Multi-tube integrated injection device for beauty
By designing a multi-tube integrated injection device for cosmetic use, the problems of uneven drug distribution and dosage control have been solved, achieving uniform drug mixing and precise dosage control, and improving the intuitiveness and controllability of the operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NUOMEIBO MEDICAL TECH NANTONG CO LTD
- Filing Date
- 2025-03-17
- Publication Date
- 2026-04-21
AI Technical Summary
Existing injection devices cannot adequately mix multiple drugs, resulting in uneven drug distribution, which affects efficacy. Furthermore, it is impossible to observe the drug status inside the device and control the dosage.
A multi-tube integrated injection device for cosmetic use was designed, comprising a stirring mechanism, an injection mechanism, and a stabilizing mechanism. The rotating shaft driven by a motor drives the cross-shaped blades to stir the drug, and the drug is drawn into the extraction tube by the air pressure difference, so as to achieve full mixing and controllable dosage of the drug.
It achieves uniform mixing of drugs, allows direct observation of drug conditions, and enables precise control of dosage, improving the intuitiveness and controllability of the operation.
Smart Images

Figure CN224141222U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of injection devices, specifically relating to a multi-tube integrated injection device for cosmetic use. Background Technology
[0002] With the rapid development of medical technology, injection devices have become an important tool in medical treatment and have been widely used. However, with the continuous expansion of application scenarios and the increasing diversification of user needs, existing injection devices on the market still face many technical challenges and urgently need further optimization to meet actual medical needs.
[0003] In existing technologies, the device cannot fully mix multiple drugs during use, resulting in uneven drug distribution, which affects the efficacy of the drugs, makes it impossible to observe the drug condition inside the device, and makes it impossible to control the dosage.
[0004] Therefore, a multi-tube integrated injection device for cosmetic use is proposed. This device can stir the medication to ensure it is fully mixed, and allows for direct observation of the medication's condition and dosage, making the operation process more intuitive and controllable. Utility Model Content
[0005] To overcome the problems of existing devices failing to adequately mix multiple drugs, resulting in uneven drug distribution, affecting drug efficacy, and making it impossible to observe the drug status inside the device and control the dosage, a multi-tube integrated injection device for cosmetic use is proposed.
[0006] The technical solution of this utility model is as follows: a multi-tube integrated injection device for cosmetic use, including a stirring mechanism, an injection mechanism at the lower end of the stirring mechanism, and a stabilizing mechanism on the outer wall of the stirring mechanism; the stirring mechanism includes a central tube, a first circular hole, a branch tube, a fixing plate, a second circular hole, a central block, a third circular hole, a first rubber sheet, and a sixth circular hole; the central tube has the first circular hole evenly opened vertically on both sides, one end of the outer wall of the branch tube is fixed to the inner wall of the first circular hole, the other end of the branch tube is fixed to the first rubber sheet, the fixing plate is threadedly installed at the upper end of the central tube, the second circular hole is opened through the upper end of the fixing plate, the central block is fixed to the lower end of the central tube, the third circular hole is opened through the middle of the upper end of the central block, and the sixth circular hole is opened through the upper end of the fixing plate.
[0007] Preferably, the box-filling concentrator is first placed on the upper end of the support plate and limited by the protective plate. Multiple drugs are injected into the concentrator through different branch tubes. The sixth circular hole at the upper end of the concentrator allows gas to flow out, preventing drugs from being difficult to enter. Then, the motor is turned on, and the rotating shaft on the motor output end rotates. The rotating shaft drives the cross blade to rotate, stirring the multiple drugs. After stirring, because the surface of the concentrator is inclined, the drugs will flow to the third circular hole at the bottom. Then, the connecting rod is pulled. Because the side walls of the fixing plate and the second rubber plate are in contact with the inner wall of the liquid extraction tube, there will be a pressure difference when the connecting rod is pulled, drawing the liquid into the inside of the liquid extraction tube.
[0008] Preferably, the injection mechanism includes a thin tube, a suction tube, an upper baffle, a lower baffle, a fourth circular hole, a fifth circular hole, and a connecting rod; the lower end of the stirring mechanism is provided with a suction tube, the upper end of which is fixedly connected to the upper baffle, the upper end of which has a fourth circular hole at its center, the inner wall of which is fixedly connected to the lower end of the thin tube, the upper end of which is threaded onto the inner wall of the third circular hole, the lower end of which is fixedly connected to the lower baffle, the lower end of which has a fifth circular hole extending through it, the inner wall of which is slidably installed with a connecting rod, the upper end of which is fixedly connected to a fixing plate, the upper end of which is fixedly connected to a second rubber plate, and the lower end of which is fixedly connected to a handle.
[0009] Preferably, the stabilizing mechanism includes an anti-slip pad, a groove, a support column, a support plate, and a protective plate; two anti-slip pads are fixed to the outer wall of the concentrator, the outer wall of the anti-slip pads has a groove, the lower end of the concentrator is fixed to the support plate, the upper end of the support plate is fixed to the protective plate, the inner wall of the protective plate is in contact with the lower end of the outer wall of the anti-slip pad, and the lower end of the support plate is fixed to the support column.
[0010] Preferably, the components include a motor, a rotating shaft, and a cross-shaped plate; the rotating shaft is rotatably mounted on the inner wall of the second circular hole, the upper end of the rotating shaft is fixedly connected to the output end of the motor, and the lower end of the rotating shaft is fixedly connected to the cross-shaped plate.
[0011] Preferably, there is a distance between the lower end of the cross-shaped plate and the upper end of the concentrator, and a certain distance is left between the side wall of the cross-shaped plate and the side wall of the concentrator.
[0012] Preferably, the inner wall of the suction tube and the side wall of the fixing plate are in contact, and the inner wall of the suction tube and the side wall of the second rubber sheet are in contact.
[0013] Preferably, the lower end of the upper baffle is attached to the upper end of the second rubber sheet, the upper surface of the concentrator is a slope, the slope of the upper surface of the concentrator is high around the perimeter, and the slope of the upper surface of the concentrator is low in the middle.
[0014] The beneficial effects of this utility model are as follows: First, the box-filling concentrator is placed on the upper end of the support plate and limited by the protective plate. Multiple drugs are injected into the concentrator through different branch tubes. The sixth circular hole at the upper end of the concentrator allows gas to flow out, preventing drugs from being difficult to enter. Then, the motor is turned on, and the rotating shaft on the motor output end rotates accordingly. The rotating shaft drives the cross plate to rotate, stirring multiple drugs. After stirring, because the surface of the concentrator is inclined, the drugs will flow to the third circular hole at the bottom. Then, the connecting rod is pulled. Because the side walls of the fixing plate and the second rubber plate are attached to the inner wall of the liquid extraction tube, there will be a pressure difference when the connecting rod is pulled, drawing the liquid into the inside of the liquid extraction tube. Finally, the thin tube is removed from the inner wall of the third circular hole and injected. This solves the problems in the prior art where the device cannot fully stir multiple drugs during use, resulting in uneven drug distribution, affecting the efficacy of the drugs, and making it impossible to observe the drug situation inside the device and control the dosage. Attached Figure Description
[0015] Figure 1 The diagram shown is a three-dimensional structural schematic of the multi-tube integrated injection device for cosmetic use according to this utility model.
[0016] Figure 2 The diagram shown is a three-dimensional cross-sectional view of the stirring mechanism of the multi-tube integrated injection device for cosmetic use according to this utility model.
[0017] Figure 3 The diagram shown is a partially enlarged three-dimensional cross-sectional view of section A of the multi-tube integrated injection device for cosmetic use according to this utility model.
[0018] Figure 4 The diagram shown is a cross-sectional perspective view of the stabilizing mechanism of the multi-tube integrated injection device for cosmetic use according to this utility model.
[0019] The labels in the attached diagram are as follows: 1. Stirring mechanism; 101. Centralizing pipe; 102. First circular hole; 103. Branch pipe; 104. Fixed plate; 105. Second circular hole; 106. Motor; 107. Rotating shaft; 108. Cross plate; 109. Centralizing block; 110. Third circular hole; 111. First rubber sheet; 112. Sixth circular hole; 2. Injection mechanism; 201. Thin tube; 202. Liquid extraction tube; 203. Upper baffle; 204. Lower baffle; 205. Fourth circular hole; 206. Fifth circular hole; 207. Connecting rod; 208. Fixed plate; 209. Second rubber sheet; 210. Handle; 3. Stabilizing mechanism; 301. Anti-slip pad; 302. Groove; 303. Support column; 304. Support plate; 305. Protective plate. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Please see Figures 1-4 This utility model provides an embodiment: a multi-tube integrated injection device for cosmetic use, including a stirring mechanism 1, an injection mechanism 2 at the lower end of the stirring mechanism 1, and a stabilizing mechanism 3 on the outer wall of the stirring mechanism 1; the stirring mechanism 1 includes a central tube 101, a first circular hole 102, a branch tube 103, a fixing plate 104, a second circular hole 105, a concentrating block 109, a third circular hole 110, a first rubber sheet 111, and a sixth circular hole 112; the central tube 101 is evenly penetrated vertically on both sides. A first circular hole 102 is provided. One end of the outer wall of a branch pipe 103 is fixedly connected to the inner wall of the first circular hole 102. A first rubber sheet 111 is fixedly connected to the other end of the branch pipe 103. A fixing plate 104 is threadedly installed at the upper end of the concentrator 101. A second circular hole 105 is opened through the upper end of the fixing plate 104. A concentrator block 109 is fixedly connected to the lower end of the concentrator 101. A third circular hole 110 is opened through the middle of the upper end of the concentrator block 109. A sixth circular hole 112 is opened through the upper end of the fixing plate 104.
[0022] In use, the box-filling concentrator 101 is placed on the upper end of the support plate 304 and limited by the protective plate 305. Multiple drugs are injected into the concentrator 101 through different branch tubes 103. The sixth circular hole 112 at the upper end of the concentrator 101 allows gas to flow out, which can prevent drugs from being difficult to enter. Then, the motor 106 is turned on, and the rotating shaft 107 on the output end of the motor 106 rotates accordingly. The rotating shaft 107 drives the cross plate 108 to rotate, stirring multiple drugs. After stirring, since the surface of the concentrator block 109 is inclined, the drugs will flow to the third circular hole 110 at the bottom. Then, the connecting rod 207 is pulled. Since the side walls of the fixing plate 208 and the second rubber plate 209 are attached to the inner wall of the liquid extraction tube 202, there will be a pressure difference when the connecting rod 207 is pulled, drawing the liquid into the interior of the liquid extraction tube 202. Finally, the thin tube 201 is removed from the inner wall of the third circular hole 110.
[0023] Please see Figure 3In this embodiment, the injection mechanism 2 includes a thin tube 201, a suction tube 202, an upper baffle 203, a lower baffle 204, a fourth circular hole 205, a fifth circular hole 206, and a connecting rod 207. The lower end of the stirring mechanism 1 is provided with a suction tube 202, and the upper end of the suction tube 202 is fixedly connected to the upper baffle 203. A fourth circular hole 205 is opened at the center of the upper end of the upper baffle 203. The lower end of the thin tube 201 is fixedly connected to the inner wall of the fourth circular hole 205, and the upper end of the thin tube 201 is threaded into the third circular hole 206. The lower end of the suction tube 202 is fixedly connected to the inner wall of 10. A fifth circular hole 206 is opened through the lower end of the lower baffle 204. A connecting rod 207 is slidably installed on the inner wall of the fifth circular hole 206. A fixing plate 208 is fixedly connected to the upper end of the connecting rod 207. A second rubber plate 209 is fixedly connected to the upper end of the fixing plate 208. A handle 210 is fixedly connected to the lower end of the connecting rod 207. The connecting rod 207 is pulled out from the fixing plate 208 and the second rubber plate 209, and the liquid is drawn into the interior of the suction tube 202 by air pressure.
[0024] Please see Figure 4 In this embodiment, the stabilizing mechanism 3 includes an anti-slip pad 301, a groove 302, a support column 303, a support plate 304, and a protective plate 305. Two anti-slip pads 301 are fixed to the outer wall of the central tube 101. The outer wall of the anti-slip pad 301 has a groove 302. The lower end of the central block 109 is fixed to the support plate 304, and the upper end of the support plate 304 is fixed to the protective plate 305. The inner wall of the protective plate 305 is in contact with the lower end of the outer wall of the anti-slip pad 301. The lower end of the support plate 304 is fixed to the support column 303. The anti-slip pad 301 and the groove 302 can increase the friction force, and the device can be placed on the support column 303, the support plate 304, and the protective plate 305.
[0025] Please see Figure 2 In this embodiment, a motor 106, a rotating shaft 107, and a cross plate 108 are included. The rotating shaft 107 is rotatably mounted on the inner wall of the second circular hole 105. The upper end of the rotating shaft 107 is fixedly connected to the output end of the motor 106, and the lower end of the rotating shaft 107 is fixedly connected to the cross plate 108. The motor 106 drives the cross plate 108 to rotate, thereby stirring various drugs.
[0026] Please see Figure 2 In this embodiment, there is a distance between the lower end of the cross plate 108 and the upper end of the concentrator 109, and a certain distance is left between the side wall of the cross plate 108 and the side wall of the concentrator 101 to prevent the cross plate 108 from rubbing against the concentrator 109 and to prevent the cross plate 108 from rubbing against the inner wall of the concentrator 101.
[0027] Please see Figure 3In this embodiment, the inner wall of the extraction tube 202 and the side wall of the fixing plate 208 are attached to each other, and the inner wall of the extraction tube 202 and the side wall of the second rubber plate 209 are attached to each other, so that the extraction tube 202 can form a pressure difference by pulling the connecting rod 207 to extract the drug into the interior of the extraction tube 202.
[0028] Please see Figure 3 In this embodiment, the lower end of the upper baffle 203 is attached to the upper end of the second rubber sheet 209, and the upper surface of the concentration block 109 is inclined. The upper surface of the concentration block 109 has high slope around the perimeter and low slope in the middle, which prevents excessive liquid from falling directly into the interior of the extraction tube 202 without stirring, and makes it easier for the drug to flow into the interior of the extraction tube 202.
[0029] Working principle: First, place the box-filling concentrator 101 on the upper end of the support plate 304 and use the protective plate 305 to limit it. Multiple drugs are injected into the concentrator 101 through different branch tubes 103. The sixth circular hole 112 at the upper end of the concentrator 101 allows gas to flow out, which can prevent drugs from having difficulty entering the concentrator 101. Then, turn on the motor 106, and the rotating shaft 107 on the output end of the motor 106 will rotate. The rotating shaft 107 drives the cross plate 108 to rotate, stirring multiple drugs. After stirring, since the surface of the concentrator block 109 is inclined, the drugs will flow to the third circular hole 110 at the bottom. Then, pull the connecting rod 207. Since the side wall of the fixing plate 208 and the second rubber plate 209 are attached to the inner wall of the liquid extraction tube 202, there will be a pressure difference when the connecting rod 207 is pulled, which will draw the liquid into the liquid extraction tube 202. Finally, remove the thin tube 201 from the inner wall of the third circular hole 110 and inject it.
[0030] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.
Claims
1. Cosmetic multi-barrelled integrated injection device comprising a stirring mechanism (1), characterised in that: An injection mechanism (2) is provided at the lower end of the stirring mechanism (1), and a stabilizing mechanism (3) is provided on the outer wall of the stirring mechanism (1); the stirring mechanism (1) includes a central tube (101), a first circular hole (102), a branch tube (103), a fixed plate (104), a second circular hole (105), a central block (109), a third circular hole (110), a first rubber sheet (111), and a sixth circular hole (112); the central tube (101) has a first circular hole (102) evenly opened through it on both sides in the vertical direction, the first circular hole One end of the branch pipe (103) is fixed to the inner wall of the hole (102), and the other end of the branch pipe (103) is fixed to the first rubber sheet (111). The upper end of the central pipe (101) is threaded with a fixing plate (104). The upper end of the fixing plate (104) is provided with a second circular hole (105). The lower end of the central pipe (101) is fixed to a central block (109). The middle of the upper end of the central block (109) is provided with a third circular hole (110). The upper end of the fixing plate (104) is provided with a sixth circular hole (112).
2. The cosmetic multi-tubed integrated injection device of claim 1, wherein: The injection mechanism (2) includes a thin tube (201), a suction tube (202), an upper baffle (203), a lower baffle (204), a fourth circular hole (205), a fifth circular hole (206), and a connecting rod (207); the lower end of the stirring mechanism (1) is provided with a suction tube (202), the upper end of the suction tube (202) is fixedly connected to the upper baffle (203), the upper end of the upper baffle (203) is provided with a fourth circular hole (205) at the center, and the lower end of the thin tube (201) is fixedly connected to the inner wall of the fourth circular hole (205). The upper end of the thin tube (201) is threaded onto the inner wall of the third circular hole (110). The lower end of the suction tube (202) is fixedly connected to a lower baffle (204). The lower end of the lower baffle (204) is provided with a fifth circular hole (206). A connecting rod (207) is slidably installed on the inner wall of the fifth circular hole (206). A fixing plate (208) is fixedly connected to the upper end of the connecting rod (207). A second rubber plate (209) is fixedly connected to the upper end of the fixing plate (208). A handle (210) is fixedly connected to the lower end of the connecting rod (207).
3. The cosmetic multi-tubed integrated injection device of claim 1, wherein: The stabilizing mechanism (3) includes an anti-slip pad (301), a groove (302), a support column (303), a support plate (304), and a protective plate (305); two anti-slip pads (301) are fixed to the outer wall of the central pipe (101), and the outer wall of the anti-slip pad (301) has a groove (302). The lower end of the central block (109) is fixed to the support plate (304), and the upper end of the support plate (304) is fixed to the protective plate (305). The inner wall of the protective plate (305) is in contact with the lower end of the outer wall of the anti-slip pad (301), and the lower end of the support plate (304) is fixed to the support column (303).
4. The cosmetic multi-tubed integrated injection device of claim 1, wherein: The motor (106), the rotating shaft (107), and the cross plate (108) are mounted on the inner wall of the second circular hole (105). The upper end of the rotating shaft (107) is fixedly connected to the output end of the motor (106), and the lower end of the rotating shaft (107) is fixedly connected to the cross plate (108).
5. The cosmetic multi-tubed integrated injection device of claim 4, wherein: There is a distance between the lower end of the cross-shaped plate (108) and the upper end of the concentrator (109), and there is a certain distance between the side wall of the cross-shaped plate (108) and the side wall of the concentrator (101).
6. The cosmetic multi-tubed integrated injection device of claim 2, wherein: The inner wall of the suction tube (202) and the side wall of the fixing plate (208) are in contact with each other, and the inner wall of the suction tube (202) and the side wall of the second rubber sheet (209) are in contact with each other.
7. The cosmetic multi-tubed integrated injection device of claim 2, wherein: The lower end of the upper baffle (203) is attached to the upper end of the second rubber sheet (209). The upper surface of the concentrator (109) is a slope, with the slope around the upper surface of the concentrator (109) being high and the middle of the upper surface of the concentrator (109) being low.