High-speed six-head mask machine
Through the automated design of the high-speed six-head facial mask machine, efficient filling and sealing of facial masks are achieved, solving the problems of complex operation and inconsistent quality of facial mask machines in the existing technology, and improving production efficiency and quality consistency.
Patent Information
- Application Number
- CN202421736991.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-07-22
AI Technical Summary
The filling and sealing work of existing facial mask machines needs to be carried out group by group, which increases time costs and operational complexity, makes it difficult to ensure quality consistency, and makes it difficult to meet large-scale production and high efficiency requirements.
The high-speed six-head facial mask machine adopts the linkage design of the feeding telescopic rod, vacuum suction cup, cylinder and sealing telescopic rod to realize the automatic filling and sealing of multiple groups of facial masks. Combined with the design of the receiving plate and limit block, it ensures the stable transmission and efficient operation of the facial masks.
It realizes efficient and automated production of facial masks, improves work efficiency and completion, ensures the consistency of filling and sealing quality of each group of facial masks, and enhances the practicality and stability of the device.
Smart Images

Figure CN223327866U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of facial mask machines, and in particular to a high-speed six-head facial mask machine. Background Art
[0002] As the name suggests, the facial mask machine can use a variety of fruits and vegetables with milk and honey to make a hydrating mask suitable for yourself, which can deeply moisturize and nourish the skin. The six-head facial mask machine has six channels. Compared with traditional facial mask machines, the speed of preparing facial masks is greatly improved.
[0003] In existing facial mask machine technology, the filling and sealing of facial masks usually need to be carried out group by group, which not only increases the time cost of operation, but also reduces work efficiency. In addition, due to the need for manual operation or intervention, it is often difficult to ensure the consistency of the filling and sealing quality of each group of facial masks, and the degree of completion is difficult to guarantee, which makes it difficult to meet the needs of large-scale production or high-efficiency workplaces. Utility Model Content
[0004] In response to the shortcomings of the existing technology, the present application provides a high-speed six-head facial mask machine, which overcomes the shortcomings of the existing technology and aims to solve the problem that in the existing facial mask machine technology, the filling and sealing of facial masks usually need to be carried out group by group, which not only increases the time cost of operation, but also reduces work efficiency. In addition, due to the need for manual operation or intervention, it is often difficult to ensure the consistency of the filling and sealing quality of each group of facial masks, the completion degree is difficult to guarantee, and it is difficult to meet the needs of large-scale production or high-efficiency workplaces.
[0005] To achieve the above-mentioned objectives, the present application provides the following technical solutions: a high-speed six-head facial mask machine, comprising a casing, a working chamber is opened inside the casing, a plurality of groups of feeding telescopic rods are arranged inside the working chamber, the telescopic ends of the plurality of feeding telescopic rods are provided with a linkage plate 1, and a plurality of feeding heads are installed on the other side of the linkage plate 1, a plurality of groups of clamping telescopic rods are arranged on both sides of the middle part of the working chamber, the telescopic ends of the plurality of clamping telescopic rods are fixedly installed with a linkage plate 2, and a plurality of groups of vacuum suction cups 1 are fixedly installed on the other side of the two groups of linkage plates 2, a plurality of groups of cylinders are installed on both sides below the working chamber, the output ends of the plurality of groups of cylinders are fixedly installed with a linkage clamping plate, a plurality of groups of sealing telescopic rods are arranged above the plurality of cylinders, the telescopic ends of the plurality of sealing telescopic rods are installed with a linkage plate 3, and a sealer is provided on the other side of the two groups of linkage plates 3.
[0006] By adopting the above technical solution and setting a feeding telescopic rod, when in use, the mask bag falls from the top of the casing and is clamped when passing through the clamping telescopic rod. The vacuum suction cups on both sides suck the two sides of the mask bag to open it. Then, by extending and retracting the feeding telescopic rod, the feeding head is aligned with the mask bag for filling operation. After the filling operation is completed, the mask bag continues to fall and is clamped again when passing through the cylinder. The excess air inside it is discharged by the clamping of the cylinders on both sides. Then, the sealing telescopic rods on both sides drive the sealer to seal the mask. By setting linkage plate 1, linkage plate 2, linkage plate 3 and linkage clamping plate, the effect of multiple groups performing linkage operations at the same time can be achieved. Such a setting enables the device to quickly perform the filling and sealing of multiple groups of masks without manual operation, with high work efficiency and high completion rate, thereby improving the practicality of the device.
[0007] As a preferred technical solution of the present application, a receiving plate is provided under the two groups of the linkage plates 2, and a slide groove 1 is opened inside the two groups of the receiving plates. A sliding block 1 is installed under the two groups of the linkage plates 2, and the sliding block 1 is located inside the slide groove 1. A limiting block is installed inside the working chamber below the clamping telescopic rod.
[0008] By adopting the above technical solution and setting up a receiving plate, when in use, the mask bag will fall to the middle of the two groups of receiving plates and stay there. At this time, the vacuum suction cups on both sides will move to adsorb the mask bag, and the sliding block will move inside the sliding block to achieve the effect that the vacuum suction cup moves and the receiving plate does not move. After the filling is completed, the two groups of linkage plates will drive the receiving plates to retreat. At this time, the two groups of receiving plates are separated to form a gap, and then the mask bag falls from the gap. By setting a limit block, the receiving plate can be pressed against to limit the position. This setting can make the receiving plate and the linkage plate 2 work together, which can more effectively receive the mask and prevent instability during clamping.
[0009] As a preferred technical solution of the present application, a discharge chute is provided below the working chamber, and the discharge chute is located below the cylinder.
[0010] By adopting the above technical solution and setting up a discharge chute, the processed mask can be better slid out from the inside of the working chamber, and the mask can be better dropped into the next process by the kinetic energy provided by the discharge chute.
[0011] As a preferred technical solution of the present application, a slider 2 is installed under the two groups of the linked clamping plates, and a limiting groove is provided inside the working chamber below the two groups of the cylinders. The interiors of the two groups of the limiting grooves are slidably connected with a receiving plate 2, and a slide groove 2 is provided inside the two groups of the receiving plate 2, and the slider 2 is located inside the slide groove 2.
[0012] By adopting the above technical solution, by setting up the receiving plate 2, the mask can be better supported when the mask bag falls between the sliders 2 on both sides, preventing the mask from falling, and after the sealing is completed, the two sets of receiving plates 2 will form a gap as the linked clamping plate retreats, and the completed mask will fall out of the gap. This setting can effectively improve the working efficiency of the device and prevent instability caused by the clamping of the linked clamping plate.
[0013] As a preferred technical solution of the present application, a feed plate is installed on the upper side of the casing, multiple sets of guard plates are installed inside the feed plate, multiple sets of partitions are installed at one end of the feed plate, and multiple sets of driving cylinders are installed on the other upper side of the casing, and vacuum suction cup 2 is installed at the telescopic end of the multiple sets of driving cylinders.
[0014] By adopting the above technical solution and setting up a feeding plate, when in use, the mask bags to be processed are placed inside the feeding plate, and the vacuum suction cup 2 can be driven by the driving cylinder to suck the mask bags accumulated on one side of the partition out from the inside of the partition. This can effectively maintain the feeding speed and effectively improve work efficiency.
[0015] As a preferred technical solution of the present application, rubber pads are installed on the other side of the two groups of limit blocks.
[0016] By adopting the above technical solution and arranging the rubber pad, the air inside the mask bag can be better discharged. When exhausting, the rubber pads on both sides can better fit the mask bag, making the exhaust process more stable.
[0017] As a preferred technical solution of the present application, baffles are provided between the multiple groups of linkage plates 1 and the multiple groups of clamping telescopic rods.
[0018] By adopting the above technical solution, the baffle can be set to effectively prevent excess liquid from being discharged from the feeding head after filling is completed and contaminating other processes, thereby improving the stability of equipment operation.
[0019] Beneficial effects of this application:
[0020] 1. By setting a feeding telescopic rod, when in use, the mask bag falls from the top of the casing and will be clamped when passing through the clamping telescopic rod. The vacuum suction cups on both sides suck the two sides of the mask bag to open it. Then, by extending and retracting the feeding telescopic rod, the feeding head is aligned with the mask bag for filling. After the filling operation is completed, the mask bag continues to fall and will be clamped again when passing through the cylinder. The excess air inside it is discharged through the clamping of the cylinders on both sides. Then, the sealing telescopic rods on both sides drive the sealer to seal the mask. By setting linkage plate 1, linkage plate 2, linkage plate 3 and linkage clamping plate, the effect of multiple groups of simultaneous linkage operations can be achieved. This setting enables the device to quickly perform the filling and sealing of multiple groups of masks without manual operation, with high work efficiency and high completion rate, thereby improving the practicality of the device.
[0021] 2. By setting up a receiving plate, when in use, the mask bag will fall to the middle of the two groups of receiving plates and stay there. At this time, the vacuum suction cups on both sides will move to adsorb the mask bag, and the sliding block will move inside the sliding block to achieve the effect of moving the vacuum suction cup and keeping the receiving plate stationary. After the filling is completed, the two groups of linkage plates will drive the receiving plates to retreat. At this time, the two groups of receiving plates are separated to form a gap, and then the mask bag falls from the gap. By setting a limit block, the receiving plate can be pressed against to limit the position. This setting can make the receiving plate and the linkage plate 2 work together, which can more effectively receive the mask and prevent instability during clamping. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is a side view schematic diagram of the structure of this application;
[0023] Figure 2 for Figure 1 A in the middle is an enlarged structural diagram;
[0024] Figure 3 This is a schematic cross-sectional view of the present application;
[0025] Figure 4 This is a schematic diagram of the discharge chute structure of this application.
[0026] In the figure: 1. Casing; 101. Working chamber; 102. Limit block; 103. Limit slot; 104. Baffle; 2. Feeding telescopic rod; 202. Linkage plate 1; 203. Feeding head; 3. Clamping telescopic rod; 301. Linkage plate 2; 302. Vacuum suction cup 1; 303. Attachment plate; 304. Slide 1; 305. Sliding block 1; 4. Cylinder; 402. Linkage clamping plate; 403. Rubber pad; 404. Slider 2; 5. Sealing telescopic rod; 501. Sealer; 502. Linkage plate 3; 6. Attachment plate 2; 601. Slide 2; 7. Discharge slide; 8. Feed plate; 801. Guard plate; 802. Partition; 803. Driving cylinder; 804. Vacuum suction cup 2. DETAILED DESCRIPTION
[0027] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0028] Reference Figure 1-3 A high-speed six-head facial mask machine includes a casing 1, a working chamber 101 is opened inside the casing 1, a plurality of groups of feeding telescopic rods 2 are arranged inside the working chamber 101, the telescopic ends of the plurality of groups of feeding telescopic rods 2 are provided with a linkage plate 1 202, and a plurality of feeding heads 203 are installed on the other side of the linkage plate 1 202, a plurality of groups of clamping telescopic rods 3 are arranged on both sides of the middle part of the working chamber 101, the telescopic ends of the plurality of clamping telescopic rods 3 are fixedly installed with a linkage plate 2 301, and a plurality of groups of vacuum suction cups 1 302 are fixedly installed on the other side of the two groups of linkage plates 2 301, a plurality of groups of cylinders 4 are installed on both sides below the working chamber 101, and the output ends of the plurality of groups of cylinders 4 are fixedly installed with a linkage clamping plate 402, and a plurality of groups of sealing telescopic rods 5 are arranged above the plurality of cylinders 4, the telescopic ends of the plurality of sealing telescopic rods 5 are installed with a linkage plate 3 502, and a sealer 501 is provided on the other side of the two groups of linkage plates 3 502. A discharge chute 7 is provided below the working chamber 101 , and the discharge chute 7 is located below the cylinder 4 .
[0029] By setting the feeding telescopic rod 2, when in use, the facial mask bag falls from the top of the housing 1 and is clamped when passing through the clamping telescopic rod 3. The vacuum suction cups 1 302 on both sides suck the two sides of the facial mask bag to open it. Then, by the telescopic feeding rod 2 being set, the feeding head 203 is aligned with the facial mask bag for filling operation. After the filling operation is completed, the facial mask bag continues to fall and is clamped again when passing through the cylinder 4. The excess air inside it is discharged by the clamping of the cylinder 4 on both sides. Then, the sealing telescopic rods 5 on both sides drive the sealer 501 to seal the facial mask. By setting the linkage plate 1 202, linkage plate 2 301, linkage plate 3 502 and linkage clamping plate 402, the effect of multiple groups performing linkage operations simultaneously can be achieved. Such a setting enables the device to quickly perform the filling and sealing operations of multiple groups of facial masks without manual operation, with high work efficiency and high completion, thereby improving the practicality of the device. By providing the discharge chute 7 , the processed facial mask can be more easily slid out from the inside of the working chamber 101 , and the facial mask can be more easily dropped into the next process by the kinetic energy provided by the discharge chute 7 .
[0030] Reference Figure 1, a receiving plate 303 is provided below the two sets of linkage plates 301, and a slide groove 304 is provided inside the two sets of receiving plates 303. A sliding block 305 is installed below the two sets of linkage plates 301, and the sliding block 305 is located inside the slide groove 304. A limit block 102 is installed below the clamping telescopic rod 3 inside the working chamber 101; a slider 404 is installed below the two sets of linkage clamping plates 402, and a limit groove 103 is provided inside the working chamber 101 below the two sets of cylinders 4. The interior of the positioning groove 103 is slidably connected to the receiving plate 2 6, and the interior of the two sets of receiving plates 2 6 is provided with a slide groove 2 601, and the slider 2 404 is located inside the slide groove 2 601; the other side of the two sets of limit blocks 102 are installed with rubber pads 403; by setting the receiving plate 303, when in use, the mask bag will fall to the middle of the two sets of receiving plates 303 and stay there, at this time, the vacuum suction cups 1 302 on both sides will move to adsorb the mask bag, and the sliding block 1 305 will move inside the sliding block 1 305 to achieve vacuum suction After the filling is completed, the two sets of linkage plates 301 will drive the receiving plate 303 to retreat. At this time, the two sets of receiving plates 303 are separated to form a gap, and then the mask bag falls from the gap. By setting the limit block 102, the receiving plate 303 can be pressed against the receiving plate 303 to limit the position. This setting can make the receiving plate 303 and the linkage plate 301 work together to more effectively receive the mask and prevent instability during clamping. By setting the receiving plate 2 6, the mask bag can fall to both sides when it falls The mask can be better supported between the slider 2 404 to prevent it from falling, and after the sealing is completed, the two sets of receiving plates 2 6 will form a gap as the linked clamping plate 402 retreats, and the completed mask will fall out of the gap. This arrangement can effectively improve the working efficiency of the device and prevent the problem of instability caused by the clamping of the linked clamping plate 402; by arranging the rubber pad 403, the air inside the mask bag can be better discharged, and the rubber pads 403 on both sides can better fit the mask bag during exhaust, making the exhaust process more stable.
[0031] Reference Figure 1A feeding plate 8 is installed on the upper side of the casing 1, and multiple groups of guard plates 801 are installed inside the feeding plate 8. Multiple groups of partitions 802 are installed at one end of the feeding plate 8, and multiple groups of driving cylinders 803 are installed on the other side of the upper part of the casing 1. The telescopic ends of the multiple groups of driving cylinders 803 are installed with vacuum suction cups 2 804; by setting the feeding plate 8, when in use, the facial mask bags to be processed are placed inside the feeding plate 8, and the vacuum suction cups 2 804 can be driven by the driving cylinder 803 to suck the facial mask bags accumulated on one side of the partition 802 out from the inside of the partition 802, which can effectively maintain the feeding speed and effectively improve the work efficiency; a baffle 104 is provided between the multiple groups of linkage plates 1 202 and the multiple groups of clamping telescopic rods 3; by setting the baffle 104, it can effectively prevent excess liquid from being discharged from the feeding head 203 after the filling is completed to pollute other processes, thereby improving the stability of the equipment operation.
[0032] Working principle: By setting the feeding telescopic rod 2, when in use, the mask bag falls from the top of the casing 1, and will be clamped when passing through the clamping telescopic rod 3. The vacuum suction cups 1 302 on both sides suck the two sides of the mask bag to open it. Then, by extending and retracting the feeding telescopic rod 2, the feeding head 203 is aligned with the mask bag for filling operation. After the filling operation is completed, the mask bag continues to fall, and will be clamped again when passing through the cylinder 4. The excess air inside it is discharged by the clamping of the cylinders 4 on both sides. Then, the sealing telescopic rods 5 on both sides above drive the sealer 501 to seal the mask. By setting the linkage plate 1 202, linkage plate 2 301, linkage plate 3 502 and linkage clamping plate 402, the effect of multiple groups of simultaneous linkage operations can be achieved. This setting enables the device to quickly perform the filling and sealing of multiple groups of masks without manual operation, with high work efficiency and high completion rate, which improves the practicality of the device. By setting the receiving plate 303, When in use, the mask bag will fall to the middle of the two groups of receiving plates 303 and stay there. At this time, the vacuum suction cups 1 302 on both sides will move to absorb the mask bag, and the sliding block 1 305 will move inside the sliding block 1 305 to achieve the effect of moving the vacuum suction cup 1 302 and keeping the receiving plate 303 immobile. After the filling is completed, the two groups of linkage plates 2 301 will drive the receiving plate 303 to retreat. At this time, the two groups of receiving plates 303 are separated to form a gap, and then the mask bag falls from the gap. The limiting block 102 can be set to press against the receiving plate 303 to limit the position. This setting can make the receiving plate 303 and the linkage plate 2 301 work in conjunction with each other, so that the mask can be more effectively received and unstable during clamping.
[0033] Among them, by providing the discharge chute 7, the processed facial mask can be better slid out from the inside of the working chamber 101, and the facial mask can be better dropped into the next process by the kinetic energy provided by the discharge chute 7. By providing the receiving plate 2 6, the facial mask can be better supported when the facial mask bag falls between the sliders 2 404 on both sides to prevent the facial mask from falling. After the sealing is completed, the two sets of receiving plates 2 6 will form a gap as the linkage clamping plate 402 retreats, and the completed facial mask will fall out of the gap. This arrangement can effectively improve the working efficiency of the device and prevent the problem of instability caused by the clamping of the linkage clamping plate 402.
[0034] At the same time, by providing the feeding plate 8, when in use, after the mask bags to be processed are placed inside the feeding plate 8, the vacuum suction cup 2 804 can be driven by the cylinder 803 to suck the mask bags accumulated on one side of the partition 802 out from the inside of the partition 802, thereby effectively maintaining the feeding speed and effectively improving the work efficiency;
[0035] In addition, by setting the rubber pad 403, the air inside the mask bag can be better discharged. When venting, the rubber pads 403 on both sides can fit the mask bag better, making the exhaust process more stable; by setting the baffle 104, it can effectively prevent excess liquid from being discharged from the feed head 203 after filling is completed to contaminate other processes, thereby improving the stability of equipment operation.
[0036] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art may still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein with equivalents. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included within the scope of protection of the present application.
Claims
1. A high-speed six-head facial mask machine, comprising a housing (1), characterized in that: A working chamber (101) is provided inside the housing (1), and a plurality of groups of feeding telescopic rods (2) are provided inside the working chamber (101), and the telescopic ends of the plurality of groups of feeding telescopic rods (2) are provided with linkage plates (202), and the other side of the linkage plates (202) are provided with a plurality of groups of feeding heads (203), and a plurality of groups of clamping telescopic rods (3) are provided on both sides of the middle part of the working chamber (101), and the telescopic ends of the plurality of groups of clamping telescopic rods (3) are fixedly provided with linkage plates (301), and the two groups of Multiple groups of vacuum suction cups (302) are fixedly installed on the other side of the linkage plate (301), multiple groups of cylinders (4) are installed on both sides below the working chamber (101), and the output ends of the multiple groups of cylinders (4) are fixedly installed with linkage clamping plates (402). Multiple groups of sealing telescopic rods (5) are arranged above the multiple groups of cylinders (4), and the telescopic ends of the multiple groups of sealing telescopic rods (5) are installed with linkage plate (502), and the other side of the two groups of linkage plates (502) is provided with a sealer (501).
2. A high-speed six-head facial mask machine according to claim 1, characterized in that: A receiving plate (303) is provided below the two groups of linkage plates (301), and a slide groove (304) is provided inside the two groups of receiving plates (303). A sliding block (305) is installed below the two groups of linkage plates (301), and the sliding block (305) is located inside the slide groove (304). A limit block (102) is installed inside the working chamber (101) below the clamping telescopic rod (3).
3. A high-speed six-head facial mask machine according to claim 1, characterized in that: A discharge chute (7) is provided below the working chamber (101), and the discharge chute (7) is located below the cylinder (4).
4. A high-speed six-head facial mask machine according to claim 1, characterized in that: Slide block 2 (404) is installed below the two groups of linkage clamping plates (402), and the interior of the working chamber (101) is provided with a limiting groove (103) below the two groups of cylinders (4), and the interiors of the two groups of limiting grooves (103) are slidably connected with a receiving plate 2 (6), and the interiors of the two groups of receiving plates 2 (6) are provided with a slide groove 2 (601), and the slide block 2 (404) is located inside the slide groove 2 (601).
5. The high-speed six-head facial mask machine according to claim 1, characterized in that: A feed plate (8) is installed on one side above the housing (1), multiple sets of guard plates (801) are installed inside the feed plate (8), multiple sets of partition plates (802) are installed on one end of the feed plate (8), and multiple sets of driving cylinders (803) are installed on the other side above the housing (1), and vacuum suction cups (804) are installed at the telescopic ends of the multiple sets of driving cylinders (803).
6. A high-speed six-head facial mask machine according to claim 2, characterized in that: The other sides of the two groups of limit blocks (102) are both equipped with rubber pads (403).
7. A high-speed six-head facial mask machine according to claim 1, characterized in that: Baffles (104) are provided between the plurality of groups of linkage plates (202) and the plurality of groups of clamping telescopic rods (3).