Stirring device for glycerol sample detection
The gan oil sample mixing device automates stirring through a liquid pressure extensible rod and rotating mechanism, addressing the labor-intensive manual operation and extending the device's lifespan.
Patent Information
- Application Number
- CN202421466095.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-25
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-06-25
AI Technical Summary
The existing glycerol sample detection and stirring device requires manual and manual continuous movement or rotation of the handle, which increases the labor intensity of the staff.
The hydraulic telescopic rod and the driving motor drive the mixing rod to move up and down in the container, and the installation parts combine to realize the automatic installation and disassembly of the mixing blades, so as to realize the up and down movement and rotation of the mixing blades in the container.
It reduces the labor intensity of staff, realizes automatic stirring and mixing of glycerol samples and distilled water, and reduces the need for manual operation.
Smart Images

Figure CN223096596U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glycerol sample detection, in particular to a stirring device for glycerol sample detection. Background Art
[0002] At present, glycerol is widely used in skin care products and used as a moisturizer to moisten the skin and keep the skin moist for a long time. In different skin care products, the addition amount of glycerol is different according to the functions of the skin care products. Therefore, it is necessary to detect the glycerol content. During the detection of the glycerol content, a stirring device is required to stir and mix the glycerol sample and distilled water. The structure of the existing stirring device is relatively complex, and the first bevel gear and the second bevel gear are required to be meshed and driven during the stirring process. Since the gears will be worn during long-term use, the service life is relatively short.
[0003] The prior art CN220276826U discloses a stirring device for detecting a glycerol sample of a cosmetic raw material, including a container and a cover plate, and the downward movement and rotation of a turning handle are used to drive the stirring part to move downward and rotate in the container. In this application, the glycerol sample and distilled water are poured into the container at one time, and the cover plate seals the container. The staff moves the stirring assembly up and down in the round hole, so that the stirring assembly performs up-and-down mixing of the glycerol sample and distilled water inside the container, and then rotates the stirring assembly inside the container to mix the glycerol sample and distilled water in the horizontal direction, improving the mixing efficiency and service life.
[0004] However, when the above stirring device stirs and mixes the glycerol sample and distilled water, it is necessary for the staff to manually and continuously move or rotate the turning handle to realize the downward movement and rotation of the stirring part in the container, thereby increasing the labor intensity of the staff. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a stirring device for glycerol sample detection, aiming to automatically move and rotate the stirring part downward in the container, so that it is not necessary for the staff to manually and continuously move or rotate the turning handle to realize the downward movement and rotation of the stirring part in the container, thereby reducing the labor intensity of the staff.
[0006] To achieve the above object, the present utility model provides a stirring device for glycerol sample detection, which includes a container and a cover plate. The cover plate is placed on the top of the container. It further includes a support seat, a moving member, a rotating member, a stirring rod, a mounting member and a stirring blade. The support seat is arranged on the upper surface of the cover plate. The moving member and the rotating member are respectively used to drive the stirring rod to move or rotate. The stirring rod is located on the side of the rotating member close to the container and penetrates through the cover plate. The mounting member is used to mount the stirring blade at the lower end of the stirring rod. The stirring blade is located on the side of the mounting member away from the stirring rod and is inside the container.
[0007] Among them, the moving member includes a hydraulic telescopic rod and a moving block. The hydraulic telescopic rod is arranged on the lower surface of the support seat. The moving block is connected to the output end of the hydraulic telescopic rod, is movably connected to the stirring rod, and penetrates through the cover plate.
[0008] Among them, the rotating member includes a driving motor, a hexagonal block and a sliding block. The driving motor is arranged on the lower surface of the support seat. The hexagonal block is connected to the output shaft of the driving motor and is located on the lower surface of the driving motor. The sliding block is slidably connected to the hexagonal block and is arranged at the upper end of the stirring rod.
[0009] Among them, the mounting member includes a first flange and a second flange. The first flange is arranged at the lower end of the stirring rod. The second flange is detachably connected to the first flange and is arranged on the side of the stirring blade away from the container.
[0010] Among them, the mounting member further includes a screw and a nut. The screw is arranged on the side of the second flange close to the first flange and penetrates through the first flange. The nut is detachably connected to the screw and is sleeved on the outer side of the screw.
[0011] Among them, the stirring device for glycerol sample detection further includes a fixing ring. The fixing ring is detachably connected to the container and is arranged inside the cover plate.
[0012] A stirring device for glycerol sample detection according to the present utility model realizes the installation or disassembly of the stirring blade at the lower end of the stirring rod through the installation part, so that after stirring is completed, the stirring blade can be disassembled for cleaning. The stirring rod is driven to move up and down and rotate in the container through the moving part and the rotating part, so that the stirring blade can be driven to move up and down and rotate in the container, and then the glycerol sample and distilled water at any position in the container can be automatically stirred and mixed. By automatically stirring and mixing the glycerol sample and distilled water at any position in the container, it is not necessary to manually continuously move or rotate the handle to realize the downward movement and rotation of the stirring part in the container, thereby reducing the labor intensity of the staff. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art.
[0014] Figure 1 is the overall structural schematic diagram of the stirring device for glycerol sample detection according to the present utility model.
[0015] Figure 2 is the sectional view of the stirring device for glycerol sample detection according to the present utility model along the hydraulic telescopic rod.
[0016] Figure 3 is the sectional view of the stirring device for glycerol sample detection according to the present utility model along the stirring rod.
[0017] In the figure: 101-container, 102-cover plate, 103-support seat, 104-stirring rod, 105-stirring blade, 106-fixed ring, 107-hydraulic telescopic rod, 108-moving block, 109-driving motor, 110-hexagonal block, 111-sliding block, 112-first flange, 113-second flange, 114-screw rod, 115-nut. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] The following will describe in detail the embodiments of the present utility model. The examples of the embodiments are shown in the drawings, in which the same or similar reference numerals denote the same or similar elements or elements with the same or similar functions from beginning to end. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present utility model and should not be construed as limiting the present utility model. Embodiment
[0019] Please refer to Figures 1 to 3 , Figure 1 is the overall structural schematic diagram of the stirring device for glycerol sample detection according to the present utility model, Figure 2It is a schematic cross-sectional view of the stirring device for glycerol sample detection of the present utility model along the hydraulic telescopic rod 107. Figure 3 It is a schematic cross-sectional view of the stirring device for glycerol sample detection of the present utility model along the stirring rod 104.
[0020] The present utility model provides a stirring device for glycerol sample detection, which includes a container 101, a cover plate 102, a support base 103, a moving member, a rotating member, a stirring rod 104, a mounting member, stirring blades 105 and a fixing ring 106. The moving member includes a hydraulic telescopic rod 107 and a moving block 108. The rotating member includes a driving motor 109, a hexagonal block 110 and a sliding block 111. The mounting member includes a first flange 112, a second flange 113, a screw 114 and a nut 115. By the foregoing solution, the problem that when the foregoing stirring device stirs and mixes glycerol samples and distilled water, it is necessary for workers to manually and continuously move or rotate a turning handle to achieve the downward movement and rotation of the stirring part in the container 101, thus increasing the labor intensity of the workers is solved. It can be understood that the foregoing solution can be used in scenarios for detecting glycerol content.
[0021] In this embodiment, the present application realizes the installation or disassembly of the stirring blades 105 at the lower end of the stirring rod 104 through the mounting member, so that after stirring is completed, the stirring blades 105 can be disassembled for cleaning. The stirring rod 104 is driven to move up and down and rotate in the container 101 through the moving member and the rotating member, so as to drive the stirring blades 105 to move up and down and rotate in the container 101, and then the glycerol samples and distilled water at any position in the container 101 can be automatically stirred and mixed. By automatically stirring and mixing the glycerol samples and distilled water at any position in the container 101, it is not necessary for workers to manually and continuously move or rotate a turning handle to achieve the downward movement and rotation of the stirring part in the container 101, thereby reducing the labor intensity of the workers.
[0022] Among them, the cover plate 102 is placed on the top of the container 101, the support seat 103 is arranged on the upper surface of the cover plate 102, the moving member and the rotating member are respectively used to drive the stirring rod 104 to move or rotate. The stirring rod 104 is located on the side of the rotating member close to the container 101 and penetrates through the cover plate 102. The mounting member is used to mount the stirring blade 105 at the lower end of the stirring rod 104. The stirring blade 105 is located on the side of the mounting member away from the stirring rod 104 and is inside the container 101. The container 101 has an open upper end and a hollow interior structure. The cover plate 102 has an open lower end and a hollow interior structure. The cover plate 102 is placed above the container 101, so that the cover plate 102 can completely cover the top space of the container 101. The stirring blade 105 is fixedly mounted on the lower end of the stirring rod 104 through the mounting member. The stirring rod 104 can move up and down and rotate inside the container 101, so as to drive the stirring blade 105 to move up and down and rotate inside the container 101.
[0023] Secondly, the hydraulic telescopic rod 107 is arranged on the lower surface of the support seat 103. The moving block 108 is connected to the output end of the hydraulic telescopic rod 107, is movably connected to the stirring rod 104, and penetrates through the cover plate 102. The cover plate 102 has a slot. The moving block 108 penetrates through the slot of the cover plate 102. The output end of the hydraulic telescopic rod 107 is connected to the moving block 108 and drives the moving block 108 to move up and down in the slot of the cover plate 102. A limiting ring is arranged on the outer side of the stirring rod 104. The moving block 108 has a limiting groove. The limiting ring of the stirring rod 104 cooperates with the limiting groove of the moving block 108. The limiting ring of the stirring rod 104 can rotate along its own axis in the limiting groove of the moving block 108, so that the moving block 108 will not affect the rotation of the stirring rod 104. By moving the moving block 108 up and down in the slot of the cover plate 102, the stirring rod 104 can be driven to move up and down inside the container 101.
[0024] Again, the drive motor 109 is arranged on the lower surface of the support base 103. The hexagonal block 110 is connected to the output shaft of the drive motor 109 and is located on the lower surface of the drive motor 109. The sliding block 111 is slidably connected to the hexagonal block 110 and is arranged at the upper end of the stirring rod 104. The output shaft of the drive motor 109 is connected to the hexagonal block 110 and drives the hexagonal block 110 to rotate along the axis of the output shaft of the drive motor 109. The hexagonal block 110 has a hexagonal groove inside, and the sliding block 111 is matched with the hexagonal groove of the hexagonal block 110, so that the hexagonal block 110 can limit the sliding block 111, and thus the rotation of the hexagonal block 110 along the axis of the output shaft of the drive motor 109 can drive the sliding block 111 to rotate along the axis of the output shaft of the drive motor 109 in the hexagonal groove of the hexagonal block 110.
[0025] Meanwhile, the first flange 112 is arranged at the lower end of the stirring rod 104. The second flange 113 is detachably connected to the first flange 112 and is arranged on the side of the stirring blade 105 away from the container 101. The screw 114 is arranged on the side of the second flange 113 close to the first flange 112 and penetrates through the first flange 112. The nut 115 is detachably connected to the screw 114 and is sleeved on the outer side of the screw 114. The first flange 112 is provided with through holes. The number of through holes of the first flange 112 is the same as the number of the screws 114, and the positions of the through holes of the first flange 112 correspond to the positions of the screws 114 one by one. The nut 115 is threadedly connected to the screw 114, so that the nut 115 can be tightened or loosened on the outer side of the screw 114, and further the second flange 113 can be installed or disassembled below the first flange 112.
[0026] Finally, the fixing ring 106 is detachably connected to the container 101 and is arranged inside the cover plate 102. The fixing ring 106 is made of flexible soft material. The fixing ring 106 is fixed inside the cover plate 102 and is in interference fit with the container 101. By providing the fixing ring 106, the fixing ring 106 can fix the cover plate 102 on the container 101.
[0027] When using the present utility model, after aligning the screw rods 114 above the second flange 113 with the through holes of the first flange 112 one by one, and passing all the screw rods 114 through the through holes of the first flange 112 one by one, the nuts 115 are sequentially tightened outside the screw rods 114, so that the second flange 113 is limited and fixed below the first flange 112, realizing the installation of the second flange 113 below the first flange 112, and further realizing the installation of the stirring blade 105 at the lower end of the stirring rod 104.
[0028] After installing the stirring blade 105, pour glycerol samples and distilled water into the container 101. Then, cover the container 101 with the cover plate 102. At this time, the fixing ring 106 can fix the cover plate 102 on the container 101 to prevent the cover plate 102 from shaking during the stirring of the glycerol samples and distilled water in the container 101.
[0029] Start the hydraulic telescopic rod 107, so that the power output by the output end of the hydraulic telescopic rod 107 drives the moving block 108 to move up and down in the slot of the cover plate 102, thereby driving the limiting ring of the stirring rod 104 to move up and down in the slot of the cover plate 102, and further driving the stirring rod 104 to move up and down in the container 101. Through the up and down movement of the stirring rod 104 in the container 101, the stirring blade 105 can be driven to move up and down in the container 101 through the first flange 112 and the second flange 113. Start the driving motor 109, so that the power output by the output end of the driving motor 109 drives the hexagonal block 110 to rotate along the axis of the output shaft of the driving motor 109, thereby driving the sliding block 111 to rotate along the axis of the output shaft of the driving motor 109 in the hexagonal groove of the hexagonal block 110, and further driving the stirring rod 104 to rotate along its own axis in the container 101. Through the rotation of the stirring rod 104 along its own axis in the container 101, the limiting ring of the stirring rod 104 can be driven to rotate along its own axis in the limiting groove of the moving block 108, and further driving the stirring blade 105 to rotate along the axis of the stirring rod 104 in the container 101. Combining the up and down movement of the stirring blade 105 in the container 101, the automatic stirring and mixing of the glycerol samples and distilled water at any position in the container 101 is realized.
[0030] In summary, the installation or disassembly of the stirring blade 105 at the lower end of the stirring rod 104 is achieved through the installation part, so that after stirring is completed, the stirring blade 105 can be disassembled for cleaning. The stirring rod 104 is driven to move up and down and rotate in the container 101 through the moving part and the rotating part, so as to drive the stirring blade 105 to move up and down and rotate in the container 101, and then the glycerol sample and distilled water at any position in the container 101 can be automatically stirred and mixed. Through the automatic stirring and mixing of the glycerol sample and distilled water at any position in the container 101, it is not necessary to manually and continuously move or rotate the handle to realize the downward movement and rotation of the stirring part in the container 101, thereby reducing the labor intensity of the staff.
[0031] The above-disclosed is only a preferred embodiment of the present invention. Of course, it cannot be used to limit the scope of the rights of the present invention. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present invention still fall within the scope covered by the present invention.
Claims
1. A stirring device for glycerol sample detection, comprising a container and a cover plate, the cover plate being placed on top of the container, characterized in that, it further comprises a support seat, a moving member, a rotating member, a stirring rod, a mounting member and stirring blades. The support seat is arranged on the upper surface of the cover plate. The moving member and the rotating member are respectively used to drive the stirring rod to move or rotate. The stirring rod is located on the side of the rotating member close to the container and penetrates through the cover plate. The mounting member is used to mount the stirring blades at the lower end of the stirring rod. The stirring blades are located on the side of the mounting member away from the stirring rod and are inside the container.
2. The stirring device for glycerol sample detection according to claim 1, characterized in that, the moving member comprises a hydraulic telescopic rod and a moving block. The hydraulic telescopic rod is arranged on the lower surface of the support seat. The moving block is connected to the output end of the hydraulic telescopic rod, is movably connected to the stirring rod and penetrates through the cover plate.
3. The stirring device for glycerol sample detection according to claim 2, characterized in that, the rotating member comprises a driving motor, a hexagonal block and a sliding block. The driving motor is arranged on the lower surface of the support seat. The hexagonal block is connected to the output shaft of the driving motor and is located on the lower surface of the driving motor. The sliding block is slidably connected to the hexagonal block and is arranged at the upper end of the stirring rod.
4. The stirring device for glycerol sample detection according to claim 3, characterized in that, the mounting member comprises a first flange and a second flange. The first flange is arranged at the lower end of the stirring rod. The second flange is detachably connected to the first flange and is arranged on the side of the stirring blades away from the container.
5. The stirring device for glycerol sample detection according to claim 4, characterized in that, the mounting member further comprises a screw rod and a nut. The screw rod is arranged on the side of the second flange close to the first flange and penetrates through the first flange. The nut is detachably connected to the screw rod and is sleeved on the outer side of the screw rod.
6. The stirring device for glycerol sample detection according to claim 1, characterized in that, the stirring device for glycerol sample detection further comprises a fixing ring. The fixing ring is detachably connected to the container and is arranged inside the cover plate.
Citation Information
Patent Citations
Stirring device for cosmetic raw material glycerol sample detection
CN220276826U