Method for detecting fitting degree of aluminum foil medicine
By combining a weighing and detection mechanism with an adsorption and movement mechanism, the stability problem of aluminum foil drug adhesion detection is solved, enabling rapid and accurate adhesion detection, avoiding the risk of air leakage during transportation, and improving detection efficiency and accuracy.
Patent Information
- Application Number
- CN202511373259.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-24
- Publication Date
- 2025-11-07
AI Technical Summary
Existing thermal imaging equipment cannot detect the stable fit between the aluminum foil and the bottle opening, which may cause the aluminum foil to detach from the bottle opening during transportation or temperature changes, affecting the sealing of the medicine.
A combination of a weighing and detection mechanism and an adsorption moving mechanism is used. The adsorption head adsorbs the aluminum foil on the top of the medicine bottle, and the gravity of the medicine bottle is used to separate the aluminum foil with low adhesion. After soaking in water and drying, the adhesion is determined by a second weighing using a pressure sensor.
It enables rapid and accurate detection of the adhesion of aluminum foil to pharmaceuticals, avoids air leakage during transportation, and improves detection efficiency and accuracy.
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Figure CN120908032A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of aluminum foil pharmaceutical testing technology, specifically a method for testing the adhesion of aluminum foil pharmaceuticals. Background Technology
[0002] Aluminum foil is a hot stamping material made by directly rolling metallic aluminum into thin sheets. Its hot stamping effect is similar to that of pure silver foil, hence it is also called imitation silver foil. Because aluminum is soft, has good ductility, and has a silvery-white luster, if the rolled thin sheets are mounted on offset paper with substances such as sodium silicate to make aluminum foil sheets, it is widely used in food, beverages, cigarettes, pharmaceuticals, photographic plates, household daily necessities, etc.
[0003] Aluminum foil is widely used in pharmaceutical packaging due to its lightweight nature and high sealing performance. Electromagnetic heating technology is used to heat the aluminum foil, allowing it to adhere to the medicine bottle. However, to ensure the safety of the medicine bottle, the adhesion of the aluminum foil is also tested to prevent leakage caused by poor adhesion, which could affect the medicine. Current testing methods use thermal imaging cameras to irradiate the bottle opening and observe the uniformity of heating of the aluminum foil. Uneven heating indicates that some areas are not fully adhered. While such equipment can detect aluminum foil defects in a timely manner, it still has significant shortcomings in practical use, such as:
[0004] After the aluminum foil is bonded to the bottle neck, although thermal imaging equipment can be used to observe the uniformity of heating, it cannot guarantee that the bonding between the aluminum foil and the bottle neck is stable. This is because some medicine bottles, although they have been sealed with aluminum foil, only have a slight bonding due to uneven heating. Once transported or due to temperature changes, the aluminum foil may detach from the bottle neck, which is something that existing thermal imaging equipment cannot detect.
[0005] Therefore, a method for testing the fit of aluminum foil pharmaceuticals is now designed to address this type of defect. Summary of the Invention
[0006] To address the shortcomings of existing technologies, this invention provides a method for detecting the adhesion of aluminum foil pharmaceuticals, which solves the problem that existing testing equipment cannot detect the adhesion strength of aluminum foil.
[0007] To achieve the above objectives, the present invention provides the following technical solution: a method for detecting the adhesion of aluminum foil pharmaceuticals, specifically comprising the following steps:
[0008] S1. Installation and weighing: Install the medicine bottle body using the supporting pressure plate in the weighing and detection mechanism and the adsorption head in the adsorption moving mechanism, and weigh the medicine bottle body.
[0009] S2, soaking drying: using the drive of the motor to make the medicine bottle body respectively soak, and finally complete the external drying;
[0010] S3, blanking weighing: separating the medicine bottle body from the adsorption head, and performing subsequent weighing.
[0011] Preferably, the weighing detection mechanism comprises a detection box, a vacuum pump is fixedly connected to the top of the detection box through a support, an air extraction vertical pipe is fixedly connected to the air extraction port of the vacuum pump, a rebound pull rod is slidingly installed on the left side of the top of the detection box through an opening, a bent pressing plate is fixedly connected to the bottom end of the rebound pull rod and located inside the detection box, and a first spring is sleeved on the surface of the rebound pull rod.
[0012] Preferably, a sliding frame is fixedly installed on the right side of the inner cavity of the detection box, a sliding seat is slidingly installed on the inner side of the sliding frame, an L-shaped lifting frame is fixedly connected to the left end of the sliding seat, a water storage cylinder is fixedly connected to the inner side of the L-shaped lifting frame and located on the right side of the inner cavity of the detection box, a rectangular ring frame is fixedly connected to the surface of the L-shaped lifting frame through a fixed block and located at the back of the inner cavity of the detection box, an electric heating plate is fixedly installed on the inner wall of the rectangular ring frame, and a first toothed plate is fixedly connected to the front end of the L-shaped lifting frame.
[0013] Preferably, a gear cylinder meshing with the first toothed plate is rotatably connected to the left side of the inner cavity of the detection box through a bearing piece, an electric telescopic rod is fixedly connected to the left side of the top of the detection box through an opening, a horizontal pressing plate matched with the bent pressing plate is fixedly connected to the bottom end of the electric telescopic rod, and a second toothed plate meshing with the gear cylinder is fixedly connected to the bottom of the horizontal pressing plate through a fixed block.
[0014] Preferably, a material guiding inclined frame is fixedly connected to the left side of the detection box through an opening, and a second pressure sensor is arranged at the bottom of the inner cavity of the material guiding inclined frame.
[0015] Preferably, an operation opening is arranged on the surface of the detection box, vertical guide rods are fixedly connected to the two sides of the surface of the detection box through fixed blocks, a supporting pressing plate is slidingly installed on the surface of the vertical guide rod, a first pressure sensor is installed on the top of the supporting pressing plate through an opening, the medicine bottle body is located on the top of the first pressure sensor, and a second spring is sleeved on the surface of the vertical guide rod.
[0016] Preferably, the adsorption moving mechanism comprises an electric motor, the electric motor is fixedly installed at the bottom of the detection box through a support, a rotating rod is fixedly connected to the output shaft of the electric motor through a shaft coupling, the top end of the rotating rod penetrates through the detection box and extends into the inside of the detection box, and a multi-face rotating frame is fixedly connected to one end of the rotating rod extending into the inside of the detection box through a fixed plate.
[0017] Preferably, the bottom end of the air extraction vertical pipe penetrates the detection box and the multi-face rotating frame in sequence and extends to the inside of the multi-face rotating frame, and the air extraction vertical pipe is rotationally connected with the multi-face rotating frame, one end of the air extraction vertical pipe extending to the inside of the multi-face rotating frame is fixedly connected with a sealing bearing piece, and the bottom of the sealing bearing piece is fixedly installed with a positioning ring cylinder.
[0018] Preferably, the surface of the multi-face rotating frame is fixedly installed with U-shaped guide frames through openings, and a plurality of U-shaped guide frames are arranged, both sides of the U-shaped guide frame are provided with side sliding openings, the inside of the U-shaped guide frame is installed with a sliding flat plate in sliding connection with the side sliding opening, the top of the sliding flat plate is fixedly connected with a square positioning block, the inside of the square positioning block is fixedly connected with a suction hose, the bottom end of the suction hose is fixedly installed with a suction head, the other end of the suction hose is in communication with the surface of the positioning ring cylinder, and the bottom of the sliding flat plate is fixedly connected with a third spring and the inner wall of the U-shaped guide frame.
[0019] Preferably, the bottom of the square positioning block inner cavity is provided with a concave groove, and the top of the multi-face rotating frame is provided with a square insertion opening matched with the concave groove and the curved pressing plate.
[0020] The application provides a method for detecting the adhesion of aluminum foil medicine.
[0021] (1) The adhesion detection method of the aluminum foil medicine, by combining the weighing detection mechanism and the adsorption moving mechanism, the two mechanisms can use the suction head to adsorb the aluminum foil on the top of the medicine bottle body, thereby lifting the whole medicine bottle body, and using the gravity of the medicine bottle body itself to generate a pulling force on the aluminum foil during rotation, so that the aluminum foil with low adhesion can be separated from the bottle mouth, and after subsequent soaking and drying processes, the second weighing of the second pressure sensor can quickly judge whether the adhesion of the aluminum foil on the top of the medicine bottle body meets the standard, thereby timely adjusting the batch of medicines to avoid air leakage during subsequent transportation and storage.
[0022] (2) The adhesion detection method of the aluminum foil medicine, by using the L-shaped lifting frame in the detection box, the first toothed plate, the water storage cylinder and the rectangular ring frame are respectively installed, and the electric heating plate is used in combination, the setting of these structures can make the water storage cylinder soak the medicine bottle body after pre-weighting rotation, so that water can enter the medicine bottle body through the gap, and the electric heating plate can effectively remove the excess water stains on the surface of the medicine bottle body, thereby ensuring the accuracy of subsequent weighing.
[0023] (3), the aluminum foil medicine adhesion detection method, through the first pressure sensor is installed on the surface of the detection box by using the support pressure plate, and is matched with the bending pressure plate and the concave groove to use, the setting of these structures can complete the initial weighing of the medicine bottle body while the staff installs the medicine bottle body, and when the medicine bottle body rotates to the left side, the suction hose is pressed when the bending pressure plate descends, so that the suction force is blocked, the adsorption head is separated from the medicine bottle body, the whole process does not need the staff to operate too much, the cooperation between structures is used to complete the multiple processes of the medicine bottle body, which is not only convenient to use, but also improves the detection efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 The flowchart of the present application is shown in the figure;
[0025] Figure 2 The structural diagram of the present application is shown in the figure;
[0026] Figure 3 The sectional view of the detection box structure of the present application is shown in the figure;
[0027] Figure 4 The schematic diagram of the medicine bottle body, the second spring and the first pressure sensor structure of the present application is shown in the figure;
[0028] Figure 5 The bottom view of the internal structure of the detection box of the present application is shown in the figure;
[0029] Figure 6 The schematic diagram of the water storage cylinder, the rectangular ring frame and the electric heating plate structure of the present application is shown in the figure;
[0030] Figure 7 The schematic diagram of the rebound pull rod, the bending pressure plate and the first spring structure of the present application is shown in the figure;
[0031] Figure 8 The schematic diagram of the electric telescopic rod, the horizontal pressure plate and the second tooth plate structure of the present application is shown in the figure;
[0032] Figure 9 The schematic diagram of the adsorption moving mechanism structure of the present application is shown in the figure;
[0033] Figure 10 The sectional view of the multi-face rotating frame structure of the present application is shown in the figure;
[0034] Figure 11 The schematic diagram of the suction hose, the adsorption head and the concave groove structure of the present application is shown in the figure.
[0035] In the figure: 1, weighing detection mechanism; 2, adsorption moving mechanism; 3, medicine bottle body; 101, detection box; 102, vacuum pump; 103, air extraction vertical pipe; 104, rebound pull rod; 105, bent pressing plate; 106, first spring; 107, sliding frame; 108, sliding seat; 109, L-shaped lifting frame; 110, water storage cylinder; 111, rectangular ring frame; 112, electric heating plate; 113, first toothed plate; 114, gear cylinder; 115, electric telescopic rod; 116, horizontal pressing plate; 117, second toothed plate; 118, material guiding inclined frame; 119, second pressure sensor; 120, operation port; 121, vertical guide rod; 122, supporting pressing plate; 123, second spring; 124, first pressure sensor; 201, motor; 202, rotating rod; 203, multi-surface rotating frame; 204, sealing bearing part; 205, positioning ring cylinder; 206, U-shaped guide frame; 207, side sliding port; 208, sliding flat plate; 209, square positioning block; 210, suction hose; 211, adsorption head; 212, concave groove; 213, third spring; 214, square insertion port. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the scope of protection of the present application.
[0037] Please refer to Figures 1-11 The present application provides a technical solution: a method for detecting the fit degree of aluminum foil medicine, specifically comprising the following steps:
[0038] S1, installation weighing: the medicine bottle body 3 is installed by the supporting pressing plate 122 in the weighing detection mechanism 1 and the adsorption head 211 in the adsorption moving mechanism 2, and the medicine bottle body 3 is weighed;
[0039] S2, water immersion and drying: the medicine bottle body 3 is driven by the motor 201 to be immersed in water and finally dried externally;
[0040] S3, blanking and weighing: the medicine bottle body 3 is separated from the adsorption head 211, and subsequent weighing is performed.
[0041] The above-mentioned method for detecting the fit degree of aluminum foil medicine has more complete steps:
[0042] S1, installation weighing: first, press the support pressure plate 122 in the vertical guide rod 121 limit, press down the support pressure plate 122, then the medicine bottle body 3 is placed on the top of the first pressure sensor 124, at this time the first pressure sensor 124 will first weigh the medicine bottle body 3, then release the support pressure plate 122, let the support pressure plate 122 use the second spring 123 to lift the medicine bottle body 3, then the vacuum pump 102 starts through the suction vertical pipe 103 and the suction hose 210 to let the adsorption head 211 adsorb the aluminum foil on the top of the medicine bottle body 3, at this time the installation is completed;
[0043] S2, soaking and drying: after the installation of the medicine bottle body 3 is completed, the motor 201 is started to drive the multi-surface rotating frame 203 to rotate counterclockwise, and it stops once every ninety degrees, and the suction hose 210 is connected to the suction vertical pipe 103 through the sealed bearing 204, so that the suction hose 210 can also rotate under the condition of having suction, and the adsorption head 211 adsorbs the aluminum foil to drive the medicine bottle body 3 to rotate, and the downward tension of the aluminum film is generated by the weight of the medicine bottle body 3 itself, if the aluminum foil is low, a gap will appear, when the adsorption head 211 adsorbs the medicine bottle body 3 and rotates to the top of the water storage cylinder 110, at this time the electric telescopic rod 115 is started to make the horizontal pressure plate 116 press the downward bending pressure plate 105, and the second tooth plate 117 is lowered to drive the gear cylinder 114 to rotate, so that the gear cylinder 114 drives the L-shaped lifting frame 109 to rise in the limit of the sliding seat 108, and the water storage cylinder 110 and the rectangular ring frame 111 also rise synchronously, at this time the water storage cylinder 110 rises to immerse the medicine bottle body 3 in water for three seconds, if the aluminum foil on the top of the medicine bottle body 3 has a gap, water will enter the inside of the medicine bottle body 3, then the electric telescopic rod 115 rises to drive the water storage cylinder 110 and the rectangular ring frame 111 to descend, after the medicine bottle body 3 rotates to the upper part of the rectangular ring frame 111, the medicine bottle body 3 is covered with the rectangular ring frame 111 rising, at this time the high temperature generated by the electric heating plate 112 will evaporate the water on the surface of the medicine bottle body 3, after the soaking and evaporation of the medicine bottle body 3 are completed, turn to S3 step;
[0044] S3, blanking weighing: when the medicine bottle body 3 rotates to the leftmost side, the descent of the electric telescopic rod 115 will press the bent pressing plate 105 with the horizontal pressing plate 116, so that the bottom end of the bent pressing plate 105 inserts into the inner side of the concave groove 212 through the square socket 214, at this time the butt joint of the bent pressing plate 105 and the concave groove 212 will press the suction hose 210 to block the suction force, at this time the suction head 211 loses the suction force, then the medicine bottle body 3 falls to the inner side of the guide inclined frame 118, and slides to the top of the second pressure sensor 119 through the guide inclined frame 118, at this time the second pressure sensor 119 weighs the medicine bottle body 3 again, if the weight of the medicine bottle body 3 changes obviously, it means that the aluminum foil inside the medicine bottle body 3 is not completely attached.
[0045] The above-mentioned aluminum foil medicine attachment detection method is implemented through the following structure:
[0046] Please refer to Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 and Figure 8 , which shows the structure of the weighing detection mechanism 1 as a whole, the weighing detection mechanism 1 comprises a detection box 101, the top of the detection box 101 is fixedly connected with a vacuum pump 102 through a support, the suction port of the vacuum pump 102 is fixedly connected with a suction vertical pipe 103, the left side of the top of the detection box 101 is slidingly installed with a rebound pull rod 104 by opening an opening, the bottom end of the rebound pull rod 104 and located inside the detection box 101 is fixedly connected with a bent pressing plate 105, the surface of the rebound pull rod 104 is sleeved with a first spring 106, the right side of the inner cavity of the detection box 101 is fixedly installed with a sliding frame 107, the inner side of the sliding frame 107 is slidingly installed with a sliding seat 108, the left end of the sliding seat 108 is fixedly connected with an L-shaped lifting frame 109, the inner side of the L-shaped lifting frame 109 is fixedly connected with a water storage cylinder 110, and the water storage cylinder 110 is located at the right side of the inner cavity of the detection box 101, the surface of the L-shaped lifting frame 109 is fixedly connected with a rectangular ring frame 111 through a fixed block, and the rectangular ring frame 111 is located at the rear of the inner cavity of the detection box 101, the inner wall of the rectangular ring frame 111 is fixedly installed with an electric heating plate 112, the front end of the L-shaped lifting frame 109 is fixedly connected with a first toothed plate 113;
[0047] The left side of the inner cavity of the detection box 101 is rotatably connected with a gear cylinder 114 engaged with the first toothed plate 113 through a bearing piece. The left side of the top of the detection box 101 is fixedly connected with an electric telescopic rod 115 through an opening. The bottom end of the electric telescopic rod 115 is fixedly connected with a horizontal pressing plate 116 used in cooperation with the curved pressing plate 105. The bottom of the horizontal pressing plate 116 is fixedly connected with a second toothed plate 117 engaged with the gear cylinder 114 through a fixed block. The left side of the detection box 101 is fixedly connected with a material guiding inclined frame 118 through an opening. The bottom of the inner cavity of the material guiding inclined frame 118 is provided with a second pressure sensor 119.
[0048] An operation port 120 is formed in the surface of the detection box 101. Vertical guide rods 121 are fixedly connected to the surface of the detection box 101 on both sides through fixed blocks. A supporting pressing plate 122 is slidingly installed on the surface of the vertical guide rod 121. A first pressure sensor 124 is installed on the top of the supporting pressing plate 122 through an opening. The second pressure sensor 119 and the first pressure sensor 124 are both gasket type pressure sensors. The medicine bottle body 3 is located on the top of the first pressure sensor 124. A second spring 123 is sleeved on the surface of the vertical guide rod 121.
[0049] Please refer to Figure 9 , Figure 10 and Figure 11 , which show the structure of the adsorption moving mechanism 2 as a whole. The adsorption moving mechanism 2 comprises a motor 201, which is a servo motor. The motor 201 is fixedly installed on the bottom of the detection box 101 through a support. The output shaft of the motor 201 is fixedly connected with a rotating rod 202 through a shaft coupling. The top end of the rotating rod 202 penetrates through the detection box 101 and extends into the inside of the detection box 101. One end of the rotating rod 202 extending into the inside of the detection box 101 is fixedly connected with a multi-face rotating frame 203 through a fixed plate. The bottom end of the air extraction vertical pipe 103 penetrates through the detection box 101 and the multi-face rotating frame 203 in sequence and extends to the inside of the multi-face rotating frame 203. The air extraction vertical pipe 103 is rotatably connected with the multi-face rotating frame 203. One end of the air extraction vertical pipe 103 extending into the inside of the multi-face rotating frame 203 is fixedly connected with a sealed bearing piece 204. The bottom of the sealed bearing piece 204 is fixedly installed with a positioning ring cylinder 205.
[0050] The surface of the multi-surface rotating frame 203 is fixedly provided with U-shaped guide frames 206 through openings, and the U-shaped guide frames 206 are provided with a plurality of U-shaped guide frames 206. The two sides of the U-shaped guide frame 206 are provided with side sliding openings 207, and the inner side of the U-shaped guide frame 206 is provided with a sliding plate 208 which is slidably connected with the side sliding opening 207. The top of the sliding plate 208 is fixedly connected with a square positioning block 209, and the inner side of the square positioning block 209 is fixedly connected with a suction hose 210. The suction hose 210 is a rubber hose, and the bottom end of the suction hose 210 is fixedly provided with a suction head 211. The other end of the suction hose 210 is in communication with the surface of the positioning ring cylinder 205. The bottom of the sliding plate 208 and the inner wall of the U-shaped guide frame 206 are fixedly connected with a third spring 213. The bottom of the inner cavity of the square positioning block 209 is provided with a concave groove 212. The top of the multi-surface rotating frame 203 is provided with a square insertion opening 214 which is used in cooperation with the concave groove 212 and the curved pressing plate 105.
[0051] Meanwhile, the contents not described in detail in the specification all belong to the prior art known to those skilled in the art.
Claims
1. A method for detecting the adhesion of an aluminum foil medicine, characterized by: Specifically comprising the following steps: S1, installation weighing: the medicine bottle body (3) is installed by the bearing pressure plate (122) in the weighing detection mechanism (1) and the adsorption head (211) in the adsorption moving mechanism (2), and the medicine bottle body (3) is weighed; S2, soaking and drying: the medicine bottle body (3) is soaked and finally dried by the driving of the motor (201); S3, blanking weighing: the medicine bottle body (3) is separated from the adsorption head (211) and subsequent weighing is carried out.
2. The method for detecting the adhesion of aluminum foil medicine according to claim 1, characterized in that: The weighing detection mechanism (1) comprises a detection box (101), the top of the detection box (101) is fixedly connected with a vacuum pump (102) through a support, the gas suction port of the vacuum pump (102) is fixedly connected with a gas suction vertical pipe (103), the left side of the top of the detection box (101) is slidably installed with a rebound pull rod (104) by opening an opening, the bottom end of the rebound pull rod (104) and inside the detection box (101) are fixedly connected with a bent pressure plate (105), and the surface of the rebound pull rod (104) is sleeved with a first spring (106).
3. The method for detecting the adhesion of aluminum foil medicine according to claim 2, characterized in that: The right side of the inner cavity of the detection box (101) is fixedly installed with a sliding frame (107), the inner side of the sliding frame (107) is slidably installed with a sliding seat (108), the left end of the sliding seat (108) is fixedly connected with an L-shaped lifting frame (109), the inner side of the L-shaped lifting frame (109) is fixedly connected with a water storage cylinder (110), and the water storage cylinder (110) is located on the right side of the inner cavity of the detection box (101), the surface of the L-shaped lifting frame (109) is fixedly connected with a rectangular ring frame (111) through a fixed block, and the rectangular ring frame (111) is located at the back of the inner cavity of the detection box (101), the inner wall of the rectangular ring frame (111) is fixedly installed with an electric heating plate (112), and the front end of the L-shaped lifting frame (109) is fixedly connected with a first toothed plate (113).
4. The method for detecting the adhesion of aluminum foil medicine according to claim 3, characterized in that: The left side of the inner cavity of the detection box (101) is rotatably connected with a gear cylinder (114) engaged with the first toothed plate (113) through a bearing piece, the left side of the top of the detection box (101) is fixedly connected with an electric telescopic rod (115) by opening an opening, the bottom end of the electric telescopic rod (115) is fixedly connected with a horizontal pressure plate (116) used in cooperation with the bent pressure plate (105), and the bottom of the horizontal pressure plate (116) is fixedly connected with a second toothed plate (117) engaged with the gear cylinder (114) through a fixed block.
5. The method for detecting the adhesion of aluminum foil medicine according to claim 4, characterized in that: The left side of the detection box (101) is fixedly connected with a material guiding inclined frame (118) by opening an opening, and the inner cavity of the material guiding inclined frame (118) is provided with a second pressure sensor (119) at the bottom.
6. The method for detecting the adhesion of aluminum foil medicine according to claim 5, characterized in that: The surface of the detection box (101) is provided with an operation port (120), both sides of the surface of the detection box (101) are fixedly connected with vertical guide rods (121) through fixing blocks, the surface of the vertical guide rod (121) is slidably installed with a supporting pressure plate (122), the top of the supporting pressure plate (122) is installed with a first pressure sensor (124) through an opening, and the medicine bottle body (3) is located at the top of the first pressure sensor (124), and the surface of the vertical guide rod (121) is sleeved with a second spring (123).
7. The method for detecting the adhesion of aluminum foil medicine according to claim 6, characterized in that: The adsorption moving mechanism (2) comprises a motor (201), the motor (201) is fixedly installed at the bottom of the detection box (101) through a support, the output shaft of the motor (201) is fixedly connected with a rotating rod (202) through a shaft coupling, the top end of the rotating rod (202) penetrates through the detection box (101) and extends to the inside of the detection box (101), and one end of the rotating rod (202) extending to the inside of the detection box (101) is fixedly connected with a multi-face rotating frame (203) through a fixed plate.
8. The method for detecting the adhesion of aluminum foil medicine according to claim 7, characterized in that: The bottom end of the air extraction vertical pipe (103) penetrates through the detection box (101) and the multi-face rotating frame (203) in sequence and extends to the inside of the multi-face rotating frame (203), and the air extraction vertical pipe (103) is rotatably connected with the multi-face rotating frame (203), one end of the air extraction vertical pipe (103) extending to the inside of the multi-face rotating frame (203) is fixedly connected with a sealing bearing piece (204), and the bottom of the sealing bearing piece (204) is fixedly installed with a positioning ring cylinder (205).
9. The method of claim 8, wherein the method is characterized by: The surface of the multi-face rotating frame (203) is fixedly installed with U-shaped guide frames (206) through openings, and the U-shaped guide frames (206) are provided with a plurality of U-shaped guide frames (206), both sides of the U-shaped guide frame (206) are provided with side sliding ports (207), the inside of the U-shaped guide frame (206) is installed with a sliding flat plate (208) slidably connected with the side sliding port (207), the top of the sliding flat plate (208) is fixedly connected with a square positioning block (209), and the inside of the square positioning block (209) is fixedly connected with a suction hose (210), the bottom end of the suction hose (210) is fixedly installed with a suction head (211), the other end of the suction hose (210) is in communication with the surface of the positioning ring cylinder (205), and the bottom of the sliding flat plate (208) is fixedly connected with a third spring (213) between the inner wall of the U-shaped guide frame (206).
10. The method of claim 9, wherein the method is characterized by: The bottom of the square positioning block (209) is provided with a concave groove (212), and the top of the multi-face rotating frame (203) is provided with a square insertion port (214) matched with the concave groove (212) and the curved pressure plate (105).