adjusting plate is connected to the lead screw Z-axis. The oil pipe fixing block is installed above the adjusting plate. The oil injection needle and the needle adjusting block are installed below the adjusting plate.

[0007] Furthermore, the silicone plug installation assembly includes a silicone plug vibratory feeder, a linear vibration track, a linear vibrator, a blocking cylinder, a Y-axis support frame, a silicone plug feeding Y-axis, a rotary cylinder, a silicone plug receiving block, a fiber optic sensor, a silicone plug installation mechanism support frame, an installation mechanism X-axis module, an installation mechanism Z-axis module, a silicone plug installation mounting plate, a pushing cylinder, a positioning pin fixing plate, a positioning pin, and a stripping plate. The silicone plug vibratory feeder is set on the ground outside the machine casing, and the beginning of the linear vibration track is connected to the silicone plug vibratory feeder. The linear vibrator corresponds to the linear vibration track. At the side, the blocking cylinder, silicone plug receiving block, and fiber optic sensor are set at the end of the linear vibration track. The bottom of the silicone plug receiving block and fiber optic sensor is supported by the Y-axis support frame for feeding the silicone plug on the Y-axis. The rotary cylinder is connected to the silicone plug receiving block and installed on the feeding Y-axis. The silicone plug installation mechanism support frame loads the installation mechanism X-axis module. The silicone installation hanging plate is installed on the installation mechanism Z-axis module and moves to pick up the material. The positioning pin is installed inside the positioning pin fixing plate and is pushed by the pushing cylinder installed on the hanging plate to separate the silicone plug from the bottom stripping plate.

[0008] Furthermore, the shell pressing assembly includes a feeding slide rail, a material tray support plate, a positioning cylinder, a dispensing cylinder, a material tray clamp, a clamping support frame, a material tray, a shell removal device frame, a shell mechanism X-axis, a shell mechanism Y-axis, a shell mechanism Z-axis, a pressing cylinder, a rotating cylinder, a rotating shaft connecting plate, a cylinder mounting plate, a clamping cylinder, a pushing cylinder, a pushing rod, a pressing cylinder, a pressing frame, a guide plate, and a polyurethane pressure rod. The feeding slide rail is mounted on the machine platform, and the material tray support plate moves on the feeding slide rail to push the material tray upward. The dispensing cylinder... The positioning cylinder, material tray clamp, and clamping support frame are located at the top of the feeding slide rail. The material tray clamp is movably connected to the clamping support frame. The three-axis module of the outer shell mechanism (X-axis, Y-axis, and Z-axis) is connected to the outer shell removal device frame and set on the machine platform. The pressing cylinder on the Z-axis pushes the rotating shaft connecting plate downward. The rotating cylinder drives the cylinder mounting plate to rotate, causing the clamping cylinder to clamp and remove the material. The pushing cylinder and pushing rod are installed on the cylinder mounting plate. The pressing frame is connected to the pressing cylinder, and the cylinder is connected to the polyurethane pressure rod.

[0009] Furthermore, the unloading mechanism includes an unloading support frame, a material-picking Z-axis, a pressing cylinder, a translation cylinder, a clamping cylinder, a material-picking clamp block, an unloading slide, and a belt conveyor. The unloading support frame is placed on the bottom plate of the machine base, the belt conveyor is located inside the unloading support frame, the material-picking Z-axis is located in front of the pressing cylinder, the clamping cylinder controls the material-picking clamp block and is installed at the bottom of the material-picking Z-axis, the material-picking clamp block is located at the upper end of the unloading slide, the pressing cylinder and two sets of translation cylinders are installed on both sides of the unloading support frame, and the unloading slide is installed above the belt conveyor.

[0010] Furthermore, the linear conveying unit includes a profile support, a battery cell positioning mechanism, an opening cylinder, an oil injection cover plate, an oil injection pressing cylinder, a silicone plug installation and positioning mechanism, a detection module support, a shell pressing assembly positioning mechanism, a motor assembly, a chain, and a fixture. The profile support is set on the machine platform of the housing, the motor assembly is driven and connected to the drive chain, the fixture is connected to the motor assembly, and the battery cell positioning mechanism, the silicone plug installation and positioning mechanism, the detection module support, and the shell pressing assembly positioning mechanism are all arranged sequentially on the profile support.

[0011] Furthermore, the enclosure is welded from stainless steel metal plates, and its interior is equipped with a sound insulation layer. The cover is made of transparent engineering plastic and its surface is treated with anti-static agents.

[0012] Furthermore, the oil injection pump is a high-precision gear pump or plunger pump, with a flow rate adjustment range of 0.1-10 mL / s and a pressure adjustment range of 0.1-0.5 MPa. The oil injection needle is made of stainless steel.

[0013] Compared with the prior art, this utility model provides an automatic e-cigarette filling and assembly machine, which has the following beneficial effects:

[0014] The position of the mounting fixtures can be flexibly adjusted, simplifying debugging while ensuring product positioning accuracy. The chain conveyor moves along the profile frame, dividing into multiple workstations, allowing the equipment to perform multiple actions simultaneously during operation, significantly improving production efficiency, reducing inter-process transfers, and increasing product yield. Chain rotation achieves process transmission, while cylinder positioning ensures smooth machine movement through the cyclical movement of the fixtures at each workstation. Fully automatic feeding mechanisms greatly enhance automation. This results in a reliable, durable, and versatile structure with high production efficiency, significantly reducing production and processing costs. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the internal structure of the housing 1 of this utility model;

[0018] Figure 3 It corresponds Figure 1 The left view;

[0019] Figure 4 This is a schematic diagram of the structure of the oil injection device 3 of this utility model;

[0020] Figure 5 This is a schematic diagram of the structure of the silicone plug mounting assembly 4 of this utility model;

[0021] Figure 6 This is a schematic diagram of the structure of the outer shell pressing assembly 6 of this utility model;

[0022] Figure 7 This is an enlarged view of A;

[0023] Figure 8 This is a schematic diagram of the structure of the feeding mechanism 7 of this utility model;

[0024] Figure 9 This is a schematic diagram of the structure of the linear conveying unit 8 of this utility model;

[0025] Figure 10 This is an enlarged view of B;

[0026] Figure 11 This is an enlarged view of C.

[0027] In the diagram: 1. Housing; 2. Cover; 3. Oil injection device; 4. Silicone plug mounting assembly; 5. Detection module; 6. Shell pressing assembly; 7. Feeding mechanism; 8. Linear conveyor unit; 9. Touch screen; 10. Control button; 11. Cooling fan; 12. Safety light curtain; 13. Pressure regulating valve assembly; 14. Power switch; 15. Three-color warning light; 16. Oil injection tank; 301. Oil injection pump; 302. Oil pump support frame; 303. Z-axis support frame; 304. Lead screw Z-axis; 305. Adjusting mounting plate; 306. Oil pipe fixing block; 307. Oil injection needle; 308. Needle adjustment. Block 309, silicone plug vibratory feeder 401, linear vibratory track 402, linear vibrator 403, blocking cylinder 404, Y-axis support frame 405, silicone plug feeding Y-axis 406, rotary cylinder 407, silicone plug receiving block 408, fiber optic sensor 409, silicone plug mounting mechanism support frame 410, mounting mechanism X-axis module 411, mounting mechanism Z-axis module 412, silicone mounting plate 413, pushing cylinder 414, positioning pin fixing plate 415, positioning pin 416, stripping plate 417, feeding slide rail 601, material 602. Tray plate; 603. Positioning cylinder; 604. Distributing cylinder; 605. Tray clamp; 606. Clamping support frame; 607. Tray; 608. Outer shell removal device frame; 609. Outer shell mechanism X-axis; 610. Outer shell mechanism Y-axis; 611. Outer shell mechanism Z-axis; 612. Pressing cylinder; 613. Rotating cylinder; 614. Rotating shaft connecting plate; 615. Cylinder mounting plate; 616. Clamping cylinder; 617. Pushing cylinder; 618. Pushing rod; 619. Pressing cylinder; 620. Pressing frame; 621. Polyurethane Ester pressure bar 622, unloading support frame 701, material picking Z-axis 702, pressing cylinder 703, translation cylinder 704, clamping cylinder 705, material picking clamp block 706, unloading slide 707, belt conveyor line 708, profile bracket 801, battery cell positioning mechanism 802, opening cylinder 803, oil filling cover plate 804, oil filling pressing cylinder 805, silicone plug installation positioning mechanism 806, detection module bracket 807, shell pressing assembly positioning mechanism 808, motor assembly 809, chain 810, fixture 811. Detailed Implementation

[0028] To further illustrate the various embodiments, the present invention provides accompanying drawings, which are part of the disclosure of the present invention. These drawings are mainly used to illustrate the embodiments and can be used in conjunction with the relevant descriptions in the specification to explain the operating principles of the embodiments. With reference to these contents, those skilled in the art should be able to understand other possible implementation methods and the advantages of the present invention. The components in the figures are not drawn to scale, and similar component symbols are usually used to represent similar components.

[0029] According to an embodiment of the present invention, an automatic e-cigarette filling and assembly machine is provided.

[0030] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments, such as... Figure 1-3 As shown, the automatic e-cigarette filling and assembly machine according to an embodiment of the present utility model includes a housing 1 and a cover 2. The cover 2 is located above the housing 1. A machine platform is provided inside the housing 1. The machine platform is provided with an e-cigarette filling device 3, a silicone plug installation assembly 4, a detection module 5, a shell pressing assembly 6, a feeding mechanism 7, and a linear conveying unit 8. The front of the housing 1 and the cover 2 is provided with a touch screen 9, control buttons 10, a cooling fan 11, and a safety light curtain 12. A pressure regulating valve assembly 13 and a power switch 14 are installed on the side of the housing 1. A warning light 15 is installed on the top.

[0031] In one embodiment, the oil injection device 3 includes an oil injection tank 301, an oil injection pump 302, an oil pump support frame 303, a Z-axis support frame 304, a lead screw Z-axis 305, an adjusting plate 306, an oil pipe fixing block 307, an oil injection needle 308, and a needle adjusting block 309. The oil injection tank 301 is located on the lower side of the housing 1. The oil pump support frame 303 and the Z-axis support frame 304 are mounted on the machine platform of the housing 1. An array of oil injection pumps 302 are arranged on the oil pump support frame 303. The Z-axis support frame 304 is located on the left side of the oil pump support frame 303. The lead screw Z-axis 305 is mounted on the Z-axis support frame 304. The adjusting plate 306 is connected to the lead screw Z-axis 305. The oil pipe fixing block 307 is mounted above the adjusting plate 306. The oil injection needle 308 and the needle adjusting block 309 are mounted below the adjusting plate 306. Specifically, after the battery cells are manually placed and the start button is pressed, the jig moves to the oil filling station on the chain line. The oil filling tank 301 supplies e-liquid to the entire oil filling pump 302 system. The oil filling pump 302 is a precision ceramic plunger metering pump, which is equipped with an oil inlet and an oil outlet. The oil inlet is connected to the oil filling tank 301 through an oil pipe, and the oil outlet is connected to one end of the oil outlet pipe. The other end of the oil outlet pipe is connected to the oil pipe fixing block 307. The oil pipe fixing block 307 is mounted on the adjusting plate 306. Multiple sets of oil filling needles 308 are provided on the oil pipe fixing block 307. Each set of oil filling needles 308 corresponds to a set of oil supply module and oil filling module. Under the action of the cylinder, the oil filling needles 308 approach the oil filling cover plate 804, and the oil filling pump 302 injects a certain amount of e-liquid into the product.

[0032] In one embodiment, the silicone plug mounting assembly 4 includes a silicone plug vibratory feeder 401, a linear vibratory track 402, a linear vibrator 403, a blocking cylinder 404, a Y-axis support frame 405, a silicone plug feeding Y-axis 406, a rotary cylinder 407, a silicone plug receiving block 408, a fiber optic sensor 409, a silicone plug mounting mechanism support frame 410, an mounting mechanism X-axis module 411, an mounting mechanism Z-axis module 412, a silicone plug mounting plate 413, a pushing cylinder 414, a positioning pin fixing plate 415, a positioning pin 416, and a stripping plate 417. The silicone plug vibratory feeder 401 is mounted on the ground outside the machine casing. The beginning end of the linear vibratory track 402 is connected to the silicone plug vibratory feeder 401, and the linear vibrator 403 corresponds to the linear vibrator... At the side end of track 402, blocking cylinder 404, silicone plug receiving block 408 and fiber optic sensor 409 are set at the end of the straight vibration track 402. The bottom of silicone plug receiving block 408 and fiber optic sensor 409 is supported by Y-axis support frame 405 to support silicone plug feeding Y-axis 406. Rotary cylinder 407 is connected to silicone plug receiving block 408 and installed on feeding Y-axis 406. Silicone plug installation mechanism support frame 410 loads installation mechanism X-axis module 411. Silicone installation hanging plate 413 is installed on installation mechanism Z-axis module 412 to move and pick up material. Positioning pin 416 is installed inside positioning pin fixing plate 415 and is pushed by pushing cylinder 414 installed on hanging plate to separate silicone plug from bottom stripping plate 417. During operation, the silicone plug vibratory feeder 401 stably supplies silicone plugs to the entire mechanism. The direct vibration module 403 pushes the silicone plug into the silicone plug receiving block 408. After being sensed by the fiber optic sensor 409, a signal is sent, and the rotary cylinder 407 drives the silicone plug receiving block 408 to rotate and move it to the picking position on the silicone plug loading Y-axis 406. The three axes of the mechanism move to the picking position and remove the silicone plug from the silicone plug receiving block 408. After the three axes move to the silicone plug installation position, the pusher cylinder 414 pushes the stripper plate 417 to separate from the positioning pin 416, so that the silicone plug falls onto the product.

[0033] In one embodiment, the shell pressing assembly 6 includes a feeding slide rail 601, a material tray support plate 602, a positioning cylinder 603, a dispensing cylinder 604, a material tray clamp 605, a clamping support frame 606, a material tray 607, a shell removal device frame 608, a shell mechanism X-axis 609, a shell mechanism Y-axis 610, a shell mechanism Z-axis 611, a pressing cylinder 612, a rotating cylinder 613, a rotating shaft connecting plate 614, a cylinder mounting plate 615, a clamping cylinder 616, a pushing cylinder 617, a pushing rod 618, a pressing cylinder 619, a pressing frame 620, a guide plate 621, and a polyurethane pressure rod 622. The feeding slide rail 601 is mounted on the machine base, and the material tray support plate 602 moves on the feeding slide rail 601 to push the material tray 607. 7. The material distribution cylinder 604, positioning cylinder 603, material tray clamp 605, and clamp support frame 606 are set at the top of the feeding slide rail 601. The material tray clamp 605 is movably connected to the clamp support frame 606. The three-axis module of the outer shell mechanism X-axis 609, outer shell mechanism Y-axis 610, and outer shell mechanism Z-axis 611 is connected to the outer shell removal device frame 608 and set on the machine platform. The Z-axis is equipped with a pressing cylinder 612 that pushes the rotating shaft connecting plate 614 downward. The rotating cylinder 613 drives the cylinder mounting plate 615 to rotate, causing the clamping cylinder 616 to clamp and remove the material. The pushing cylinder 617 and the pushing rod 618 are installed on the cylinder mounting plate 615. The pressing frame 620 is connected to the pressing cylinder 619, and the cylinder is connected to the polyurethane pressure rod 622. Specifically, the outer shell is placed on the material tray 607, and the three-axis outer shell mechanism moves to the material picking position to remove the outer shell. Then it moves to the outer shell installation station. The rotary cylinder 613 drives the rotary shaft connecting plate 614 to flip. The pressing cylinder 612 pushes the cylinder mounting plate 615 down to the set position. The clamping cylinder 616 releases the outer shell and drops it onto the battery cell through the fixture guide block. After one material tray is emptied, the material tray clamp 605 grabs the empty material tray and moves it to the empty material tray placement position to remove the empty material tray. The chain plate moves to the pressing station, and the pressing cylinder 619 pushes the polyurethane pressure rod 622 to press the electronic cigarette outer shell and the battery cell together through the guide plate 621.

[0034] In one embodiment, the feeding mechanism 7 includes a feeding support frame 701, a picking Z-axis 702, a pressing cylinder 703, a translation cylinder 704, a clamping cylinder 705, a picking clamp block 706, a feeding slide 707, and a belt conveyor 708. The feeding support frame 701 is placed on the base plate of the machine platform 1. The belt conveyor 708 is located inside the feeding support frame 701. The picking Z-axis 702 is located in front of the pressing cylinder 703. The clamping cylinder 705 controls the picking clamp block 706 and is installed at the bottom of the picking Z-axis 702. The picking clamp block 706 is located at the upper end of the feeding slide 707. The pressing cylinder 703 and two sets of translation cylinders 704 are installed on both sides of the feeding support frame 701. The feeding slide 707 is installed above the belt conveyor 708. Among them: the unloading support frame 701 is placed on the bottom plate of the box machine, the material picking Z-axis 702 is installed on the support frame, the pressing cylinder 703 and the translation cylinder 704 adjust the material picking position, the clamping cylinder 705 controls the material picking clamp 706 to clamp and release the product to the unloading slide 707, and finally the belt conveyor 708 sends it to the next station.

[0035] In one embodiment, the linear conveying unit 8 includes a profile support 801, a battery cell positioning mechanism 802, an opening cylinder 803, an oil injection cover plate 804, an oil injection pressing cylinder 805, a silicone plug installation positioning mechanism 806, a detection module support 807, a shell pressing assembly positioning mechanism 808, a motor assembly 809, a chain 810, and a fixture 811. The profile support 801 is mounted on the machine base of the housing 1. The motor assembly 809 is driven and connected to the drive chain 810. The fixture 811 is connected to the motor assembly 809. The battery cell positioning mechanism 802, the silicone plug installation positioning mechanism 806, the detection module support 807, and the shell pressing assembly positioning mechanism 808 are all arranged sequentially on the profile support 801.

[0036] Working Principle: The e-liquid tank 301 supplies e-liquid to the entire e-liquid pump 302 system. The inlet is connected to the e-liquid tank 301 via an e-liquid pipe, and the outlet is connected to one end of the outlet pipe. The e-liquid pump 302 extracts a predetermined amount of e-liquid according to a preset metering method and transmits it to the e-liquid pipe fixing block 307 via the outlet pipe. The e-liquid needle 308 approaches the e-liquid cover plate 804, and multiple sets of e-liquid needles 308 on the e-liquid pipe fixing block 307 inject the e-liquid into the product. The silicone plug vibrating plate 401 stably supplies silicone plugs to the entire mechanism, and the linear vibration module 403 pushes the silicone plugs along the linear vibration track 402 into the silicone plug receiving block 408. After the fiber optic sensor 409 senses the silicone plug, it sends a signal, and the rotary cylinder 407 drives the silicone plug receiving block 408 to rotate and move it to the picking position on the silicone plug loading Y-axis 406. The X-axis module 411 and Z-axis module 412 of the mounting mechanism move the silicone mounting plate 413 to the material picking position, removing the silicone plug from the silicone plug receiving block 408. Then, the three axes move to the silicone plug installation station, and the pusher cylinder 414 pushes the stripper plate 417 to separate from the positioning pin 416, allowing the silicone plug to fall onto the product. The outer shell is placed on the material tray 607, and the material tray support plate 602 on the loading slide rail 601 pushes the material tray 607 upward. The three-axis module of the outer shell mechanism (X-axis 609, Y-axis 610, and Z-axis 611) moves to the material picking position to remove the outer shell. The removed outer shell moves to the outer shell installation station, and the rotary cylinder 613 drives the rotary shaft connecting plate 614 to flip. The pressing cylinder 612 pushes the cylinder mounting plate 615 down to the set position, and the clamping cylinder 616 releases the outer shell. The outer shell falls onto the battery cell via the fixture guide block. The conveyor belt moves to the pressing station, where the pressing cylinder 619 pushes the polyurethane pressure rod 622, which is positioned by the guide plate 621, pressing the electronic cigarette shell and the battery cell together. The material-picking Z-axis 702 on the unloading support frame 701 reaches the material-picking position under the adjustment of the pressing cylinder 703 and the translation cylinder 704. The clamping cylinder 705 controls the material-picking clamp 706 to clamp the product. The material-picking clamp 706 delivers the product to the unloading slide 707, which slides down onto the belt conveyor 708, which then transports the product to the next station. The battery cell positioning mechanism 802, silicone plug installation positioning mechanism 806, detection module bracket 807, and shell pressing assembly positioning mechanism 808 on the profile support 801 of the linear conveying unit 8 are arranged in sequence. The motor assembly 809 is connected to the drive chain 810 and drives the fixture 811 to move, so that the product is accurately transferred between various workstations. This realizes the automated assembly line operation of electronic cigarette assembly processes such as automatic oil filling, silicone plug installation, shell pressing and unloading.

[0037] In this utility model, unless otherwise explicitly specified and limited, the terms "installation", "setting", "connection", "fixing", "screw connection", etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0038] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An automatic e-cigarette filling and assembly machine, comprising a housing (1) and a cover (2) wherein the cover (2) is disposed above the housing (1), characterized in that: The housing (1) is equipped with a machine platform, which is equipped with an oil injection device (3), a silicone plug installation assembly (4), a detection module (5), a shell pressing assembly (6), a feeding mechanism (7), and a linear conveying unit (8). The front of the housing (1) and the machine cover (2) is equipped with a touch screen (9), control buttons (10), a cooling fan (11), and a safety light curtain (12). The side of the housing (1) is equipped with a pressure regulating valve assembly (13) and a power switch (14), and a warning light (15) is installed on the top.

2. The automatic e-cigarette filling and assembly machine according to claim 1, characterized in that: The oil injection device (3) includes an oil injection tank (301), an oil injection pump (302), an oil pump support frame (303), a Z-axis support frame (304), a lead screw Z-axis (305), an adjusting plate (306), an oil pipe fixing block (307), an oil injection needle (308), and a needle adjusting block (309). The oil injection tank (301) is located on the lower side of the housing (1), and the oil pump support frame (303) and the Z-axis support frame (304) are mounted on the machine base of the housing (1). The oil pump (302) is arranged on the oil pump support frame (303), the Z-axis support frame (304) is located on the left side of the oil pump support frame (303), the lead screw Z-axis (305) is set on the Z-axis support frame (304), the adjusting plate (306) is connected to the lead screw Z-axis (305), the oil pipe fixing block (307) is installed above the adjusting plate (306), and the oil injection needle (308) and the needle adjusting block (309) are installed below the adjusting plate (306).

3. The automatic e-cigarette filling and assembly machine according to claim 1, characterized in that: The silicone plug installation assembly (4) includes a silicone plug vibratory feeder (401), a linear vibration track (402), a linear vibrator (403), a blocking cylinder (404), a Y-axis support frame (405), a silicone plug feeding Y-axis (406), a rotary cylinder (407), a silicone plug receiving block (408), a fiber optic sensor (409), a silicone plug installation mechanism support frame (410), an installation mechanism X-axis module (411), an installation mechanism Z-axis module (412), a silicone plug installation mounting plate (413), a pushing cylinder (414), a positioning pin fixing plate (415), a positioning pin (416), and a stripping plate (417). The silicone plug vibratory feeder (401) is set on the ground outside the machine casing. The beginning end of the linear vibration track (402) is connected to the silicone plug vibratory feeder (401), and the linear vibrator (403) corresponds to the linear vibration track. At the side end of (402), the blocking cylinder (404), the silicone plug receiving block (408) and the fiber optic sensor (409) are set at the end of the straight vibration track (402). The bottom of the silicone plug receiving block (408) and the fiber optic sensor (409) are supported by the Y-axis support frame (405) for the silicone plug feeding Y-axis (406). The rotary cylinder (407) is connected to the silicone plug receiving block (408) and installed on the feeding Y-axis (406). The silicone plug installation mechanism support frame (410) loads the installation mechanism X-axis module (411). The silicone installation hanging plate (413) is installed on the installation mechanism Z-axis module (412) to move and pick up materials. The positioning pin (416) is installed inside the positioning pin fixing plate (415) and is pushed by the pushing cylinder (414) installed on the hanging plate to separate the silicone plug from the bottom stripping plate (417).

4. The automatic e-cigarette filling and assembly machine according to claim 1, characterized in that: The outer shell pressing assembly (6) includes a feeding slide rail (601), a material tray support plate (602), a positioning cylinder (603), a distributing cylinder (604), a material tray clamp (605), a clamping support frame (606), a material tray (607), an outer shell removal device frame (608), an outer shell mechanism X-axis (609), an outer shell mechanism Y-axis (610), an outer shell mechanism Z-axis (611), a pressing cylinder (612), a second rotary cylinder (613), a rotary shaft connecting plate (614), a cylinder mounting plate (615), a clamping cylinder (616), a second pushing cylinder (617), a pushing rod (618), a pressing cylinder (619), a pressing frame (620), a guide plate (621), and a polyurethane pressure rod (622). The feeding slide rail (601) is mounted on the machine platform, and the material tray support plate (602) moves on the feeding slide rail (601) to push the material tray (609). 7) The lifting and distributing cylinder (604), positioning cylinder (603), material tray gripper (605), and gripper support frame (606) are set at the top of the feeding slide rail (601). The material tray gripper (605) is movably connected to the gripper support frame (606). The three-axis module of the outer shell mechanism (X-axis (609), outer shell mechanism (Y-axis (610), and outer shell mechanism (Z-axis (611)) is connected to the outer shell removal device frame (608) and set on the machine. On the platform, the Z-axis is equipped with a pressing cylinder (612) that pushes the rotating shaft connecting plate (614) downward. The second rotating cylinder (613) drives the cylinder mounting plate (615) to rotate, causing the clamping cylinder (616) to clamp and release the material. The second pushing cylinder (617) and the pushing rod (618) are mounted on the cylinder mounting plate (615). The pressing frame (620) is connected to the pressing cylinder (619), and the cylinder is connected to the polyurethane pressure rod (622).

5. The automatic e-cigarette filling and assembly machine according to claim 1, characterized in that: The unloading mechanism (7) includes an unloading support frame (701), a material-picking Z-axis (702), a second pressing cylinder (703), a translation cylinder (704), a second clamping cylinder (705), a material-picking clamping block (706), an unloading slide (707), and a belt conveyor (708); the unloading support frame (701) is placed on the base plate of the machine platform of the housing (1), the belt conveyor (708) is set inside the unloading support frame (701), and the material-picking Z-axis... (702) is set in front of the second pressing cylinder (703), the second clamping cylinder (705) controls the picking clamp block (706) and is installed at the bottom of the picking Z axis (702), the picking clamp block (706) is located at the upper end of the unloading slide (707), the second pressing cylinder (703) and two sets of translation cylinders (704) are installed on both sides of the unloading support frame (701), and the unloading slide (707) is installed above the belt conveyor line (708).

6. The automatic e-cigarette filling and assembly machine according to claim 1, characterized in that: The linear conveying unit (8) includes a profile bracket (801), a cell positioning mechanism (802), an opening cylinder (803), an oil filling cover plate (804), an oil filling pressing cylinder (805), a silicone plug installation positioning mechanism (806), a detection module bracket (807), a shell pressing component positioning mechanism (808), a motor assembly (809), a chain (810), and a fixture (811). The profile bracket (801) is set on the machine platform of the housing (1). The motor assembly (809) is driven and connected to the drive chain (810). The fixture (811) is connected to the motor assembly (809). The cell positioning mechanism (802), the silicone plug installation positioning mechanism (806), the detection module bracket (807), and the shell pressing component positioning mechanism (808) are all arranged sequentially on the profile bracket (801).

7. The automatic e-cigarette filling and assembly machine according to claim 1, characterized in that: The enclosure (1) is made of stainless steel metal plate welded together, and has a sound insulation layer inside. The cover (2) is made of transparent engineering plastic and the surface is treated with anti-static agents.

8. The automatic e-cigarette filling and assembly machine according to claim 2, characterized in that: The oil injection pump (302) is a high-precision gear pump or plunger pump with a flow rate adjustment range of 0.1-10 mL / s and a pressure adjustment range of 0.1-0.5 MPa. The oil injection needle (308) is made of stainless steel.