Heating mask powder scraping mechanism
By designing the heating mask powder scraping mechanism, using the cooperation of the vertical scraping head and wear-resistant glue strips, the problem of rapid setting of heating powder on the mask packaging film layer is solved, and efficient powder scraping operation is achieved to meet the diversified market needs.
Patent Information
- Application Number
- CN202422926635.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-11-28
AI Technical Summary
The existing heating mask production equipment is difficult to quickly and easily place the heating powder on the packaging film layer of the mask, and cannot meet the diverse customer needs of the market.
A heating mask powder scraping mechanism is designed, including up and down moving components, horizontal moving components, heating powder storage bucket, horizontal scraping plate and workbench. By cooperating with a vertical scraping head and wear-resistant rubber strips, the heating powder scraping operation is realized, and the heating powder is stably arranged on the packaging film layer.
It realizes the rapid and simple setting of heating powder on the packaging film layer, improves work efficiency, is simple in structure and fast in operation.
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Figure CN223249761U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of production equipment, in particular to a heating facial mask powder scraping mechanism. Background Art
[0002] Most facial masks currently on the market are made of non-woven fabrics soaked in serum and applied to the face as a cold compress. In addition, there are also self-heating masks, also known as heating masks, that can achieve the effect of a hot compress.
[0003] Regarding the production equipment for heating facial masks, application publication number CN118384039A discloses a heating facial mask preparation system, which specifically discloses a base, two longitudinal transport devices, a transverse transport device, a powdering device, a cutting device, a heat-sealing device, and a collection box. The two longitudinal transport devices are overlapped and arranged on the base; the transverse device is arranged on the base and is located between the two longitudinal transport devices; the powdering device is arranged on one side of the transverse transport device; the cutting device is arranged on the base; the heat-sealing device is arranged on the base and is located below the cutting device; and the collection box is arranged on one side of the heat-sealing device. The powdering device includes a bracket, a box, and a dust ejector. The bracket is fixed to the base; the box is fixed to the bracket; the dust ejector is connected to the box and is located below the box. The powdering device also includes a limiting cylinder, which is fixed to the bracket and is located outside the dust ejector.
[0004] Although the above-mentioned powder spreading device can be used to spread the heating powder on the second layer of the mask, in order to adapt to the ever-changing market, it is necessary to provide a new device that can be used to quickly and easily spread the heating powder on the packaging film layer of the mask to meet the needs of different customers. Utility Model Content
[0005] In response to the problems existing in the above-mentioned prior art, the purpose of the present invention is to provide a heating mask powder scraping mechanism, which has a relatively simple overall structure and can use the powder scraping operation to set the heating powder on the packaging film layer. The process is simple, fast and efficient.
[0006] In order to achieve the above purpose, the technical solution of the utility model is:
[0007] A heating mask powder scraping mechanism comprises a base, an up-and-down moving component, a horizontal moving component, a heating powder storage barrel, a horizontal scraping plate and a workbench; the up-and-down moving component is mounted on the base; the horizontal moving component and the horizontal scraping plate are respectively mounted on the up-and-down moving component; the heating powder storage barrel is mounted on the horizontal moving component; the upper end of the heating powder storage barrel is provided with a feeding port, and the lower end is provided with a discharging port; vertical scraping heads surrounding the discharging port are provided on the outer walls around the lower end of the heating powder storage barrel; the horizontal scraping plate is located below the heating powder storage barrel, and The horizontal scraper is provided with a powder filling area extending vertically and corresponding to the facial features. The workbench is mounted on the base and located below the horizontal scraper, with a passage for the encapsulation film layer to pass through it. The vertical movement assembly can be used to drive the horizontal movement assembly, the heating powder storage barrel, and the horizontal scraper to move synchronously up and down. The horizontal movement assembly can also be used to drive the heating powder storage barrel back and forth, so that after releasing the heating powder, the heating powder storage barrel can use the vertical scraper head to scrape the heating powder into the powder filling area. This arrangement facilitates the placement of heating powder on the encapsulation film layer.
[0008] Furthermore, the bottom of the vertical scraper head is a wear-resistant rubber strip for contacting the top surface of the horizontal scraper plate. Through the above arrangement, the vertical scraper head 43 can utilize the wear-resistant rubber strip 44 to stably scrape powder.
[0009] Furthermore, the vertical scraper head is provided with an embedding groove corresponding to the wear-resistant rubber strip; the wear-resistant rubber strip is embedded in the embedding groove in a matching manner. The above arrangement enables the wear-resistant rubber strip to be stably installed.
[0010] Furthermore, a connecting block is provided on each side of the heating powder storage barrel; an adjusting bolt that can be adjusted up and down is installed on each connecting block, and the lower end of each adjusting bolt is connected to the vertical scraper head, so that the vertical scraper head can be driven up and down by the adjusting bolt. With the above arrangement, the vertical scraper head can be driven up and down by the adjusting bolt.
[0011] Furthermore, upwardly extending side panels are provided on the four sides of the horizontal scraper plate; the lengths of the discharge port of the heating powder storage barrel and the vertical scraper head correspond to the width of the horizontal scraper plate. This arrangement prevents the heating powder on the horizontal scraper plate from spilling outside the horizontal scraper plate.
[0012] Furthermore, the up-and-down moving assembly includes two lifting modules respectively arranged on the front and rear sides of the base; each lifting module includes an up-and-down driving cylinder, a vertical guide rod, a lifting plate, a baffle and a limiting column; the up-and-down driving cylinder and the vertical guide rod are respectively mounted on the base; the lifting plate is mounted on the vertical guide rod so as to be movable up and down; the up-and-down driving cylinder can be used to drive the lifting plate to rise; one side of the baffle is connected to the lifting plate, and the other side is connected to a side edge of the horizontal scraper; the limiting column is mounted on the base and located below the baffle so as to be used to limit the baffle; the horizontal moving assembly is mounted on one of the lifting plates, and the heating powder storage barrel is connected to the output end of the horizontal moving assembly. The above arrangement can stably achieve the synchronous up-and-down movement of the horizontal scraper and the heating powder storage barrel.
[0013] Furthermore, the limiting column is a bolt and can be adjusted up and down, so that its position for blocking the block can be adjusted.
[0014] Furthermore, the horizontal movement assembly includes a horizontal drive motor, a screw, and a slider; the horizontal drive motor is mounted on one of the lifting plates; the screw is connected to the output shaft of the horizontal drive motor; and the slider is mounted on the screw for forward and backward movement and is connected to the heating powder storage barrel. This arrangement enables the horizontal drive motor to stably drive the heating powder storage barrel forward and backward.
[0015] Furthermore, the horizontal movement assembly includes two in-position sensors, each mounted on the two lifting plates. A perforation corresponding to the in-position sensors is provided on each lifting plate. Furthermore, a sensing piece is provided on the front and rear sides of the heating powder storage barrel, each adapted to penetrate the perforation and engage with the two in-position sensors. This arrangement prevents the heating powder storage barrel from exceeding a predetermined travel range.
[0016] Furthermore, the device further comprises a push plate cylinder and a stopper; the stopper is mounted on the outside of one of the lifting plates; the push plate cylinder is mounted on the base or the cylinder body of the vertical drive cylinder near the stopper; the output shaft of the push plate cylinder is longer than the output shaft of the vertical drive cylinder; and the push plate cylinder can be used to push the stopper upward. This arrangement facilitates cleaning of the equipment after pushing the lifting plate upward.
[0017] The beneficial effects of the utility model are:
[0018] The present invention utilizes the coordination of various components, including a vertically movable assembly, a horizontally movable assembly, a heating powder storage barrel, a horizontal scraper, and a workbench, to enable the heating powder storage barrel to, after depositing the heating powder onto the packaging film layer, move the heating powder storage barrel to allow the vertical scraper to scrape the heating powder into the powder filling area. The heating powder in the powder filling area then falls onto the packaging film layer, completing the loading of the heating powder. Therefore, the present invention has a relatively simple overall structure, and can deposit the heating powder onto the packaging film layer using a powder scraping operation. This process is simple, quick, and highly effective. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic diagram of the overall structure of the utility model Figure 1 ;
[0020] Figure 2 This is a schematic diagram of the overall structure of the utility model Figure 2 ;
[0021] Figure 3 This is a schematic diagram of the local structure of the utility model Figure 1 ;
[0022] Figure 4 This is a schematic diagram of the local structure of the utility model Figure 2 ;
[0023] Figure 5 This is a schematic diagram of the local structure of the utility model Figure 3 ;
[0024] Figure 6 This is a schematic diagram of the local structure of the utility model Figure 4 ;
[0025] Figure 7 It is a structural schematic diagram of the lower end of the heating powder storage barrel of the utility model.
[0026] Reference numerals
[0027] 1. Base; 2. Up and down moving assembly; 21. Up and down driving cylinder; 22. Vertical guide rod; 23. Lifting plate; 24. Baffle; 25. Limiting column; 26. Perforation; 3. Horizontal moving assembly; 31. Horizontal driving motor; 32. Screw rod; 33. Slider; 34. In-position sensor; 4. Heating powder storage barrel; 41. Feeding port; 42. Discharging port; 43. Vertical scraper head; 44. Wear-resistant rubber strip; 45. Mounting groove; 46. Connecting block; 47. Adjusting bolt; 48. Induction plate; 49. Horizontal guide rod; 5. Horizontal scraper plate; 51. Powder filling area; 52. Side panel; 6. Workbench; 7. Push plate cylinder; 8. Stop block. DETAILED DESCRIPTION
[0028] The utility model will be further described below with reference to the accompanying drawings and specific embodiments. The following description is merely illustrative and does not limit the scope of protection of the utility model.
[0029] like Figure 1-Figure 7 As shown, a heating mask powder scraping mechanism includes a base 1, an up-and-down moving component 2, a horizontal moving component 3, a heating powder storage barrel 4, a horizontal scraper 5 and a workbench 6; the up-and-down moving component 2 is mounted on the base 1; the horizontal moving component 3 and the horizontal scraper 5 are mounted on the up-and-down moving component 2 respectively; the heating powder storage barrel 4 is mounted on the horizontal moving component 3; the upper end of the heating powder storage barrel 4 is provided with a feeding port 41, and the lower end is provided with a discharging port 42; a vertical scraping head 43 surrounding the discharging port 42 is provided on the outer wall around the lower end of the heating powder storage barrel 4; the horizontal scraper 5 is located at the heating powder storage barrel 4 and is provided with a vertical scraping head 43 surrounding the discharging port 42 ... vertical scraper 43 Below the material barrel 4, a powder filling area 51 is provided on the horizontal scraper plate 5, which runs through the top and bottom and corresponds to the facial features; the workbench 6 is installed on the base 1 and is located below the horizontal scraper plate 5, and a channel for the packaging film layer to pass through is reserved between the workbench 6 and the horizontal scraper plate 5; the up and down moving component 2 can be used to drive the horizontal moving component 3, the heating powder storage barrel 4 and the horizontal scraper plate 5 to move up and down synchronously; the horizontal moving component 3 can be used to drive the heating powder storage barrel 4 to move forward and backward, so that the heating powder storage barrel 4 can use the vertical scraper head 43 to scrape the heating powder into the powder filling area 51 after releasing the heating powder.
[0030] like Figure 7 As shown, preferably, the bottom of the vertical scraper head 43 is a wear-resistant rubber strip 44 for contacting the top surface of the horizontal scraper plate 5. Specifically, to ensure effective use and smoother contact between the wear-resistant rubber strip 44 and the horizontal scraper plate 5, both sides of the bottom surface of the wear-resistant rubber strip 44 are curved. Therefore, after the wear-resistant rubber strip 44 is provided, the vertical scraper head 43 can use the wear-resistant rubber strip 44 to stably push the heating powder into the powder filling area 51 when moving with the heating powder storage barrel 4, thus forming a powder scraping effect, and the heating powder in the powder filling area 51 will automatically fall onto the packaging film layer.
[0031] like Figure 7 As shown, preferably, an embedding groove 45 corresponding to the wear-resistant rubber strip 44 is provided on the vertical scraper head 43; the wear-resistant rubber strip 44 is embedded in the embedding groove 45 in a matching manner, so that the wear-resistant rubber strip 44 can be stably installed.
[0032] like Figure 6 and Figure 7As shown, a connecting block 46 is provided on each side of the heating powder storage barrel 4. Each connecting block 46 is mounted with an adjustable screw 47, the lower end of which is connected to the vertical scraper head 43. This allows the screw 47 to move the vertical scraper head 43 up and down. Specifically, the rod of each adjusting screw 47 is threadedly connected to the connecting block 46, creating an adjustable position. This arrangement allows for quick and easy adjustment of the tension of the vertical scraper head 43, allowing the position of the vertical scraper head 43 to be changed according to different needs. For example, if the vertical scraper head 43 is adjusted downward, after the heating powder storage barrel 4 moves downward, the friction between the wear-resistant rubber strip 44 and the horizontal scraper plate 5 can be made greater, and the wear-resistant rubber strip 44 may even shrink and deform slightly due to extrusion. In view of this, since the wear-resistant rubber strip 44 has a certain shrinkage deformation, the wear-resistant rubber strip 44 can use its stretching elasticity to press the heating powder layer thinner when moving to the powder filling area 51, but the deformation will not be too large; similarly, after properly adjusting the tightness between the wear-resistant rubber strip 44 and the horizontal scraper plate 5, the friction between the wear-resistant rubber strip 44 and the horizontal scraper plate 5 will be reduced, so that the wear-resistant rubber strip 44 will not press the heating powder in the powder filling area 51 too thin during the powder scraping process, that is, the thickness is relatively normal.
[0033] like Figure 2 and Figure 6 As shown, preferably, upwardly extending side panels 52 are provided on the four side walls of the horizontal scraper 5; the lengths of the discharge port 42 and the vertical scraper head 43 of the heating powder storage barrel 4 correspond to the width of the horizontal scraper 5. By providing the side panels 52, the heating powder on the horizontal scraper 5 is not easily spilled outside the horizontal scraper 5.
[0034] like Figure 1-Figure 5As shown, preferably, the up and down moving component 2 includes two lifting modules respectively arranged on the front and rear sides of the base 1; each lifting module includes an up and down driving cylinder 21, a vertical guide rod 22, a lifting plate 23, a baffle 24 and a limiting column 25; the up and down driving cylinders 21 and the vertical guide rod 22 are respectively installed on the base 1; the lifting plate 23 can be installed on the vertical guide rod 22 to move up and down; the up and down driving cylinders 21 can be used to drive the lifting plate 23 to rise; one side of the baffle 24 is connected to the lifting plate 23, and the other side is connected to one side of the horizontal scraper plate 5; the limiting column 25 is installed on the base 1 and is located below the baffle 24, so that it can be used to limit the baffle 24; the horizontal moving component 3 is installed on one of the lifting plates 23 and the heating powder storage barrel 4 is connected to the output end of the horizontal moving component 3. Therefore, after the two lifting plates 23 are pushed upward by the output shafts of the two upper and lower driving cylinders 21, the horizontal scraper plate 5 and the heating powder storage barrel 4 can be synchronously driven to move upward. After the powder scraping is completed, since the horizontal scraper plate 5 and the heating powder storage barrel 4 and other components have a certain weight themselves, they can naturally descend by gravity. During the descent, when the baffle 24 descends and hits the limit column 25, the horizontal scraper plate 5 and the heating powder storage barrel 4 are moved into place.
[0035] like Figure 1-Figure 5 As shown, in this embodiment, the limiting post 25 is a bolt and is adjustable up and down, so that the limiting post 25 can adjust the specific descending position of the horizontal scraper 5 according to the thickness of the packaging film layer. Specifically, when the limiting post 25 is lowered, the baffle 24 will also descend to a lower position during the descending process, that is, the horizontal scraper 5 will also descend to a lower position.
[0036] like Figure 1-Figure 5 As shown, the horizontal movement assembly 3 preferably includes a horizontal drive motor 31, a screw 32, and a slider 33. The horizontal drive motor 31 is mounted on a lifting plate 23. The screw 32 is connected to the output shaft of the horizontal drive motor 31. The slider 33 is mounted on the screw 32 so as to be movable back and forth and is connected to the heating powder storage barrel 4. Therefore, this arrangement facilitates the forward and backward movement of the heating powder storage barrel 4 by driving the slider 33 to move by the horizontal drive motor 31, facilitating the powder scraping operation.
[0037] like Figure 1-Figure 5 Specifically, in order to improve the stability of the heating powder storage barrel 4 during movement, a horizontal guide rod 49 is provided between the two lifting plates 23, and the heating powder storage barrel 4 is connected to the horizontal guide rod 49. Therefore, the horizontal guide rod 49 can be used to assist the heating powder storage barrel 4 in moving linearly.
[0038] like Figure 1-Figure 5As shown, the horizontal movement assembly 3 preferably further includes two in-position sensors 34, each disposed on one of the two lifting plates 23. Each lifting plate 23 is provided with a perforation 26 corresponding to the in-position sensors 34. A sensing plate 48 is provided on the front and rear sides of the heating powder storage barrel 4, each adapted to penetrate the perforation 26 and to cooperate with the two in-position sensors 34. The coordinated in-position sensors 34 and sensing plates 48 prevent the heating powder storage barrel 4 from exceeding a predetermined travel range during forward and backward movement, thereby preventing the vertical scraper 43 from striking the horizontal scraper 5. Specifically, during operation, when the heating powder storage barrel 4 moves forward, the sensing plate 48 located on the front side of the heating powder storage barrel 4 is sensed by the corresponding in-position sensor 34, causing the heating powder storage barrel 4 to stop. Similarly, when the heating powder storage barrel 4 moves backward, the sensing plate 48 located on the rear side of the heating powder storage barrel 4 is sensed by the corresponding in-position sensor 34, causing the heating powder storage barrel 4 to stop accordingly.
[0039] like Figure 1 and Figure 4 As shown, the apparatus preferably further includes a push plate cylinder 7 and a stopper 8; the stopper 8 is mounted on the outside of one of the lift plates 23; the push plate cylinder 7 is mounted on the base 1 or on the cylinder body of the vertical drive cylinder 21 near the stopper 8; the output shaft of the push plate cylinder 7 is longer than the output shaft of the vertical drive cylinder 21; and the push plate cylinder 7 is used to push the stopper 8 upward. Therefore, when the push plate cylinder 7 pushes the stopper 8 upward, it can drive the two lift plates 23 to move upward synchronously, simultaneously driving the horizontal scraper 5 and the heating powder storage barrel 4 to rise synchronously. The operator can then clean the workbench 6 and the bottom surface of the horizontal scraper 5 to ensure the cleanliness of the equipment. After cleaning is completed, the output shaft of the push plate cylinder 7 retracts, and the horizontal scraper 5, the heating powder storage barrel 4, and the lift plates 23 naturally return to their original positions due to gravity.
[0040] The specific operating principle of the utility model is introduced below to facilitate understanding of the utility model:
[0041] First, one end of the packaging film layer (not shown) is connected to a reel (not shown). The packaging film layer is passed through the channel between the workbench 6 and the horizontal scraper 5 and is positioned on the workbench 6. When the reel pulls the packaging film layer to a predetermined position, the portion of the packaging film layer where the heating powder is to be placed is located directly below the powder filling area 51.
[0042] Next, after the output shaft of the upper and lower driving cylinders 21 is retracted, the lifting plate 23 drives the heating powder storage barrel 4 and the horizontal scraper 5 to move downward until the baffle 24 abuts against the limiting pillar 25. At this time, the bottom surface of the horizontal scraper 5 is matched with the top surface of the packaging film layer.
[0043] Next, the horizontal drive motor 31 drives the heating powder storage barrel 4 forward by means of the screw rod 32 and the slider 33, so that the heating powder in the heating powder storage barrel 4 is synchronously sprinkled downward onto the top surface of the horizontal scraper 5. Moreover, as the heating powder storage barrel 4 moves, the vertical scraper head 5 uses the wear-resistant rubber strip 44 to push the heating powder on the horizontal scraper 5 down into the powder filling area 51 and scrape it flat, i.e., scraping the powder.
[0044] Next, when the powder filling area 51 is filled, the upper and lower drive motors 21 push the lifting plate 23, the horizontal scraper plate 5 and the heating powder storage barrel 4 to rise, and the heating powder storage barrel 4 is reset to the preset position backward; of course, at this time, the loading mechanism can also be used to add heating powder to the heating powder storage barrel 4; at the same time, the winding machine pulls the packaging film layer filled with heating powder to the next step and assembles another packaging film layer; finally, continue to repeat the above steps.
[0045] Therefore, the present invention utilizes the coordination of various components, such as the vertical moving assembly 2, the horizontal moving assembly 3, the heating powder storage barrel 4, the horizontal scraper 5, and the workbench 6, so that after the heating powder storage barrel 4 sprinkles the heating powder on the packaging film layer, the heating powder storage barrel 4 can be moved to use the vertical scraper head 43 to scrape the heating powder into the powder filling area 51. The heating powder in the powder filling area 51 will then fall onto the packaging film layer, thus completing the heating powder loading. Therefore, the overall structure of the present invention is relatively simple, and it can use the powder scraping operation to place the heating powder on the packaging film layer, which is a simple, quick, and efficient process.
[0046] The present invention is not limited to the above-mentioned embodiments. If various changes or modifications to the present invention do not depart from the spirit and scope of the present invention, and if these changes and modifications fall within the scope of the claims and equivalent technologies of the present invention, the present invention is also intended to include these changes and modifications.
Claims
1. A heating facial mask powder scraping mechanism, characterized by: It includes a base, an up and down moving component, a horizontal moving component, a heating powder storage barrel, a horizontal scraper and a workbench; The up-and-down moving assembly is mounted on the base; the horizontal moving assembly and the horizontal scraper are respectively mounted on the up-and-down moving assembly; the heating powder storage barrel is mounted on the horizontal moving assembly; an inlet is provided at the upper end of the heating powder storage barrel, and an outlet is provided at the lower end; vertical scraper heads surrounding the outlet are provided on the outer walls around the lower end of the heating powder storage barrel; the horizontal scraper is located below the heating powder storage barrel, and a powder filling area is provided on the horizontal scraper that passes through the barrel and corresponds to the facial features; the workbench is mounted on the base and below the horizontal scraper, and a channel for the encapsulation film layer to pass through is left between the workbench and the horizontal scraper; The up and down moving component can be used to drive the horizontal moving component, the heating powder storage barrel and the horizontal scraper to move up and down synchronously; the horizontal moving component can be used to drive the heating powder storage barrel to move forward and backward, so that the heating powder storage barrel can use the vertical scraper head to scrape the heating powder into the powder filling area after releasing the heating powder.
2. The heating facial mask powder scraping mechanism according to claim 1, characterized in that: The bottom of the vertical scraper head is a wear-resistant rubber strip used to abut against the top surface of the horizontal scraper plate.
3. The heating facial mask powder scraping mechanism according to claim 2, characterized in that: An embedding groove corresponding to the wear-resistant rubber strip is provided on the vertical scraper head; the wear-resistant rubber strip is embedded in the embedding groove in a matching manner.
4. The heating facial mask powder scraping mechanism according to any one of claims 1 to 3, characterized in that: A connecting block is provided on both sides of the heating powder storage barrel; an adjusting bolt that can be adjusted up and down is installed on each connecting block, and the lower end of each adjusting bolt is connected to the vertical scraper head, so that the adjusting bolt can be used to drive the vertical scraper head to move up and down.
5. The heating facial mask powder scraping mechanism according to claim 1, characterized in that: Side plates extending upward are respectively provided on the four side walls of the horizontal scraper; the lengths of the discharge port of the heating powder storage barrel and the vertical scraper head respectively correspond to the width of the horizontal scraper.
6. The heating facial mask powder scraping mechanism according to claim 1, characterized in that: The up and down moving assembly includes two lifting modules respectively arranged on the front and rear sides of the base; each lifting module includes an up and down driving cylinder, a vertical guide rod, a lifting plate, a baffle and a limiting column; the up and down driving cylinders and the vertical guide rod are respectively installed on the base; the lifting plate can be installed on the vertical guide rod for up and down movement; the up and down driving cylinders can be used to drive the lifting plate to rise; one side of the baffle is connected to the lifting plate, and the other side is connected to one side of the horizontal scraper plate; the limiting column is installed on the base and is located below the baffle, so that it can be used to limit the baffle; the horizontal moving assembly is installed on one of the lifting plates and the heating powder storage barrel is connected to the output end of the horizontal moving assembly.
7. The heating facial mask powder scraping mechanism according to claim 6, characterized in that: The limiting column is a bolt and can be adjusted up and down.
8. The heating facial mask powder scraping mechanism according to claim 6, characterized in that: The horizontal moving assembly includes a horizontal drive motor, a screw rod and a slider; the horizontal drive motor is installed on a lifting plate; the screw rod is connected to the output shaft of the horizontal drive motor; the slider is installed on the screw rod so as to be movable back and forth and is connected to the heating powder storage barrel.
9. The heating facial mask powder scraping mechanism according to claim 8, characterized in that: The horizontal movement component also includes two in-place sensors; the two in-place sensors are respectively arranged on the two lifting plates; the two lifting plates are respectively provided with through holes corresponding to the in-place sensors; and the front and rear sides of the heating powder storage barrel are respectively provided with an induction sheet that can be used to penetrate the through holes and cooperate with the two in-place sensors.
10. The heating facial mask powder scraping mechanism according to claim 6, characterized in that: It also includes a push plate cylinder and a stopper; the stopper is installed on the outer side of one of the lifting plates; The push plate cylinder is installed on the base or the cylinder body of the upper and lower driving cylinder close to the stopper; the output shaft of the push plate cylinder is longer than the output shaft of the upper and lower driving cylinders; the push plate cylinder can be used to push the stopper upward.
Citation Information
Patent Citations
Heating mask preparation process and system
CN118384039A