An assembly apparatus for a puff ribbon

By designing automated powder puff ribbon assembly equipment, and utilizing plug-in components, abutment rods, and hot-melt welding components, the problems of high labor consumption and low production efficiency caused by manual hot-melt welding have been solved, thus achieving high-efficiency powder puff production.

CN224391956UActive Publication Date: 2026-06-23SHENZHEN YUKAIMING HIGH FREQUENCY AUTOMATION EQUIPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN YUKAIMING HIGH FREQUENCY AUTOMATION EQUIPMENT CO LTD
Filing Date
2025-09-22
Publication Date
2026-06-23

AI Technical Summary

Technical Problem

In existing technologies, the hot-melt welding fixation between the base layer and the ribbon in powder puffs mainly relies on manual operation, resulting in high labor costs and low production efficiency.

Method used

An assembly device for powder puff ribbons was designed, which adopts an automated system of plug-in components, abutment rods, cylinders and hot melt welding components to achieve efficient hot melt welding and fixing of the base layer and the ribbon.

Benefits of technology

The automation system significantly reduces labor input and improves the production efficiency of powder puffs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides an assembly device for powder puff ribbons, including a cabinet and an assembly device disposed within the cabinet. The assembly device includes a frame, a plug-in component, a tray, two abutment rods, two fourth cylinders, and a hot-melt welding component. The plug-in component is located at the top of the frame, the tray is located at the bottom of the frame, the two abutment rods are respectively located in two transfer slots, the two fourth cylinders are respectively located on both sides inside the cabinet and are respectively connected to the two abutment rods, and the hot-melt welding component is located at the bottom outside the frame. Through the cooperation of the plug-in component, the two abutment rods, the two fourth cylinders, and the hot-melt welding component, the base layer of the powder puff and the ribbon can be hot-melt welded together efficiently and automatically. Compared with the traditional method of manually using hot-melt welding tools to hot-melt weld together the base layer of the powder puff and the ribbon, this powder puff ribbon assembly device can save labor input and significantly increase powder puff production capacity.
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Description

Technical Field

[0001] This utility model relates to the field of assembly equipment technology, and in particular to an assembly equipment for powder puff ribbons. Background Technology

[0002] A powder puff, also known as an oil cushion or air cushion puff, is a makeup tool used to pick up foundation and apply makeup. A powder puff consists of a base layer, a ribbon, and a sponge. The base layer and sponge are bonded together, and the ribbon is attached to the surface of the base layer for the user to hold with their fingers.

[0003] Currently, when hot-melt welding is used to fix the base layer and ribbon in the powder puff, it is usually done manually with a hot-melt welding tool. However, this method requires a lot of labor and is slow, which limits production capacity. Utility Model Content

[0004] The present invention aims to provide an assembly device for powder puff ribbons, in order to solve the problem mentioned in the background art that when the base layer of the powder puff and the ribbon are fixed by hot melt welding, it is usually done manually by holding a hot melt welding tool. However, the method of using a manual hot melt welding tool for hot melt welding is labor-intensive and slow, which limits the production capacity.

[0005] The technical solution adopted by this utility model to solve the technical problem is as follows: An assembly device for powder puff ribbons includes a cabinet and an assembly device disposed in the cabinet; the assembly device includes a frame, a plug-in component, a tray, two abutting rods, two fourth cylinders and a hot melt welding component. The plug-in component is disposed at the top of the frame, the tray is disposed at the bottom of the frame, and a receiving groove is formed through the tray. Two adjacent through holes are formed through the bottom of the frame below the receiving groove. Two transfer slots are symmetrically arranged on both sides of the bottom of the frame, and the two transfer slots are respectively connected to the two through holes. The two abutting rods are respectively located in the two transfer slots. The two fourth cylinders are respectively disposed on both sides inside the cabinet and are respectively connected to the two abutting rods. The hot melt welding component is disposed at the bottom outside the frame.

[0006] In some embodiments, the plug-in assembly includes a first cylinder, a connecting plate, a first elastic element, a second elastic element, a mounting plate, a plug-in block, a second cylinder, and a third cylinder; the first cylinder is fixedly installed on the top of the frame, and the output shaft of the first cylinder extends through the top of the frame and is located inside the frame; the connecting plate is fixedly disposed at the bottom end of the output shaft of the first cylinder; one top side of the mounting plate is movably connected to one bottom side of the connecting plate through the first elastic element; the other top side of the mounting plate is movably connected to the other bottom side of the connecting plate through the second elastic element; the plug-in block is fixedly disposed at the bottom of the mounting plate, and two inserts are symmetrically arranged on both sides of the bottom of the plug-in block; the second cylinder is fixedly installed on the top of the frame, and the output shaft of the second cylinder extends through the top of the frame and is located inside the frame and correspondingly located above one top side of the mounting plate; the third cylinder is fixedly installed on the top of the frame, and the output shaft of the third cylinder extends through the top of the frame and is located inside the frame and correspondingly located above the other top side of the mounting plate.

[0007] In some embodiments, the first elastic element includes a first guide channel, a first connecting shaft, a first spring, and a first stop. The first guide channel is embedded in one side of the connecting plate, the first connecting shaft is fixedly disposed on the top side of the mounting plate, the top end of the first connecting shaft extends through the first guide channel to the top of the connecting plate, the first stop is fixedly disposed on the top end of the first connecting shaft, and the first spring is sleeved on the first connecting shaft and abuts against the top end of the first guide channel and the bottom end of the first stop. The second elastic element includes a second guide channel, a second connecting shaft, a second spring, and a second stop. The second guide channel is embedded in the other side of the connecting plate, the second connecting shaft is fixedly disposed on the other top side of the mounting plate, the top end of the second connecting shaft extends through the second guide channel to the top of the connecting plate, the second stop is fixedly disposed on the top end of the second connecting shaft, and the second spring is sleeved on the second connecting shaft and abuts against the top end of the second guide channel and the bottom end of the second stop.

[0008] In some embodiments, the top of the frame is provided with two guide holes, and the top of the connecting plate is fixedly provided with two guide rods, which extend outside the top of the frame by passing through the two guide holes respectively.

[0009] In some embodiments, a support is provided at the bottom of the outer frame, and the hot melt welding assembly is fixedly installed on the support and located below the two through holes opened at the bottom of the inner frame.

[0010] In some embodiments, the hot melt welding assembly includes a fifth cylinder and a hot melt welding head; the hot melt welding head is fixedly disposed at the top end of the output shaft of the fifth cylinder, the hot melt welding head is provided with a heating element inside, and the top of the hot melt welding head is provided with two heating blocks, the heating element being connected to the two heating blocks.

[0011] In some embodiments, the cabinet is provided with a material loading / unloading port corresponding to the assembly device.

[0012] In some embodiments, the outer surface of the cabinet is provided with a control panel and several buttons, all of which are electrically connected to the control panel, and the control panel is controlled by the assembly device.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] In this powder puff ribbon assembly equipment, the combination of plug-in components, two abutment rods, two fourth cylinders and hot melt welding components can efficiently and automatically achieve hot melt welding and fixing between the base layer of the powder puff and the ribbon. Compared with the traditional method of using hot melt welding tools to fix the base layer of the powder puff and the ribbon manually, this powder puff ribbon assembly equipment can save labor input and significantly increase the powder puff production capacity. Attached Figure Description

[0015] Figure 1 A schematic diagram of the overall structure of the equipment for assembling powder puff ribbons;

[0016] Figure 2 A schematic diagram of the cabinet in a partially disassembled state in the assembly equipment for powder puff ribbons;

[0017] Figure 3 for Figure 2 Enlarged structural diagram at point A;

[0018] Figure 4 This is a first-person view of the structural diagram of the assembly device.

[0019] Figure 5 This is a schematic diagram of the assembly device from a second-view perspective.

[0020] Figure 6 This is a first-person view of the structure of the plug-in assembly.

[0021] Figure 7 This is a schematic diagram of the plug-in assembly from a second-view perspective.

[0022] Figure 8 This is a schematic diagram of the split structure of the plug-in assembly;

[0023] Figure 9A first-view structural schematic diagram of some parts of the assembly device;

[0024] Figure 10 This is a schematic diagram of the assembly device with some parts in a separate state.

[0025] Figure 11 This is a structural schematic diagram of some parts of the assembly device from a second-view perspective.

[0026] Figure 12 This is a schematic diagram of a powder puff structure in the prior art;

[0027] Figure 13 This is a schematic diagram of a powder puff in the first split state in the existing technology;

[0028] Figure 14 This is a schematic diagram of the structure of a powder puff in the second split state in the prior art;

[0029] Figure 15 This is a structural diagram showing a ribbon placed on top of a base layer, awaiting insertion of a component.

[0030] Figure 16 This is a schematic diagram showing the structure in which the two sides of the ribbon are inserted into two recessed holes on the base layer by the plug-in components, so that the two sides of the ribbon are at the bottom of the base layer.

[0031] Explanation of reference numerals in the attached figures:

[0032] 1000. Assembly equipment for powder puff ribbons; 100. Cabinet; 1001. Control panel; 1002. Buttons; 1003. Material loading / unloading port; 200. Assembly device; 10. Frame; 101. Transfer groove; 102. Through-hole; 103. Bracket; 20. Plug-in assembly; 201. First cylinder; 202. Connecting plate; 203. First elastic element; 2031. First guide channel; 2032. First connecting shaft; 2033. First spring; 2034. First stop; 204. Second elastic element; 2041. Second guide channel; 2042. Second connecting shaft; 2043. 2044. Second spring; 205. Second stop; 206. Mounting plate; 207. Insert block; 208. Insert piece; 2091. Second cylinder; 2092. Third cylinder; 2093. Guide hole; 2094. Guide rod; 30. Tray; 301. Receiver; 3011. Side groove; 40. Abutment rod; 50. Fourth cylinder; 60. Hot melt welding assembly; 601. Fifth cylinder; 602. Hot melt welding head; 6021. Heating element; 6022. Heating block; 2000. Powder puff; 2001. Base layer; 20011. Embedding hole; 2002. Ribbon; 2003. Sponge. Detailed Implementation

[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0034] Furthermore, in this utility model, descriptions involving "first," "second," etc., are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features.

[0035] Please see Figures 1 to 16 As shown, this utility model provides the following technical solution: an assembly device 1000 for powder puff ribbons, including a cabinet 100 and an assembly device 200 disposed within the cabinet 100; the assembly device 200 includes a frame 10, a plug-in component 20, a tray 30, two abutment rods 40, two fourth cylinders 50, and a hot melt welding component 60. The plug-in component 20 is disposed at the top inside the frame 10, and the tray 30 is disposed at the bottom inside the frame 10. A receiving groove 301 is provided through the tray 30. Two adjacent through holes 102 are provided through the bottom inside the frame 10 below the receiving groove 301. Two transfer grooves 101 are symmetrically provided on both sides of the bottom inside the frame 10. The two transfer grooves 101 are respectively connected to the two through holes 102. The two abutment rods 40 are respectively located in the two transfer grooves 101. The two fourth cylinders 50 are respectively disposed on both sides inside the cabinet 100 and are respectively connected to the two abutment rods 40. The hot melt welding component 60 is disposed at the bottom outside the frame 10.

[0036] The existing powder puff 2000 includes a base layer 2001, ribbons 2002, and a sponge 2003 (see...). Figures 12 to 14 As shown, the base layer 2001 is bonded to the sponge 2003, and the ribbon 2002 is fixed to the surface of the base layer 2001 for the user to hold with their fingers, allowing the user to operate the powder puff 2000 by hand. The powder puff ribbon assembly equipment 1000 is used to automatically perform hot melt welding between the base layer 2001 and the ribbon 2002 in the powder puff 2000.

[0037] In the powder puff ribbon assembly equipment 1000 provided in this embodiment, when performing heat fusion welding between the base layer 2001 and the ribbon 2002 in the powder puff 2000, the user can place the base layer 2001 in the receiving groove 301 of the tray 30. Since the receiving groove 301 is adapted to the size of the base layer 2001, the receiving groove 301 achieves positioning and accommodation of the base layer 2001. Then, the user places the ribbon 2002 horizontally on top of the base layer 2001. The receiving groove 301 also has connecting side grooves 3011 on both sides, so the ribbon 2002 is placed horizontally on the base layer 2001. When the base layer 2001 is placed on top, since the side grooves 3011 on both sides of the receiving groove 301 are adapted to the size of the two sides of the ribbon 2002, the side grooves 3011 on both sides of the receiving groove 301 are positioned to accommodate the two sides of the ribbon 2002. After the base layer 2001 and the ribbon 2002 are placed, the insertion component 20 moves downward to press the two sides of the ribbon 2002 into the two adjacent embedding holes 20011 on the left and right sides of the base layer 2001, so that the two sides of the ribbon 2002 come to the bottom of the base layer 2001. After the insertion component 20 completes the insertion action, it moves upward and resets. Then, the two fourth cylinders 50 respectively drive the two abutment rods 40 to move relative to each other in the two transfer slots 101, so that the two abutment rods 40 push against the two sides of the ribbon 2002 located at the bottom of the base layer 2001, so as to keep the two sides of the ribbon 2002 in a relatively inclined state at the bottom of the base layer 2001. At this time, the hot melt welding assembly 60 moves upward to push the two sides of the relatively inclined ribbon 2002 located at the bottom of the base layer 2001 to abut against the bottom of the base layer 2001, and the hot melt welding assembly 60 performs welding on the two sides of the ribbon 2002. The sides of the ribbon 2002 are heat-fused to the bottom of the base layer 2001. Then, the two fourth cylinders 50 drive the two abutment rods 40 to move in opposite directions in the two transfer slots 101 to reset, and the heat-fused welding assembly 60 moves down to reset. This fixes the ribbon 2002 to the base layer 2001. After the base layer 2001 is bonded with the sponge 2003 in the subsequent production process to form the finished powder puff 2000, the user can operate and use the powder puff by pinching the ribbon 2002 on the surface of the base layer 2001 with their fingers. In this powder puff ribbon assembly equipment 1000, through the cooperation of the plug-in component 20, two abutment rods 40, two fourth cylinders 50 and the hot melt welding component 60, the base layer 2001 and the ribbon 2002 in the powder puff 2000 can be hot melt welded and fixed in a highly efficient and automated manner. Compared with the traditional method of using hot melt welding tools to hot melt weld and fix the base layer 2001 and the ribbon 2002 in the powder puff 2000, this powder puff ribbon assembly equipment 1000 can save labor input and significantly increase the production capacity of the powder puff 2000.

[0038] Please refer to this carefully. Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 15 and Figure 16 As shown, in some embodiments, the plug-in assembly 20 includes a first cylinder 201, a connecting plate 202, a first elastic element 203, a second elastic element 204, a mounting plate 205, a plug-in block 206, a second cylinder 207, and a third cylinder 208. The first cylinder 201 is fixedly installed on the top of the frame 10, and the output shaft of the first cylinder 201 extends through the top of the frame 10 and is located inside the frame 10. The connecting plate 202 is fixedly disposed at the bottom end of the output shaft of the first cylinder 201. The top side of the mounting plate 205 is movably connected to the bottom side of the connecting plate 202 through the first elastic element 203, and the other top side of the mounting plate 205 is connected to the connecting plate 206. The bottom of the connecting plate 202 is movably connected to the other side via the second elastic member 204. The plug block 206 is fixedly installed at the bottom of the mounting plate 205. Two inserts 2061 are symmetrically arranged on both sides of the bottom of the plug block 206. The second cylinder 207 is fixedly installed on the top of the frame 10. The output shaft of the second cylinder 207 extends through the top of the frame 10 and is located inside the frame 10 and above the top side of the mounting plate 205. The third cylinder 208 is fixedly installed on the top of the frame 10. The output shaft of the third cylinder 208 extends through the top of the frame 10 and is located inside the frame 10 and above the top side of the mounting plate 205.

[0039] In specific implementation: When the insertion assembly 20 moves downward to press both sides of the ribbon 2002 into the two adjacent embedding holes 20011 on the base layer 2001, the output shaft of the first cylinder 201 pushes the connecting plate 202 downward a distance, so that the connecting plate 202, along with the insertion block 206 on the mounting plate 205 at the bottom, moves downward a distance to approach the area above the receiving groove 301. Then, simultaneously, the output shafts of the second cylinder 207 and the third cylinder 208 push the mounting plate 205 downward. When the mounting plate 205 is pushed downward by the second cylinder 207 and the third cylinder 208, the mounting plate... When the mounting plate 205 moves downward along with the plug-in block 206, the mounting plate 205 and the connecting plate 202 are movably connected by the first elastic element 203 and the second elastic element 204. Therefore, the mounting plate 205 can move downward relative to the connecting plate 202. When the mounting plate 205 and the plug-in block 206 move downward, the plug-in block 206 is embedded in the receiving groove 301 of the tray 30. The two inserts 2061 at the bottom of the plug-in block 206 respectively insert the two sides of the ribbon 2002 into the two embedding holes 20011 on the base layer 2001. Then, the two sides of the ribbon 2002 come to the bottom of the base layer 2001 to wait for the next process step. When the plug-in assembly 20 moves upward and resets after completing the plug-in action, the second cylinder 207 drives its output shaft to move upward to disengage from the contact mounting plate 205, and the third cylinder 208 drives its output shaft to move upward to disengage from the contact mounting plate 205. As a result, after the mounting plate 205 is no longer subjected to the downward pushing force of the second cylinder 207 and the third cylinder 208, the mounting plate 205 will be subjected to the rebound force of the first elastic element 203 and the second elastic element 204 between the mounting plate 205 and the connecting plate 202, so that the mounting plate 205 and the plug-in block 206 move towards the connecting plate 202 to reset. Then, the output shaft of the first cylinder 201 drives the connecting plate 202 to move upward and reset, so that the parts connected on the connecting plate 202 are away from the receiving groove 301 on the tray 30, thereby realizing the upward reset of the plug-in assembly 20. With this configuration, the plug-in assembly 20 can effectively insert both sides of the ribbon 2002 into the two insertion holes 20011 on the base layer 2001.

[0040] Please refer to this carefully. Figure 6 and Figure 8As shown, in some embodiments, the first elastic element 203 includes a first guide channel 2031, a first connecting shaft 2032, a first spring 2033, and a first stop 2034. The first guide channel 2031 is embedded in one side of the connecting plate 202. The first connecting shaft 2032 is fixedly disposed on the top side of the mounting plate 205. The top end of the first connecting shaft 2032 extends through the first guide channel 2031 to the top end of the connecting plate 202. The first stop 2034 is fixedly disposed on the top end of the first connecting shaft 2032. The first spring 2033 is sleeved on the first connecting shaft 2032 and abuts against the top end of the first guide channel 2031 and the first stop 2034. Between the bottom ends; the second elastic element 204 includes a second guide channel 2041, a second connecting shaft 2042, a second spring 2043, and a second stop 2044. The second guide channel 2041 is embedded in the other side of the connecting plate 202. The second connecting shaft 2042 is fixedly disposed on the other side of the top of the mounting plate 205. The top end of the second connecting shaft 2042 extends through the second guide channel 2041 to the top end of the connecting plate 202. The second stop 2044 is fixedly disposed on the top end of the second connecting shaft 2042. The second spring 2043 is sleeved on the second connecting shaft 2042 and abuts between the top end of the second guide channel 2041 and the bottom end of the second stop 2044.

[0041] In specific implementation: When the plug-in assembly 20 performs the plug-in action, when the mounting plate 205 is simultaneously pushed down by the output shafts of the second cylinder 207 and the third cylinder 208, the first connecting shaft 2032 on the mounting plate 205, along with the first stop head 2034, moves downward. When the first stop head 2034 is moved downward by the first connecting shaft 2032, it compresses the first spring 2033 between the top end of the first guide channel 2031 and the bottom end of the first stop head 2034, thereby causing the first elastic element... 203 can support the mounting plate 205 to move downward relative to the connecting plate 202; at the same time, the second connecting shaft 2042 on the mounting plate 205 moves downward along with the second stop 2044. When the second stop 2044 is moved downward along with the second connecting shaft 2042, the second stop 2044 compresses the second spring 2043 between the top end of the second guide channel 2041 and the bottom end of the second stop 2044, so that the second elastic element 204 can support the mounting plate 205 to move downward relative to the connecting plate 202. After the plug-in assembly 20 completes the plugging action, when the mounting plate 205 moves upward and resets, the second cylinder 207 drives its output shaft to rise and disengage from the contact mounting plate 205, and the third cylinder 208 drives its output shaft to rise and disengage from the contact mounting plate 205. Then, the first spring 2033 between the top end of the first guide channel 2031 and the bottom end of the first stop 2034 rebounds and extends. When the first spring 2033 rebounds and extends, it pushes the first connecting shaft 2032 to rise. When the first connecting shaft 2032 rises, the mounting plate 205 rises as well. Simultaneously, the second spring 2043 between the top end of the second guide channel 2041 and the bottom end of the second stop 2044 rebounds and extends. When the second spring 2043 rebounds and extends, it pushes the second connecting shaft 2042 upwards. As the second connecting shaft 2042 rises, the mounting plate 205 also rises. Thus, when the mounting plate 205 is de-contacted by the output shafts of the second cylinder 207 and the third cylinder 208, it can automatically rebound and return to its original position under the action of the first elastic element 203 and the second elastic element 204. This arrangement allows the first elastic element 203 and the second elastic element 204 to effectively support the mounting plate 205 in moving downwards or upwards relative to the connecting plate 202.

[0042] Please refer to this carefully. Figure 6 and Figure 8 As shown, in some embodiments, the top of the frame 10 is provided with two guide holes 2091, and the top of the connecting plate 202 is fixedly provided with two guide rods 2092. The two guide rods 2092 extend to the top of the frame 10 by passing through the two guide holes 2091 respectively.

[0043] In specific implementation: When the output shaft of the first cylinder 201 drives the connecting plate 202 to move up or down, the two guide rods 2092 on the connecting plate 202 can move linearly in the two guide holes 2091 at the top of the frame 10. With this arrangement, when the first cylinder 201 drives the connecting plate 202 to move up or down, the connecting plate 202 can be linearly guided by the cooperation of the two guide rods 2092 and the two guide holes 2091.

[0044] Please refer to this carefully. Figure 5 As shown, in some embodiments, a bracket 103 is provided at the bottom of the outer side of the frame 10, and the hot melt welding assembly 60 is fixedly installed on the bracket 103 and is located below the two through holes 102 that are opened through the bottom of the inner side of the frame 10.

[0045] In practice: the hot melt welding assembly 60 is fixedly installed on the bracket 103 at the bottom outer side of the frame 10, so that the hot melt welding assembly 60 is fixed at the bottom outer side of the frame 10 to correspond to the two through holes 102 that are opened through the bottom inner side of the frame 10. With this arrangement, the hot melt welding assembly 60 can be securely installed at the bottom outer side of the frame 10 for application.

[0046] Please refer to this carefully. Figure 4 , Figure 5 , Figure 9 , Figure 10 , Figure 11 and Figure 16 As shown, in some embodiments, the hot melt welding assembly 60 includes a fifth cylinder 601 and a hot melt welding head 602; the hot melt welding head 602 is fixedly disposed at the top of the output shaft of the fifth cylinder 601, a heating element 6021 is provided inside the hot melt welding head 602, and two heating blocks 6022 are provided on the top of the hot melt welding head 602, and the heating element 6021 is connected to the two heating blocks 6022.

[0047] In specific implementation: When the hot melt welding assembly 60 moves upward to perform hot melt welding on both sides of the relatively inclined ribbon 2002 located at the bottom of the base layer 2001, the fifth cylinder 601 pushes the hot melt welding head 602 upward by a distance, so that the two heating blocks 6022 on the hot melt welding head 602 are respectively embedded into the two through holes 102 opened at the bottom of the frame 10. At this time, the two heating blocks 6022 push against both sides of the relatively inclined ribbon 2002 to abut against the bottom of the base layer 2001. At the same time, the heating element 6021 generates electric heat and transfers heat to the two heating blocks 6022, so that the two heating blocks 6022 have heat to perform hot melt welding on both sides of the ribbon 2002 abutting against the bottom of the base layer 2001. When the hot melt welding assembly 60 moves down to reset after completing the welding action, the fifth cylinder 601 drives its output shaft to move the hot melt welding head 602 down to complete the reset. With this setting, the hot melt welding assembly 60 can effectively weld both sides of the ribbon 2002 to the bottom of the base layer 2001.

[0048] Please refer to this carefully. Figure 1 and Figure 2 As shown, in some embodiments, the cabinet 100 is provided with a material loading and unloading port 1003 corresponding to the assembly device 200.

[0049] In practical implementation: the material loading / unloading port 1003 is used for users to place materials on the tray 30 in the assembly device 200 inside the cabinet 100, or for users to remove materials from the tray 30 in the assembly device 200 inside the cabinet 100. This design makes it convenient for users to operate the material loading / unloading port 1003 on the cabinet 100.

[0050] Please refer to this carefully. Figure 1 and Figure 2 As shown, in some embodiments, the cabinet 100 has a control panel 1001 and several buttons 1002 on its exterior surface. The buttons 1002 are electrically connected to the control panel 1001, and the control panel 1001 is controlled and connected to the assembly device 200.

[0051] In practice: users can send control commands to the control panel 1001 by pressing the corresponding button 1002, so that the control panel 1001 can control the assembly device 200 to operate accordingly. This setup allows the assembly device 200 to be easily controlled by the user.

[0052] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0053] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An assembly device for powder puff ribbons, characterized in that, The device includes a cabinet and an assembly device disposed within the cabinet. The assembly device includes a frame, a plug-in assembly, a tray, two abutment rods, two fourth cylinders, and a thermoforming welding assembly. The plug-in assembly is disposed at the top of the frame, and the tray is disposed at the bottom of the frame. A receiving groove is formed through the tray. Two adjacent through holes are formed through the bottom of the frame below the receiving groove. Two transfer slots are symmetrically arranged on both sides of the bottom of the frame. The two transfer slots are respectively connected to the two through holes. The two abutment rods are respectively located in the two transfer slots. The two fourth cylinders are respectively disposed on both sides inside the cabinet and are respectively connected to the two abutment rods. The thermoforming welding assembly is disposed at the bottom outside the frame.

2. The assembly equipment for powder puff ribbons according to claim 1, characterized in that, The plug-in assembly includes a first cylinder, a connecting plate, a first elastic element, a second elastic element, a mounting plate, a plug-in block, a second cylinder, and a third cylinder. The first cylinder is fixedly installed on the top of the frame, and its output shaft extends through the top of the frame and is located inside the frame. The connecting plate is fixedly located at the bottom end of the output shaft of the first cylinder. The top side of the mounting plate is movably connected to the bottom side of the connecting plate through the first elastic element, and the other top side of the mounting plate is movably connected to the other bottom side of the connecting plate through the second elastic element. The plug-in block is fixedly located at the bottom of the mounting plate, and two inserts are symmetrically arranged on both sides of the bottom of the plug-in block. The second cylinder is fixedly installed on the top of the frame, and its output shaft extends through the top of the frame and is located inside the frame, corresponding to the top side above the mounting plate. The third cylinder is fixedly installed on the top of the frame, and its output shaft extends through the top of the frame and is located inside the frame, corresponding to the top side above the mounting plate.

3. The assembly equipment for powder puff ribbons according to claim 2, characterized in that, The first elastic element includes a first guide channel, a first connecting shaft, a first spring, and a first stop. The first guide channel is embedded in one side of the connecting plate. The first connecting shaft is fixedly disposed on the top side of the mounting plate. The top end of the first connecting shaft extends through the first guide channel to the top of the connecting plate. The first stop is fixedly disposed on the top end of the first connecting shaft. The first spring is sleeved on the first connecting shaft and abuts against the top end of the first guide channel and the bottom end of the first stop. The second elastic element includes a second guide channel, a second connecting shaft, a second spring, and a second stop. The second guide channel is embedded in the other side of the connecting plate. The second connecting shaft is fixedly disposed on the other side of the top of the mounting plate. The top end of the second connecting shaft extends through the second guide channel to the top of the connecting plate. The second stop is fixedly disposed on the top end of the second connecting shaft. The second spring is sleeved on the second connecting shaft and abuts against the top end of the second guide channel and the bottom end of the second stop.

4. The assembly equipment for powder puff ribbons according to claim 2, characterized in that, The top of the frame has two guide holes, and the top of the connecting plate has two guide rods fixedly installed. The two guide rods extend out of the top of the frame through the two guide holes.

5. The assembly equipment for powder puff ribbons according to claim 1, characterized in that, The frame has a support at the bottom outside, and the hot melt welding assembly is fixedly installed on the support and is located below the two through holes opened at the bottom inside the frame.

6. The assembly equipment for powder puff ribbons according to claim 1, characterized in that, The hot melt welding assembly includes a fifth cylinder and a hot melt welding head; the hot melt welding head is fixedly mounted on the top of the output shaft of the fifth cylinder, the hot melt welding head is provided with a heating element inside, and the top of the hot melt welding head is provided with two heating blocks, the heating element being connected to the two heating blocks.

7. The assembly equipment for powder puff ribbons according to claim 1, characterized in that, The cabinet has a material loading and unloading port corresponding to the assembly device.

8. The assembly equipment for powder puff ribbons according to claim 1, characterized in that, The cabinet exterior is equipped with a control panel and several buttons, all of which are electrically connected to the control panel. The control panel is controlled by the assembly device.