A lipstick production spare parts compression assembly device

By designing a pressing and assembly device for lipstick production components, a bearing plate is used to drive the pressing block to slide, so as to achieve accurate installation and pressing of the magnetic ring and the outer shell on the inner shell. This solves the problems of inaccurate installation of the magnetic ring and multiple machines in the existing technology, and improves work efficiency and practicality of the device.

CN119566778BActive Publication Date: 2025-11-07NANTONG YINGLAI NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202411908013.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-11-07
Estimated Expiration
2044-12-24

AI Technical Summary

Technical Problem

In existing technologies, the magnetic ring on the upper shell of the lipstick tube is not installed precisely and needs to be completed on multiple devices, which affects work efficiency. In addition, the magnetic ring is prone to tilting and jamming, resulting in instability in subsequent operations.

Method used

Design a pressing and assembly device for lipstick production parts. A single device can achieve the clamping and feeding of magnetic rings, the extrusion and unloading of materials, and the pressing of the outer shell. The bearing plate drives the pressing block to slide, so as to achieve accurate installation and pressing of the magnetic rings and the outer shell on the inner shell.

Benefits of technology

It improves work efficiency, reduces energy consumption and production costs, ensures that the magnetic ring and the housing are installed on the same equipment, avoids the problem of unstable installation of the magnetic ring, and improves the practicality of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of lipstick tube processing, and particularly discloses a lipstick production part pressing and assembling device, which comprises a rack, and a first working frame, a second working frame and a third working frame are installed on the rack; a first conveying frame for conveying a magnetic ring is arranged on the first working frame; and a second conveying frame for conveying a shell is arranged on the second working frame; a bearing plate is vertically and slidingly connected between the first working frame and the second working frame through a power cylinder; a pressing block for pressing operation is arranged on the bottom of the bearing plate; and a clamping and feeding mechanism for feeding the magnetic ring is arranged in the first working frame. In this process, only the power of the power cylinder is used to drive the bearing plate to slide downwards, so that energy consumption can be saved, production cost can be reduced, the inner shell, the magnetic ring and the shell are pressed together on one device, separate installation and re-pressing operation are not needed, and the working efficiency of the pressing device is greatly improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of lipstick tube processing, in particular to a lipstick production part pressing and assembling device. BACKGROUND

[0002] The color of lipstick is closely related to the hairstyle, nail polish color and clothing of women, and becomes more trendy. In recent years, the use of various pearl powders and treated pigments has made the color of lipstick more diverse and the texture more comfortable. Similar to the development trend of other beauty and cosmetic products, it continues to focus on beauty, and also considers moisturizing, nourishing and sunscreen functions. Lipstick is a kind of lip beauty and cosmetic product, and its main function is to give the lips color, emphasize or change the outline of the two lips, and show more vitality and vitality.

[0003] It can be seen that the lipstick tube is an important part of the lipstick, which is an outer packaging container for storing lipstick paste. Among various materials of the lipstick tube, the aluminum lipstick tube is favored by many lipstick manufacturers because of its light weight and good quality.

[0004] In order to facilitate the use of lipstick, a magnetic attraction design is generally used. The design of the magnetic lipstick tube makes it very convenient and fast to use. The user only needs to place the top end of the lipstick close to the bottom of another lipstick tube with a magnet. Due to the attraction and repulsion of the magnetic field, the lipstick tube can be firmly attached together, so that the lipstick can be easily applied to the lip makeup without the tedious steps of rotating and unscrewing. At the same time, the magnetic lipstick tube also has the characteristics of preventing loss.

[0005] In the production and processing process of the lipstick tube, the contact parts of the lower shell and the upper shell of the lipstick tube are respectively provided with magnetic attraction rings, and the upper shell and the lower shell are connected by the magnetic attraction rings when the lower shell and the upper shell are closed. In the processing of the upper shell of the lipstick tube, a pressing device is used to press the magnetic attraction ring in the upper shell. For example, the patent for utility model with application number 202020286069.6 and authorization announcement number CN211728175U, named "magnet pressing device for lipstick tube", discloses a magnet pressing device for lipstick tube, which comprises a base, a frame, a driving screw and a carrier disc. Four corners of the bottom end of the base are provided with damping fixing mechanisms, a servo motor is installed at the bottom end of the frame inside, a driving screw is installed at the output end of the servo motor, a driven screw is installed at one end of the frame of the driving screw, driving blocks are sleeved on the driving screw and the driven screw, fixed plates are welded at one end of the driving blocks, base is installed on the fixed plates, vacuum pump is installed at the top end of the base inside, guide plate is welded at the bottom end of the base, positioning disc is installed at the bottom end of the guide plate, and the input end of the vacuum pump and the inside of the guide plate are connected.

[0006] The above patent can make the device optimize its own structure, the user can use the sliding connection structure composed of sliding bar and sliding groove, cooperate with the locking and fixing effect of locking bolt, disassemble and assemble the base and fixing plate, and then clean and maintain the base and the structure mounted thereon, facilitate cleaning or replacing the positioning disc, and prolong the service life of the device.

[0007] It is known that the lipstick tube comprises an upper shell and a lower shell, wherein the upper shell comprises an outer shell and an inner shell, the outer shell plays a protective role, and the inner shell is used to connect with the lower shell of the lipstick tube, and a magnetic ring is arranged between the outer shell and the inner shell. In the production and processing process of the upper shell of the lipstick tube, the magnetic ring needs to be installed inside the inner shell, and the outer shell is pressed on the inner shell. However, in the prior art, in order to improve the precision of the installation of the outer shell, the magnetic ring and the inner shell, a device is first used to install the magnetic ring inside the inner shell, and then another device is used to press the outer shell on the inner shell, which affects the work efficiency; at the same time, in order to facilitate the normal use of the lipstick tube later, the size of the magnetic ring needs to be matched with the size of the inner shell, and the inner shell has a certain height, under the action of gravity and elastic force and other forces, the magnetic ring is inclined and clamped in the inner shell, at this moment, the magnetic ring is not horizontally clamped in the inner shell, which affects the subsequent operation. Therefore, how to realize the pressing of the upper shell of the lipstick tube on one device while ensuring that the magnetic ring is accurately clamped in the inner shell is a technical problem to be solved. SUMMARY

[0008] The present application aims to provide a lipstick production part pressing and assembling device to solve the problems in the background art.

[0009] In order to achieve the above object, the present application provides the following technical scheme: a lipstick production parts compression assembly device, comprising a rack, the rack is provided with a conveying part for conveying an inner shell, and the rack is provided with a first workbench, a second workbench and a third workbench, the first workbench is provided with a first conveying frame for conveying a magnetic ring, and the second workbench is provided with a second conveying frame for conveying an outer shell; the first workbench and the second workbench are vertically and slidably connected by a power cylinder, and a bearing plate is arranged at the bottom of the bearing plate; a compression block for compression operation is arranged on the bottom of the bearing plate; a clamping feeding mechanism for feeding the magnetic ring is arranged in the first workbench, and an extrusion discharging mechanism for installing the magnetic ring into the inner shell is arranged in the third workbench; a reciprocating conveying mechanism for feeding the outer shell is further arranged in the second workbench, and the bearing plate is in abutment with the clamping feeding mechanism, the extrusion discharging mechanism and the reciprocating conveying mechanism; when the power cylinder drives the bearing plate to slide downward, the clamping feeding mechanism feeds the magnetic ring in the first conveying frame; when the bearing plate continues to slide downward, the extrusion feeding mechanism unlocks the magnetic ring on the clamping feeding mechanism, so that the magnetic ring falls into the inner shell; when the bearing plate continues to slide downward, the reciprocating conveying mechanism drives the outer shell to slide from the second conveying frame to the upper part of the inner shell; when the bearing plate continues to slide downward, the compression block compresses the outer shell on the inner shell.

[0010] Further, the clamping feeding mechanism comprises a power frame slidably connected in the first workbench, and a power part for driving the power frame to slide is arranged in the first workbench; the power frame is provided with a feeding frame by an elastic limiting part, the feeding frame is provided with a clamping part for clamping the magnetic ring, the clamping part comprises clamping plates slidably connected on both sides of the feeding frame, an abutment spring is arranged between the two clamping plates, and the elastic force of the abutment spring drives the two clamping plates to move away from each other to fix the magnetic ring; the feeding frame is provided with a trigger part for driving the two clamping plates to move close to each other.

[0011] Further, the extrusion discharging mechanism comprises an extrusion plate slidably connected in the third workbench, the extrusion plate is fixedly connected with an extrusion block, and a driving unit for driving the extrusion block to slide horizontally is arranged on the third workbench; a contact groove is formed in the feeding frame, and the extrusion plate intermittently abuts with the contact groove; the clamping plate is fixedly connected with a stress block, the trigger part comprises a trigger block vertically and slidably connected in the feeding frame, wedge-shaped blocks are fixedly connected on both sides of the trigger block, the wedge-shaped blocks abut with the stress block, and a supporting spring is arranged between the trigger block and the feeding frame; the extrusion block intermittently abuts with the trigger block.

[0012] Further, the power unit comprises a reciprocating screw rod rotatably connected to the first working frame, the reciprocating screw rod is threadedly connected with the power frame, and a driving gear is mounted on the reciprocating screw rod through an intermittent connecting piece; the second working frame is internally and vertically slidably connected with a driving rack, and the driving rack is intermittently engaged with the driving gear; the carrying plate is fixedly connected with a first connecting block, and the first connecting block is in abutment with the driving rack to drive the driving rack to slide downward.

[0013] Further, the driving rack comprises a plate body, the plate body is provided with a first tooth portion and a second tooth portion, and an intermittent portion is arranged between the first tooth portion and the second tooth portion, and the first tooth portion, the second tooth portion and the intermittent portion are matched with the driving gear respectively.

[0014] Further, the driving unit comprises a power rack slidably connected to the third working frame, and the power rack is fixedly connected with the extrusion block; the third working frame is rotatably connected with a rotating rod, the rotating rod is mounted with a power gear engaged with the power rack, and the rotating rod is further provided with an intermittent gear; the third working frame is vertically slidably connected with a vertical rack, and the vertical rack is intermittently engaged with the intermittent gear; the power rack and the vertical rack are respectively provided with a reset member between the power rack and the vertical rack and the third working frame, and the carrying plate is intermittently in abutment with the vertical rack through a second connecting block.

[0015] Further, the reciprocating conveying mechanism comprises a conveying frame slidably connected to the second working frame, and the conveying frame is provided with a clamping piece for clamping the shell; the clamping piece comprises two connecting frames slidably connected to the conveying frame through elastic portions, each connecting frame is provided with an annular clamping plate, and the conveying frame and the second working frame are provided with a first mounting spring; the second working frame is internally provided with a trigger piece for driving the conveying frame to slide out of the second working frame; the trigger piece comprises a trigger rod vertically slidably connected to the second working frame, the conveying frame is fixedly connected with an extension block, the trigger rod is in abutment with the extension block, and the carrying plate is fixedly connected with a third connecting block, the third connecting block is intermittently in abutment with the trigger rod.

[0016] Further, the second conveying frame is internally provided with a locking piece for locking the shell; the locking piece comprises a first locking block and a second locking block vertically slidably connected to the second conveying frame, the first locking block is provided with a locking spring between the first locking block and the second conveying frame, the first locking block and the second locking block are drivingly connected through a linkage, and the trigger rod is connected with the first locking block through a connecting unit.

[0017] Further, the connecting unit comprises a supporting rod fixedly connected to the first locking block, the supporting rod is fixedly connected with an abutment block, and the trigger rod is fixedly connected with a pressing rod, the pressing rod is in abutment with the abutment block.

[0018] Further, the first conveying frame and the second conveying frame are both provided with extrusion units.

[0019] Compared with the prior art, the lip production part pressing and assembling device has the following beneficial effects: when the bearing plate drives the pressing block to slide downward, the clamping feeding mechanism is passively driven to clamp and feed the magnetic attraction ring, the magnetic attraction ring on the clamping feeding mechanism is unlocked by the extrusion feeding mechanism, so that the magnetic attraction ring is installed in the installation groove in the inner shell, the reciprocating conveying mechanism is passively driven to convey the outer shell to the upper side of the outer shell, the bearing plate drives the pressing block to slide downward, so that the outer shell is clamped on the outer side of the inner shell, and the outer shell and the inner shell are pressed together when the pressing block continues to slide downward. Only the power cylinder is used to drive the bearing plate to slide downward in this process, which can save energy and reduce production cost, and the inner shell, the magnetic attraction ring and the outer shell are pressed together on one device, without the need for separate installation and re-pressing operation, which greatly improves the working efficiency of the pressing device.

[0020] When the driving unit drives the extrusion block to slide out from the third working frame to the side close to the clamping feeding mechanism, the extrusion block drives the extrusion plate and the contact groove on the feeding frame to abut, and when the extrusion plate and the contact groove abut, the feeding frame drives the clamping part to slide downward, and the clamping part drives the magnetic attraction ring to slide into the shell deep groove in the inner shell. When the driving unit continues to drive the extrusion block to slide, the extrusion block extrudes the trigger block, the trigger block slides downward, the wedge blocks on both sides of the trigger block extrude the stress blocks, so that the two clamping plates approach each other, and finally the magnetic attraction ring falls stably in the installation groove, thereby reducing the distance between the magnetic attraction ring and the installation groove when the magnetic attraction ring falls off, avoiding unstable installation of the magnetic attraction ring due to height difference or elastic factors, and greatly improving the practicability of the pressing device. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art based on these drawings.

[0022] Figure 1 The overall structure schematic diagram provided for the embodiments of the present application;

[0023] Figure 2 The overall structure schematic diagram provided for the embodiments of the present application;

[0024] Figure 3 The overall structure schematic diagram provided for the embodiments of the present application;

[0025] Figure 4 The first working frame hidden state structure schematic view provided for the embodiment of the present application;

[0026] Figure 5 The three working frame all hidden state structure schematic view provided for the embodiment of the present application;

[0027] Figure 6 The extrusion blanking mechanism and clamping feeding mechanism mounting method structure schematic view provided for the embodiment of the present application;

[0028] Figure 7 The clamping feeding mechanism local structure schematic view provided for the embodiment of the present application;

[0029] Figure 8 The elastic limiting part mounting method structure schematic view provided for the embodiment of the present application;

[0030] Figure 9 The clamping feeding mechanism local explosion state structure schematic view provided for the embodiment of the present application;

[0031] Figure 10 The intermittent connecting piece mounting method structure schematic view provided for the embodiment of the present application;

[0032] Figure 11 The second conveying frame mounting method structure schematic view provided for the embodiment of the present application;

[0033] Figure 12 The second conveying frame internal structure schematic view provided for the embodiment of the present application;

[0034] Figure 13 The reciprocating conveying mechanism local structure schematic view provided for the embodiment of the present application;

[0035] Figure 14 The clamping piece mounting method structure schematic view provided for the embodiment of the present application;

[0036] Figure 15 The power part and power frame connecting method structure schematic view provided for the embodiment of the present application;

[0037] Figure 16 The extrusion blanking mechanism local structure schematic view provided for the embodiment of the present application;

[0038] Figure 17 The extrusion plate and clamping feeding mechanism extrusion state schematic view provided for the embodiment of the present application;

[0039] Figure 18 The extrusion block and clamping feeding mechanism extrusion state schematic view provided for the embodiment of the present application;

[0040] Figure 19 A schematic diagram of a partial structure of a locking member provided for an embodiment of the present application is shown in FIG. 2;

[0041] Figure 20 A schematic diagram of a structure of a lifting block mounting method provided for an embodiment of the present application is shown in FIG. 3;

[0042] Figure 21 A schematic diagram of a first conveying frame structure provided for an embodiment of the present application is shown in FIG. 4;

[0043] Figure 22 An exploded state structure schematic diagram of an inner shell, a magnetic ring and an outer shell provided for an embodiment of the present application is shown in FIG. 5;

[0044] Figure 23 A cross-sectional schematic diagram of an inner shell, a magnetic ring and an outer shell provided for an embodiment of the present application is shown in FIG. 6;

[0045] Explanation of reference signs: 1, rack; 2, conveying piece; 3, first working frame; 4, second working frame; 5, third working frame; 6, fixed plate; 7, power cylinder; 8, bearing plate; 81, first connecting block; 82, second connecting block; 83, third connecting block; 9, pressing block; 10, first conveying frame; 1001, conveying groove; 1002, contact table; 11, second conveying frame; 12, clamping feeding mechanism; 121, power frame; 122, feeding frame; 123, elastic limiting part; 124, clamping part; 1241, clamping plate; 1242, abutting spring; 1243, stress block; 125, trigger part; 1251, trigger block; 1252, wedge-shaped block; 1253, supporting spring; 126, power part; 1261, driving rack; 12611, first tooth part; 12612, intermittent part; 12613, second tooth part; 1262, driving gear; 1263, reciprocating screw rod; 127, adjusting block; 128, lifting block; 129, contact groove; 13, intermittent connecting piece; 131, connecting rod; 132, base; 133, ratchet; 134, tooth groove; 14, extrusion discharging mechanism; 141, extrusion plate; 142, extrusion block; 143, power rack; 144, power gear; 145, intermittent gear; 146, vertical rack; 147, first return spring; 148, second return spring; 15, reciprocating conveying mechanism; 151, conveying frame; 152, clamping piece; 1521, connecting frame; 1522, annular clamping plate; 1523, guide rod; 1524, clamping spring; 153, extension block; 154, first mounting spring; 155, trigger piece; 1551, trigger rod; 1552, extension plate; 1553, second mounting spring; 16, locking piece; 161, first locking block; 162, second locking block; 163, linkage; 164, locking spring; 165, supporting rod; 166, abutting block; 167, pressing rod; 17, extrusion unit; 18, elastic sheet; 19, inner shell; 191, mounting groove; 192, shell deep groove; 20, outer shell; 21, magnetic attraction ring. DETAILED DESCRIPTION

[0046] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0047] Please refer to Figures 1-23The application provides a technical scheme: a lipstick production part pressing and assembling device, which comprises a rack 1, preferably, supporting legs are arranged at the bottom of the rack 1 to support the pressing and assembling device during operation. A conveying part 2 for conveying an inner shell 19 is arranged on the rack 1, specifically, the conveying part is a prior art part and can be used for conveying the inner shell 19. Specifically, according to actual needs, a conveying part made of hard material can be selected to facilitate subsequent pressing operation.

[0048] A first working frame 3, a second working frame 4 and a third working frame 5 are arranged on the rack 1, the first working frame 3 is provided with a first conveying frame 10 for conveying a magnetic ring 21, the second working frame 4 is provided with a second conveying frame 11 for conveying an outer shell 20, and an extrusion unit 17 is arranged in the first conveying frame 10 and the second conveying frame 11. Specifically, the extrusion unit 17 comprises an adapter plate which is slidably connected in the first conveying frame 10, an extrusion spring is arranged between the adapter plate and the first conveying frame 10, and the elastic force of the extrusion spring drives the magnetic ring 21 to slide outward. The extrusion unit 17 in the second conveying frame 11 is consistent with the first conveying frame 10, and details are not repeated here. The first conveying frame 10 is further provided with elastic sheets 18 on both sides, the elastic sheets 18 are two in number and can increase the friction with the magnetic ring 21, when the elastic force of the extrusion unit 17 drives the magnetic ring 21 to slide outward to the space between the two elastic sheets 18, the magnetic ring 21 is then passively in a static state. The first working frame 3 and the second working frame 4 are vertically slidably connected with a bearing plate 8 through a power cylinder 7, specifically, a fixed plate 6 is fixedly connected between the first working frame 3 and the second working frame 4, the power cylinder 7 is arranged on the fixed plate 6, and the bearing plate 8 is arranged on the output end of the power cylinder 7 and is used for driving the bearing plate 8 to vertically slide. The bearing plate 8 is provided with a pressing block 9 for pressing operation at the bottom, that is, when the magnetic ring 21 is arranged in the inner shell 19 and the outer shell 20 is sleeved on the outer side of the inner shell 19, the bearing plate 8 slides downward, and the pressing block 9 is used for pressing the outer shell 20 and the inner shell 19.

[0049] Specifically, the inner shell 19 is internally provided with a mounting groove 191 matched with the magnetic ring 21, and the inner shell 19 is also internally provided with a shell deep groove 192 to facilitate the installation of the outer shell 20. The first working frame 3 is internally provided with a clamping and feeding mechanism 12 for feeding the magnetic ring 21, so that in the use process, the clamping and feeding mechanism 12 is used to clamp the magnetic ring 21 located in the first conveying frame 10 and transmit it to the upper side of the inner shell 19, so as to facilitate the subsequent installation of the magnetic ring 21 in the inner shell 19. The third working frame 5 is internally provided with an extrusion discharging mechanism 14 for installing the magnetic ring 21 into the inner shell 19, wherein the extrusion discharging mechanism 14 can install the magnetic ring 21 located above the inner shell 19 into the inner shell 19, realizing the effect of automatic discharging. The second working frame is also provided with a reciprocating conveying mechanism 15 for feeding the outer shell 20, which can convey the outer shell 20 to the upper side of the inner shell 19, and finally the outer shell 20 is sleeved on the outer side of the inner shell 19 through the pressing block 9, meeting the working needs. Specifically, the bearing plate 8 abuts against the clamping and feeding mechanism 12, the extrusion discharging mechanism 14 and the reciprocating conveying mechanism 15, that is, the bearing plate 8 first contacts the clamping and feeding mechanism 12, then abuts against the extrusion discharging mechanism 14 to drive the extrusion discharging mechanism 14 to move, so that the extrusion discharging mechanism 14 places the magnetic ring 21 on the clamping and feeding mechanism 12 in the mounting groove 191 in the inner shell 19, and then drives the reciprocating conveying mechanism 15 to move, and after the outer shell 20 is slid to the upper side of the inner shell 19, the bearing plate 8 drives the pressing block 9 to slide downward, and the outer shell 20 is clamped on the outer side of the inner shell 19, meeting the working needs.

[0050] Specifically, the distance that the bearing plate 8 slides downward generates the following stations:

[0051] The first station, when the power cylinder 7 drives the bearing plate 8 to slide downward, the clamping and feeding mechanism 12 clamps the magnetic ring 21 in the first conveying frame 10, and in this process, the clamping and feeding mechanism 12 clamps the magnetic ring 21 located in the first conveying frame 10 and transmits it to the upper side of the inner shell 19, so as to facilitate the subsequent installation of the magnetic ring 21 in the inner shell 19.

[0052] The second station, when the bearing plate 8 continues to slide downward, the extrusion feeding mechanism unlocks the magnetic ring 21 on the clamping and feeding mechanism 12, so that the magnetic ring 21 falls into the inner shell 19, thereby greatly facilitating the installation of the magnetic ring 21 and improving the accuracy of the installation of the magnetic ring, further meeting the working needs.

[0053] The third station, when the bearing plate 8 continues to slide downward, the shell 20 is driven to slide from the inside of the second conveying frame 11 to the upper part of the inner shell 19 by the reciprocating conveying mechanism 15, in the process, the shell 20 can be conveyed above the inner shell 19, so as to facilitate the feeding of the shell 20, and further embody the effect of automatic feeding of the device.

[0054] The fourth station, when the bearing plate 8 continues to slide downward, the pressing block presses the shell 20 on the inner shell 19, in the process, the magnetic attraction ring 21 has been located in the installation groove 191 of the inner shell 19, and the shell 20 has been located above the inner shell 19, therefore, when the bearing plate 8 continues to slide downward, the bearing plate 8 drives the pressing block 9 to slide downward, so that the shell 20 is clamped on the outer side of the inner shell 19, and when the pressing block 9 continues to slide downward, the shell 20 is pressed together with the inner shell 19, so as to realize the working efficiency of the pressing device.

[0055] Specifically, when the bearing plate 8 drives the pressing block 9 to slide downward, the clamping feeding mechanism 12 is passively driven to clamp and feed the magnetic attraction ring 21, and the magnetic attraction ring 21 on the clamping feeding mechanism 12 is unlocked by the extrusion discharging mechanism 14, so that the magnetic attraction ring 21 is installed in the installation groove 191 inside the inner shell 19, and the reciprocating conveying mechanism 15 is passively driven to convey the shell 20 above the shell 20, the bearing plate 8 drives the pressing block 9 to slide downward, so that the shell 20 is clamped on the outer side of the inner shell 19, and when the pressing block 9 continues to slide downward, the shell 20 is pressed together with the inner shell 19. In the process, only the power cylinder 7 is used to drive the bearing plate 8 to slide downward, which can save energy consumption and reduce production cost, and the inner shell 19, the magnetic attraction ring 21 and the shell 20 are pressed together on one device, without the need for separate installation and re-pressing operation, which greatly improves the working efficiency of the pressing device.

[0056] In the embodiment provided by the present application, the clamping and feeding mechanism 12 comprises a power frame 121 slidingly connected inside the first work frame 3, and the first work frame is internally provided with a power part 126 for driving the power frame 121 to slide. The power frame 121 is mounted with a feeding frame 122 through an elastic limiting part 123. Specifically, the elastic limiting part 123 comprises a trapezoidal block fixedly connected to the side wall of the feeding frame 122, and a trapezoidal groove is formed in the power frame 121, wherein the trapezoidal block is vertically slidingly connected in the trapezoidal groove, and a positioning spring is arranged between the trapezoidal block and the trapezoidal groove, so as to improve the stability of the feeding frame 122 and the power frame 121 during installation. The feeding frame 122 is internally provided with a clamping part 124 for clamping the magnetic ring 21. The clamping part 124 comprises two clamping plates 1241 slidingly connected to the two sides of the feeding frame 122, and an abutting spring 1242 is arranged between the two clamping plates 1241. The elastic force of the abutting spring 1242 drives the two clamping plates 1241 to move away from each other, so as to fix the magnetic ring 21. Specifically, the two clamping plates 1241 are located inside the magnetic ring 21 and move away from each other under the elastic action of the abutting spring 1242, so as to fix the magnetic ring 21. The feeding frame 122 is internally provided with a trigger part 125 for driving the two clamping plates 1241 to move close to each other. Therefore, when the trigger part 125 drives the two clamping plates 1241 to move close to each other during use, the magnetic ring 21 at this moment is unlocked from the clamping plates 1241, so as to facilitate the subsequent installation of the magnetic ring 21.

[0057] Preferably, the first conveying frame 10 comprises a conveying groove 1001 formed on the first conveying frame 10, wherein the conveying groove 1001 is fixedly connected with a contact table 1002, the magnetic ring 21 is installed on the contact table 1002, and the magnetic ring 21 is in a hollow state with the conveying groove 1001. Specifically, the first working frame 3 is fixedly connected with a lifting block 128, preferably the lifting block 128 is in a wedge shape, and the feeding frame 122 is fixedly connected with an adjusting block 127. When the power part 126 drives the power frame 121 to slide the feeding frame 122 to the inside of the first conveying frame 151, when the adjusting block 127 abuts against the lifting block 128, the feeding frame 122 is driven by the adjusting block 127 to slide upwardly against the elastic action of the positioning spring, when the feeding frame 122 slides upwardly, the two clamping plates 1241 slide upwardly together, and the power frame 121 drives the feeding frame 122 to continue to slide to the inside of the first working frame 3, that is, the two clamping plates 1241 slide from the upper part of the outermost magnetic ring 21 to the inside of the first working frame 3. When the adjusting block 127 passes through the lifting block 128 (that is, the lifting block 128 does not abut against the adjusting block 127), the clamping plate 1241 is driven to slide downwardly by the elastic force of the positioning spring, and the clamping plate 1241 passes through the magnetic ring 21 clamped by the two elastic sheets 18 from top to bottom, so that the outermost magnetic ring 21 can be clamped, when the magnetic ring 21 needs to be fed again, the clamping plate 1241 slides in the conveying groove 1001, drives the magnetic ring 21 to slide on the contact table 1002 against the friction of the elastic sheet 18, so as to facilitate the later feeding of the magnetic ring 21.

[0058] In the embodiments provided by the present application, the extrusion feeding mechanism 14 comprises an extrusion plate 141 slidably connected inside the third working frame 5, and the extrusion plate 141 is fixedly connected with an extrusion block 142, and the extrusion block 142 slides to drive the extrusion plate 141 to slide. The third working frame 5 is provided with a driving unit for driving the extrusion block 142 to slide horizontally. During use, when the driving unit drives the extrusion block 142 to slide out from inside the third working frame 5 to the side close to the clamping feeding mechanism 12, the extrusion plate 141 at this moment first abuts against the clamping feeding mechanism 12, and then the extrusion block 142 abuts against the clamping feeding mechanism 12. Specifically, the feeding frame 122 is provided with a contact groove 129, and the extrusion plate 141 intermittently abuts against the contact groove 129. During use, when the driving unit drives the extrusion block 142 to drive the extrusion plate 141 to slide, after the extrusion plate 141 abuts against the contact groove 129, the feeding frame 122 at this moment drives the clamping portion 124 to slide downward, that is, the clamping portion 124 at this moment drives the magnetic attraction ring 21 to slide into the shell deep groove 192 inside the inner shell 19, so that the distance between the magnetic attraction ring 21 and the installation groove 191 when the magnetic attraction ring 21 falls off can be reduced, the situation that the magnetic attraction ring 21 is not smoothly installed due to height difference or elastic factors can be avoided, and the practicability of the pressing device is greatly improved. The clamping plate 1241 is fixedly connected with a stress block 1243, the triggering portion 125 comprises a triggering block 1251 vertically and slidably connected inside the feeding frame 122, the two sides of the triggering block 1251 are fixedly connected with wedge-shaped blocks 1252, the wedge-shaped blocks 1252 abut against the stress block 1243, and the triggering block 1251 and the feeding frame 122 are provided with a supporting spring 1253, so that the supporting spring 1253 drives the triggering block 1251 to keep upward under no external force. The extrusion block 142 intermittently abuts against the triggering block 1251. Therefore, during use, when the driving unit drives the extrusion block 142 to slide out from inside the third working frame 5 to the side close to the clamping feeding mechanism 12, the extrusion block 142 at this moment drives the extrusion plate 141 to abut against the contact groove 129 on the feeding frame 122, and after the extrusion plate 141 abuts against the contact groove 129, the feeding frame 122 at this moment drives the clamping portion 124 to slide downward, that is, the clamping portion 124 at this moment drives the magnetic attraction ring 21 to slide into the shell deep groove 192 inside the inner shell 19. When the driving unit continues to drive the extrusion block 142 to continuously slide, the extrusion block 142 extrudes the triggering block 1251, the triggering block 1251 slides downward, the wedge-shaped blocks 1252 on the two sides of the triggering block 1251 extrude the stress block 1243, so that the two clamping plates 1241 are close to each other, and finally the magnetic attraction ring 21 is smoothly installed in the installation groove 191, so that the distance between the magnetic attraction ring 21 and the installation groove 191 when the magnetic attraction ring 21 falls off can be reduced, the situation that the magnetic attraction ring 21 is not smoothly installed due to height difference or elastic factors can be avoided, and the practicability of the pressing device is greatly improved.

[0059] In the embodiment provided by the application, the power part 126 comprises a reciprocating screw rod 1263 rotatably connected to the first working frame 3, the reciprocating screw rod 1263 is threadedly connected with the power frame 121, and the reciprocating screw rod 1263 is provided with a driving gear 1262 through the intermittent connecting piece 13. The second working frame 4 is internally and vertically slidably connected with a driving rack 1261, and the driving rack 1261 is intermittently engaged with the driving gear 1262. The bearing plate 8 is fixedly connected with a first connecting block 81, and the first connecting block 81 abuts against the driving rack 1261 to drive the driving rack 1261 to slide downward, and when the power cylinder 7 drives the bearing plate 8 to slide downward, the first connecting block 81 drives the driving rack 1261 to slide downward. The driving rack 1261 comprises a plate body, the plate body is provided with a first tooth portion 12611 and a second tooth portion 12613, and an intermittent portion 12612 is arranged between the first tooth portion 12611 and the second tooth portion 12613. The first tooth portion 12611, the second tooth portion 12613 and the intermittent portion 12612 are matched with the driving gear 1262, respectively.

[0060] When the second tooth portion 12613 on the driving rack 1261 is engaged with the driving gear 1262, the driving gear 1262 is driven to rotate by the second tooth portion 12613 with the vertical sliding of the driving rack 1261. Specifically, the thread on the reciprocating screw rod 1263 is designed according to the work requirement, and the number of teeth between the first tooth portion 12611 and the driving gear 1262 is specifically calculated. After the first tooth portion 12611 is engaged with the driving gear 1262, the driving gear 1262 is driven to rotate for a stroke, which is just enough to drive the power frame 121 to feed the feeding frame 122, so as to transport the magnetic attraction ring 21 at the outermost side of the first transmission frame to the upper side of the inner shell 19, thereby improving the accuracy of the magnetic attraction ring 21 during feeding. Similarly, the working principle of the second tooth portion 12613 and the first tooth portion 12611 is the same. During the work process, when the bearing plate 8 drives the driving rack 1261 to slide downward through the first connecting block 81, the first tooth portion 12611 is engaged with the driving gear 1262 at this moment, and the power frame 121 is driven to feed by the reciprocating screw rod 1263. When the intermittent portion 12612 on the plate body is matched with the driving gear 1262, the reciprocating screw rod 1263 cannot be driven to rotate at this moment. During the stroke in which the intermittent portion 12612 is matched with the driving gear 1262, the magnetic attraction ring 21 on the clamping plate 1241 is unlocked by the extrusion unloading mechanism 14, so that the magnetic attraction ring 21 is clamped in the installation groove 191. When the second tooth portion 12613 is engaged with the driving gear 1262, the reciprocating screw rod 1263 is driven to rotate, so as to drive the feeding frame 122 to reset into the first working frame 3 through the power frame 121, and the next magnetic attraction ring 21 is clamped and fixed again, thereby facilitating the feeding operation of the magnetic attraction ring 21 again.

[0061] More specifically, the reciprocating wire rod 1263 is provided with an intermittent connecting piece 13 between the reciprocating wire rod 1263 and the drive gear 1262, which can realize that when the drive rack 1261 slides downward, the reciprocating wire rod 1263 can be driven to rotate through the intermittent connecting piece 13, and when the drive rack 1261 resets upward, the reciprocating wire rod 1263 cannot be driven to rotate. The intermittent connecting piece 13 includes a connecting rod 131 mounted on the reciprocating wire rod 1263, a plurality of ratchet teeth 133 are mounted on the connecting rod 131 through the base 132, and a limiting unit is arranged between the ratchet teeth 133 and the base 132, which ensures that the ratchet teeth 133 can only rotate counterclockwise, and a tooth groove 134 is formed on the drive gear 1262, and the ratchet teeth 133 are clamped in the tooth groove 134. When the drive rack 1261 slides downward, the drive gear 1262 rotates at this moment, that is, the tooth groove 134 drives the ratchet to rotate, and the connecting rod 131 and the reciprocating wire rod 1263 are driven to rotate through the ratchet 133. When the drive rack 1261 slides upward, the arc surface of the tooth groove 134 will abut against the arc surface of the ratchet 133 at this moment, so that the ratchet 133 is counterclockwise. At this moment, the reciprocating wire rod 1263 cannot be driven to rotate through the connecting rod 131, thereby ensuring the stability of the installation of the feeding frame 122, facilitating the next feeding operation of the magnetic attraction ring 21, and the use effect is better.

[0062] In the embodiment provided by the present application, the driving unit comprises a power rack 143 slidably connected to the third working frame 5, and the power rack 143 is fixedly connected to the extrusion block 142, so that when the power rack 143 slides, the extrusion block 142 is driven to slide. The third working frame 5 is rotatably connected to a rotating rod, and the rotating rod is provided with a power gear 144 engaged with the power rack 143, and is further provided with an intermittent gear 145. The third working frame 5 is vertically slidably connected to a vertical rack 146, and the vertical rack 146 is intermittently engaged with the intermittent gear 145. The power rack 143 and the vertical rack 146 are respectively provided with return members between the power rack 143 and the third working frame 5, wherein the return members comprise a first return spring 147 mounted between the power rack 143 and the third working frame 5, and the vertical rack 146 is provided with a second return spring 148 between the vertical rack 146 and the second working frame 4, so as to facilitate the return of the power rack 143 and the vertical rack 146. The carrier plate 8 is intermittently abutted with the vertical rack 146 through the second connecting block 82. In use, when the carrier plate 8 slides downward, the vertical rack 146 is driven to slide downward through the second connecting block 82, and then the power rack 143 is driven to slide horizontally through the intermittent gear 145 and the power gear 144, so as to drive the extrusion block 142 to extrude the contact groove 129 on the feeding frame 122, and then when the extrusion block 142 is adapted to the trigger block 1251, the unlocking of the magnetic attraction ring 21 is realized, so as to facilitate the installation of the magnetic attraction ring 21. When the intermittent gear 145 is not engaged with the vertical rack 146, the elastic force of the first return spring 147 drives the power rack 143 to drive the extrusion block 142 and the extrusion plate 141 to return, so as to avoid affecting the subsequent installation.

[0063] In the embodiment provided by the present application, the reciprocating conveying mechanism 15 comprises a conveying frame 151 slidably connected to the second workbench 4, and a clamping piece 152 for clamping the shell 20 is arranged on the conveying frame 151; therefore, in use, the shell 20 is clamped and fed from the second conveying frame 11 by sliding the conveying frame 151 and cooperating with the clamping piece 152. The clamping piece 152 comprises two connecting frames 1521 slidably connected to the conveying frame 151 by elastic members, and an annular clamping plate 1522 is arranged on each connecting frame 1521. Specifically, the elastic member comprises a guide rod 1523 fixedly connected to the connecting frame 1521, a sliding groove matched with the guide rod 1523 is formed in the conveying frame 151, and a clamping spring 1524 is arranged between the guide rod 1523 and the sliding groove, wherein the elastic force of the clamping spring 1524 drives the annular clamping plate 1522 to fix the shell 20. A first mounting spring 154 is arranged between the conveying frame 151 and the second workbench 4, and the elastic force of the first mounting spring 154 drives the conveying frame 151 to retract into the second workbench. A trigger 155 is arranged in the second workbench 4 for driving the conveying frame 151 to slide out of the second workbench 4. The trigger 155 comprises a trigger rod 1551 vertically slidably connected to the second workbench 4, an extension block 153 is fixedly connected to the conveying frame 151, the trigger rod 1551 abuts against the extension block 153, and an extension plate 1552 is fixedly connected to the trigger rod 1551, and a second mounting spring 1553 is arranged between the extension plate 1552 and the second workbench 4. A third connecting block 83 is fixedly connected to the bearing plate 8, and the third connecting block 83 intermittently abuts against the trigger rod 1551. Therefore, in use, when the bearing plate 8 slides downward to the third station, the third connecting block 83 at this moment drives the trigger rod 1551 to slide downward, the conveying frame 151 is driven to slide away from the second workbench 4 by the abutting cooperation of the trigger rod 1551 and the extension block 153, and the shell 20 is slid to be right above the inner shell 19 by the clamping piece 152, so as to facilitate the subsequent use of the pressing block 9 to connect the shell 20 and the inner shell 19. After the pressing operation is completed, when the bearing plate 8 is reset upward, the trigger rod 1551 and the conveying frame 151 are reset by the second mounting spring 1553 and the third mounting spring, and the second mounting spring 1553 drives the conveying frame 151 to fix the next shell 20 by the annular clamping plate 1522 when it is reset, so as to facilitate the subsequent feeding of the shell 20. Specifically, according to the calculation that the distance by which the extension block 153 is driven to slide farthest after the abutment of the trigger rod 1551 and the extension block 153 is just enough to make the conveying frame 151 and the clamping piece 152 convey the shell 20 to be right above the inner shell 19, so as to facilitate the connection of the shell 20 and the inner shell 19.

[0064] In the embodiment provided by the application, the second conveying frame 11 is internally provided with the locking piece 16 of the locking shell 20, thereby improving the stability during installation of multiple groups of the shell 20; the locking piece 16 comprises a first locking block 161 and a second locking block 162 which are vertically and slidingly connected in the second conveying frame 11; specifically, the first locking block 161 is located at the bottom of the outermost shell 20, and the second locking block 162 is located at the bottom of the shell 20 next to the outermost shell 20 but is not clamped in the shell 20; a locking spring 164 is arranged between the first locking block 161 and the second conveying frame 11, the elastic force of the locking spring 164 drives the first locking block 161 to be clamped in the outermost shell 20, and the first locking block 161 and the second locking block 162 are drivingly connected through a linkage 163; specifically, the linkage 163 comprises linkage racks fixedly connected to the bottom of the first locking block 161 and the second locking block 162, and a linkage gear is rotatably connected to the second conveying frame 11, and the two linkage racks are respectively engaged on the two sides of the linkage gear. When the trigger rod 1551 is connected to the first locking block 161 through a connecting unit, the connecting unit comprises a supporting rod 165 fixedly connected to the first locking block 161, the supporting rod 165 is fixedly connected with an abutting block 166, and the trigger rod 1551 is fixedly connected with a pressing rod 167, and the pressing rod 167 is in abutting cooperation with the abutting block 166. The shapes of the first locking block 161 and the second locking block 162 can be various, as long as they can limit the shell 20.

[0065] In the original state, the first locking block 161 is clamped at the bottom of the outermost shell 20, when the bearing plate 8 drives the third connecting block 83 to slide downward, the conveying frame 151 has a tendency to slide outward through the cooperation between the trigger rod 1551 and the extension block 153. However, before that, when the pressing rod 167 slides downward, the first locking block 161 is driven to slide downward through the cooperation of the abutting block 166 and the supporting rod 165, so that the first locking block 161 slides out of the innermost shell 20, and in the stroke of the first locking block 161 sliding downward, the second locking block 162 is driven to slide upward through the cooperation of the linkage 163, thereby limiting the shell 20 next to the outermost shell 20, thereby avoiding the extrusion unit 17 from extruding the shell 20 in the second conveying frame 11. At this moment, the cooperation between the trigger rod 1551 and the extension block 153 drives the conveying frame 151 and the clamping piece 152 to perform the conveying operation on the outermost shell 20.

[0066] And after the pressing operation is completed, the carrier plate 8 is reset upwards, the second mounting spring 1553 and the third mounting spring drive the trigger rod 1551 and the conveying frame 151 to reset, and the second mounting spring 1553 drives the conveying frame 151 to slide out of the shell 20 under the limitation of the extrusion unit 17, the elastic force of the locking spring 164 drives the first locking block 161 to slide upwards, at this moment, the second locking block 162 slides out of the shell 20, and when the second locking block 162 slides out of the shell 20, a plurality of shells 20 are driven to slide outward under the limitation of the extrusion unit 17, and the first mounting spring 154 drives the conveying frame 151 to slide at the reset stroke, the next shell 20 is limited by the clamping unit and the annular clamping plate 1522, in the stroke, the locking spring 164 has clamped the first locking block 161 on the bottom of the outermost shell 20 again, and the reset stroke of the first mounting spring 154 drives the annular clamping plate 1522 to fix the shell 20, facilitating subsequent shell 20 feeding.

[0067] It should be noted that the power-using equipment and the like involved in the present application can be powered by a storage battery or an external power source.

[0068] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "provided with", "connected" and the like should be understood in a broad sense, for example, "connected" can be fixedly connected, or detachably connected, or integrally connected, can be mechanically connected, or electrically connected, can be directly connected, or indirectly connected through an intermediate medium, or the communication between two elements. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.

[0069] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A lipstick production parts compression assembly device, comprising a rack (1), a conveying part for conveying an inner shell (19) is arranged on the rack (1), and a first working frame (3), a second working frame (4) and a third working frame (5) are installed on the rack (1), characterized in that: a first conveying frame (10) for conveying a magnetic ring (21) is arranged on the first working frame (3), and a second conveying frame (11) for conveying an outer shell (20) is arranged on the second working frame (4); a bearing plate (8) is vertically and slidingly connected between the first working frame (3) and the second working frame (4) through a power cylinder (7), and a compression block (9) is arranged on the bottom of the bearing plate (8); a clamping feeding mechanism (12) for feeding the magnetic ring (21) is arranged inside the first working frame (3), an extrusion discharging mechanism (14) for installing the magnetic ring (21) into the inner shell (19) is arranged inside the third working frame (5), and a reciprocating conveying mechanism (15) for feeding the outer shell (20) is further arranged in the second working frame (4); the bearing plate (8) abuts against the clamping feeding mechanism (12), the extrusion discharging mechanism (14) and the reciprocating conveying mechanism (15) respectively; the clamping feeding mechanism (12) comprises a power frame (121) which is slidingly connected inside the first working frame (3), and a power part (126) for driving the power frame (121) to slide is arranged inside the first working frame (3); the power frame (121) is provided with a feeding frame (122) through an elastic limiting part (123), an inner part of the feeding frame (122) is provided with a clamping part (124) for clamping the magnetic ring (21), the clamping part (124) comprises clamping plates (1241) which are slidingly connected on both sides of the feeding frame (122), an abutting spring (1242) is arranged between the two clamping plates (1241), and the elastic force of the abutting spring (1242) drives the two clamping plates (1241) to move away from each other to fix the magnetic ring (21); a trigger part (125) for driving the two clamping plates (1241) to move close to each other is arranged in the feeding frame (122). The extrusion blanking mechanism (14) comprises an extrusion plate (141) slidably connected in the third working frame (5), the extrusion plate (141) is fixedly connected with an extrusion block (142), and the third working frame (5) is provided with a driving unit for driving the extrusion block (142) to slide horizontally; the feeding frame (122) is provided with a contact groove (129), and the extrusion plate (141) intermittently abuts against the contact groove (129); the clamping plate (1241) is fixedly connected with a stress block (1243), the trigger part (125) comprises a trigger block (1251) vertically slidably connected in the feeding frame (122), the trigger block (1251) is fixedly connected with wedge-shaped blocks (1252) on both sides, the wedge-shaped blocks (1252) abut against the stress block (1243), and the trigger block (1251) and the feeding frame (122) are provided with a supporting spring (1253); the extrusion block (142) and the trigger block (1251) intermittently abut against each other; The driving unit comprises a power rack (143) slidably connected on the third working frame (5), and the power rack (143) is fixedly connected with the extrusion block (142); a rotating rod is rotatably connected on the third working frame (5), the rotating rod is provided with a power gear (144) engaged with the power rack (143), and the rotating rod is further provided with an intermittent gear (145); a vertical rack (146) is vertically slidably connected on the third working frame (5), and the vertical rack (146) is intermittently engaged with the intermittent gear (145); the power rack (143) and the vertical rack (146) are respectively provided with return members between the power rack (143) and the vertical rack (146) and the third working frame (5), and the bearing plate (8) is intermittently abutted against the vertical rack (146) through the second connecting block (82); The reciprocating conveying mechanism (15) comprises a conveying frame (151) slidably connected on the second working frame (4), and the conveying frame (151) is provided with a clamping piece (152) for clamping the shell (20); the clamping piece (152) comprises two connecting frames (1521) slidably connected on the conveying frame (151) through elastic parts, each connecting frame (1521) is provided with an annular clamping plate (1522), and the conveying frame (151) and the second working frame (4) are provided with a first mounting spring (154); the second working frame (4) is internally provided with a trigger piece (155) for driving the conveying frame (151) to slide out of the second working frame (4); the trigger piece (155) comprises a trigger rod (1551) vertically slidably connected in the second working frame (4), the conveying frame (151) is fixedly connected with an extension block (153), the trigger rod (1551) is in abutting cooperation with the extension block (153), and the bearing plate (8) is fixedly connected with a third connecting block (83), the third connecting block (83) is intermittently abutted against the trigger rod (1551); The first station, when the power cylinder (7) drives the bearing plate (8) to slide downward, the clamping feeding mechanism (12) clamps the magnetic attraction ring (21) in the first conveying frame (10); The second station, when the bearing plate (8) continues to slide downward, the magnetic attraction ring (21) on the clamping feeding mechanism (12) is unlocked by the extrusion discharging mechanism (14), so that the magnetic attraction ring (21) falls in the inner shell (19); The third station, when the bearing plate (8) continues to slide downward, the outer shell (20) is driven by the reciprocating conveying mechanism (15) to slide from the inside of the second conveying frame (11) to the upper part of the inner shell (19); The fourth station, when the bearing plate (8) continues to slide downward, the pressing block (9) presses the outer shell (20) on the inner shell (19).

2. The lipstick production parts compression assembly device according to claim 1, characterized in that: The power part (126) includes a reciprocating screw rod (1263) rotatably connected to the first working frame (3), the reciprocating screw rod (1263) is threadedly connected with the power frame (121), and a drive gear (1262) is mounted on the reciprocating screw rod (1263) through intermittent connectors, and the first working frame (3) is vertically and slidably connected with a drive rack (1261) inside the first working frame (3), and the drive rack (1261) is intermittently engaged with the drive gear (1262); The bearing plate (8) is fixedly connected with a first connecting block (81), and the first connecting block (81) abuts against the drive rack (1261) to drive the drive rack (1261) to slide downward.

3. The device according to claim 2, wherein: The drive rack (1261) includes a plate body, a first tooth portion (12611) and a second tooth portion (12613) are arranged on the plate body, and an intermittent portion (12612) is arranged between the first tooth portion (12611) and the second tooth portion (12613), and the first tooth portion (12611), the second tooth portion (12613) and the intermittent portion (12612) are matched with the drive gear (1262) respectively.

4. The device according to claim 1, wherein: The second conveying frame (11) is provided with a locking piece (16) for locking the outer shell (20) inside the second conveying frame (11); The locking piece (16) includes a first locking block (161) and a second locking block (162) which are vertically and slidably connected inside the second conveying frame (11), a locking spring (164) is arranged between the first locking block (161) and the second conveying frame (11), and the first locking block (161) and the second locking block (162) are drivingly connected through a linkage (163); The trigger lever (1551) is connected with the first locking block (161) through a connecting unit.

5. The device according to claim 4, wherein: The connecting unit includes a supporting rod (165) fixedly connected to the first locking block (161), an abutting block (166) is fixedly connected to the supporting rod (165), and a pressing rod (167) is fixedly connected to the trigger lever (1551), and the pressing rod (167) is in abutting cooperation with the abutting block (166).

6. The lipstick production subcomponent press-fitting assembly device according to claim 1, characterized in that: The first conveying frame (10) and the second conveying frame (11) are provided with extrusion units (17) inside.

Citation Information

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