A silicone substrate oil coating, its preparation method and application

By preparing a silicone-based oil dressing, which combines black pig fat, concentrated glucose, silicone oil, and trace element salts, the problem of limited functionality in emergency products has been solved. This allows for rapid energy replenishment and wound repair in emergency situations, simplifies the operation process, and improves the survival rate.

CN122399094APending Publication Date: 2026-07-17

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Filing Date
2026-06-03
Publication Date
2026-07-17
Patent Text Reader

Abstract

This invention discloses a silicone substrate oil dressing, its preparation method, and its application, belonging to the technical field of wilderness first aid and medical emergency materials. The silicone substrate oil dressing comprises black pig fat, concentrated glucose, silicone oil, and trace element composite salts. The preparation method involves placing each component in a reaction vessel according to the specified ratio, heating to 100-110℃, and homogenizing and stirring at 260-300 r / min for 40-60 minutes to form the dressing. This invention also provides a silicone substrate oil dressing product, comprising, from bottom to top, a first sealing film, a substrate, a dressing layer, and a second sealing film, wherein the dressing layer is a silicone substrate oil dressing. This invention's dressing can be directly consumed to quickly replenish energy and relieve hunger, or applied externally to wounds to achieve warmth, prevent infection, relieve pain, and promote skin healing. It can also be applied in cold environments to prevent frostbite, combining the dual functions of energy replenishment and trauma first aid, solving the problems of existing emergency products having limited functionality, inconvenient portability, and cumbersome use in emergency scenarios.
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Description

Technical Field

[0001] This invention relates to the field of edible and medical materials technology for battlefield emergency applications, specifically to a silicon substrate oil dressing and its preparation method and application. Background Technology

[0002] In special environments such as battlefields, field operations, exploration, or natural disasters, people often face the dual threats of trauma and hunger. Traditional first aid kits typically store food, water, and wound dressings separately, which not only takes up a lot of space and is inconvenient to carry, but also requires the injured to retrieve different items separately in emergencies, making the process cumbersome and potentially delaying precious opportunities for self-rescue and mutual aid.

[0003] Existing emergency dressings, such as Vaseline gauze and non-woven fabrics, mostly only have single functions such as wound protection, hemostasis, and antibacterial properties, and cannot quickly replenish energy while caring for wounds; while conventional emergency food can only provide energy and does not have medical effects such as wound repair, protection, heat preservation, and anti-infection.

[0004] Therefore, there is an urgent need for an integrated emergency product that can simultaneously meet the dual needs of human energy replenishment and trauma emergency care, which is of great significance for improving the survival rate of people in special environments. Summary of the Invention

[0005] The purpose of this invention is to overcome the problem that existing emergency products have limited functionality and cannot simultaneously address hunger and trauma, and to provide a silicone-based oil dressing, its preparation method, and its application. This silicone-based oil dressing has the dual functions of being edible to replenish energy and being applicable for external wound care.

[0006] The technical solution provided by this invention is as follows: In a first aspect, the present invention provides a silicone substrate oil dressing, comprising the following components by weight percentage: Black pig fat 75%~89%, concentrated glucose 7%~10%, silicone oil 3%~5%, trace element complex salt 3%~4%.

[0007] Furthermore, the silicone oil is food-grade dimethyl silicone oil.

[0008] Furthermore, the concentrated glucose is a 5% dehydrated gelatinous glucose syrup.

[0009] Furthermore, the trace element complex salt is composed of zinc salt, iron salt and calcium salt, wherein the iron salt must be a divalent salt.

[0010] In a second aspect, the present invention provides a method for preparing a silicone substrate oil coating as described in any of the preceding claims, comprising the following steps: S1. Weigh out black pork fat, concentrated glucose, trace element compound salt and silicone oil, and place them in a reaction vessel; S2. Heat the reactor to 100-110℃ and homogenize it at 260-300 r / min for 40-60 minutes to prepare the silicone substrate oil coating.

[0011] Thirdly, the present invention provides a silicone substrate oil dressing product, comprising a first sealing film, a substrate, a dressing layer and a second sealing film stacked sequentially. The dressing layer is any of the silicone substrate oil dressings described above.

[0012] Furthermore, the substrate is a silicone-based adhesive tape.

[0013] Furthermore, the thickness of the dressing layer is 11 mm.

[0014] Fourthly, the present invention provides the use of a silicone substrate oil dressing as described in any of the preceding claims in the preparation of products for replenishing physical strength, relieving hunger, covering wounds, keeping warm, preventing wound infection, relieving wound pain, or promoting skin healing.

[0015] The beneficial effects of this invention are as follows: 1. This invention provides an integrated silicone-based oil dressing that combines energy replenishment and trauma emergency care. By compounding black pork fat, concentrated glucose, silicone oil, and trace element compound salts in a specific ratio, the product can be eaten after peeling off the film to quickly relieve hunger and replenish energy, and can also be applied to wounds for nursing care, solving the problems of existing emergency products having limited functions and being inconvenient to carry.

[0016] 2. The silicone-based oil dressing of this invention has excellent wound healing effects. The high density and excellent heat insulation properties of the black pig fat in the dressing effectively protect the skin and prevent local hypothermia. The silicone oil contains silicon, which promotes fibroblast proliferation and accelerates tissue repair. The zinc, iron, and calcium components in the trace element complex salt can quickly integrate into lymph and blood, promoting wound healing, relieving pain, and preventing infection. The fat layer effectively isolates the wound from external infection.

[0017] 3. The silicone substrate oil dressing of this invention has excellent food safety and nutritional supplementation effects. The concentrated glucose is made from 5% dehydrated colloidal glucose syrup. Each gram, after being diluted with gastric juice, can exert an effect equivalent to more than ten times that of ordinary glucose. It remains stable under the tight coating of black pork fat and is rapidly released after entering the stomach, quickly replenishing the body's glycogen and restoring physical strength. The total weight of a single piece is 100 grams, and consuming two pieces can basically meet the human body's daily energy requirement of about 2000 kcal.

[0018] 4. This invention has a wide range of applications. In addition to being used for wound treatment and physical replenishment in special environments such as battlefields, field operations, exploration, and natural disasters, it can also be applied to the extremities in high-altitude and cold regions to effectively resist the cold and prevent frostbite, demonstrating good practical value and promising prospects for promotion. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below in conjunction with the embodiments of this invention. Obviously, the described embodiments are only a part of the embodiments of this invention, not all of them. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this invention. Experimental methods in the following embodiments that do not specify specific conditions are generally performed under conventional conditions or as recommended by the manufacturer. Unless otherwise stated, percentages and parts are weight percentages and parts by weight.

[0020] Unless otherwise specified, the technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains. It should be noted that the terms used herein are for the purpose of describing particular embodiments only and are not intended to limit the exemplary embodiments of this application.

[0021] The silicone substrate oil dressing of the present invention includes black pig fat, concentrated glucose, silicone oil, and trace element complex salt.

[0022] Black pork fat is made from the finest black pork fat from Northeast China. Black pigs are wild boars domesticated for generations, characterized by high activity levels, omnivorous diets, and strong environmental adaptability. Their skin, meat, and fat have a dense, high-density structure, resulting in high-quality fat with strong chemical stability and resistance to oxidation. Black pork fat boasts advantages such as high density, diverse fat structure, easy absorption by the human body, high calorific value, and good insulation properties. In ancient times, people swimming across straits would often apply black pork fat to their bodies to help maintain body temperature and to quickly replenish energy when hungry. Furthermore, the diverse molecular structure of black pork fat allows it to melt with various substances and remain stable after homogeneous mixing. The fused substances are less prone to precipitation and oxidation.

[0023] Glucose is an essential source of energy and nutrition for the human body. The concentrated glucose used in this invention is a 5% dehydrated gelatinous glucose syrup. Numerous experiments have shown that highly dehydrated glucose, when ingested, causes immediate dehydration and electrolyte imbalance. Mouse experiments have verified that a 5% dehydrated concentrated glucose syrup is the most suitable concentration for the human body. This concentrated glucose, after dehydration, is in a gelatinous state; each gram, after dilution with gastric juices, can exert more than ten times the efficacy of ordinary glucose. Melting it in black pork fat achieves a highly stable state; the concentrated glucose does not oxidize or deteriorate under the tight encapsulation of the fat. When the dressing enters the stomach, body temperature dissolves the fat, exposing the concentrated glucose molecules, which then mix thoroughly with gastric juices, rapidly replenishing glycogen and restoring energy.

[0024] Silicon oil contains a large amount of silicon. Silicon is the 14th element in the periodic table, possessing the same four valence electrons as carbon. It is an important component of human tissues, widely found in skin, tendons, hair, nails, cartilage, and arterial walls. Silicon can promote cell proliferation and differentiation, accelerating healing after injury. Its mechanism of action lies in using silicon-based structures to assist or replace damaged carbon-based tissues. Based on the structural similarity between silicon and carbon, some believe that silicon-based materials have broad application prospects in biological evolution and are currently used in medical fillers such as artificial noses, breast implants, and artificial bones. In the human body, silicon has multiple physiological functions: it can directly participate in the formation of elastic fibers in arterial walls, maintaining the elasticity and toughness of blood vessels, delaying arteriosclerosis, and protecting cardiovascular health; it can promote the proliferation, differentiation, and collagen synthesis of skin cells, accelerating skin repair and regeneration, and improving skin elasticity and firmness; it can also participate in the formation of the immune system, promoting the proliferation and differentiation of immune cells, and enhancing the body's resistance; in addition, silicon helps maintain the mucus layer of the digestive tract, protects the mucous membrane, promotes gastrointestinal motility and digestive juice secretion, and improves nutrient absorption efficiency. In summary, silicon possesses antioxidant properties, promotes wound healing, enhances bone health, improves skin elasticity, and inhibits bacterial growth. Therefore, this invention selects food-grade dimethyl silicone oil conforming to GB9685-2016 standards as the material.

[0025] The trace element compound salt used in this invention is composed of zinc, iron, and calcium salts in proportions required by a healthy human body. After being fixed at high temperature, it forms water-soluble, extremely fine particles with a particle size of 500 mesh, which are homogeneously distributed in the dressing. Upon contact with the skin surface, this compound salt can quickly integrate into the lymph and blood, promoting wound healing and preventing infection. Iron helps promote hemoglobin synthesis, bone development, and immune function, and plays a role in oxygen transport. Significant iron loss during blood loss can easily lead to iron-deficiency anemia; therefore, timely iron supplementation is crucial for recovery. Zinc is an essential trace element that mainly participates in immune regulation, growth and development, enzyme activity activation, skin repair, and reproductive function maintenance. Zinc supplementation promotes skin healing and has pain-relieving and anti-inflammatory effects. Calcium is an essential mineral widely distributed in the body, participating in bone formation, maintaining muscle and nerve function, promoting blood clotting, and regulating cell activity, which is vital for maintaining life. Regarding raw material selection, food-grade raw materials are required, and divalent iron salts must be used with a particle size of at least 500 mesh.

[0026] This invention prepares a silicone substrate oil dressing by compounding black pig fat, concentrated glucose, silicone oil, and trace element compound salts. This silicone substrate oil dressing has the dual functions of being edible to replenish energy and relieve hunger, and being externally applied to cover wounds, keep warm, prevent wound infection, relieve wound pain, and promote skin healing.

[0027] The preparation method of the silicone substrate oil coating of the present invention is as follows: Place the selected proportions of black pig fat, concentrated glucose, silicone oil, and trace element compound salt into a reaction vessel. Adjust the reaction vessel speed to 260-300 r / min, raise the temperature to 100-110℃, and stir continuously for 40-60 minutes. The resulting paste dressing is then removed.

[0028] The silicone substrate oil dressing product of the present invention comprises, from bottom to top, a first sealing film, a substrate, a dressing layer, and a second sealing film. The substrate is made of silicone-based tape, which is an ideal dressing substrate material due to its good air permeability, good chemical stability, and excellent flexibility. The sealing film is made of a chemically stable polyester material and covers the upper surface of the dressing layer and the lower surface of the substrate to prevent contamination of the dressing by air and the surrounding environment. The coating thickness of the dressing layer is approximately 11 mm, the width is approximately 60 mm, and the length is approximately 300 mm. The preparation method of this silicone substrate oil dressing product involves using an automated dressing feeding production line to evenly spread the prepared dressing on the substrate, then covering it with an anti-oxidation sealing film, and finally sealing and storing it.

[0029] This silicone-based oil dressing can be used flexibly according to different needs: when hungry, the sealed film can be torn off and consumed directly; when a limb is injured, it can be applied directly to the affected area; in cold regions, it can be applied to the extremities to effectively resist the cold and prevent frostbite. When consumed, the concentrated glucose, trace element complex salts, silicone oil, and high-density black pork fat in the dressing work synergistically to quickly relieve hunger and replenish nutrition. When used for wound covering, the high-density black pork fat in the dressing effectively protects the skin and prevents local skin hypothermia; the silicone oil and fat work together to quickly repair skin wounds; and the trace element complex salts can quickly relieve wound pain. In addition, the fat layer covering the wound surface effectively isolates the skin wound from external infection. Each piece of this product weighs 100 grams, and consuming two pieces can basically meet the human body's daily energy requirement of approximately 2000 kcal.

[0030] To further illustrate the present invention, the following describes in detail, with reference to embodiments, a silicon substrate oil dressing and its preparation method. Example

[0031] This embodiment provides a silicone substrate oil dressing, which, by mass percentage, consists of: 85% black pig fat, 8% concentrated glucose, 4% silicone oil, and 3% trace element complex salt.

[0032] A method for preparing a silicone substrate oil dressing: Weigh each component according to the above proportions, place them in a reaction vessel, heat to 107°C, and homogenize and stir at a speed of 280 r / min for 50 minutes to prepare the dressing.

[0033] A silicone substrate oil dressing product comprises, from bottom to top, a first sealing film, a substrate, a dressing layer, and a second sealing film; the preparation method is as follows: the prepared dressing is evenly spread on the substrate using an automatic dressing feeding production line, the dressing layer has a thickness of 11mm, a width of 60mm, and a length of 300mm, and then polyester sealing films are covered on the upper and lower surfaces for packaging and storage. Example

[0034] This embodiment provides a silicone substrate oil dressing, which, by mass percentage, consists of: 84% black pig fat, 9% concentrated glucose, 3% silicone oil, and 4% trace element complex salt.

[0035] A method for preparing a silicone substrate oil dressing: Weigh each component according to the above proportions, place them in a reaction vessel, heat to 107°C, and homogenize and stir at a speed of 280 r / min for 50 minutes to prepare the dressing.

[0036] A silicone substrate oil dressing product comprises, from bottom to top, a first sealing film, a substrate, a dressing layer, and a second sealing film; the preparation method is as follows: the prepared dressing is evenly spread on the substrate using an automatic dressing feeding production line, the dressing layer has a thickness of 11mm, a width of 60mm, and a length of 300mm, and then polyester sealing films are covered on the upper and lower surfaces for packaging and storage. Example

[0037] This embodiment provides a silicone substrate oil dressing, which, by mass percentage, consists of: 83% black pig fat, 10% concentrated glucose, 4% silicone oil, and 3% trace element complex salt.

[0038] A method for preparing a silicone substrate oil dressing: Weigh each component according to the above proportions, place them in a reaction vessel, heat to 107°C, and homogenize and stir at a speed of 280 r / min for 50 minutes to prepare the dressing.

[0039] A silicone substrate oil dressing product comprises, from bottom to top, a first sealing film, a substrate, a dressing layer, and a second sealing film; the preparation method is as follows: the prepared dressing is evenly spread on the substrate using an automatic dressing feeding production line, the dressing layer has a thickness of 11mm, a width of 60mm, and a length of 300mm, and then polyester sealing films are covered on the upper and lower surfaces for packaging and storage. Example

[0040] This embodiment provides a silicone substrate oil dressing, which, by mass percentage, consists of: 86% black pig fat, 7% concentrated glucose, 4% silicone oil, and 3% trace element complex salt.

[0041] A method for preparing a silicone substrate oil dressing: Weigh each component according to the above proportions, place them in a reaction vessel, heat to 107°C, and homogenize and stir at a speed of 280 r / min for 50 minutes to prepare the dressing.

[0042] A silicone substrate oil dressing product comprises, from bottom to top, a first sealing film, a substrate, a dressing layer, and a second sealing film; the preparation method is as follows: the prepared dressing is evenly spread on the substrate using an automatic dressing feeding production line, the dressing layer has a thickness of 11mm, a width of 60mm, and a length of 300mm, and then polyester sealing films are covered on the upper and lower surfaces for packaging and storage. Example

[0043] This embodiment provides a silicone substrate oil dressing, which, by mass percentage, consists of: 82% black pig fat, 9% concentrated glucose, 5% silicone oil, and 4% trace element complex salt.

[0044] A method for preparing a silicone substrate oil dressing: Weigh each component according to the above proportions, place them in a reaction vessel, heat to 107°C, and homogenize and stir at a speed of 280 r / min for 50 minutes to prepare the dressing.

[0045] A silicone substrate oil dressing product comprises, from bottom to top, a first sealing film, a substrate, a dressing layer, and a second sealing film; the preparation method is as follows: the prepared dressing is evenly spread on the substrate using an automatic dressing feeding production line, the dressing layer has a thickness of 11mm, a width of 60mm, and a length of 300mm, and then polyester sealing films are covered on the upper and lower surfaces for packaging and storage. Example

[0046] This embodiment provides a silicone substrate oil dressing, which, by mass percentage, consists of: 87% black pig fat, 7% concentrated glucose, 3% silicone oil, and 3% trace element complex salt.

[0047] A method for preparing a silicone substrate oil dressing: Weigh each component according to the above proportions, place them in a reaction vessel, heat to 107°C, and homogenize and stir at a speed of 280 r / min for 50 minutes to prepare the dressing.

[0048] A silicone substrate oil dressing product comprises, from bottom to top, a first sealing film, a substrate, a dressing layer, and a second sealing film; the preparation method is as follows: the prepared dressing is evenly spread on the substrate using an automatic dressing feeding production line, the dressing layer has a thickness of 11mm, a width of 60mm, and a length of 300mm, and then polyester sealing films are covered on the upper and lower surfaces for packaging and storage.

[0049] The above descriptions are merely embodiments of the present invention, and common knowledge such as specific technical solutions and / or characteristics are not described in detail here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the technical solutions of the present invention, and these should also be considered within the scope of protection of the present invention. These modifications and improvements will not affect the effectiveness of the implementation of the present invention or the practicality of the patent. The scope of protection claimed in this application should be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.

Claims

1. A silicone substrate oil dressing, characterized in that, By mass percentage, it includes the following components: Black pig fat 75%~89%, concentrated glucose 7%~10%, silicone oil 3%~5%, and trace element complex salt 3%~4%.

2. The silicone substrate oil dressing according to claim 1, characterized in that, The silicone oil is food-grade dimethyl silicone oil.

3. The silicone substrate oil dressing according to claim 1, characterized in that, The concentrated glucose is a 5% dehydrated gelatinous glucose syrup.

4. The silicone substrate oil dressing according to claim 1, characterized in that, The trace element complex salt is composed of zinc salt, iron salt and calcium salt.

5. A method for preparing a silicone substrate oil dressing as described in any one of claims 1-4, characterized in that, Includes the following steps: S1. Weigh out black pork fat, concentrated glucose, trace element compound salt and silicone oil, and place them in a reaction vessel; S2. Heat the reactor to 100-110℃ and homogenize it at 260-300 r / min for 40-60 minutes to prepare the silicone substrate oil coating.

6. A silicone substrate oil dressing product, characterized in that, It includes a first sealing film, a substrate, a dressing layer, and a second sealing film stacked sequentially; the dressing layer is a silicone substrate oil dressing as described in any one of claims 1-4.

7. The silicone substrate oil dressing product according to claim 6, characterized in that, The substrate is a silicone-based adhesive tape.

8. The silicone substrate oil dressing product according to claim 6, characterized in that, The thickness of the dressing layer is 11 mm.

9. The use of a silicone substrate oil dressing as described in any one of claims 1-4 in the preparation of products for replenishing physical strength, relieving hunger, covering wounds, keeping warm, preventing wound infection, relieving wound pain, or promoting skin healing.