Cosmetic glass bottle sterilization and disinfection device
By designing a glass bottle sterilization and disinfection device using swing clamping plates and steam conveying components, the problems of disinfection dead corners and accumulation of condensate droplets in the prior art are solved, and a comprehensive and thorough disinfection and efficient disinfection process of glass bottles are achieved.
Patent Information
- Application Number
- CN202411971344.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-05-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing high-temperature steam disinfection device cannot spread the angle of the glass bottle when disinfecting the inside of the glass bottle, resulting in a blind spot for disinfection. The condensate droplets after the liquefied high-temperature steam will adhere to the glass bottle and need to be dried again.
A glass bottle sterilization and disinfection device for cosmetics was designed, using a swing clamping plate and a steam conveying component. The swing clamping plate can present a sine-like moving trajectory. The steam nozzle continuously sprays high-temperature steam into the inside of the glass bottle. Combined with the rotation and inclination of the glass bottle, it ensures that the steam can be spread throughout every corner and eliminates disinfection dead corners.
The comprehensive and thorough disinfection of the glass bottle has been achieved, eliminating the disinfection dead corners, avoiding the accumulation of condensate droplets in the glass bottle, reducing subsequent drying steps, and improving work efficiency.
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Figure CN119950773A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of glass bottle disinfection equipment, and specifically refers to a sterilization and disinfection device for glass bottles for cosmetics. Background Art
[0002] Glass bottles are chemically stable packaging containers that are commonly used for the storage and transportation of medicines and foods. When using glass bottles to store cosmetics, in order to avoid contamination of the contents, the glass bottles need to be disinfected and sterilized. Existing disinfection methods include ultraviolet irradiation, disinfectant solution cleaning, and high-temperature steam disinfection. Among them, high-temperature steam disinfection has higher efficiency, lower cost, and will not contaminate the glass bottles. No subsequent cleaning is required, so it is suitable for the disinfection of cosmetic glass bottles.
[0003] However, most of the existing high-temperature steam sterilization devices are fixed steam nozzles. When sterilizing the inside of a glass bottle, the steam flow path cannot cover the angle position of the glass bottle, resulting in a sterilization dead corner, making it impossible to thoroughly sterilize the glass bottle. At the same time, small droplets produced by the liquefied high-temperature steam in the glass bottle will also adhere to the glass bottle, requiring secondary drying of the glass bottle. Summary of the invention
[0004] In view of the above situation, in order to overcome the defects of the prior art, the present invention provides a sterilizing and disinfecting device for glass bottles for cosmetics, so as to at least partially solve the above technical problems.
[0005] The technical solution adopted by the present invention is as follows: The present invention proposes a sterilizing and disinfecting device for a glass bottle for cosmetics, comprising a sterilizing and disinfecting assembly, a movable bottom plate base and a fixed bracket, wherein the sterilizing and disinfecting assembly is arranged on the movable bottom plate base, the movable bottom plate base is arranged on the fixed bracket, and the movable bottom plate base is rotatably connected to the fixed bracket; the sterilizing and disinfecting assembly comprises a swing clamping plate and a steam delivery assembly, the swing clamping plate is rotatably connected to the movable bottom plate base, a first fixed hoop and a second fixed hoop are arranged on the swing clamping plate, the second fixed hoop is located below the first fixed hoop, and the first fixed hoop and the second fixed hoop are used to fix the glass bottle; the steam delivery assembly comprises a steam nozzle, the steam nozzle is arranged below the second fixed hoop, and the steam nozzle is used to spray steam into the glass bottle; a driven gear is arranged at the bottom of the movable bottom plate base, a rotating motor and a driving gear are arranged on the fixed bracket, the driven gear and the driving gear are meshed, the rotating motor drives the movable bottom plate base to rotate through the driving gear and the driven gear, and the rotating motor controls the steering of the movable bottom plate base through the driving gear and the driven gear.
[0006] Furthermore, a swing base is provided on the movable bottom plate base, the swing clamping plate is rotatably provided on the swing base, a rotation torsion spring is provided on the swing clamping plate, and both ends of the rotation torsion spring are respectively connected to the swing clamping plate and the swing base; when the rotation torsion spring is not deformed, the swing clamping plate remains in a vertical state.
[0007] Furthermore, it also includes a lifting column assembly, which includes a trapezoidal cylinder, a central circular hole is provided on the movable bottom plate base, the central axes of the trapezoidal cylinder and the central circular hole coincide, the outer diameter of the trapezoidal cylinder is smaller than the inner diameter of the central circular hole, and the lifting column assembly drives the trapezoidal cylinder to rise and fall in the vertical direction; an extension bracket is provided on the swing clamping plate, and one end of the extension bracket away from the swing clamping plate is located above the central circular hole.
[0008] Furthermore, a rotating wheel is provided at one end of the extension bracket away from the swing clamping plate, and the rotating wheel is rotatably connected to the extension bracket; and an inclined surface is provided at the edge of the top surface of the trapezoidal cylinder.
[0009] Furthermore, the lifting column assembly also includes a screw lift and a lifting drive motor, the trapezoidal cylinder is arranged on the screw lift, the screw lift is connected to the lifting drive motor, and the lifting drive motor drives the screw lift to control the lifting of the trapezoidal cylinder.
[0010] Furthermore, it includes a steam generating component, which includes a steam boiler and a water storage tank, the water storage tank is connected to the steam boiler, the steam boiler is connected to the steam nozzle, the water storage tank is used to supply water to the steam boiler, and the steam boiler is used to transport steam to the steam nozzle.
[0011] Furthermore, the steam delivery assembly also includes a bottle mouth positioning sleeve, a steam hose and an annular diverter, the bottle mouth positioning sleeve is located below the second fixed sleeve, the steam nozzle is arranged on the bottle mouth positioning sleeve, and the two ends of the steam hose are respectively connected to the steam nozzle and the annular diverter; the steam boiler is provided with an output pipe, and the output pipe is connected to the annular diverter.
[0012] Furthermore, the steam boiler and the water storage tank are arranged below the movable floor base, the movable floor base is provided with a gas pipeline through hole that completely penetrates, and the steam hose penetrates the movable floor base through the gas pipeline through hole.
[0013] Compared with the prior art, the present invention has the following advantages: 1. The swing clamping plate and the glass bottle fixed on the swing clamping plate proposed in the present invention can present a sine-like moving trajectory. When the glass bottle moves, the steam nozzle continuously sprays high-temperature steam into the interior of the glass bottle. The high-temperature steam sprayed into the interior of the glass bottle is no longer subject to external force, while the glass bottle continuously changes its position due to external force, so that a relative speed and relative displacement appear between the glass bottle and the high-temperature steam inside, thereby causing turbulence of the high-temperature steam inside the glass bottle. The high-temperature steam continuously changes its flow path and spreads throughout every corner inside the glass bottle, eliminating dead corners for disinfection, and can comprehensively and thoroughly disinfect the glass bottle.
[0014] 2. When the present invention is in use, the glass bottle continuously rotates and tilts at the same time, its posture continuously changes, and the mouth of the glass bottle faces downward. During the rotation and tilting process of the glass bottle, condensed droplets formed by high-temperature steam are thrown out from the mouth of the bottle, thereby avoiding the accumulation of condensed droplets in the glass bottle. There is no need to dry the glass bottle in the subsequent stage, thereby reducing the disinfection and sterilization process and improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 A three-dimensional view of a cosmetic glass bottle sterilizing and disinfecting device in use according to an embodiment of the present invention Figure 1 ; Figure 2 This is a front view of a cosmetic glass bottle sterilizing and disinfecting device in use according to an embodiment of the present invention; Figure 3 A top view of a cosmetic glass bottle sterilizing and disinfecting device in use according to an embodiment of the present invention; Figure 4 A three-dimensional view of a cosmetic glass bottle sterilizing and disinfecting device in use according to an embodiment of the present invention Figure 2 ; Figure 5 A three-dimensional diagram of a movable bottom plate base of a cosmetic glass bottle sterilizing and disinfecting device proposed in an embodiment of the present invention; Figure 6 A three-dimensional diagram of a sterilizing component of a sterilizing device for sterilizing a cosmetic glass bottle according to an embodiment of the present invention; Figure 7 for Figure 6 The enlarged view at center Ⅰ; Figure 8 A front view of a lifting column assembly of a cosmetic glass bottle sterilizing and disinfecting device according to an embodiment of the present invention; Fig. 9 A three-dimensional diagram of a steam generating assembly of a cosmetic glass bottle sterilizing and disinfecting device according to an embodiment of the present invention.
[0016] Among them, 100, disinfection and sterilization component, 200, movable bottom plate base, 300, fixed bracket, 400, lifting column component, 500, steam generating component, 101, swing clamping plate, 102, extension bracket, 103, steam delivery component, 104, first fixed hoop, 105, second fixed hoop, 106, rotating torsion spring, 107, rotating wheel, 108, steam nozzle, 109, bottle mouth positioning hoop, 110, steam hose, 111, annular diverter, 201, swing base, 202, center circular hole, 203, gas pipeline through hole, 204, driven gear, 301, rotating motor, 302, driving gear, 401, trapezoidal cylinder, 402, screw elevator, 403, lifting drive motor, 404, inclined surface, 501, steam boiler, 502, water storage tank, 503, output pipeline.
[0017] The accompanying drawings are used to provide further understanding of the present invention and constitute a part of the specification. They are used to explain the present invention together with the embodiments of the present invention and do not constitute a limitation of the present invention. DETAILED DESCRIPTION
[0018] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments; based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0019] In the description of the present invention, it should be understood that terms such as “upper”, “lower”, “front”, “back”, “left”, “right”, “top”, “bottom”, “inside” and “outside” indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore should not be understood as limiting the present invention.
[0020] This embodiment is used to disinfect and sterilize cosmetic glass bottles, and is intended to solve the problems of sterilization dead corners and condensation liquefaction that exist when existing fixed high-temperature steam sterilization equipment is used to sterilize glass bottles.
[0021] like Figure 1-Figure 9As shown, this embodiment includes a disinfection and sterilization component 100, a movable bottom plate base 200 and a fixed bracket 300. The disinfection and sterilization component 100 is arranged on the movable bottom plate base 200. The disinfection and sterilization component 100 is used to fix the glass bottle and spray high-temperature steam into the glass bottle at the same time, so as to achieve disinfection and sterilization by steam. The movable bottom plate base 200 is arranged on the fixed bracket 300. The movable bottom plate base 200 can rotate on the fixed bracket 300. In actual use, multiple disinfection and sterilization components 100 can be arranged on the movable bottom plate base 200, and a glass bottle can be fixed on each disinfection and sterilization component 100, so that multiple glass bottles can be disinfected at the same time.
[0022] The structure of the disinfection and sterilization component 100 includes a swing clamping plate 101 and a steam delivery component 103. The swing clamping plate 101 is used to fix and clamp the glass bottle to be disinfected, and the steam delivery component 103 is used to spray high-temperature steam into the interior of the glass bottle for high-temperature disinfection. The swing clamping plate 101 is also provided with a first fixed hoop 104 and a second fixed hoop 105 for fixing the glass bottle. The second fixed hoop 105 is arranged below the first fixed hoop 104. When in use, the glass bottle can be directly inserted upside down into the first fixed hoop 104, and the bottle mouth is fixed in the second fixed hoop 105. Since the shape of the glass bottle is that the bottle mouth is thinner than the bottle bottom, the first fixed hoop 104 and the second fixed hoop 105 can firmly clamp the glass bottle. At the same time, the steam delivery component 103 includes a steam nozzle 108, which is arranged below the second fixed hoop 105. The high-temperature steam sprayed by the steam nozzle 108 can directly enter the glass bottle through the bottle mouth.
[0023] The swing clamping plate 101 proposed in this embodiment is rotatably connected with the movable bottom plate base 200, and the swing clamping plate 101 can swing on the movable bottom plate base 200. At the same time, a rotating motor 301 and a driving gear 302 are provided on the fixed bracket 300, and a driven gear 204 is provided on the movable bottom plate base 200. The driven gear 204 and the driving gear 302 are meshed. The rotating motor 301 can drive the movable bottom plate base 200 to rotate on the fixed bracket 300 through the driving gear 302 and the driven gear 204. When the movable bottom plate base 200 rotates, the disinfection and sterilization component 100 is driven to rotate synchronously. Therefore, when in use, this embodiment can make the swing clamping plate 101 rotate around the vertical axis and swing relative to the vertical plane at the same time. The swing clamping plate 101 and the glass bottle fixed on the swing clamping plate 101 can present a sine-like moving trajectory.
[0024] During actual use, the glass bottle is first inserted into the first fixed hoop 104 and the second fixed hoop 105, and then the rotating motor 301 is started. The rotating motor 301 drives the movable bottom plate base 200 to rotate through the driving gear 302 and the driven gear 204, and the disinfection and sterilization component 100 on the movable bottom plate base 200 rotates synchronously. At the same time, the swing clamping plate 101 swings on the movable bottom plate base 200, so that the glass bottle moves along a quasi-sine curve. While the glass bottle moves, the steam nozzle 108 continuously sprays high-temperature steam into the interior of the glass bottle. The high-temperature steam sprayed into the interior of the glass bottle is no longer subject to external force, and the glass bottle continues to change its position due to external force, so that a relative speed and relative displacement appear between the glass bottle and the high-temperature steam inside, thereby causing turbulence of the high-temperature steam inside the glass bottle. The high-temperature steam constantly changes its own flow channel and spreads throughout every corner inside the glass bottle, eliminating dead corners for disinfection, and can fully and thoroughly disinfect the glass bottle.
[0025] At the same time, when in use, the glass bottle of this embodiment continuously rotates and tilts, its posture continues to change, and the mouth of the glass bottle faces downward. During the rotation and tilting of the glass bottle, condensation droplets formed by high-temperature steam are thrown out from the bottle mouth, thereby avoiding the accumulation of condensation droplets in the glass bottle. There is no need to dry the glass bottle in the subsequent stage, thereby reducing the disinfection and sterilization process and improving work efficiency.
[0026] The movable bottom plate base 200 proposed in this embodiment is provided with a swing base 201, and the swing clamping plate 101 is arranged on the swing base 201. When in use, the swing clamping plate 101 can swing on the swing base 201. The swing axis position of the swing clamping plate 101 is limited by setting the swing base 201. At the same time, a rotation torsion spring 106 is provided on the swing clamping plate 101, and the two ends of the rotation torsion spring 106 are respectively connected to the swing clamping plate 101 and the swing base 201. By adjusting the position of the rotation torsion spring 106, the swing clamping plate 101 is kept in a vertical state. When the swing clamping plate 101 rotates, the rotation torsion spring 106 is twisted, and the elastic potential energy stored in the rotation torsion spring 106 can be used to maintain the posture of the swing clamping plate 101, so that the swing clamping plate 101 can be automatically reset.
[0027] When the present embodiment is in use, the glass bottle is fixedly inserted on the swing clamping plate 101, and the first fixed hoop 104 and the second fixed hoop 105 firmly clamp the glass bottle, and then the rotating motor 301 is started to drive the movable bottom plate base 200 to rotate through the driving gear 302 and the driven gear 204, and at the same time, the swing clamping plate 101 swings on the swing base 201, and the posture of the swing clamping plate 101 changes when it swings, and the relative position between the swing clamping plate 101 and the swing base 201 changes, so that torque is applied to the rotating torsion spring 106 and converted into elastic potential energy of the rotating torsion spring 106.
[0028] After disinfection and sterilization are completed, the rotating motor 301 stops working, and the elastic potential energy in the rotating torsion spring 106 is released to push the swing clamping plate 101 back to the initial vertical position. At this time, the mouth of the glass bottle is vertically downward, and the condensed water in the bottle can flow out through the mouth of the bottle, reducing the subsequent drying process.
[0029] The present embodiment further includes a lifting column assembly 400, which is used to drive and control the rotation of the swing clamping plate 101. The structure of the lifting column assembly 400 includes a trapezoidal cylinder 401. The trapezoidal cylinder 401 is a cylinder with a smaller cross-section at the top and a larger cross-section at the bottom. The lifting column assembly 400 can drive the trapezoidal cylinder 401 to move up and down. A central circular hole 202 is provided on the movable bottom plate base 200. The outer diameter of the trapezoidal cylinder 401 is smaller than the inner diameter of the central circular hole 202. Therefore, when the trapezoidal cylinder 401 moves, it can pass through the movable bottom plate base 200 through the central circular hole 202 to be lifted and lowered.
[0030] At the same time, in this embodiment, an extension bracket 102 is set on the disinfection and sterilization component 100, and the extension bracket 102 extends to above the central circular hole 202. When the trapezoidal cylinder 401 rises, the trapezoidal cylinder 401 passes through the central circular hole 202 and rises to above the movable bottom plate base 200. When the trapezoidal cylinder 401 contacts the extension bracket 102, a thrust is applied to the extension bracket 102, and then the swing clamping plate 101 is pushed to rotate on the swing base 201 through the extension bracket 102, thereby realizing the swing of the swing clamping plate 101.
[0031] Since the trapezoidal cylinder 401 in this embodiment is a cylinder with a smaller cross-section at the top and a larger cross-section at the bottom, the diameter of the contact position with the extension bracket 102 gradually increases when the trapezoidal cylinder 401 rises. Therefore, as the trapezoidal cylinder 401 rises, the rotation amplitude of the swing clamping plate 101 gradually increases, and the rotating torsion spring 106 twists at the same time. When the disinfection and sterilization is completed, the trapezoidal cylinder 401 descends, and the trapezoidal cylinder 401 is no longer in contact with the extension bracket 102. The elastic potential energy in the rotating torsion spring 106 is released, pushing the swing clamping plate 101 back to its original position.
[0032] The extension bracket 102 proposed in this embodiment is provided with a rotating wheel 107 at the end position away from the swing clamping plate 101. The rotating wheel 107 is rotatably arranged on the extension bracket 102. At the same time, an inclined surface 404 is provided on the trapezoidal cylinder 401. When the trapezoidal cylinder 401 is raised or lowered, the inclined surface 404 contacts the rotating wheel 107, and the rotating wheel 107 can roll on the inclined surface 404.
[0033] By setting up a movable rotating wheel 107, the sliding friction between the extension bracket 102 and the inclined surface 404 is converted into rolling friction, which can greatly reduce the resistance between the trapezoidal cylinder 401 and the extension bracket 102 when it is raised or lowered; in actual use, the trapezoidal cylinder 401 is raised or lowered by the extension bracket 102 pushing the swing clamping plate 101 to swing, and the rotating wheel 107 rolls on the inclined surface 404, reducing the friction force on the trapezoidal cylinder 401, making the lifting of the trapezoidal cylinder 401 smoother and avoiding energy waste.
[0034] At the same time, when the movable bottom plate base 200 rotates, since the cross-section of the trapezoidal cylinder 401 on the horizontal plane is circular, the rotating wheel 107 always maintains contact with the inclined surface 404, and the swinging and circumferential rotation of the swinging clamping plate 101 are realized. By setting the cylindrical trapezoidal cylinder 401, it is ensured that the swinging clamping plate 101 can perform smooth posture changes, reducing the overall vibration of the device and avoiding damage to the glass bottle.
[0035] The lifting column assembly 400 proposed in this embodiment also includes a screw lift 402 and a lifting drive motor 403. The output shafts of the screw lift 402 and the lifting drive motor 403 are connected. The screw lift 402 and the screw lift 402 are used to drive the lifting of the trapezoidal cylinder 401. The screw lift 402 can output a stable torque, and the torque output by the screw lift 402 is large, ensuring that the trapezoidal cylinder 401 can overcome the resistance of the extension bracket 102 for lifting.
[0036] By changing the rotation direction of the output shaft of the lifting drive motor 403, the rotation direction of the screw lift 402 can be changed, thereby changing the moving direction of the trapezoidal cylinder 401. The lifting and lowering of the trapezoidal cylinder 401 can be conveniently controlled to achieve rapid cyclic lifting and lowering of the trapezoidal cylinder 401, thereby increasing the swing frequency of the swing clamping plate 101, thereby increasing the steam turbulence in the glass bottle and improving the effect of steam sterilization.
[0037] This embodiment also includes a steam generating component 500, which is used to generate high-temperature steam and transport it to the steam transporting component 103. The specific structure of the steam generating component 500 includes a steam boiler 501 and a water storage tank 502. The steam boiler 501 heats the water in the water storage tank 502 and transports the steam to the steam transporting component 103.
[0038] In specific use, filling the water storage tank 502 with distilled water can reduce the probability of the steam boiler 501 being blocked. At the same time, a filtering mechanism is provided on the steam boiler 501 to prevent solid impurities from being mixed with steam and blown into the glass bottle to cause contamination of the glass bottle.
[0039] The steam delivery assembly 103 proposed in this embodiment also includes a bottle mouth positioning sleeve 109, a steam hose 110 and an annular diverter 111. The bottle mouth positioning sleeve 109 is located below the second fixed sleeve 105. After the glass bottle is invertedly inserted into the first fixed sleeve 104 and the second fixed sleeve 105, the bottle mouth is located in the bottle mouth positioning sleeve 109. By setting the steam nozzle 108 on the bottle mouth positioning sleeve 109, it is ensured that the steam nozzle 108 can be accurately aligned with the bottle mouth, thereby reducing steam waste.
[0040] At the same time, the present embodiment is provided with an annular diverter 111, and both ends of the steam hose 110 are respectively connected to the steam nozzle 108 and the annular diverter 111, and the steam boiler 501 is provided with an output pipe 503 for outputting steam, and the annular diverter 111 is connected to the output pipe 503. By providing the annular diverter 111, the steam output from the output pipe 503 can be diverted and supplied to multiple steam nozzles 108 at the same time, so that multiple glass bottles can be sterilized simultaneously, thereby improving the sterilization efficiency.
[0041] In this embodiment, a gas pipeline through hole 203 is set on the movable bottom plate base 200, and the disinfection and sterilization component 100 is connected to the steam nozzle 108 and the annular diverter 111 through the gas pipeline through hole 203. The annular diverter 111, the steam boiler 501 and the water storage tank 502 are all set below the movable bottom plate base 200 to avoid interference with the swing clamping plate 101 when it rotates and swings.
[0042] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0043] The present invention and its embodiments are described above, and such description is not restrictive. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In short, if ordinary technicians in the field are inspired by it, without departing from the purpose of the invention, they can design a structure and embodiment similar to the technical solution without creativity, which should belong to the protection scope of the present invention.
Claims
1. A sterilizing and disinfecting device for glass bottles for cosmetics, characterized in that: It comprises a disinfection and sterilization component (100), a movable bottom plate base (200) and a fixed bracket (300), wherein the disinfection and sterilization component (100) is arranged on the movable bottom plate base (200), and the movable bottom plate base (200) is rotatably connected to the fixed bracket (300); The disinfection and sterilization assembly (100) comprises a swing clamping plate (101) and a steam delivery assembly (103); the swing clamping plate (101) is rotatably connected to a movable bottom plate base (200); a first fixed hoop (104) and a second fixed hoop (105) are provided on the swing clamping plate (101); the second fixed hoop (105) is located below the first fixed hoop (104); the first fixed hoop (104) is used to fix the bottom of the bottle; and the second fixed hoop is used to fix the mouth of the bottle; The steam delivery component (103) comprises a steam nozzle (108), and the steam nozzle (108) is arranged below the second fixed hoop (105); A driven gear (204) is provided at the bottom of the movable bottom plate base (200), and a rotating motor (301) and a driving gear (302) are provided on the fixed bracket (300). The driven gear (204) and the driving gear (302) are meshed and arranged, and the rotating motor (301) drives the movable bottom plate base (200) to rotate via the driving gear (302) and the driven gear (204).
2. The cosmetic glass bottle sterilizing and disinfecting device according to claim 1, characterized in that: The movable bottom plate base (200) is provided with a swing base (201), the swing clamping plate (101) is rotatably arranged on the swing base (201), the swing clamping plate (101) is provided with a rotation torsion spring (106), and the two ends of the rotation torsion spring (106) are respectively connected to the swing clamping plate (101) and the swing base (201); When the rotating torsion spring (106) is not deformed, the swing clamping plate (101) remains in a vertical state.
3. The cosmetic glass bottle sterilizing and disinfecting device according to claim 2, characterized in that: It also comprises a lifting column assembly (400), the lifting column assembly (400) comprising a trapezoidal cylinder (401), the movable bottom plate base (200) being provided with a central circular hole (202), the central axes of the trapezoidal cylinder (401) and the central circular hole (202) being coincident, the outer diameter of the trapezoidal cylinder (401) being smaller than the inner diameter of the central circular hole (202), and the lifting column assembly (400) driving the trapezoidal cylinder (401) to rise and fall in a vertical direction; An extension bracket (102) is provided on the swing clamping plate (101), and one end of the extension bracket (102) away from the swing clamping plate (101) is located above the central circular hole (202).
4. The cosmetic glass bottle sterilizing and disinfecting device according to claim 3, characterized in that: A rotating wheel (107) is provided at one end of the extension bracket (102) away from the swing clamping plate (101), and the rotating wheel (107) and the extension bracket (102) are rotatably connected; an inclined surface (404) is provided at the edge of the top surface of the trapezoidal cylinder (401).
5. The cosmetic glass bottle sterilizing and disinfecting device according to claim 3, characterized in that: The lifting column assembly (400) further comprises a screw lift (402) and a lifting drive motor (403); the trapezoidal cylinder (401) is arranged on the screw lift (402); the screw lift (402) and the lifting drive motor (403) are connected; the lifting drive motor (403) drives the screw lift (402) to control the lifting of the trapezoidal cylinder (401).
6. The cosmetic glass bottle sterilizing and disinfecting device according to claim 1, characterized in that: The invention comprises a steam generating assembly (500), wherein the steam generating assembly (500) comprises a steam boiler (501) and a water storage tank (502), wherein the water storage tank (502) is connected to the steam boiler (501), wherein the steam boiler (501) is connected to a steam nozzle (108), wherein the water storage tank (502) is used to supply water to the steam boiler (501), and wherein the steam boiler (501) is used to transport steam to the steam nozzle (108).
7. The cosmetic glass bottle sterilizing and disinfecting device according to claim 6, characterized in that: The steam delivery assembly (103) further comprises a bottle mouth positioning hoop (109), a steam hose (110) and an annular flow divider (111); the bottle mouth positioning hoop (109) is located below the second fixed hoop (105); the steam nozzle (108) is arranged on the bottle mouth positioning hoop (109); and two ends of the steam hose (110) are respectively connected to the steam nozzle (108) and the annular flow divider (111); and an output pipe (503) is provided on the steam boiler (501); and the output pipe (503) is connected to the annular flow divider (111).
8. The cosmetic glass bottle sterilizing and disinfecting device according to claim 7, characterized in that: The steam boiler (501) and the water storage tank (502) are arranged below the movable floor base (200). The movable floor base (200) is provided with a gas pipeline through hole (203) that completely penetrates the movable floor base (200). The steam hose (110) penetrates the movable floor base (200) through the gas pipeline through hole (203).
Citation Information
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