Pigskin emulsifier and matched mixing device
Through the combination of pig skin pretreatment assembly and opposite extrusion assembly, the problems of low production efficiency and fast equipment wear in pig skin emulsifier mixing devices are solved, and more efficient pig skin treatment and uniform mixing are achieved, extending equipment life and reducing maintenance costs.
Patent Information
- Application Number
- CN202510723957.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-02
- Publication Date
- 2025-08-15
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing pig skin emulsifiers and supporting mixing devices have problems such as low production efficiency, fast equipment wear, high maintenance costs and uneven mixing, mainly because the untreated pig skin has a hard texture and a tight fiber structure.
The pig skin pretreatment assembly and the opposite extrusion assembly are used to pretreat and extrude the pig skin through a motor-driven hammer mechanism and a push plate driven by a hydraulic push rod to pretreat and extrude the pig skin, changing its physical characteristics and making it easier to be processed.
It improves the efficiency of the pig skin emulsification or mixing process, extends the service life of the equipment, reduces maintenance costs, and improves the mixing effect and product quality.
Smart Images

Figure CN120479239A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of mechanical equipment, in particular to a pigskin emulsifier and a matching mixing device. Background Art
[0002] Pigskin emulsion is an emulsion made from pigskin. The emulsion itself refers to a non-uniformly dispersed liquid preparation formed by two immiscible liquid phases, one of which is dispersed in the other liquid phase in the form of small droplets. Specifically, pigskin emulsion may contain gelatin or other ingredients extracted from pigskin as part of the dispersed phase or continuous phase in the emulsion.
[0003] The pigskin emulsifier supporting mixing device is a device specially used to process pigskin and mix it with emulsifier to form a uniform emulsion. It is usually a mixing device that can fully combine pigskin and emulsifier through mechanical stirring, shearing and other methods.
[0004] However, the existing pigskin emulsifier and its supporting mixing device have the following shortcomings:
[0005] 1) Because untreated pigskin has a harder texture and dense fiber structure, it usually takes longer to stir and cut the skin before it enters the mixing device to achieve a good emulsification effect. However, prolonged stirring and cutting usually consumes more time, thereby reducing overall production efficiency. Directly feeding intact pigskin into the mixing device may cause the stirring blades or shearing components to bear greater mechanical loads, thereby accelerating equipment wear and increasing maintenance frequency and costs.
[0006] 2) The existing pigskin fiber structure may not be completely destroyed, making it difficult to achieve the ideal degree of refinement during the subsequent emulsification or mixing process, thereby affecting the quality of the final product. In addition, pigskin is usually large in volume, and the entire pigskin processing process will be very slow, thereby increasing the production cycle of the entire process.
[0007] Therefore, we propose a pigskin emulsifier and a matching mixing device to solve the above-mentioned problems. Summary of the Invention
[0008] The purpose of the present invention is to provide a pigskin emulsifier and a matching mixing device. By setting up a pigskin pretreatment component, the motor can drive the hammer mechanism to pretreat the pigskin, which can effectively change the physical properties of the pigskin, making it easier to handle in the subsequent emulsification or mixing process, thereby improving the overall production efficiency and solving the problems raised by the above-mentioned background technology.
[0009] To achieve the above-mentioned object, the present invention provides the following technical solutions: a pigskin emulsifier and a matching mixing device, comprising a pigskin pretreatment component, an opposing extrusion component, and a base, wherein the pigskin pretreatment component is installed on the top of the base, and the opposing extrusion component is installed on the top of the base;
[0010] A pigskin pretreatment assembly, comprising four motors, each having a crank sleeved on its shaft end, each having a connecting rod rotatably connected to one side of its outer wall, each having a connecting piece sleeved on its bottom, each having a pull rod fixedly connected to its bottom, each having a striking piece connected to its bottom, and each having a striking piece connected to its bottom. The four motors are capable of converting electrical energy into mechanical energy to drive the corresponding striking piece to perform a linear striking motion;
[0011] The opposing extrusion assembly includes three connecting plates, two of which are fixedly mounted with hydraulic push rods on one side of the outer wall of the two connecting plates, and one of which is mounted with hydraulic push rods on both sides of the outer wall of the one connecting plate. The shaft ends of the four hydraulic push rods are connected to push plates, and the four hydraulic push rods can convert hydraulic energy into mechanical energy to drive a corresponding push plate to perform linear motion.
[0012] Preferably, the top of the base is bolted to four support frames, the tops of the four support frames are fixedly connected to an annular frame, a mixing tank is bolted between the inner surfaces of the annular frame, a motor is fixedly installed on the top of the mixing tank, the shaft end of the motor is rotatably connected to a stirring blade, and the motor can convert electrical energy into mechanical energy to drive the stirring blade to rotate at a uniform speed, the top of the mixing tank is fixedly connected to two feed pipes, the top of the base is bolted to four brackets, the tops of the four brackets are fixedly connected to two metal plates.
[0013] Preferably, the pig skin pretreatment component also includes a group of metal pillars, the top of one group of metal pillars is fixedly connected to two metal support plates, the tops of the two metal support plates are bolted to two support bases, and the tops of the four support bases are fixedly connected to the bottoms of four motors.
[0014] Preferably, two processing tanks are fixedly connected between the outer walls of the two metal support plates, and eight brackets are fixedly connected to the tops of the two metal support plates, with four brackets forming a group, and the tops of each four brackets are fixedly connected to a support plate.
[0015] Preferably, the tops of the two support plates are spirally connected with a connector, the tops of the two connectors are equipped with a hydraulic cylinder, the shaft ends of the two hydraulic cylinders are sleeved with racks, and the two hydraulic cylinders can convert hydraulic energy into mechanical energy to drive the two racks to perform linear motion.
[0016] Preferably, gears are meshed and connected on both sides of the outer walls of the two racks, and every two gears form a group. The bottoms of the four gears are fixedly connected with metal connecting rods, and the bottoms of the four metal connecting rods are L-shaped, and every two metal connecting rods are symmetrically placed.
[0017] Preferably, the outer walls of each two metal connecting rods are movably connected with a socket, and each socket is separated from the middle so that each half of the socket is an independent entity.
[0018] Preferably, a solid rod is inserted between the inner surfaces of the two processing tanks, and the outer surfaces of the two solid rods are movably connected with door panels. Each door panel is separated from the middle so that each half of the door panel is an independent individual, and the top of each half of the door panel is connected to the corresponding half of the seat through a hinge.
[0019] Preferably, the bottoms of the two joint members are fixedly connected to a metal fixing plate, and each two gears are mounted on one side of the outer wall of a corresponding metal fixing plate.
[0020] Preferably, the bottoms of the two processing tanks are connected to storage bins, and the outer walls of the two storage bins are connected to the outer walls of a group of metal pillars, the bottoms of the two storage bins are connected to the top of a corresponding feed pipe, and the bottom of a group of metal pillars is connected to the tops of two metal plates.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] 1. The present invention provides a pigskin pretreatment component, and the motor can drive the hammer mechanism to pretreat the pigskin, which can effectively change the physical properties of the pigskin, making it easier to handle in the subsequent emulsification or mixing process, thereby improving the overall production efficiency. In addition, the pretreated pigskin can become more finely divided and soft, thereby reducing the mechanical load on the stirring blades or shearing components when entering the mixing device, which helps to extend the service life of the equipment and reduce maintenance costs.
[0023] 2. The present invention provides a counter-extrusion assembly. After being beaten, the pigskin is subjected to counter-extrusion by a push plate driven by a hydraulic push rod, which can further destroy its fiber structure and make the pigskin raw material more delicate, thereby improving the subsequent mixing and emulsification effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a stereoscopic diagram of the main structure of a pigskin emulsifier and a matching mixing device of the present invention;
[0025] Figure 2 This is a side structural stereogram of a pigskin emulsifier and a matching mixing device of the present invention;
[0026] Figure 3This is a perspective view of the cross-sectional structure of a pigskin emulsifier and a matching mixing device of the present invention;
[0027] Figure 4 This is an enlarged stereoscopic view of the structure of a pigskin emulsifier and a pigskin pretreatment component in a matching mixing device of the present invention;
[0028] Figure 5 This is an enlarged perspective view of the partial structure of a pigskin emulsifier and a pigskin pretreatment component in a matching mixing device of the present invention;
[0029] Figure 6 This is an enlarged perspective view of the partial structure of a pigskin emulsifier and a pigskin pretreatment component in a matching mixing device of the present invention;
[0030] Figure 7 The present invention is a pigskin emulsifier and a matching mixing device. Figure 6 A magnified stereoscopic view of the structure at center A;
[0031] Figure 8 The present invention is a pigskin emulsifier and a matching mixing device. Figure 6 A magnified stereoscopic view of the structure at point B in the middle;
[0032] Figure 9 This is an enlarged stereoscopic view of the structure of the opposing extrusion components in a pigskin emulsifier and a matching mixing device of the present invention.
[0033] In the figure: 1, base; 2, support frame; 3, ring frame; 4, mixing tank; 5, motor; 6, stirring blade; 7, feed pipe; 8, bracket; 9, metal plate; 10, pigskin pretreatment component; 1001, metal support; 1002, metal support plate; 1003, support base; 1004, motor; 1005, crank; 1006, connecting rod; 1007, connecting piece; 1008, pull rod; 1009, striking piece; 10 10. Bracket; 1011. Support plate; 1012. Joint; 1013. Hydraulic cylinder; 1014. Rack; 1015. Gear; 1016. Metal connecting rod; 1017. Holder; 1018. Solid rod; 1019. Door panel; 1020. Processing tank; 1021. Metal fixing plate; 11. Counter-extrusion assembly; 1101. Connecting plate; 1102. Hydraulic push rod; 1103. Storage bin; 1104. Push plate. DETAILED DESCRIPTION
[0034] 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 implementation regulations described 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 without making any creative efforts shall fall within the scope of protection of the present invention.
[0035] Please see the attached Figure 1 -Attached Figure 9 As shown, the present invention provides a technical solution: a pigskin emulsifier and a matching mixing device, including a pigskin pretreatment component 10, an opposing extrusion component 11, and a base 1. The pigskin pretreatment component 10 is installed on the top of the base 1, and the opposing extrusion component 11 is installed on the top of the base 1. Four support frames 2 are bolted to the top of the base 1, and the tops of the four support frames 2 are fixedly connected to an annular frame 3. A mixing tank 4 is bolted between the inner surfaces of the annular frame 3, and a motor 5 is fixedly installed on the top of the mixing tank 4. The shaft end of the motor 5 is rotatably connected to a stirring blade 6, and the motor 5 can convert electrical energy into mechanical energy to drive the stirring blade 6 to rotate at a uniform speed. The top of the mixing tank 4 is fixedly connected to two feeding pipes 7, and the top of the base 1 is bolted to four brackets 8. The tops of the four brackets 8 are fixedly connected to two metal plates 9.
[0036] Example 1, according to Figures 1-8As shown, the pigskin pretreatment component 10 includes four motors 1004, the shaft ends of the four motors 1004 are sleeved with cranks 1005, the outer walls of the four cranks 1005 are rotatably connected to connecting rods 1006, the bottoms of the four connecting rods 1006 are sleeved with connecting pieces 1007, the bottoms of the four connecting pieces 1007 are fixedly connected to pull rods 1008, and the bottoms of the four pull rods 1008 are connected to striking pieces 1009. The four motors 1004 can convert electrical energy into mechanical energy to drive the corresponding striking pieces 1009 to perform linear striking motion. The pigskin pretreatment component 10 also includes a set of metal pillars 1001 , a group of metal pillars 1001 are fixedly connected to the top of two metal support plates 1002, the tops of the two metal support plates 1002 are bolted to two support bases 1003, the tops of the four support bases 1003 are fixedly connected to the bottoms of the four motors 1004, two processing tanks 1020 are fixedly connected between the outer walls of the two metal support plates 1002, eight brackets 1010 are fixedly connected to the tops of the two metal support plates 1002, and every four brackets 1010 form a group, the tops of every four brackets 1010 are fixedly connected to a support plate 1011, and the tops of the two support plates 1011 are screwed to a joint 101 2. Hydraulic cylinders 1013 are installed on the tops of the two joints 1012. Racks 1014 are sleeved on the shaft ends of the two hydraulic cylinders 1013. The two hydraulic cylinders 1013 can convert hydraulic energy into mechanical energy to drive the two racks 1014 to do linear motion. Gears 1015 are meshed and connected on both sides of the outer walls of the two racks 1014, and every two gears 1015 form a group. The bottoms of the four gears 1015 are fixedly connected with metal connecting rods 1016, and the bottoms of the four metal connecting rods 1016 are L-shaped, and every two metal connecting rods 1016 are symmetrically placed. The outer walls of every two metal connecting rods 1016 are movably connected. The card seat 1017 is separated from the middle so that each half of the card seat 1017 is an independent entity. A solid rod 1018 is inserted between the inner surfaces of the two processing tanks 1020. The outer surfaces of the two solid rods 1018 are movably connected to the door panel 1019. Each door panel 1019 is separated from the middle so that each half of the door panel 1019 is an independent entity. The top of each half of the door panel 1019 is connected to the corresponding half of the card seat 1017 through a hinge. The bottoms of the two joints 1012 are fixedly connected to the metal fixing plate 1021, and each two gears 1015 are installed on one side of the outer wall of a corresponding metal fixing plate 1021.
[0037] The effect achieved by the entire embodiment 1 is as follows: by presetting the above components, a complete pigskin pretreatment component 10 is formed. First, the four motors 1004 are set. Under the action of the relevant connection relationship, the four motors 1004 convert electrical energy into mechanical energy to drive the corresponding striking members 1009 to perform linear striking motion. The striking members 1009 can effectively destroy the fiber structure of the pigskin and make it loose. When the pigskin becomes loose, it is very important for the subsequent emulsification process because the loose fibers are more easily decomposed and emulsified, thereby improving the uniformity and quality of the final product. In addition, through the striking members 1009, the pigskin The skin will be stretched and torn, which can increase its surface area. The larger surface area can provide more contact points for the subsequent mixing process, which can more fully react chemically or physically with other ingredients, thereby improving the mixing efficiency. Untreated pig skin usually has high toughness and elasticity, which requires more time to be mixed and crushed during the mixing process. The beating member 1009 can significantly reduce its toughness, making the pig skin easier to be stirred and dispersed. At the same time, the two hydraulic cylinders 1013 convert hydraulic energy into two racks 1014 to make linear motion, and the two racks 1014 can drive the gears 1015 on both sides. The rotational motion of the gear 1015 drives the metal connecting rod 1016 below to perform a clamping motion, and the two hydraulic cylinders 1013 can provide sufficient supporting force for the two door panels 1019. The two hydraulic cylinders 1013 can provide a large clamping force to ensure that the pigskin is firmly fixed during the hammering process to prevent it from moving or flying, thereby ensuring the stability of the hammering effect. At the same time, the two hydraulic cylinders 1013 have the advantage of fast response and can complete the opening and closing of the door panel 1019 in a short time, adapting to the higher rhythm requirements on the production line, thereby improving the overall production efficiency. When the striking piece 1009 completes hammering, the metal connecting rod 1016 is released, and the door panel 1019 opens and closes from the middle to both sides, and the pigskin can fall off smoothly. The setting of the pigskin pretreatment component 10, the four motors 1004 can drive the striking piece 1009 to pretreat the pigskin, which can effectively change the physical properties of the pigskin, making it easier to handle in the subsequent emulsification or mixing process, thereby improving the overall production efficiency, and the pretreated pigskin can become more finely divided and soft, thereby reducing the mechanical load on the stirring blade 6 when entering the mixing tank 4, which helps to extend the service life of the equipment and reduce maintenance costs.
[0038] Example 2, according to Figure 1-Figure 3 as well as Figure 9As shown, the opposing extrusion assembly 11 includes three connecting plates 1101, wherein hydraulic push rods 1102 are fixedly installed on one side of the outer wall of two connecting plates 1101, and hydraulic push rods 1102 are installed on both sides of the outer wall of one connecting plate 1101, and the axial ends of the four hydraulic push rods 1102 are connected to push plates 1104, and the four hydraulic push rods 1102 can convert hydraulic energy into mechanical energy to drive a corresponding push plate 1104 to perform linear motion, and the bottoms of the two processing tanks 1020 are connected to storage bins 1103, and the outer walls of the two storage bins 1103 are connected to the outer walls of a group of metal pillars 1001, and the bottoms of the two storage bins 1103 are connected to the top of a corresponding feed pipe 7.
[0039] The effect achieved by the entire embodiment 2 is as follows: by presetting the above-mentioned components, a complete opposite extrusion component 11 is formed, in which four hydraulic push rods 1102 are set, and the four hydraulic push rods 1102 can convert hydraulic energy into mechanical energy to drive a corresponding push plate 1104 to perform linear motion. Every two hydraulic push rods 1102 are placed symmetrically, thereby completing the opposite pressing of the pigskin. The opposite extrusion can further compress the beaten pigskin, increase its density and make it more uniform, and the opposite extrusion of the hydraulic push rods 1102 can effectively reduce the volume of the pigskin, thereby saving the space required for mixing, and is also easier to control and handle during the mixing process. At the same time, the opposite extrusion of the hydraulic push rods 1102 can form a tighter bond between the pigskin fibers, enhance the stability of the structure, and ensure that the subsequent mixing process is carried out better, successfully reducing the mixing time and improving the mixing efficiency.
[0040] Example 3, according to Figure 1-Figure 3 As shown, the top of the base 1 is bolted to four support frames 2, the tops of the four support frames 2 are fixedly connected to an annular frame 3, a mixing tank 4 is bolted between the inner surfaces of the annular frame 3, a motor 5 is fixedly installed on the top of the mixing tank 4, the shaft end of the motor 5 is rotatably connected to a stirring blade 6, and the motor 5 can convert electrical energy into mechanical energy to drive the stirring blade 6 to rotate at a uniform speed, the top of the mixing tank 4 is fixedly connected to two feed pipes 7, the top of the base 1 is bolted to four brackets 8, and the tops of the four brackets 8 are fixedly connected to two metal plates 9.
[0041] The effect achieved by the entire embodiment 3 is as follows: by presetting the above-mentioned components, a complete mixing device is formed. After the pig skin is hammered by the pig skin pretreatment component 10 and extruded by the counter-extrusion component 11, it enters the interior of the mixing tank 4 through the feed pipe 7. Then, the other ingredients required for mixed emulsification are fully added to the interior of the mixing tank 4. At this time, starting the motor 5 can convert electrical energy into mechanical energy, thereby driving the stirring blade 6 to rotate at a uniform speed, fully stirring and mixing all the raw materials. After the mixing is completed, the mixed materials are transferred and stored through the discharge port, thereby completing the entire mixing work.
[0042] The working principle of the entire device is as follows: in the preparation stage, the device is first moved to the designated working area, and the base 1 is fully in contact with the ground, and the base 1 and the ground are fixed. When the base 1 and the ground are fixed, the external power supply is connected to multiple required power supply devices. Secondly, under the action of the external power supply, the two hydraulic cylinders 1013 are turned on. The two hydraulic cylinders 1013 convert hydraulic energy to drive the metal connecting rods 1016 to perform clamping movements, fully clamping and fixing the base 1017. When the fixing is completed, the pig skin to be hammered is manually passed through the tops of the two processing tanks 1020 and placed inside the processing tank 1020, and fully falls on the tops of the two door panels 1019.
[0043] During the beating stage, four motors 1004 are first started by an external power supply, wherein the shaft ends of the four motors 1004 are sleeved with cranks 1005, the outer walls of the four cranks 1005 are all rotatably connected to connecting rods 1006, the bottoms of the four connecting rods 1006 are sleeved with connecting pieces 1007, the bottoms of the four connecting pieces 1007 are all fixedly connected to pull rods 1008, and the bottoms of the four pull rods 1008 are all connected to striking pieces 1009. Through the above connection relationship, the four motors 1004 convert electrical energy into mechanical energy to drive the corresponding striking pieces 1009 to perform linear striking motion. The striking pieces 1009 can effectively destroy the fiber structure of the pigskin and make it loose. When the pigskin becomes loose, it is very important for the subsequent emulsification process because the loose fibers are more easily decomposed and emulsified, thereby improving the uniformity and quality of the final product. In addition, the pigskin will be stretched and torn by the striking pieces 1009, which can increase its surface area. The larger surface area can provide more contact points in the subsequent mixing process, which can be more The pigskin is fully reacted with other ingredients chemically or physically, thereby improving the mixing efficiency. Untreated pigskin usually has high toughness and elasticity, which requires more time to be crushed and mixed during the mixing process. The striking member 1009 can significantly reduce its toughness, making the pigskin easier to be stirred and dispersed. At the same time, the two hydraulic cylinders 1013 convert hydraulic energy into linear motion to drive the two racks 1014, and the two racks 1014 can drive the gears 1015 on both sides to rotate. Under the action of the rotation of the gears 1015, the metal connection below is driven. Rod 1016 performs clamping motion, and two hydraulic cylinders 1013 can provide sufficient supporting force for two door panels 1019. Two hydraulic cylinders 1013 can provide greater clamping force to ensure that the pigskin is firmly fixed during the hammering process to prevent it from moving or flying, thereby ensuring the stability of the hammering effect. At the same time, the two hydraulic cylinders 1013 have the advantage of fast response and can complete the opening and closing action of the door panel 1019 in a short time, adapting to the higher rhythm requirements on the production line, thereby improving the overall production efficiency. When the hammering of the striking piece 1009 is completed, it is released. The metal connecting rod 1016 and the door panel 1019 open and close from the middle to both sides, so that the pigskin can fall off smoothly. The setting of the pigskin pretreatment component 10 and the four motors 1004 can drive the striking member 1009 to pretreat the pigskin, which can effectively change the physical properties of the pigskin, making it easier to handle in the subsequent emulsification or mixing process, thereby improving the overall production efficiency. The pretreated pigskin can become more finely chopped and soft, thereby reducing the mechanical load on the stirring blade 6 when entering the mixing tank 4, which helps to extend the service life of the equipment and reduce maintenance costs.
[0044] In the extrusion stage, after the hammering is completed, the pigskin is unlocked from the two door panels 1019 by starting the two hydraulic cylinders 1013. At this time, the two door panels 1019 are opened, and the pigskin smoothly enters the interior of the two storage bins 1103 through the bottom of the two processing tanks 1020. At this time, the four hydraulic push rods 1102 are started under the action of the external power supply. The four hydraulic push rods 1102 can convert hydraulic energy into mechanical energy to drive the relative push plate 1104 to do linear motion, and fully squeeze the pigskin after the hammering. The opposite extrusion can further compress the pigskin after the beating, increase its density and make it more uniform, and the opposite extrusion of the hydraulic push rods 1102 can effectively reduce the volume of the pigskin, thereby saving the space required for mixing, and is also easier to control and handle during the mixing process. At the same time, the opposite extrusion of the hydraulic push rods 1102 can form a tighter bond between the pigskin fibers, enhance the stability of the structure, and ensure that the subsequent mixing process is better carried out, successfully reducing the mixing time and improving the mixing efficiency.
[0045] In the mixing stage, after being hammered by the pigskin pretreatment component 10 and extruded by the counter-extrusion component 11, the pigskin enters the interior of the mixing tank 4 through the feed pipe 7. Then, other ingredients that need to be mixed and emulsified are fully added to the mixing tank 4. At this time, starting the motor 5 can convert electrical energy into mechanical energy to drive the stirring blade 6 to rotate at a uniform speed, fully stirring and mixing all the raw materials. After the mixing is completed, the mixed materials are transferred and stored through the discharge port, thereby completing the entire mixing work.
[0046] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. 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 pigskin emulsifier and a matching mixing device, comprising a pigskin pretreatment component (10), a counter-extrusion component (11), and a base (1), characterized in that: A pigskin pretreatment component (10) is installed on the top of the base (1), and an opposing extrusion component (11) is installed on the top of the base (1); A pigskin pretreatment component (10), comprising four motors (1004), the shaft ends of the four motors (1004) being sleeved with cranks (1005), one side of the outer wall of each of the four cranks (1005) being rotatably connected to a connecting rod (1006), the bottoms of each of the four connecting rods (1006) being sleeved with a connecting piece (1007), the bottoms of each of the four connecting pieces (1007) being fixedly connected to a pull rod (1008), the bottoms of each of the four pull rods (1008) being connected to a striking piece (1009), and the four motors (1004) being capable of converting electrical energy into mechanical energy for driving the corresponding striking piece (1009) to perform a linear striking motion; The opposed extrusion assembly (11) comprises three connecting plates (1101), wherein hydraulic push rods (1102) are fixedly mounted on one side of the outer wall of two of the connecting plates (1101), hydraulic push rods (1102) are mounted on both sides of the outer wall of one of the connecting plates (1101), and the shaft ends of the four hydraulic push rods (1102) are connected to a push plate (1104), and the four hydraulic push rods (1102) can convert hydraulic energy into mechanical energy to drive a corresponding push plate (1104) to perform linear motion.
2. The pigskin emulsifier and the associated mixing device according to claim 1, characterized in that: The top of the base (1) is bolted to four support frames (2), the tops of the four support frames (2) are fixedly connected to an annular frame (3), a mixing tank (4) is bolted between the inner surfaces of the annular frame (3), a motor (5) is fixedly installed on the top of the mixing tank (4), the shaft end of the motor (5) is rotatably connected to a stirring blade (6), and the motor (5) can convert electrical energy into mechanical energy to drive the stirring blade (6) to perform uniform rotational motion, the top of the mixing tank (4) is fixedly connected to two feed pipes (7), the top of the base (1) is bolted to four brackets (8), and the tops of the four brackets (8) are fixedly connected to two metal plates (9).
3. The pigskin emulsifier and the associated mixing device according to claim 1, characterized in that: The pigskin pretreatment assembly (10) further includes a group of metal pillars (1001), the top of each group of metal pillars (1001) being fixedly connected to two metal support plates (1002), the tops of the two metal support plates (1002) being bolted to two support bases (1003), and the tops of the four support bases (1003) being fixedly connected to the bottoms of the four motors (1004).
4. The pigskin emulsifier and the associated mixing device according to claim 3, characterized in that: Two processing tanks (1020) are fixedly connected between the outer walls of the two metal support plates (1002), and eight brackets (1010) are fixedly connected to the tops of the two metal support plates (1002), with four brackets (1010) forming a group, and the tops of each of the four brackets (1010) are fixedly connected to a supporting plate (1011).
5. The pigskin emulsifier and the associated mixing device according to claim 4, characterized in that: The tops of the two supporting plates (1011) are both spirally connected with a joint piece (1012), the tops of the two joint pieces (1012) are both provided with a hydraulic cylinder (1013), the shaft ends of the two hydraulic cylinders (1013) are both sleeved with a rack (1014), and the two hydraulic cylinders (1013) can convert hydraulic energy into mechanical energy to drive the two racks (1014) to perform linear motion.
6. The pigskin emulsifier and the associated mixing device according to claim 5, characterized in that: Gears (1015) are meshed and connected on both sides of the outer walls of the two racks (1014), and every two gears (1015) form a group. The bottoms of the four gears (1015) are fixedly connected with metal connecting rods (1016), and the bottoms of the four metal connecting rods (1016) are L-shaped, and every two metal connecting rods (1016) are symmetrically placed.
7. The pigskin emulsifier and the associated mixing device according to claim 6, characterized in that: The outer walls of each of the two metal connecting rods (1016) are movably connected to a card seat (1017), and each card seat (1017) is separated from the middle so that each half of the card seat (1017) is an independent individual.
8. The pigskin emulsifier and the associated mixing device according to claim 5, characterized in that: A solid rod (1018) is inserted between the inner surfaces of the two processing tanks (1020), and the outer surfaces of the two solid rods (1018) are movably connected to door panels (1019). Each door panel (1019) is separated from the middle so that each half of the door panel (1019) is an independent individual, and the top of each half of the door panel (1019) is connected to the corresponding half of the card seat (1017) through a hinge.
9. The pigskin emulsifier and the associated mixing device according to claim 5, characterized in that: The bottoms of the two joint members (1012) are fixedly connected to a metal fixing plate (1021), and each two gears (1015) are arranged on one side of the outer wall of a corresponding metal fixing plate (1021).
10. The pigskin emulsifier and the associated mixing device according to claim 4, characterized in that: The bottoms of the two processing tanks (1020) are connected to storage bins (1103), and the outer walls of the two storage bins (1103) are connected to the outer walls of a group of metal pillars (1001), the bottoms of the two storage bins (1103) are connected to the top of a corresponding feed pipe (7), and the bottom of a group of metal pillars (1001) is connected to the tops of two metal plates (9).