Whitening toothpaste and processing method thereof
Bamboo salt is made by grinding and calcining coarse salt and pearls, and combining other ingredients, the existing whitening toothpaste is solved by high cost and difficulty in achieving long-lasting whitening through natural materials, achieving efficient and safe teeth whitening effects.
Patent Information
- Application Number
- CN202510213748.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2025-05-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When existing whitening toothpastes improve the whitening effect of teeth, they are costly and difficult to achieve long-lasting whitening effect through natural materials.
Bamboo salt is made by grinding natural coarse salt and pearls, combined with flame calcination and re-grinding, and adding glycerin, sodium dodecyl sulfate and mint flavor to form a whitening toothpaste.
It achieves the whitening effect of toothpaste through natural materials, reduces costs, and is gentle and harmless to oral tissue.
Smart Images

Figure CN120038032A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of toothpaste processing, and more specifically to a whitening toothpaste and its processing method. Background Art
[0002] With the increasing emphasis on oral health and aesthetics, whitening toothpaste has gradually become an important product for daily oral care. Pigment deposition on the tooth surface, dental plaque, and exogenous staining are the main reasons for tooth yellowing. Traditional toothpaste mainly removes dental stains through physical friction, but its whitening effect is limited and it is difficult to meet consumers' demands for rapid and long-lasting whitening. Developing a whitening toothpaste that can effectively whiten teeth and is gentle and harmless to oral tissues has become an important research direction in the industry. In the prior art, there have been some attempts to improve the whitening effect and safety by optimizing the formula, adding new whitening ingredients, or using nanotechnology. However, these solutions still have certain limitations, such as high costs and the inability to enhance the whitening effect of toothpaste with natural materials. Summary of the Invention
[0003] To overcome the deficiencies of the prior art, the present invention provides a whitening toothpaste and its processing method, and its beneficial effect is that the whitening effect of the toothpaste can be enhanced by natural coarse salt and pearls.
[0004] The technical solution adopted by the present invention to solve its technical problems is as follows:
[0005] A whitening toothpaste processing device includes a grinding bowl. A disassembly seam is provided on the right part of the grinding bowl, and the disassembly seam forms a disassembly part at the right end of the grinding bowl. Two convex strips are fixed on the disassembly part, and two screw rods are fixed on the grinding bowl. The two screw rods are respectively inserted into the two convex strips, and nuts are threadedly connected to the two screw rods.
[0006] A convex seat is fixed at the lower end of the grinding bowl. The convex seat is hinged to the upper part of the bracket, and the convex seat is driven to rotate by a motor I. A stop head is fixed to the upper part of the bracket, and the stop head blocks the left side of the grinding bowl.
[0007] A whitening toothpaste processing device for processing a whitening toothpaste processing method includes the following steps:
[0008] S1: Grind coarse salt and pearls into powder through the grinding bowl;
[0009] S2: Pour the ground coarse salt and pearls onto the collection tray for collection;
[0010] S3: Put the collected raw materials into a bamboo tube, and then place the bamboo tube on the inclined plate for calcination by flame;
[0011] S4: Grind the calcined bamboo salt again, and then add glycerol, sodium lauryl sulfate, and mint essence to the ground raw materials and stir evenly.
[0012] A whitening toothpaste is prepared by a processing method of a whitening toothpaste. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] The present invention will be further described in detail below with reference to the drawings and specific implementation methods.
[0014] Figure 1 It is a schematic structure of a processing device for a whitening toothpaste Figure 1 ;
[0015] Figure 2 It is a schematic structure of a processing device for a whitening toothpaste Figure 2 ;
[0016] Figure 3 It is a schematic structure of a processing device for a whitening toothpaste Figure 3 ;
[0017] Figure 4 It is a schematic structure of a grinding bowl Figure 1 ;
[0018] Figure 5 It is a schematic structure of a grinding bowl Figure 2 ;
[0019] Figure 6 It is a schematic structure of a grinding head Figure 1 ;
[0020] Figure 7 It is a schematic structure of a grinding head Figure 2 ;
[0021] Figure 8 It is a schematic structure of a bottom plate Figure 1 ;
[0022] Figure 9 It is a schematic structure of a bottom plate Figure 2 ;
[0023] Figure 10 It is a schematic structure of an inclined plate Figure 1 ;
[0024] Figure 11 It is a schematic structure of an inclined plate Figure 2 ;
[0025] In the figure: grinding bowl 101; stop head 102; bracket 103; convex seat 104; disassembly part 105; convex strip 106; screw 107; disassembly seam 108; motor one 109;
[0026] Grinding head 201; Slide base 202; Motor two 203; L-shaped frame 204; V-shaped part 205; Convex rod 206; Square column 207; Motor frame 208; Motor three 209; Vertical strip 210; Flat base 211;
[0027] Base plate 301; Bracket 302; Narrow mouth 303; Stop pin 304; Collection tray 305;
[0028] Inclined plate 401; Slot 402; Pressing rod 403; Tab 404; Pressing seat 405; Bottom box 406; Connecting pipe 407; Empty box 408; Support strip 409. Specific implementation mode
[0029] As Figures 4-5 shown, this example can achieve the effect of facilitating the pouring out of the raw materials after grinding from the grinding bowl 101.
[0030] Since the whitening toothpaste processing device includes a grinding bowl 101, a disassembly seam 108 is provided at the right part of the grinding bowl 101, the disassembly seam 108 forms a disassembly part 105 at the right end of the grinding bowl 101, two convex strips 106 are connected to the disassembly part 105, two screw rods 107 are fixed on the grinding bowl 101, the two screw rods 107 are respectively inserted into the two convex strips 106, nuts are threadedly connected to the two screw rods 107. When the natural coarse salt and pearls are ground in the grinding bowl 101, the two convex strips 106 on the disassembly part 105 can be removed from the two screw rods 107, and then the disassembly part 105 can be removed from the grinding bowl 101 through the disassembly seam 108, thus facilitating the pouring out of the raw materials after grinding from the grinding bowl 101.
[0031] As Figures 4-5 shown, this example can achieve the effect of enabling the grinding bowl 101 to rotate obliquely to the right to pour out the ground raw materials in the grinding bowl 101.
[0032] Since a convex seat 104 is welded to the lower end of the grinding bowl 101, the convex seat 104 is hinged to the upper part of the bracket 103, the convex seat 104 is driven to rotate by a motor one 109, a stop head 102 is welded to the upper part of the bracket 103, the stop head 102 blocks the left side of the grinding bowl 101, and the grinding bowl 101 can rotate on the bracket 103 through the convex seat 104 at the bottom, so that the grinding bowl 101 can rotate obliquely to the right to pour out the ground raw materials in the grinding bowl 101.
[0033] As Figures 4-7 shown, this example can achieve the effect of grinding the coarse salt and pearls.
[0034] Since a grinding head 201 is provided above the grinding bowl 101, the upper side center of the grinding head 201 is connected to the output shaft of the second motor 203 by screws, the second motor 203 is connected to the sliding seat 202 by screws, the sliding seat 202 is slidably connected to the upper part of the L-shaped frame 204 in the left-right direction, the sliding seat 202 is driven to slide by a hydraulic cylinder, the second motor 203 drives the grinding head 201 to rotate at a low speed, and then presses the coarse salt and pearls in the grinding bowl 101 through the grinding head 201, so that the coarse salt and pearls can be ground. The sliding seat 202 can slide left and right on the L-shaped frame 204, so that the grinding head 201 rotates and moves left and right while pressing against the raw materials, and thus the coarse salt and pearls can be effectively ground.
[0035] As Figures 6-7 shown, this example can achieve the effect that the grinding head 201 rotates and moves back and forth while pressing against the raw materials.
[0036] Since the L-shaped frame 204 is vertically slidably connected to the flat seat 211, the L-shaped frame 204 is driven to lift by a hydraulic cylinder, the flat seat 211 is slidably connected to the square column 207 in the front-back direction, vertical strips 210 are welded to both the front and rear ends of the square column 207, compression springs are sleeved on both the front and rear ends of the square column 207, the two compression springs are respectively located on the front and rear sides of the flat seat 211, the flat seat 211 can move back and forth on the square column 207, so as to drive the L-shaped frame 204, the sliding seat 202 and the grinding head 201 to move back and forth, and the two compression springs help the flat seat 211 to return to its original position, so that the grinding head 201 moves back and forth, and thus the grinding head 201 rotates and moves back and forth while pressing against the raw materials, and thus the coarse salt and pearls can be more fully ground.
[0037] As Figures 6-7 shown, this example can achieve the effect of driving the flat seat 211 to move back and forth on the square column 207.
[0038] Since a motor frame 208 is connected to the vertical strip 210 by screws, a third motor 209 is connected to the motor frame 208 by screws, a V-shaped member 205 is connected to the output shaft of the third motor 209 by screws, and a convex rod 206 is fixed to the left side of the flat seat 211, and the V-shaped member 205 can toggle the convex rod 206. The third motor 209 can drive the V-shaped member 205 to swing back and forth, so as to toggle the convex rod 206 to move back and forth, and thus drive the flat seat 211 to move back and forth on the square column 207.
[0039] As Figures 4-9 shown, this example can achieve the effect that the ground raw materials will fall on the collection tray 305 and be collected.
[0040] Since the two vertical strips 210 are both fixed to the left side of the bottom plate 301, a bracket 302 is welded to the middle of the bottom plate 301. Three retaining pins 304 are fixed to the upper part of the bracket 302. A collecting tray 305 is placed on the upper side of the bracket 302. A narrow opening 303 is provided on the right side of the collecting tray 305. The three retaining pins 304 block the outside of the collecting tray 305. The collecting tray 305 is arranged right below the grinding bowl 101. When the grinding bowl 101 is tilted to the right to pour out the ground raw materials, the ground raw materials will fall on the collecting tray 305 and be collected. The bracket 302 supports the collecting tray 305. The multiple retaining pins 304 prevent the collecting tray 305 from detaching from the upper side of the bracket 302. After collection, the raw materials can be poured out after being gathered through the narrow opening 303.
[0041] As Figures 8-11 shown, this example can achieve the effect of calcining the bamboo tube and the coarse salt and pearls inside the bamboo tube by flame.
[0042] Since two support bars 409 are welded to the right end of the bottom plate 301, the upper parts of the two support bars 409 are connected to a bottom box 406 by screws. An inclined plate 401 is welded to the rear side of the bottom box 406. A plurality of strip holes 402 are arranged on the inclined plate 401 from left to right. An empty box 408 is connected between the two support bars 409 by screws. A plurality of spray holes are provided on the empty box 408. A connecting pipe 407 is provided on the front side of the empty box 408. The raw materials collected by the collecting tray 305 can be poured into the bamboo tube. Then, the bamboo tube is placed on the inclined plate 401 and the bottom box 406. Gas is introduced into the connecting pipe 407. After the gas is ejected from the plurality of spray holes on the empty box 408, the gas is ignited. The bamboo tube and the coarse salt and pearls inside the bamboo tube are calcined by the flame, so that the coarse salt and pearls obtain the aroma of bamboo charcoal. Then, the calcined bamboo salt is ground again. Then, glycerol, sodium lauryl sulfate, and mint essence are added to the ground raw materials and stirred evenly to make whitening toothpaste.
[0043] As Figures 10-11 shown, this example can achieve the effect of compacting the coarse salt and pearl powder inside the bamboo tube.
[0044] Since a plurality of tabs 404 are welded to the upper edge of the inclined plate 401, a pressing rod 403 is slidably connected to each tab 404. A pressing seat 405 is welded to the lower end of each pressing rod 403. After the bamboo tube is placed on the inclined plate 401 and the bottom box 406, the pressing rod 403 is driven to slide on the tab 404, and the pressing seat 405 is pressed into the bamboo tube, thereby compacting the coarse salt and pearl powder inside the bamboo tube, which is convenient for calcining the coarse salt and pearl powder by flame.
[0045] A whitening toothpaste processing device for processing a method of processing a whitening toothpaste, comprising the following steps:
[0046] S1: Grinding coarse salt and pearls into powder through the grinding bowl 101;
[0047] S2: Pour the ground coarse salt and pearls onto the collection tray 305 for collection;
[0048] S3: Put the collected raw materials into a bamboo tube, and then place the bamboo tube on the inclined plate 401 for calcination by flame;
[0049] S4: Grind the calcined bamboo salt again, and then add glycerol, sodium dodecyl sulfate, and mint essence to the ground raw materials and stir evenly.
[0050] A whitening toothpaste, which is prepared by the processing method of the whitening toothpaste.
Claims
1. A whitening toothpaste processing device, comprising a grinding bowl (101), characterized in that: The right part of the grinding bowl (101) is provided with a disassembly slot (108), and the disassembly slot (108) forms a disassembly portion (105) at the right end of the grinding bowl (101), and two convex strips (106) are fixed on the disassembly portion (105). The grinding bowl (101) is fixed with two screw rods (107), and the two screw rods (107) are respectively inserted into the two convex strips (106), and nuts are threadedly connected on the two screw rods (107).
2. A whitening toothpaste processing device according to claim 1, characterized in that: A convex seat (104) is fixed at the lower end of the grinding bowl (101), the convex seat (104) is hinged to the upper part of the bracket (103), the convex seat (104) is driven to rotate by a motor (109), and a stopper (102) is fixed at the upper part of the bracket (103), and the stopper (102) blocks the left side of the grinding bowl (101).
3. A whitening toothpaste processing device according to claim 2, characterized in that: A grinding head (201) is arranged above the grinding bowl (101), the upper center of the grinding head (201) is fixed on the output shaft of the second motor (203), the second motor (203) is fixed on the slide seat (202), the slide seat (202) is slidably connected to the upper part of the L-shaped frame (204) in the left-right direction, and the slide seat (202) is driven to slide by a hydraulic cylinder.
4. A whitening toothpaste processing device according to claim 3, characterized in that: The L-shaped frame (204) is vertically slidably connected to the flat seat (211). The L-shaped frame (204) is driven to rise and fall by a hydraulic cylinder. The flat seat (211) is slidably connected to the square column (207) in the front and rear directions. The front and rear ends of the square column (207) are both fixed with vertical bars (210). The front and rear ends of the square column (207) are both sleeved with compression springs. The two compression springs are respectively located on the front and rear sides of the flat seat (211).
5. A whitening toothpaste processing device according to claim 4, characterized in that: A motor frame (208) is fixed on the vertical bar (210), a motor three (209) is fixed on the motor frame (208), a V-shaped piece (205) is fixed on the output shaft of the motor three (209), a convex rod (206) is fixed on the left side of the flat seat (211), and the V-shaped piece (205) can move the convex rod (206).
6. A whitening toothpaste processing device according to claim 5, characterized in that: The two vertical bars (210) are fixed on the left side of the bottom plate (301), a bracket (302) is fixed in the middle of the bottom plate (301), three stop pins (304) are fixed on the upper part of the bracket (302), a collection plate (305) is placed on the upper side of the bracket (302), a narrow opening (303) is provided on the right side of the collection plate (305), the three stop pins (304) block the outer side of the collection plate (305), and the collection plate (305) is arranged at the right side of the grinding bowl (101) and below.
7. A whitening toothpaste processing device according to claim 6, characterized in that: Two support bars (409) are fixed to the right end of the bottom plate (301), a bottom box (406) is fixed to the upper parts of the two support bars (409), an inclined plate (401) is fixed to the rear side of the bottom box (406), a plurality of bar holes (402) are arranged on the inclined plate (401) from left to right, an empty box (408) is fixed between the two support bars (409), a plurality of spray holes are arranged on the empty box (408), and a joint pipe (407) is arranged on the front side of the empty box (408).
8. A whitening toothpaste processing device according to claim 7, characterized in that: A plurality of protruding pieces (404) are fixed on the upper edge of the inclined plate (401), each protruding piece (404) is slidably connected to a pressure rod (403), and a pressure seat (405) is fixed at the lower end of each pressure rod (403).
9. A whitening toothpaste processing device according to claim 8, used for processing a whitening toothpaste processing method, characterized in that: The following steps are involved: S1: Grind the coarse salt and pearls into powder using a grinding bowl (101); S2: Pour the ground coarse salt and pearls onto a collection plate (305) and collect them; S3: putting the collected raw materials into a bamboo tube, and then placing the bamboo tube on an inclined plate (401) to calcine by flame; S4: Grind the calcined bamboo salt again, then add glycerin, sodium lauryl sulfate and mint essence to the ground raw materials and stir evenly.
10. A whitening toothpaste, characterized in that: The whitening toothpaste is prepared by the processing method of whitening toothpaste described in claim (9).