A method for preparing a foam bath cream
By using the design of sliding ring and central plate in the device for preparing foam shower gel, the sliding ring is pressed with gravity of raw materials and sealing the additive holes, the generation of bubbles during the stirring process is reduced, the problem of long-term aging is solved, and the preparation efficiency is improved.
Patent Information
- Application Number
- CN202211023634.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-25
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2042-08-25
AI Technical Summary
When preparing foam shower gel, stirring the raw materials produces a large number of bubbles, resulting in a long-term aging, affecting the preparation efficiency.
A preparation device is adopted, including a preparation drum provided with an addition hole, a sliding ring sliding in the preparation drum, a central plate rotating in the center of the sliding ring, and a stirring mechanism connected to the end of the preparation drum away from the addition hole. The sliding ring is pressed through the gravity of the raw material itself, so that the raw material fills the space in the preparation barrel, and seals the addition holes after the raw material is completely added, and starts the stirring mechanism to stir the raw material evenly to reduce the generation of bubbles.
It effectively reduces the bubbles generated by raw materials during the stirring process, shortens the aging time, and improves the preparation efficiency.
Smart Images

Figure CN115400638B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of body wash, in particular to a preparation method of a foam body wash. Background Art
[0002] A body wash, also known as body milk, refers to a liquid cleaning agent used when taking a bath. It is a common cleaning product. The body wash aims to clean the skin and improve or repair problem skin. When used, it produces delicate foam, making people feel slippery and comfortable, which is pleasant.
[0003] When preparing a foam body wash and stirring the raw materials, a large number of bubbles will be generated, which requires a long time of aging to defoam, greatly affecting the preparation efficiency. Summary of the Invention
[0004] The purpose of the present invention is to provide a preparation method of a foam body wash, which can reduce the generation of bubbles, thereby reducing the aging time and improving the preparation efficiency.
[0005] The purpose of the present invention is achieved through the following technical solutions:
[0006] A preparation method of a foam body wash, which uses a preparation device including a preparation barrel with an addition hole at one end, a sliding ring sliding in the preparation barrel, a central plate rotating in the center of the sliding ring, and a stirring mechanism connected to the end of the preparation barrel away from the addition hole. The stirring mechanism penetrates the central plate. The specific method for preparing the foam body wash using this device is as follows:
[0007] S1. Add the preparation raw materials into the preparation barrel through the addition hole in sequence;
[0008] S2. Through the gravity of the preparation raw materials themselves, press the sliding ring to slide down in the preparation barrel, so that the raw materials fill the space in the preparation barrel above the sliding ring. After the preparation raw materials are completely added into the preparation barrel, block the addition hole to block the raw materials in the space where they are located;
[0009] S3. Start the stirring mechanism to stir the raw materials. After stirring evenly and aging, a foam body wash is obtained.
[0010] The preparation barrel includes an outer tube with a sliding ring sliding inside, a blocking plate fixed at one end of the outer tube, an addition hole provided at an eccentric position on the blocking plate, and a cross plate fixed at the other end of the outer tube. The stirring mechanism is connected to the cross plate.
[0011] The stirring mechanism includes a rotating ring rotating in the center of the cross plate, and a plurality of stirring plates fixed on the rotating ring. The plurality of stirring plates penetrate and slide through the central plate. Brief Description of the Drawings
[0012] Figure 1It is a schematic flow chart of the preparation method of the foam body wash;
[0013] Figure 2 It is a schematic structural diagram when the plug plate of the preparation device is above;
[0014] Figure 3 It is a schematic structural diagram when the plug plate of the preparation device is below;
[0015] Figure 4 It is a schematic structural diagram of the support leg frame;
[0016] Figure 5 and Figure 6 It is a schematic structural diagram of the outer tube;
[0017] Figure 7 It is a schematic structural diagram of multiple stirring plates penetrating the central plate;
[0018] Figure 8 and Figure 9 It is a schematic structural diagram of the stirring plate;
[0019] Figure 10 It is a schematic structural diagram of the sliding ring;
[0020] Figure 11 It is a schematic structural diagram of the piston;
[0021] Figure 12 It is a schematic structural diagram of the control mechanism controlling the rack;
[0022] Figure 13 It is a schematic structural diagram of the lock tooth frame;
[0023] Figure 14 It is a schematic structural diagram of the control ring;
[0024] Figure 15 It is a schematic structural diagram of the rotating cover plate.
[0025] In the figure:
[0026] Support leg frame 101; Worm 102; Outer tube 103; Support shaft 104; Plug plate 105; Cross plate 106; Adding hole 107;
[0027] Rotating ring 201; Stirring plate 202; Limit post 203; Spring I 204;
[0028] Central plate 301; Sliding ring 302; Air pipe 303; Rack 304; Second telescopic rod 305; Piston 306; Connecting plate 307;
[0029] Lock tooth frame 401; Guide sliding plate 402; Spring II 403; Control ring 404; Sliding hole 405;
[0030] Rotating cover plate 501; Flared tube 502; Concentrating tube 503; Adjusting shaft 504. Detailed implementation method
[0031] As Figures 1-7 shown:
[0032] A method for preparing foam body wash, which uses a preparation device, including a preparation barrel with an addition hole 107 at one end, a sliding ring 302 sliding inside the preparation barrel, a central plate 301 rotating in the center of the sliding ring 302, and a stirring mechanism connected to the end of the preparation barrel far from the addition hole 107. The stirring mechanism penetrates the central plate 301. The specific method for preparing foam body wash using this device is as follows:
[0033] S1. Add the preparation raw materials into the preparation barrel through the addition hole 107 in sequence;
[0034] S2. Due to the gravity of the preparation raw materials themselves, press the sliding ring 302 to slide down inside the preparation barrel, so that the raw materials fill the space inside the preparation barrel above the sliding ring 302. After all the preparation raw materials are added into the preparation barrel, block the addition hole 107 to block the raw materials in the space;
[0035] S3. Start the stirring mechanism to stir the raw materials. After stirring evenly and aging, foam body wash is obtained.
[0036] Furthermore:
[0037] The preparation barrel includes an outer tube 103, a blocking plate 105, a cross plate 106 and an addition hole 107. A sliding ring 302 slides inside the outer tube 103. The blocking plate 105 is fixed at one end of the outer tube 103. The addition hole 107 is arranged eccentrically on the blocking plate 105. The cross plate 106 is fixed at the other end of the outer tube 103. The stirring mechanism is connected to the cross plate 106.
[0038] Initially, the upper end surfaces of the sliding ring 302 and the central plate 301 are in the same plane and both are close to the blocking plate 105, so that the blocking plate 105, in cooperation with the sliding ring 302 and the central plate 301, forms a bearing space with the outer tube 103. Add the raw materials into the bearing space through the addition hole 107. As the raw materials gradually increase in the bearing space, the gravity of the raw materials will press the sliding ring 302 and the central plate 301 to slide inside the outer tube 103, so that the bearing space between the sliding ring 302 and the central plate 301 and the blocking plate 105 changes adaptively and matches the volume of the raw materials to be added. After all the raw materials are added into the bearing space, then block the addition hole 107, and then start the stirring mechanism to stir the raw materials in the bearing space to make the raw materials evenly mixed. After aging and defoaming, foam body wash is obtained;
[0039] By making the volume of the raw material the same as the volume of the enclosed loading space, the contact between the raw material and air can be effectively avoided, thereby efficiently avoiding the generation of bubbles during stirring of the raw material, reducing the aging time, and improving the preparation efficiency.
[0040] Further, as Figures 8-9 shown:
[0041] The stirring mechanism includes a rotating ring 201 and stirring plates 202. The rotating ring 201 rotates at the center of the cross plate 106, and a plurality of stirring plates 202 are fixed on the rotating ring 201. A plurality of stirring plates 202 penetrate and slide through the center plate 301.
[0042] A first motor is installed on the cross plate 106. The first motor drives the rotating ring 201, so that the rotating ring 201 drives a plurality of stirring plates 202 to rotate. A plurality of stirring plates 202 simultaneously drive the center plate 301 to rotate within the sliding ring 302, forming stirring of the raw material in the loading space;
[0043] Among them, a plurality of stirring plates 202 are all in contact with the plug plate 105, thereby ensuring that a plurality of stirring plates 202 penetrate the entire loading space to form stirring of the raw material; and the through holes on the center plate 301 are blocked by a plurality of stirring plates 202.
[0044] Further:
[0045] A plurality of limit posts 203 are all fixed on the rotating ring 201. A plurality of spring I 204 are respectively sleeved on a plurality of limit posts 203. The two ends of a plurality of spring I 204 respectively abut against the rotating ring 201 and the center plate 301.
[0046] A plurality of limit posts 203 will also rotate with the rotating ring 201 to form stirring of the raw material. And through the setting of the spring I 204, the elastic force of the spring I 204 pushes the center plate 301 to slide towards the plug plate 105;
[0047] Through the setting of the spring I 204, initially, the raw material can be directly added into the outer tube 103 through the adding hole 107. As the raw material increases, it forms extrusion on the spring I 204, so that the loading space between the sliding ring 302 and the center plate 301 and the plug plate 105 changes adaptively to match the volume of the raw material to be added, that is, the weight of the raw material increases adaptively to match the elastic force of the spring I 204, thereby forming an automatic adaptation of the loading space to the volume of the added raw material.
[0048] As Figures 10-14 shown:
[0049] A plurality of racks 304 are all fixed on the sliding ring 302. The plurality of racks 304 all penetrate and slide through the cross plate 106. A plurality of locking tooth frames 401 all slide on the cross plate 106. A spring II 403 is arranged between each of the plurality of locking tooth frames 401 and the cross plate 106, so that the plurality of locking tooth frames 401 are respectively inserted into the tooth grooves of the plurality of racks 304. The control mechanism is connected to the cross plate 106 and is used to simultaneously control the plurality of locking tooth frames 401 to move away from the plurality of racks 304.
[0050] When adding raw materials, the control mechanism simultaneously controls the plurality of locking tooth frames 401 to move away from the plurality of racks 304, so that the sliding ring 302 and the central plate 301 slide in the outer tube 103, and at the same time drive the plurality of racks 304 to penetrate and slide through the cross plate 106, so as to ensure that the bearing space automatically adapts to the volume of the added raw materials.
[0051] However, when the density of the added raw materials changes, that is, when the weight of the same volume of raw materials cannot adapt to the elastic force of the spring II 403, resulting in the volume of the bearing space being smaller than the volume of the raw materials, that is, the raw materials cannot be added to the bearing space, or the volume of the bearing space is much larger than the volume of the raw materials, that is, after the raw materials are added to the bearing space, there is a large gap between the raw materials and the blocking plate 105, thus storing more air. By controlling the rack 304, the sliding ring 302 and the central plate 301 slide in the outer tube 103 to form an adjustment of the bearing space. Then, after the bearing space adapts to the volume of the raw materials, the control mechanism releases the control of the plurality of locking tooth frames 401, so that the plurality of locking tooth frames 401 are all inserted into the corresponding tooth grooves of the plurality of racks 304 to form a fixation of the rack 304, thereby achieving the fixation of the bearing space and ensuring the adaptation of the bearing space to the volume of the raw materials.
[0052] Furthermore:
[0053] The control mechanism includes a guide slide plate 402, a control ring 404 and a sliding hole 405. A plurality of sliding holes 405 are arranged on the control ring 404. A plurality of guide slide plates 402 are respectively fixed on the locking tooth frames 401. The plurality of guide slide plates 402 respectively slide in the plurality of sliding holes 405. The first telescopic rod is installed between the control ring 404 and the cross plate 106.
[0054] The first telescopic rod is an electric telescopic rod. By controlling the contraction of the first telescopic rod, the control ring 404 is driven to approach the cross plate 106, thereby driving the plurality of sliding holes 405 and simultaneously sliding on the plurality of guide slide plates 402 to form an extrusion of the guide slide plates 402, so that the plurality of guide slide plates 402 drive the plurality of locking tooth frames 401 to approach the first telescopic rod against the elastic force of the spring II 403, and then the plurality of locking tooth frames 401 move away from the rack 304.
[0055] When locking is required, the first telescopic rod is controlled to extend, driving the control ring 404 away from the cross plate 106, so that the multiple sliding holes 405 stop squeezing the multiple guide slides 402, so that the elastic force of the spring II 403 automatically pushes the lock tooth frame 401 to insert into the corresponding tooth groove of the rack 304, completes the locking of the rack 304, and then completes the locking of the bearing space.
[0056] Further:
[0057] Multiple air pipes 303 are fixed on the sliding ring 302, multiple pistons 306 slide in the multiple air pipes 303 respectively, the connecting plate 307 is fixed on the multiple pistons 306, the second telescopic rod 305 is installed between the connecting plate 307 and the center plate 301, and the second telescopic rod 305 passes through the rotating ring 201.
[0058] The second telescopic rod 305 is an electric telescopic rod. By controlling the extension of the second telescopic rod 305, the connecting plate 307 can be pushed away from the central plate 301, thereby driving the multiple pistons 306 to move away from the bearing space in the air pipe 303, thereby increasing the volume of the bearing space, thereby reducing the air pressure in the blocked bearing space, so that the bubbles generated by stirring are quickly broken, achieving the purpose of defoaming, and further improving the preparation efficiency;
[0059] In the initial stage, the piston 306 blocks the connection between the air pipe 303 and the bearing space, and the outer end surface of the piston 306 and the outer end surface of the sliding ring 302 are located in the same plane.
[0060] like Figures 4-5 As shown:
[0061] Two support shafts 104 are symmetrically fixed on the outside of the outer tube 103 , the leg frame 101 rotates on the two support shafts 104 to support the outer tube 103 , and the worm 102 rotates on the leg frame 101 and is meshed and transmission-connected with one of the support shafts 104 .
[0062] The support of the two support shafts 104 by the leg frame 101 forms support for the outer tube 103, and the outer tube 103 is locked by the self-locking function of the meshing of the worm wheel on one of the support shafts 104 and the worm 102. When adding raw materials, the end of the adding hole 107 faces upward; when discharging raw materials, the worm 102 is rotated, and the transmission support shaft 104 drives the outer tube 103 to rotate, so that the end of the adding hole 107 faces downward, thereby discharging the shower gel;
[0063] Moreover, by rotating the outer tube 103 on the leg frame 101, after adding the raw materials and blocking the adding hole 107, the outer tube 103 can be rotated to a state where the adding hole 107 faces downward. This state does not affect the stirring of the raw materials, and during stirring, the second telescopic rod 305 can be controlled to extend. At this time, there is enough space above the device to allow the connecting plate 307 to rise. As the piston 306 slides in the air pipe 303, the air pressure in the bearing space is reduced to avoid the generation of bubbles, and the raw materials will not enter the air pipe 303 to affect the stirring effect.
[0064] When the shower gel is discharged, the control mechanism releases the lock on the rack 304, so that the carrying space is reduced as the shower gel decreases, avoiding air from entering the carrying space and causing bubbles to be generated when the shower gel is discharged, thereby affecting the discharge efficiency. The rack 304 can also be pushed downward to squeeze out the shower gel, further improving the discharge efficiency.
[0065] like Figure 15 As shown:
[0066] The rotating cover plate 501 rotates at the center of the blocking plate 105 , the expanding tube 502 is fixed at the eccentric position of the rotating cover plate 501 , the adjusting shaft 504 rotates on the blocking plate 105 , and the adjusting shaft 504 is transmission-connected with the rotating cover plate 501 .
[0067] The rotating cover plate 501 is driven to rotate by rotating the adjusting shaft 504. When the expanded tube 502 is connected with the adding hole 107, raw materials can be added into the carrying space through the expanded tube 502. After the adding is completed, the rotating cover plate 501 is driven to rotate by rotating the adjusting shaft 504 to separate the expanded tube 502 from the adding hole 107, so that the adding hole 107 is blocked by the rotating cover plate 501.
[0068] The expanded tube 502 is provided with a tapered tube away from the rotating cover plate 501 to enlarge the tube opening of the expanded tube 502 for easy addition of raw materials.
[0069] Further:
[0070] A centralizing pipe 503 is fixed on the rotating cover plate 501 .
[0071] Since the opening of the expanded tube 502 is relatively large, it is not convenient to collect the raw materials when they are discharged, so a centralizing tube 503 is provided. When discharging, the adjusting shaft 504 is rotated to drive the rotating cover plate 501 to rotate, so that the centralizing tube 503 is connected with the adding hole 107, so that the raw materials are discharged through the small opening of the centralizing tube 503 for easy collection.
Claims
1. A method for preparing a foam body wash, characterized in that: This method uses a preparation device, which includes a preparation barrel with an addition hole (107) provided at one end, a sliding ring (302) sliding inside the preparation barrel, a central plate (301) rotating at the center of the sliding ring (302), and a stirring mechanism connected to the end of the preparation barrel away from the addition hole (107). The stirring mechanism penetrates the central plate (301). The specific method for preparing the foam body wash using this device is as follows: S1. Add the preparation raw materials into the preparation barrel through the addition hole (107) in sequence; S2. As the raw materials increase, it forms extrusion on the spring I (204), so that the bearing space between the sliding ring (302), the central plate (301) and the plug plate (105) changes to adapt to and match the volume of the raw materials to be added; S3. Start the stirring mechanism to stir the raw materials. After stirring evenly and aging, the foam body wash is obtained; The preparation barrel includes an outer tube (103) with a sliding ring (302) sliding inside, a plug plate (105) fixed at one end of the outer tube (103), an addition hole (107) provided at an eccentric position on the plug plate (105), and a cross plate (106) fixed at the other end of the outer tube (103). The stirring mechanism is connected to the cross plate (106); The stirring mechanism includes a rotating ring (201) rotating at the center of the cross plate (106), and a plurality of stirring plates (202) fixed on the rotating ring (201). The plurality of stirring plates (202) are arranged to penetrate and slide through the central plate (301); A plurality of limit posts (203) are fixed on the rotating ring (201). Spring I (204) is sleeved on each of the plurality of limit posts (203). The two ends of the plurality of springs I (204) respectively abut against the rotating ring (201) and the central plate (301). The plurality of limit posts (203) are arranged to penetrate and slide through the central plate (301).
2. A method for preparing a foam body wash according to claim 1, characterized in that: A plurality of racks (304) are fixed on the sliding ring (302). The plurality of racks (304) all penetrate and slide through the cross plate (106). A plurality of lock tooth frames (401) slide on the cross plate (106). Spring II (403) is provided between each of the plurality of lock tooth frames (401) and the cross plate (106), so that the plurality of lock tooth frames (401) are respectively inserted into the tooth grooves of the plurality of racks (304). A control mechanism is connected to the cross plate (106) for simultaneously controlling the plurality of lock tooth frames (401) to move away from the plurality of racks (304).
3. A method for preparing a foam body wash according to claim 2, characterized in that: The control mechanism includes a control ring (404) provided with a plurality of sliding holes (405), and a plurality of guide sliding plates (402) respectively fixed on the lock tooth frames (401). The plurality of guide sliding plates (402) respectively slide in the plurality of sliding holes (405). A first telescopic rod is installed between the control ring (404) and the cross plate (106).
4. A method for preparing a foam body wash according to claim 1, characterized in that: A plurality of air pipes (303) are fixed on the sliding ring (302). Pistons (306) are slidably arranged in the plurality of air pipes (303). The plurality of pistons (306) are all fixed on a connecting plate (307). A second telescopic rod (305) is installed between the connecting plate (307) and the central plate (301). The second telescopic rod (305) penetrates through the rotating ring (201).
5. A method for preparing a foam body wash according to claim 1, wherein: Two support shafts (104) are symmetrically fixed on the outer side of the outer tube (103). The two support shafts (104) are rotatably arranged on the support leg frame (101). A worm (102) is rotatably arranged on the support leg frame (101). The worm (102) is in meshing transmission connection with one of the support shafts (104).
6. A method for preparing a foam body wash according to claim 5, wherein: A rotating cover plate (501) is rotatably arranged at the center of the blocking plate (105). A flared tube (502) is arranged at the eccentric position of the rotating cover plate (501). An adjusting shaft (504) is rotatably arranged on the blocking plate (105). The adjusting shaft (504) is in transmission connection with the rotating cover plate (501).
7. A method for preparing a foam body wash according to claim 6, wherein: A concentrating tube (503) is fixed on the rotating cover plate (501).
Citation Information
Patent Citations
Vertical stirring equipment with inclination-angle-adjustable stirring tank
CN107899489A
Shower gel stirring and sub-packaging device
CN110902632A