Transverse goat fat soap and preparation method thereof

By using Shaanxi white cashmere goat fat as the main raw material, combined with a specific formula and automated saponification equipment, the problems of mutton fat soap's strong smell and waste of resources are solved, and an environmentally friendly mutton fat soap that is moisturizing, soothing and anti-allergic is prepared, which enhances the added value of mutton fat and the user experience.

CN120607929APending Publication Date: 2025-09-09YULIN DEYI YANGYANG IND & TRADE CO LTD
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Patent Information

Application Number
CN202510739618.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-04
Publication Date
2025-09-09

AI Technical Summary

Technical Problem

Existing mutton fat soap is difficult to be accepted by consumers due to its strong smell, and traditional soap is expensive, resulting in serious waste of mutton fat resources. There is a lack of environmentally friendly soap products with moisturizing, soothing and anti-allergic effects.

Method used

Using Shaanxi white cashmere goat fat as the main raw material, combined with olive oil, coconut oil, soybean oil and sodium hydroxide solution, and adding plant essential oils, horizontal goat fat soap is prepared through saponification reaction at a specific temperature and stirring rate. Special saponification equipment is used for automated production to ensure the retention of nutrients and stable molding.

Benefits of technology

The sheep fat soap is prepared to be moisturizing, soothing and anti-allergic, which is environmentally friendly and easy to degrade, thereby increasing the added value of the sheep fat product, reducing resource waste and meeting consumer demand.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a transverse goat fat soap and a preparation method thereof. The transverse goat fat soap is prepared from the following raw materials in parts by weight: 60-62 parts of mutton fat, 5-6 parts of olive oil, 5-6 parts of coconut oil, 20-22 parts of non-transgenic soybean oil and 10-13 parts of a sodium hydroxide solution with the concentration of 30-35%. The perfumed soap has the beneficial effects that the perfumed soap overcomes the problem that mutton fat is difficult to apply to perfumed soap preparation, and has the effects of moistening, moisturizing, relieving, resisting allergy, nourishing, repairing and having strong detergency.
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Description

Technical Field

[0001] The invention relates to the technical field of mutton fat soap processing, in particular to a transverse mutton fat soap and a preparation method thereof. Background Art

[0002] As a skin cleanser, soap removes surface dirt, maintains cleanliness, and maintains skin health and beauty, invigorating the skin's physiological functions. Unlike laundry soap, soap is generally used for human skin, such as washing hands, face, and bathing. As people's living standards improve, they demand not only cleansing properties but also new functions such as antiseptic, beauty, and moisturizing.

[0003] Shaanxi White Cashmere goats are one of my country's three major brands of coarse wool and are a typical meat-producing breed. Their meat is tender, delicate, and nutritious, making them a favorite among consumers. However, as a meat-producing breed, the body weight of these goats is around 4kg, with some even exceeding 5kg. However, compared to mutton, mutton fat is relatively inexpensive, and often used as scraps, resulting in significant resource waste. Therefore, developing other products using goat fat not only increases its added value but also effectively utilizes this resource, preventing waste.

[0004] The fat of Shaanxi white-wool goats is rich in oleic acid, palmitic acid, myristic acid, and stearic acid. Stearic acid is not only a softener but also serves as a surfactant and stabilizer. It promotes emulsification between ingredients, facilitating their fusion. During foaming, it controls surface tension, creating a fine bubble network and enhancing system stability. Oleic and palmitic acids form a protective film on the surface of the body, acting similarly to natural skin, preventing water loss and providing a moisturizing effect. Myristic acid is commonly used as a cosmetic solvent, moisturizer, and penetrant. It has good absorption and can carry active ingredients in cosmetics into the skin, allowing them to fully exert their effects. Sheep fat is rich in natural glycerin, also known as propylene glycol, which is a colorless and odorless viscous liquid. It is also an essential moisturizing ingredient in cosmetics. Handmade mutton fat soap will not destroy the effective ingredients of glycerin during the production process, but will retain it to the maximum extent. While cleaning dirt, it forms a layer of protective film for the skin, achieving good protection for the skin. At the same time, mutton fat handmade soap is more environmentally friendly than synthetic detergents. It will be decomposed into carbon dioxide and water after about 24 hours of contact with water, so it will not pollute the environment.

[0005] The suet of Shaanxi white-haired goats contains numerous antioxidant compounds, such as superoxide dismutase (SOD), vitamin A, and bioactive peptides. These compounds neutralize free radicals, reduce oxidative stress, protect the skin from environmental pollution and UV damage, and slow the aging process. Suet is also rich in vitamins (ABDE) and minerals (such as calcium, magnesium, and zinc), which have anti-inflammatory and soothing properties, helping to reduce redness, swelling, and itching in skin affected by environmental allergies.

[0006] Due to technical processes and raw material selection, mutton fat itself has a unique smell, which makes mutton fat soap not accepted by most consumers. The existing mutton fat soap is difficult to use, and the soaps using vegetable oils and synthetic surfactants are relatively expensive. Therefore, better raw material equipment and production processes are needed to meet people's needs.

[0007] Soap, as a cleaning product, has a history of over 3,000 years. With the continuous advancement of science and technology, soap-making techniques have also significantly improved. During the handmade soap production process, most manufacturers add salt to separate the soap solution from the lye solution, thereby forming a pure soap base. Compared to ordinary soap, lanolin soap offers the following advantages. First, it is more environmentally friendly. Once lanolin soap reaches rivers, lakes, and oceans, it poses no threat to marine life or environmental pollution, as lanolin easily decomposes upon contact with water. Second, it is more moisturizing, as lanolin contains a large amount of glycerin, a key ingredient in cosmetics that moisturizes and nourishes the skin.

[0008] Sheep fat is the main ingredient for making sheep fat soap. It can be used as edible fat and is also used as a raw material for cosmetics. In particular, the production and development of sheep fat handmade soap has become popular in recent years. Good raw materials for soap making include: Sheep fat contains a large amount of oleic acid, stearic acid, palmitic acid, etc., which are all in. Therefore, the research and establishment of the technology and process for producing sheep fat soap with sheep fat as the main raw material can greatly increase the added value of sheep fat products, reduce the waste of resources, and thus enable the rapid and stable sustainable development of the breeding industry.

[0009] Goat fat contains a large amount of saturated fatty acids, such as palmitic acid, stearic acid, and oleic acid, which provide the foundation for the production of high-quality mutton fat soap. Furthermore, mutton fat soap made from mutton fat is rich in glycerin, which gives it excellent natural moisturizing properties. During the production of handmade mutton fat soap, the beneficial ingredients in the mutton fat are not destroyed but preserved to the greatest extent possible. After removing skin dirt, it also forms a special protective film, forming a protective barrier on the skin's surface. Compared to ordinary detergents, mutton fat soap is more environmentally friendly. If it comes into direct contact with water after 24 hours, it will turn into liquid water and carbon dioxide, with negligible impact on the environment. Therefore, the soap-making process of handmade mutton fat soap greatly protects the nutrients in the mutton fat, making the soap moisturizing, anti-allergic, environmentally friendly, and easily degradable.

[0010] Currently, no effective solutions have been proposed for the problems in related technologies. Summary of the Invention

[0011] In view of the problems in the related art, the present invention proposes a goat fat soap and a preparation method thereof to overcome the above technical problems existing in the existing related art.

[0012] The technical solution of the present invention is achieved as follows:

[0013] According to one aspect of the present invention, there is provided a translucent goat tallow soap.

[0014] This goat fat soap is made from the following raw materials in parts by weight:

[0015] 60-62 parts by weight of mutton fat, 5-6 parts by weight of olive oil, 5-6 parts by weight of coconut oil, 20-22 parts by weight of non-genetically modified soybean oil and 10-13 parts by weight of sodium hydroxide solution with a concentration of 30%-35%.

[0016] Furthermore, the invention further comprises 0.1 to 1 parts by weight of jasmine, lavender, rose or tea tree essential oil extracted from plants.

[0017] Furthermore, the mutton fat is taken from naturally raised 6-month-old Shaanxi white cashmere goats.

[0018] According to another aspect of the present invention, a method for preparing goat tallow soap is provided.

[0019] The preparation of the goat fat soap comprises the following steps:

[0020] S1. Taking the mutton fat and chopped fresh lemon, refining at a temperature of 100° C. to 120° C. until no water vapor escapes;

[0021] S2, naturally cooling the refined mutton fat to 50° C. to 60° C., mixing and blending the mutton fat with the olive oil, coconut oil and soybean oil to form a composite fat, and maintaining the temperature of the composite fat at 50° C. to 55° C.;

[0022] S3. Add the sodium hydroxide solution to the composite grease in the saponification device for saponification reaction, and stir rapidly at a rate of 160-360 rpm until the saponification reaction is completed. Pour the mixture that reaches a certain viscosity into a mold, and keep it warm at 40° C. to 50° C. for 24 to 48 hours. Then, take it out from the mold and trim it into a solidified lanolin soap product.

[0023] Furthermore, a water bath heating method is used to maintain the temperature of the composite grease at 50° C. to 55° C.

[0024] Furthermore, in step S3, the composite oil and the sodium hydroxide solution are mixed and rapidly stirred at a rate of 160 to 360 rpm for saponification reaction, and then the essential oil is added and rapidly stirred at a rate of 160 to 360 rpm until the composite oil is in a thread-like state and the saponification reaction is completed.

[0025] Furthermore, the saponification reaction time is 10 to 20 minutes or 30 to 50 minutes.

[0026] Furthermore, the saponification device includes a stirring bin, a processing bin and a collecting bin, which are arranged in sequence from top to bottom. A bin plate is provided at the top opening of the stirring bin, and a stirring motor is installed on the bin plate. The bottom output end of the stirring motor passes through the bottom of the bin plate and is connected to the agitator. The agitator passes through the interior of the stirring bin, and the bottom of the stirring bin passes through the interior of the processing bin. The bottom of the stirring bin is connected to an electric slide rail, and an electric slider is provided on the electric slide rail. A feed pump and an electric push rod 1 are connected to the side of the electric slider. The input end of the feed pump is connected to the interior of the stirring bin through a hose, and the output end of the feed pump passes through the bottom of the electric slider and is connected to the feed head. The top of the feed head is connected to the bottom telescopic end of the electric push rod 1, and an injection molding mechanism is provided in the collecting bin.

[0027] Furthermore, the injection molding mechanism includes a rotating shaft rotating at the center of the bottom of the collection bin, the bottom end of the rotating shaft is connected to the output end of the driving motor installed at the bottom of the collection bin, the top end of the rotating shaft is connected and fixed to the material tray, a plurality of groups of mounting holes are evenly opened on the material tray, a plurality of movable plates matching the mounting holes are installed at the bottom of the material tray, the movable plate is rotatably connected to the bottom of the material tray, a plurality of connecting plates matching the mounting holes are installed on one side of the outer surface of the movable plate, a mold box is installed on the top of the connecting plate, the bottom of the material tray and located on the movable plate The side of the material stripping and resetting assembly is provided, and the material stripping and resetting assembly includes a fixed frame installed at the bottom of the material tray, the fixed frame is an L-shaped structure, and a movable space is provided at the bending part of the fixed frame. The side of the fixed frame is provided with an impact block that cooperates with the movable plate. The material stripping and resetting assembly also includes a sliding plate 2 located in the movable space, the top of the sliding plate 2 is slidably connected to the bottom of the material tray, the middle part of one side of the sliding plate 2 is connected to the side output end of the electric push rod 2 installed on the fixed frame, and the other side of the sliding plate 2 is installed with a reset block that cooperates with the movable plate.

[0028] Furthermore, the mold box includes a lower mold and an upper mold, the lower mold and the upper mold are fixed together by magnetic attraction, a connecting rope is connected between the sides of the upper mold and the lower mold, the lower mold is fixed to the movable plate, a pouring hole is provided on the upper mold, the top of the pouring hole is connected to a pouring tube, a leak-proof plug is installed at the top opening of the pouring tube, a plurality of groups of through-holes matching the pouring tube are provided at the bottom of the processing chamber, the feeding head passes through the through-holes into the pouring tube, a movable groove is provided in the inner wall of the upper mold, a notch is provided on the top of the movable groove that passes through the outer surface of the upper mold, the side opening of the movable groove is connected to the sealing groove in the pouring hole, a sliding plate 1 is slidably connected to the inside of the movable groove, a sealing plate is connected to one side of the sliding plate 1, and the sealing plate is connected to the sealing plate The groove is adapted, and a spring is connected between the other side of the sliding plate and the inner wall of the movable groove, and a connecting block is fixed on the top of the sliding plate, and the top of the connecting block passes through the notch to the outside of the upper mold and is connected and fixed to the cover plate, and the lengths of both sides of the cover plate are adapted to the notch, and an extrusion block is fixed on the top of the cover plate, and several groups of arc blocks adapted to the extrusion blocks are fixed on the inner top of the collecting bin, and the arc blocks are located on the sides of the perforation, and the leak-proof plug includes a connecting ring and several leak-proof blocks, and the connecting ring is fixed on the inner wall of the perfusion tube, and several leak-proof blocks are evenly distributed inside the connecting ring, and two adjacent leak-proof blocks are squeezed together, and several buffer columns are evenly provided at the bottom of the collecting bin, and the buffer columns, the inner wall of the collecting bin and the outer surface of the rotating shaft are all provided with flexible cushions.

[0029] The beneficial effects of the present invention are:

[0030] The soap of the present invention overcomes the problem that mutton fat is difficult to be used in soap preparation, and has the effects of moisturizing, soothing, anti-allergic, nourishing and repairing, and strong detergency.

[0031] The saponification device of the present invention can drive the feed head to move horizontally and linearly through the design of an electric slide rail, an electric slider, a feed pump, an electric push rod and a feed head, so that the feed head can be matched with several perforations in sequence in the horizontal direction. After the matching is completed, the electric push rod pushes the feed head down, so that the feed head is inserted into the collection bin through the perforation and then inserted into the filling tube on the mold box for injection.

[0032] The saponification device of the present invention is designed with an injection molding mechanism so that the driving motor can drive the rotating shaft to rotate, and the rotating shaft drives the material tray to rotate, so that several groups of mold boxes on the top of the material tray can be rotated in sequence to the bottom of the perforation to perform the injection work.

[0033] The saponification device of the present invention is designed with a stripping and resetting assembly. When the soap in the mold box is cooled and formed at a constant temperature, it is necessary to strip the soap. At this time, the sliding plate 2 is pulled into the movable space on the fixed frame by the contraction of the electric push rod 2. The sliding plate 2 drives the resetting block to move synchronously horizontally, so that the top of the resetting block gradually disengages from the bottom of the movable plate. At the moment of separation, the movable plate loses its bottom support and, under the action of gravity, drives several mold boxes on the top to rotate downward. The movable plate collides with several impact blocks on the side of the fixed frame. The impact force generated by the collision is transmitted to the mold box. The lower mold and the movable plate are connected together to form an integral structure, and the upper mold and the lower mold are only weakly fixed by magnetism. Under the action of this impact force, the upper mold and the lower mold will separate. At the same time, the soap located between the two will fall and then fall into the collection bin, thereby completing the stripping operation. If one collision cannot achieve complete stripping, the electric push rod 2 can push the resetting block to move horizontally back and forth to achieve multiple collisions between the movable plate and the impact blocks to complete the stripping operation.

[0034] The saponification device of the present invention adopts a split mold box design, so that when in use, the thin upper mold and lower mold can be adsorbed and fixed into an integral mold by magnetic attraction. When demoulding is required, the magnetic attraction force can be broken by the impact force of the collision, so that the upper mold and the lower mold can be separated, and the soap inside can be impacted out at the same time.

[0035] The saponification device of the present invention is designed with a connecting rope so that when the upper mold and the lower mold are separated, the upper mold will not separate from the lower mold.

[0036] The saponification device of the present invention is designed with a mold box, so that when the material tray rotates with the mold box to the bottom of the insertion hole, the extrusion block on the top of the mold box and located on the side of the perfusion tube will be squeezed together with the arc block fixed on the side of the bottom of the perforation, so that when the perfusion tube rotates to align with the perforation, the extrusion block is also synchronously squeezed and contacted with the arc block. Under the extrusion of the arc block, the extrusion block will drive the cover plate, the connecting block, the sliding plate and the blocking plate to move synchronously, thereby releasing the isolation and blockage of the perfusion tube, facilitating the feeding head to perform the injection work. After the injection is completed, the mold box group rotates away. At this time, without the extrusion of the arc block, the blocking plate is reset and moved under the action of the spring to block the perfusion hole again.

[0037] The saponification device of the present invention is designed with a leak-proof plug, so that when the feeding head is inserted into the perfusion pipe, the stable perfusion work can be ensured, and at the same time, foreign objects can be prevented from entering the perfusion pipe when no perfusion is being performed.

[0038] The saponification device of the present invention is designed with a flexible cushion layer and a buffer column, so that the soap dropped into the collection bin is flexibly buffered, thereby avoiding structural damage due to collision. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0040] Figure 1 This is a flow chart of a method for preparing goat fat soap according to an embodiment of the present invention;

[0041] Figure 2 This is a schematic structural diagram of a saponification device in a method for preparing goat fat soap according to an embodiment of the present invention;

[0042] Figure 3 This is a schematic structural diagram of a stirring chamber of a saponification device in a method for preparing goat fat soap according to an embodiment of the present invention;

[0043] Figure 4 This is a schematic structural diagram of a collecting bin of a saponification device in a method for preparing goat fat soap according to an embodiment of the present invention;

[0044] Figure 5 This is a schematic diagram of the partial internal structure of a collecting bin of a saponification device in a method for preparing goat fat soap according to an embodiment of the present invention;

[0045] Figure 62. This is a schematic diagram of the structure of a material tray of a saponification device in a method for preparing goat fat soap according to an embodiment of the present invention;

[0046] Figure 7 This is a schematic diagram of the structure of the material removal and reset component of the saponification device in a method for preparing goat fat soap according to an embodiment of the present invention. Figure 1 ;

[0047] Figure 8 This is a schematic diagram of the structure of the material removal and reset component of the saponification device in a method for preparing goat fat soap according to an embodiment of the present invention. Figure 2 ;

[0048] Figure 9 2. It is a schematic structural diagram of a mold box of a saponification device in a method for preparing goat fat soap according to an embodiment of the present invention;

[0049] Figure 10 This is a schematic diagram of the partial structure of the mold box of the saponification device in the method for preparing goat fat soap according to an embodiment of the present invention. Figure 1 ;

[0050] Figure 11 This is a schematic diagram of the partial structure of the mold box of the saponification device in the method for preparing goat fat soap according to an embodiment of the present invention. Figure 2 ;

[0051] Figure 12 This is a schematic diagram of the partial structure of the mold box of the saponification device in the method for preparing goat fat soap according to an embodiment of the present invention. Figure 3 .

[0052] In the figure, 1, mixing chamber; 2, processing chamber; 3, collecting chamber; 4, chamber plate; 5, mixing motor; 6, agitator; 7, electric slide rail; 8, electric slide block; 9, feeding pump; 10, electric push rod 1; 11, feeding head; 12, flexible cushion; 13, buffer column; 14, rotating shaft; 15, feeding tray; 16, mounting hole; 17, movable plate; 18, connecting plate; 19, mold box; 20, lower mold; 2 1. Upper mold; 22. Connecting rope; 23. Infusion tube; 24. Anti-leakage plug; 25. Connecting ring; 26. Anti-leakage block; 27. Infusion hole; 28. Sealing groove; 29. ​​Movable groove; 30. Notch; 31. Sliding plate 1; 32. Sealing plate; 33. Connecting block; 34. Cover plate; 35. Extrusion block; 36. Arc block; 37. Fixed frame; 38. Impact block; 39. Sliding plate 2; 40. Reset block. DETAILED DESCRIPTION

[0053] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention are within the scope of protection of the present invention.

[0054] According to an embodiment of the present invention, a translucent goat tallow soap is provided.

[0055] According to the embodiment of the present invention, the goat fat soap is made from the following raw materials in parts by weight:

[0056] 60-62 parts by weight of mutton fat, 5-6 parts by weight of olive oil, 5-6 parts by weight of coconut oil, 20-22 parts by weight of non-genetically modified soybean oil, and 10-13 parts by weight of a 30%-35% sodium hydroxide solution;

[0057] It also includes 0.1 to 1 parts by weight of plant-extracted jasmine, lavender, rose or tea tree essential oil;

[0058] The mutton fat is obtained from naturally raised 6-month-old Shaanxi white cashmere goats.

[0059] In order to facilitate understanding of the above technical solution of the present invention, the process of the above solution of the present invention is described in detail below with reference to the accompanying drawings, as follows:

[0060] According to an embodiment of the present invention, a method for preparing goat tallow soap is also provided.

[0061] like Figure 1 As shown, in the actual production process, the preparation of the goat fat soap includes the following steps:

[0062] S1. Taking the mutton fat and chopped fresh lemon, refining at a temperature of 100° C. to 120° C. until no water vapor escapes;

[0063] S2, naturally cooling the refined mutton fat to 50° C. to 60° C., mixing and blending the mutton fat with the olive oil, coconut oil and soybean oil to form a composite fat, and maintaining the temperature of the composite fat at 50° C. to 55° C.;

[0064] S3. Add the sodium hydroxide solution to the composite grease in the saponification device for saponification reaction, and stir rapidly at a rate of 160-360 rpm until the saponification reaction is completed. Pour the mixture that reaches a certain viscosity into a mold, and keep it warm at 40° C. to 50° C. for 24 to 48 hours. Then, take it out from the mold and trim it into a solidified lanolin soap product.

[0065] Among them, the mutton fat and fresh lemon are chopped, and citric acid can be used to remove the mutton fat smell, and the weight ratio of mutton fat to lemon can be 10:1 to 5:1; the extraction in step S1 can use a steam-layered kettle, which is suitable for medium and low temperature oil extraction at 100°C to 120°C, and is particularly suitable for mutton fat extraction that needs to retain the activity of natural ingredients, such as avoiding high temperature destruction of vitamins, bioactive peptides, etc.

[0066] In one embodiment, a water bath heating method is used to maintain the temperature of the compound grease at 50° C. to 55° C.

[0067] In one embodiment, in step S3, the compound oil and the sodium hydroxide solution are mixed and rapidly stirred at a rate of 160 to 360 rpm for a saponification reaction for 10 to 20 minutes, and then the essential oil is added, and the rapid stirring at a rate of 160 to 360 rpm is continued until the compound oil is in a wire-like state and the saponification reaction is completed; or, the compound oil and the sodium hydroxide solution are mixed and rapidly stirred at a rate of 160 to 360 rpm for a saponification reaction for 30 to 50 minutes, and then the essential oil is added, and the rapid stirring at a rate of 160 to 360 rpm is continued until the compound oil is in a wire-like state and the saponification reaction is completed.

[0068] In one embodiment, Figure 2-Figure 12As shown, the saponification device includes a stirring chamber 1, a processing chamber 2 and a collecting chamber 3. The stirring chamber 1, the processing chamber 2 and the collecting chamber 3 are arranged in sequence from top to bottom. A chamber plate 4 is provided at the top opening of the stirring chamber 1. A stirring motor 5 is installed on the chamber plate 4. The bottom output end of the stirring motor 5 passes through the bottom of the chamber plate 4 and is connected to the stirrer 6. The stirrer 6 passes through the inside of the stirring chamber 1. The bottom of the stirring chamber 1 passes through the inside of the processing chamber 2. The bottom of the stirring chamber 1 is connected to an electric slide rail 7, and the electric slide rail 7 is provided with an electric Slider 8, the side of the electric slider 8 is connected with a feed pump 9 and an electric push rod 10, the input end of the feed pump 9 is communicated with the inside of the mixing bin 1 through a hose, the output end of the feed pump 9 passes through the bottom of the electric slider 8 and is communicated with a feed head 11, the top of the feed head 11 is connected to the bottom telescopic end of the electric push rod 10, through the design of the electric slide 7, electric slider 8, feed pump 9, electric push rod 10 and feed head 11, the feed head 11 can be driven to move horizontally in a straight line, so that the feed head can be in turn with several penetrations in the horizontal direction. The holes match each other. After the matching is completed, the electric push rod 10 pushes the feeding head 11 down, so that the feeding head 11 is inserted into the collecting bin 3 through the perforation, and inserted into the perfusion tube 23 on the mold box 19 to perform the injection work; an injection molding mechanism is provided in the collecting bin 3, and the injection molding mechanism includes a rotating shaft 14 rotating at the bottom center of the collecting bin 3, the bottom end of the rotating shaft 14 is connected to the output end of the driving motor installed at the bottom of the collecting bin 3, and the top end of the rotating shaft 14 is connected and fixed to the material tray 15, and a plurality of groups of mounting holes 16 are evenly opened on the material tray 15. The bottom of the tray 15 is equipped with several movable plates 17 that match the mounting holes 16. The movable plates 17 are rotatably connected to the bottom of the tray 15. One side of the outer surface of the movable plate 17 is equipped with several connecting plates 18 that match the mounting holes 16. The top of the connecting plate 18 is equipped with a mold box 19. Through the design of the injection molding mechanism, the rotating shaft 14 can be driven by the driving motor to rotate, and the rotating shaft 14 drives the tray 15 to rotate, so that the several groups of mold boxes 19 on the top of the tray 15 can be rotated in sequence to the bottom of the perforation to perform the injection work;The bottom of the material tray 15 and the side of the movable plate 17 are provided with a stripping reset component, and the stripping reset component includes a fixed frame 37 installed at the bottom of the material tray 15, and the fixed frame 37 is an L-shaped structure. The bending part of the fixed frame 37 is provided with a movable space, and the side of the fixed frame 37 is provided with a collision block 38 that cooperates with the movable plate 17. The stripping reset component also includes a sliding plate 2 39 located in the movable space, and the top of the sliding plate 2 39 is slidably connected to the bottom of the material tray 15, and the middle part of one side of the sliding plate 2 39 is connected to the side output end of the electric push rod 2 installed on the fixed frame 37. The other side of the second slide 39 is provided with a reset block 40 which cooperates with the movable plate 17. Through the design of the stripping reset assembly, when the soap in the mold box 19 is cooled and formed at a constant temperature, the soap needs to be shelled. At this time, the second slide plate 39 is pulled into the movable space on the fixed frame 37 by the contraction of the electric push rod 2, and the second slide plate 39 drives the reset block 40 to move horizontally synchronously, so that the top of the reset block 40 gradually disengages from the bottom of the movable plate 17. At the moment of separation, the movable plate 17 has no bottom support and will drive the top mold boxes 19 to rotate downward under the action of gravity. The movable plate 17 will be on the side of the fixed frame 37. The plurality of impact blocks 38 on the sides collide with each other, and the impact force generated by the collision is transmitted to the mold box 19. The lower mold 20 is connected to the movable plate 17 to form an integrated structure, and the upper mold 21 and the lower mold 20 are only fixed with a weak magnet. Under the action of this impact force, the upper mold 21 and the lower mold 20 will separate. At the same time, the soap located between the two will also fall and then fall into the collection bin 3, thereby realizing the stripping action. If one impact cannot achieve complete stripping, the electric push rod 2 can be used to push the reset block 40 to move back and forth horizontally to realize multiple impacts between the movable plate 17 and the impact block 38 to perform the stripping work; the mold box 19 includes a lower mold 21 and a lower mold 20. The mold 20 and the upper mold 21 are fixed together by magnetic attraction. The mold box 19 is designed to be split so that the thin upper mold 21 and the lower mold 20 can be adsorbed and fixed into a mold as a whole by magnetic attraction during use. When demoulding is required, the magnetic attraction can be broken by the impact force of the collision, so that the upper mold 21 and the lower mold 20 can be separated and the soap inside can be knocked out. A connecting rope 22 is connected between the sides of the upper mold 21 and the lower mold 20. The design of the connecting rope 22 ensures that when the upper mold 21 and the lower mold 20 are separated, the upper mold 21 will not fall off the lower mold 20.The lower mold 20 is fixed on the movable plate 17, and a pouring hole 27 is provided on the upper mold 21. The top of the pouring hole 27 is connected to a pouring pipe 23, and a leak-proof plug 24 is installed at the top opening of the pouring pipe 23. The bottom of the processing chamber 2 is provided with several groups of through holes that match the pouring pipe 23. The feeding head 11 passes through the through holes into the pouring pipe 23. A movable groove 29 is provided in the inner wall of the upper mold 21, and a notch 30 is provided on the top of the movable groove 29 to penetrate the outer surface of the upper mold 21. The side opening of the movable groove 29 is communicated with the blocking groove 28 in the pouring hole 27, and a sliding plate 31 is slidably connected to the inside of the movable groove 29. One side of the sliding plate 31 is connected to A blocking plate 32 is connected, and the blocking plate 32 is adapted to the blocking groove 28. A spring is connected between the other side of the sliding plate 1 31 and the inner wall of the movable groove 29. A connecting block 33 is fixed to the top of the sliding plate 1 31. The top of the connecting block 33 passes through the notch 30 to the outside of the upper mold 21 and is connected and fixed to the cover plate 34. The lengths of both sides of the cover plate 34 are adapted to the notch 30. An extrusion block 35 is fixed to the top of the cover plate 34. Several groups of arc blocks 36 adapted to the extrusion blocks 35 are fixed to the inner top of the collecting bin 3. The arc blocks 36 are located on the side of the perforation. Through the design of the mold box 19, when the material tray 15 rotates to the bottom of the jack with the mold box 19, the mold box The extrusion block 35 at the top of 19 and located on the side of the perfusion tube 23 will be squeezed together with the arc block 36 fixed on the side of the bottom of the perforation, so that when the perfusion tube 23 rotates to align with the perforation, the extrusion block 35 is also synchronously squeezed and contacted with the arc block 36. Under the squeezing of the arc block 36, the extrusion block 35 will drive the cover plate 34, the connecting block 33, the sliding plate 31 and the blocking plate 32 to move synchronously, thereby releasing the isolation and blockage of the perfusion tube 23, making it convenient for the feeding head 11 to perform the injection work. After the injection is completed, the group of mold boxes 19 rotates away. At this time, without the squeezing of the arc block 36, the blocking plate 32 returns to its original position under the action of the spring and blocks the perfusion hole 27 again. The anti-leakage plug 24 includes a connecting ring 25 and a plurality of anti-leakage blocks 26. The connecting ring 25 A connecting ring 25 is fixed to the inner wall of the filling tube 23. Several leak-proof blocks 26 are evenly distributed within the connecting ring 25. Adjacent leak-proof blocks 26 are squeezed together. The leak-proof plug 24 ensures stable filling when the feed head 11 is inserted into the filling tube 23, while also preventing foreign matter from entering the filling tube 23 when not filling. Several buffer columns 13 are evenly distributed at the bottom of the collection bin 3. Flexible cushioning layers 12 are provided on the buffer columns 13, the inner wall of the collection bin 3, and the outer surface of the rotating shaft 14. The design of the flexible cushioning layers 12 and buffer columns 13 ensures that soap that falls into the collection bin 3 is cushioned, preventing structural damage due to collisions.

[0069] During use, the material is introduced into the mixing bin 1 and the stirring motor 5 drives the stirrer 6 to rotate and stir the material. After the stirring is completed, the mixed material is transported to the inside of the feeding head 11 by the feeding pump 9, and the feeding work is performed through the feeding head 11. At the same time, the feeding head 11 is driven by the electric slide rail 7 and the electric slider 8 to move linearly to change its position, so that the feeding head 11 corresponds to several perforations located at the bottom of the processing bin 2. Whenever a perforation is corresponding, the feeding head 11 is pushed down by the electric push rod 10, so that The feeding head 11 is inserted into the collecting bin 3 through the perforation and into the filling tube 23 until the feeding head 11 is submerged under the anti-leakage plug 24. Then, the feeding head 11 starts to inject material. When the injection is completed, the electric push rod 10 contracts and drives the feeding head 11 to reset and rise. Then, the feeding head 11 is driven to move to another perforation to inject material into another mold box 19. When the injection of several mold boxes 19 in the group is completed, the rotating shaft 14 is driven by the driving motor to rotate at a small angle so that the top of the rotating shaft 14 The tray 15 rotates synchronously with the tray 15, thereby driving another set of mold boxes 19 on the top of the tray 15 to rotate to the bottom of the top row of perforations. When the injection of several mold boxes 19 on the top of the tray 15 is completed, the collection bin 3 is subjected to constant temperature molding by an external temperature control device. In the process of the tray 15 driving the mold box 19 to rotate, when the mold box 19 rotates to the bottom of the jack, the extrusion block 35 on the top of the mold box 19 and on the side of the perfusion tube 23 will be squeezed together with the arc block 36 fixed on the side of the bottom of the perforation, thereby When the filling tube 23 rotates to align with the perforation, the extrusion block 35 is also synchronously pressed into contact with the arc block 36. Under the pressure of the arc block 36, the extrusion block 35 drives the cover plate 34, the connecting block 33, the sliding plate 1 31 and the blocking plate 32 to move synchronously, thereby releasing the isolation and blockage of the filling tube 23, facilitating the material feeding head 11 to perform the material injection work. After the material injection is completed, the mold box 19 rotates away. At this time, without the pressure of the arc block 36, the blocking plate 32 returns to its original position under the action of the spring to block the filling hole 27 again.When the soap in the mold box 19 is cooled and formed at a constant temperature, the soap needs to be shelled. At this time, the sliding plate 2 39 is pulled into the movable space on the fixed frame 37 by the contraction of the electric push rod 2. The sliding plate 2 39 drives the reset block 40 to move horizontally synchronously, so that the top of the reset block 40 gradually disengages from the bottom of the movable plate 17. At the moment of separation, the movable plate 17 has no bottom support and will drive the top mold boxes 19 to rotate downward under the action of gravity. The movable plate 17 will collide with several impact blocks 38 on the side of the fixed frame 37. The impact force generated by the collision is transmitted to the mold box 19. The lower mold 20 and the movable plate 17 are connected together to form an integrated structure. The upper mold 21 and the lower mold 20 are only weakly fixed by magnets. Under the action of this impact force, the upper mold 21 and the lower mold 20 will separate. At the same time, the soap located between them will fall and then fall into the collection bin 3, thus completing the material removal operation. If a single collision cannot completely remove the soap, the electric push rod 2 can be used to push the reset block 40 to move back and forth horizontally, so as to achieve multiple collisions between the movable plate 17 and the impact block 38 to complete the material removal operation.

[0070] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A transverse goat tallow soap, characterized in that This goat fat soap is made from the following raw materials in parts by weight: 60-62 parts by weight of mutton fat, 5-6 parts by weight of olive oil, 5-6 parts by weight of coconut oil, 20-22 parts by weight of non-genetically modified soybean oil and 10-13 parts by weight of sodium hydroxide solution with a concentration of 30%-35%.

2. The transverse goat tallow soap according to claim 1, characterized in that The invention also includes 0.1 to 1 parts by weight of jasmine, lavender, rose or tea tree essential oil extracted from plants.

3. The transverse goat fat soap according to claim 2, characterized in that The mutton fat is obtained from naturally raised 6-month-old Shaanxi white cashmere goats.

4. A method for preparing goat tallow soap, characterized in that: The preparation of the goat fat soap according to claim 3 comprises the following steps: S1. Taking the mutton fat and chopped fresh lemon, refining at a temperature of 100° C. to 120° C. until no water vapor escapes; S2, naturally cooling the refined mutton fat to 50° C. to 60° C., mixing and blending the mutton fat with the olive oil, coconut oil and soybean oil to form a composite fat, and maintaining the temperature of the composite fat at 50° C. to 55° C.; S3. Add the sodium hydroxide solution to the composite grease in the saponification device for saponification reaction, and stir rapidly at a rate of 160-360 rpm until the saponification reaction is completed. Pour the mixture that reaches a certain viscosity into a mold, and keep it warm at 40° C. to 50° C. for 24 to 48 hours. Then, take it out from the mold and trim it into a solidified lanolin soap product.

5. The method for preparing goat fat soap according to claim 4, wherein In step S2, a water bath heating method is used to maintain the temperature of the compound grease at 50°C to 55°C.

6. The method for preparing goat fat soap according to claim 5, wherein In step S3, the composite oil and the sodium hydroxide solution are mixed and rapidly stirred at a rate of 160 to 360 rpm for saponification reaction, and then the essential oil is added and rapidly stirred at a rate of 160 to 360 rpm until the composite oil is in a thread-like state and the saponification reaction is completed.

7. The method for preparing goat fat soap according to claim 6, wherein The saponification reaction time is 10 to 20 minutes or 30 to 50 minutes.

8. The method for preparing goat fat soap according to claim 7, wherein The saponification device comprises a stirring chamber (1), a processing chamber (2) and a collecting chamber (3), wherein the stirring chamber (1), the processing chamber (2) and the collecting chamber (3) are arranged in sequence from top to bottom, a chamber plate (4) is provided at the top opening of the stirring chamber (1), a stirring motor (5) is installed on the chamber plate (4), the bottom output end of the stirring motor (5) passes through the bottom of the chamber plate (4) and is connected to the stirrer (6), the stirrer (6) passes through the interior of the stirring chamber (1), and the bottom of the stirring chamber (1) passes through the interior of the processing chamber (2). The bottom of the mixing bin (1) is connected to an electric slide rail (7), an electric slider (8) is provided on the electric slide rail (7), and the side of the electric slider (8) is connected to a feed pump (9) and an electric push rod (10). The input end of the feed pump (9) is connected to the inside of the mixing bin (1) through a hose, and the output end of the feed pump (9) passes through the bottom of the electric slider (8) and is connected to a feed head (11). The top of the feed head (11) is connected to the bottom telescopic end of the electric push rod (10), and an injection molding mechanism is provided in the collecting bin (3).

9. The method for preparing goat fat soap according to claim 8, wherein The injection molding mechanism includes a rotating shaft (14) rotating at the center of the bottom of the collecting bin (3), the bottom end of the rotating shaft (14) is connected to the output end of the driving motor installed at the bottom of the collecting bin (3), the top end of the rotating shaft (14) is connected and fixed to the material tray (15), a plurality of groups of mounting holes (16) are evenly opened on the material tray (15), a plurality of movable plates (17) matching the mounting holes (16) are installed at the bottom of the material tray (15), the movable plate (17) is rotatably connected to the bottom of the material tray (15), a plurality of connecting plates (18) matching the mounting holes (16) are installed on one side of the outer surface of the movable plate (17), a mold box (19) is installed on the top of the connecting plate (18), the bottom of the material tray (15) and located at the movable plate (17) are connected to the bottom of the material tray (15). A stripping reset assembly is provided on the side of the movable plate (17), and the stripping reset assembly includes a fixed frame (37) installed at the bottom of the material tray (15), the fixed frame (37) is an L-shaped structure, and a movable space is provided at the bending part of the fixed frame (37), and a collision block (38) is provided on the side of the fixed frame (37) that cooperates with the movable plate (17). The stripping reset assembly also includes a sliding plate 2 (39) located in the movable space, the top of the sliding plate 2 (39) is slidably connected to the bottom of the material tray (15), the middle part of one side of the sliding plate 2 (39) is connected to the side output end of the electric push rod 2 installed on the fixed frame (37), and the other side of the sliding plate 2 (39) is installed with a reset block (40) that cooperates with the movable plate (17).

10. The method for preparing goat fat soap according to claim 9, wherein The mold box (19) includes a lower mold (20) and an upper mold (21), the lower mold (20) and the upper mold (21) are fixed to each other by magnetic attraction, a connecting rope (22) is connected between the sides of the upper mold (21) and the lower mold (20), the lower mold (20) is fixed on the movable plate (17), a pouring hole (27) is opened on the upper mold (21), a pouring pipe (23) is connected to the top of the pouring hole (27), and a leak-proof plug (24) is installed at the top opening of the pouring pipe (23), and the bottom of the processing chamber (2) is provided with a plurality of groups of The perforation matched with the perforation of the perfusion tube (23), the feeding head (11) passes through the perforation into the perfusion tube (23), a movable groove (29) is provided in the inner wall of the upper mold (21), the top of the movable groove (29) is provided with a notch (30) that passes through the outer surface of the upper mold (21), the side opening of the movable groove (29) is connected to the blocking groove (28) in the perfusion hole (27), the movable groove (29) is internally connected with a sliding plate (31), one side of the sliding plate (31) is connected to a blocking plate (32), and the blocking plate (32) is in contact with the The sealing groove (28) is adapted, a spring is connected between the other side of the sliding plate (31) and the inner wall of the movable groove (29), a connecting block (33) is fixed on the top of the sliding plate (31), the top of the connecting block (33) passes through the notch (30) to the outside of the upper mold (21) and is connected and fixed to the cover plate (34), the lengths of both sides of the cover plate (34) are adapted to the notch (30), an extrusion block (35) is fixed on the top of the cover plate (34), and a plurality of arc blocks (35) adapted to the extrusion block (35) are fixed on the inner top of the collecting bin (3). 36), the arc block (36) is located on the side of the perforation, the anti-leakage plug (24) includes a connecting ring (25) and a plurality of anti-leakage blocks (26), the connecting ring (25) is fixed on the inner wall of the perfusion tube (23), the plurality of anti-leakage blocks (26) are evenly distributed inside the connecting ring (25), and two adjacent anti-leakage blocks (26) are squeezed together, and the bottom of the collecting bin (3) is evenly provided with a plurality of buffer columns (13), and the buffer columns (13), the inner wall of the collecting bin (3) and the outer surface of the rotating shaft (14) are all provided with a flexible cushion layer (12).