Microbial intelligent garbage separation treatment equipment
By designing intelligent separation and treatment equipment for microbial waste, using mixing rods and rotating nozzles to separate kitchen waste from biodiesel, remove oil and remove salt and crush them, the problem of existing equipment being difficult to deal with low-yield kitchen waste, and achieving efficient and energy-saving garbage treatment effect.
Patent Information
- Application Number
- CN202510406794.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2025-05-23
AI Technical Summary
Existing waste disposal equipment is difficult to efficiently handle low-yield kitchen waste, resulting in idle equipment, high operating costs and large area.
A microbial waste intelligent separation and treatment equipment is designed, including a treatment chamber and a rinsing chamber, and the kitchen waste is biodiesel separation, oil removal and salt removal and crushing through a mixing rod and a rotating nozzle.
It realizes efficient separation and treatment of kitchen waste, saves energy, reduces operating costs, and is suitable for handling kitchen waste less than 100 kilograms, and is suitable for residential areas.
Smart Images

Figure CN120023165A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of separation equipment, and in particular to a microbial type intelligent garbage separation and processing equipment. Background Art
[0002] Domestic waste can generally be divided into four categories: recyclable waste, kitchen waste, hazardous waste and other waste. Commonly used waste disposal methods include comprehensive utilization, sanitary landfill, incineration and composting, and separation is an important part of waste disposal.
[0003] There are certain differences between the restaurant kitchen waste and household kitchen waste. Specifically, restaurant kitchen waste is high in oil and salt and has a high water content, while kitchen waste is mostly processed vegetable stems and leaves, which have a low water content. Therefore, the amount of biodiesel produced by kitchen waste of the same volume is less than that of restaurant kitchen waste. The output of household kitchen waste is not as large as that of restaurant kitchen waste, and most garbage disposal equipment increases its profitability by processing large tonnages. Low output of kitchen waste can easily lead to the idleness of garbage disposal machines that accept large operating tonnages, resulting in increased machine use costs and insufficient subsequent maintenance. Therefore, it is more economical to use garbage disposal equipment with small processing tonnages and movable equipment, which facilitates the decentralized treatment of garbage, reduces the floor space occupied by centralized garbage treatment, and reduces transportation costs. Summary of the invention
[0004] In view of the shortcomings of the prior art, the present invention provides a microbial garbage intelligent separation and processing equipment, which has the following advantages.
[0005] In order to achieve the above-mentioned functional purpose, the present invention provides the following technical solutions: a microbial garbage intelligent separation and treatment equipment, the box body is characterized in that: the box body includes an operation panel, a glass cover, a fixed plate, a processing chamber, and a flushing chamber, the operation panel is fixed to the top of the box body, the glass cover is placed on the top of the box body and is located on the side of the operation panel, two fixed plates are provided, one of which is fixed in the middle of the box body, and the other is fixed on the side of the box body; the fixed plate includes a partition door, and a receiving groove is provided in the fixed plate, and the receiving groove is connected to the partition door, and the partition door is connected to one side of the fixed plate, the processing chamber is located below the glass cover, and the flushing chamber is located below the operation panel, the flushing chamber includes a rotating nozzle and a stirring shovel, the rotating nozzle is fixed to the box body near the bottom of the operation panel, two stirring shovels are provided, one stirring shovel is connected to the side of the box body, and the other stirring shovel is connected to the side of the fixed plate, and casters are provided at the bottom of the box body.
[0006] Furthermore, the processing chamber includes a stirring rod, which includes a rotating rod and a stirring blade. The rotating rod is connected to both sides of the box body. The stirring blade is Z-shaped. There are several stirring blades, and each stirring blade is fixed to the side of the rotating rod. One end of the rotating rod is connected to a motor, and the motor is fixed to the side of the box body. The side of the box body is connected to a water outlet and an oil outlet, the water outlet is located on one side of the flushing chamber, and the oil outlet is located on one side of the processing chamber. The inner side of the box body is connected to a heating layer, and a filter is connected to the box body, and the filter is located below the stirring blade. The water outlet and the oil outlet are both located below the filter.
[0007] Furthermore, the partition door includes a sliding door and a slide. Two slides are provided and fixed at both ends of the box body. The sliding door is connected to one side of the slide. The slide includes a motor, a moving block and a screw. The motor is fixed at the bottom end of the slide, the screw is fixed to one side of the slide, the output end of the motor is connected to one side of the screw, two moving blocks are provided and each moving block is connected to the annular side of the screw, and the moving blocks are connected to both sides of the sliding door.
[0008] Furthermore, the rotating sprinkler head includes a fixed frame, a top motor, a side motor, a bottom rotating arc, a top rod, a top rotating arc, a limiting body, a water injection rod, a water injection head, and a sliding block. The fixed frame is fixed to the bottom of the box body near the operation panel, the top motor is fixed to the bottom of the fixed frame, two side motors are provided, both fixed to the side of the fixed frame, the bottom rotating arc and the top rotating arc are respectively connected to the output end of the side motor, the top rod is connected to the output end of the top motor, the bottom end of the top rod is connected to a limiting block, the water injection rod is located below the limiting body, two limiting blocks are provided, one of which is connected to one side of the top rod, and the other is connected to the top of the water injection rod, the water injection head is fixed to the bottom end of the water injection rod, and the side of the water injection rod is connected with a water inlet.
[0009] Furthermore, the limiting body has a spherical shape, and the surface of the sphere is connected to a slide groove, which is a circular groove connected to the surface of the sphere through a cross. The two limiting blocks are both located in the slide groove of the limiting body. The bottom arc and the top arc are semi-circular arcs with a slide groove running through the middle, and the water injection rod rotates along the slide groove.
[0010] Furthermore, the mixing shovel includes a main shaft, a push rod, a bottom shovel, a mixing plate, an auxiliary plate, and a guide rail. One end of the main shaft is fixed to one side of a fixed plate. The push rod is rotatably connected to one side of the main shaft. The bottom shovel is connected to the bottom end of the push rod. Two mixing plates are provided, each of which is connected to one side of the push rod. The auxiliary plate is fixed to one side of the push rod. The auxiliary plate and the mixing plate are located above the bottom shovel. The guide rail is fixed to the side of the fixed plate.
[0011] Furthermore, a slot is connected to one side of the push rod close to the guide rail, and the slot passes through the guide rail to stabilize the push rod's rotation along the guide rail.
[0012] Furthermore, the bottom shovel comprises a shovel edge and a shovel groove, wherein the shovel edge is fixed to a side of the bottom shovel, and the shovel groove is fixed to a side of the bottom shovel away from the shovel edge.
[0013] Furthermore, the auxiliary plate includes a punch, a protruding edge, and a limiting plate. The punch is fixed on one side of the auxiliary plate, and the limiting plate is fixed in the middle of the auxiliary plate. There are two punches, and the punches are separated by the limiting plate, that is, the limiting plate is connected in the middle of the two punches. There are four protruding edges, and both protruding edges are fixed at both ends of the punch.
[0014] Furthermore, a plurality of springs are connected to the bottom of the filter screen, and an elastic edge is fixed to the bottom end of the shovel edge.
[0015] Compared with the prior art, the advantages of the present invention are: the device is small in size and can process kitchen waste below 100 kilograms and is movable. Biodiesel is separated from the kitchen waste through the processing chamber, and the residual grease and desalination of the kitchen waste are further processed through the flushing chamber. The kitchen waste can also be crushed to facilitate subsequent fermentation and composting of the kitchen waste. The kitchen waste can be crushed while being washed under high pressure through the flushing chamber. The combination of the rotating nozzle and the mixing shovel not only saves energy, but also can mix and crush evenly. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of a microbial garbage intelligent separation and treatment device of the present invention; Figure 2 This is a schematic diagram of the internal structure of a microbial garbage intelligent separation and treatment device of the present invention; Figure 3 This is a schematic diagram of the stirring rod structure of a microbial garbage intelligent separation and treatment device of the present invention; Figure 4 It is a three-dimensional schematic diagram of a partition door of a microbial garbage intelligent separation and treatment device of the present invention; Figure 5 This is a schematic diagram of the structure of a rotating nozzle of a microbial garbage intelligent separation and treatment device of the present invention; Figure 6 It is a schematic diagram of the partial structure of the rotating nozzle of a microbial garbage intelligent separation and treatment device of the present invention; Figure 7 It is a partial three-dimensional schematic diagram of the rotating nozzle structure of a microbial garbage intelligent separation and treatment device of the present invention; Figure 8 This is a schematic diagram of the internal structure of a flushing chamber of a microbial garbage intelligent separation and treatment device of the present invention; Fig. 9 This is a schematic diagram of the structure of a stirring shovel of a microbial garbage intelligent separation and treatment device of the present invention; Fig.10This is a schematic diagram of the front structure of a microbial garbage intelligent separation and treatment device of the present invention; Fig.11 It is a side structural schematic diagram of a microbial garbage intelligent separation and processing equipment of the present invention.
[0017] The accompanying drawings are denoted by the following symbols: box body 1, operation panel 2, glass cover 3, fixing plate 4, processing chamber 6, rinsing chamber 7, rotating nozzle 8, stirring shovel 9, stirring rod, rotating rod 61, stirring blade 62, motor 50, sliding door 51, moving block 52, screw rod 53, slideway 54, fixing frame 80, top motor 81, side motor 82, bottom rotating arc 83, top rod 84, top rotating arc 831, limiting body 85, water injection rod 86, water injection head 87, slider 800, main shaft 90, push rod 91, bottom shovel 92, shovel edge 921, shovel groove 922, mixing plate 93, guide rail 95, punching 941, protruding edge 942, limiting plate 943. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention. For examples, please refer to Figure 1-11 , a microbial garbage intelligent separation and processing equipment, the box body 1, characterized in that: the box body 1 includes an operation panel 2, a glass cover 3, a fixing plate 4, a processing chamber 6, and a flushing chamber 7, the operation panel 2 is fixed to the top of the box body 1, the glass cover 3 is placed on the top of the box body 1 and is located on the side of the operation panel 2, the fixing plate 4 is provided with two, one of which is fixed in the middle of the box body 1, and the other is fixed on the side of the box body 1; the fixing plate 4 includes a partition door 5, the partition door 5 is connected to one side of the fixing plate 4, and a receiving groove is provided in the fixing plate 4, and the receiving groove is connected to the partition door 5, the processing chamber 6 is located below the glass cover 3, and the flushing chamber 7 is located below the operation panel 2, the flushing chamber 7 includes a rotating nozzle 8 and a stirring shovel 9, the rotating nozzle 8 is fixed to the box body 1 near the bottom of the operation panel 2, the stirring shovel 9 is provided with two, one stirring shovel 9 is connected to the side of the box body 1, and the other stirring shovel 9 is connected to the side of the fixing plate 4, and the bottom of the box body 1 is provided with casters, and the casters are provided with four; The processing chamber 6 includes a stirring rod, which includes a rotating rod 61 and a stirring blade 62. The rotating rod 61 is connected to both sides of the box body 1. The stirring blade 62 is Z-shaped. There are several stirring blades 62, and each stirring blade 62 is fixed to the side of the rotating rod 61. One end of the rotating rod 61 is connected to a motor, and the motor is fixed to the side of the box body 1. The side of the box body 1 is connected to a water outlet and an oil outlet, the water outlet is located on the side of the flushing chamber 7, and the oil outlet is located on the side of the processing chamber 6. The inner side of the box body is connected to a heating layer, and the box body is connected to a filter screen 10, and the filter screen 10 is located below the stirring blade. The water outlet and the oil outlet are both located below the filter screen 10.
[0019] The partition door 5 includes a sliding door 51 and a slide 54. There are two slides 54, and the slides 54 are fixed at both ends of the box body 1. The sliding door 51 is connected to one side of the slide 54. The slide 54 includes a motor 50, a moving block 52, and a screw rod 53. The motor 50 is fixed at the bottom end of the slide 54, and the screw rod 53 is fixed to one side of the slide 54. The output end of the motor 50 is connected to one side of the screw rod 53. There are two moving blocks 52, and each moving block 52 is connected to the annular side of the screw rod 53. The moving blocks 52 are connected to both sides of the sliding door 51.
[0020] The starting motor 50 drives the screw rod 53 to rotate, thereby driving the moving block 52 to move on one side of the screw rod 53, and then driving the sliding door 51 to move up along the side of the screw rod 53 to the receiving groove, thereby controlling the lifting of the sliding door; The rotating spray head 8 includes a fixing frame 80, a top motor 81, a side motor 82, a bottom arc 83, a top rod 84, a top arc 831, a limiting body 85, a water injection rod 86, a water injection head 87, and a slider 800. The fixing frame 80 is fixed to the bottom end of the box body 1 near the operation panel 2, the top motor 81 is fixed to the bottom end of the fixing frame 80, two side motors 82 are provided, both are fixed to the side of the fixing frame 80, the bottom arc 83 and the top arc 831 are respectively connected to the output end of the side motor 82, the top rod 84 is connected to the output end of the top motor 81, the bottom end of the top rod 84 is connected to the limiting block 800, the water injection rod 86 is located below the limiting body 85, the limiting block 800 is provided with two, one of which is connected to one side of the top rod 84, and the other is connected to the top end of the water injection rod 86, the water injection head 87 is fixed to the bottom end of the water injection rod 86, and the side of the water injection rod 86 is connected with a water inlet 871; The limiting body 85 has a spherical shape, and a slide groove is connected to the surface of the sphere. The slide groove is a circular groove connected to the surface of the sphere through a cross. The two limiting blocks 800 are both located in the slide groove of the limiting body 85. The bottom turning arc 83 and the top turning arc 831 are semicircular arcs with a slide groove running through the middle, and the water injection rod rotates along the slide groove.
[0021] There are high-pressure water guns with a pressure of 100 kilograms on the market, which use high-pressure pumps and three-ceramic plunger crankshaft pumps. The connecting parts are made of 304 stainless steel or copper parts, and are equipped with a stepless pressure regulating valve and a safety valve. High-pressure water jet cleaning uses pressurized high-pressure water to spray out at high speed through a nozzle, thus forming a high-speed, high-energy, and high-penetration water beam. Its powerful impact and shear forces can effectively remove various types of dirt, rust, grease and other stubborn deposits; this water injection nozzle is the nozzle part of the high-pressure water gun, which uses a high-pressure pump and a three-ceramic plunger crankshaft pump. The connecting parts are made of 304 stainless steel or copper parts, and are equipped with a stepless pressure regulating valve and a safety valve.
[0022] Starting the top motor 81 can drive the top rod 84 to rotate 360 degrees horizontally, and the side motor 82 can drive the bottom arc 83 and the top arc 831 to rotate, and cooperate with the water injection rod 86 to pass through the top arc 831 and reciprocate along the trajectory of the bottom arc 83. The rotation of the top arc 831 can be paused while the water injection rod 86 reciprocates along the trajectory of the bottom arc 83, or the rotation of the bottom arc 83 can be paused while the water injection rod 86 reciprocates along the trajectory of the top arc 831. In this way, the bottom arc 83 and the top arc 831 cooperate with each other to adjust the rotation angle of the water injection rod 86, thereby adjusting the water spraying angle of the water injection head 87; since the water injection head can rotate at multiple angles, it can spray to every corner of the flushing chamber, so that the flushing is not easy to leave dead corners and perform high-pressure flushing of kitchen waste, thereby achieving the purpose of removing oil and salt, and at the same time, the kitchen waste can also be crushed.
[0023] The mixing shovel 9 includes a main shaft 90, a push rod 91, a bottom shovel 92, a mixing plate 93, an auxiliary plate 94, and a guide rail 95. One end of the main shaft 90 is fixed to one side of the fixed plate 4. The push rod 91 is rotatably connected to one side of the main shaft 90. The bottom shovel 92 is connected to the bottom end of the push rod 91. Two mixing plates 93 are provided, each of which is connected to one side of the push rod 91. The auxiliary plate 94 is fixed to one side of the push rod 91. The auxiliary plate 94 and the mixing plate 93 are located above the bottom shovel 92. The guide rail 95 is fixed to the side of the fixed plate 4. By adjusting the water injection rod 86 to a specified angle, the water injection nozzle 87 sprays high-pressure water jets toward the auxiliary plate, and the auxiliary push rod 91 rotates along the guide rail 95 by the main shaft 90, pushing the bottom shovel 92 and the mixing plate 93 to turn the kitchen waste, and cooperates with the water injection nozzle to wash and crush the kitchen waste evenly; The push rod 91 is connected to a side close to the guide rail 95 with a notch 911, and the notch 911 passes through the guide rail 95 to stabilize the process of the push rod 91 rotating along the guide rail 95; The bottom shovel 92 includes a shovel edge 921 and a shovel groove 922. The shovel edge 921 is fixed to the side of the bottom shovel 92, and the shovel groove 922 is fixed to the side of the bottom shovel 92 away from the shovel edge 921. The arc-shaped edge of the shovel edge 921 facilitates shoveling up the kitchen waste, and the shovel groove 922 can receive the kitchen waste, and the push rod rotates to lift up and flip the kitchen waste, thereby accelerating the mixing. The auxiliary plate 94 includes a punching notch 941, a protruding edge 942, and a limiting plate 943. The punching notch 941 is fixed to one side of the auxiliary plate 94, and the limiting plate 943 is fixed to the middle of the auxiliary plate 94. There are two punching notches 941, and the punching notches 941 are separated by the limiting plate 943, that is, the limiting plate 943 is connected to the middle of the two punching notches 941. There are four protruding edges 942, and the two protruding edges 942 are fixed to both ends of the punching notch 941. The arc bottom of the punching opening 91 can bear the high-pressure water flow, and the protruding edge 92 is concave inward to block the high-pressure water flow rushing out from both ends in the vertical direction, so that the high-pressure water flow will not rush out directly along the punching opening 91 to both ends in the vertical direction, further concentrating the pushing effect of the high-pressure water flow on the auxiliary plate 94; The bottom of the filter screen 10 is connected to a plurality of springs, including but not limited to 16 springs. An elastic edge 923 is fixed to the bottom of the shovel edge 921. The elastic edge 923 is made of TPE material. The maximum temperature range of TPE can be from -60°C to about 150°C.
[0024] Working principle: the box body 1 controls the motor through the operation panel 2. There is a handle on the top. The glass cover can be lifted by holding the handle, and the kitchen waste and microbial mixture are poured into the processing chamber 6. The motor is started to drive the rotating rod 61 to rotate, thereby driving the stirring blade 62 to stir the kitchen waste. The stirring blade heats the kitchen waste while stirring the heating layer, and the separated biodiesel is discharged from the oil outlet through the filter. At this time, the sliding door on the side of the fixed plate separates the flushing chamber 7 and the processing chamber. After the separation of the biodiesel in the kitchen waste is completed, the sliding door is opened, that is, the motor 50 is started to drive the moving block 52 to move on the side of the screw rod 53, thereby driving the sliding door 51 to move along the slide 54, and the sliding door is moved to the fixed plate. The rotation of the stirring blade can push the kitchen waste in the processing chamber into one side of the flushing chamber, and the sliding door is moved downward out of the fixed plate to seal the flushing chamber. To close, the rotating spray head 8 needs to start the top motor 81 to drive the top rod 84 to rotate 360 degrees horizontally, and the side motor 82 drives the bottom arc 83 and the top arc 831 to rotate, and cooperates with the water injection rod 86 to pass through the top arc 831 and reciprocate along the trajectory of the bottom arc 83. The water injection rod 86 can be reciprocated along the trajectory of the bottom arc 83 while the rotation of the top arc 831 is paused, or the rotation of the bottom arc 83 is paused while reciprocating along the trajectory of the top arc 831. In this way, the bottom arc 83 and the top arc 831 cooperate with each other to adjust the rotation angle of the water injection rod 86, thereby adjusting the water spraying angle of the water injection head 87; since the water injection head can rotate at multiple angles, it can spray to every corner of the flushing chamber, so that the flushing chamber is not easy to leave dead corners to perform high-pressure flushing of kitchen waste, thereby achieving the purpose of removing oil and salt, and at the same time, the kitchen waste can be crushed; By adjusting the water injection rod 86 to a specified angle, the water injection nozzle 87 sprays a high-pressure water jet toward the auxiliary plate, pushing the push rod 91 to rotate along the guide rail 95 from the main shaft 90, pushing the bottom shovel 92 and the mixing plate 93 to turn the kitchen waste, and cooperating with the water injection nozzle to wash and crush the kitchen waste evenly; Specific process: adjust the angle of the water injection nozzle 87 by rotating the nozzle. When there is less material in the cavity, the material is lower than the surface height of the bottom shovel 92 in the box. Adjust the pressure to 2~3MPA, and the water injection nozzle 87 sprays high-pressure water to the auxiliary plate, which can push the push rod 91 to swing back and forth less than 120 degrees along the guide rail 95 from the main shaft 90. The swinging behavior will last for about ten to twenty minutes, pushing the bottom shovel 92 and the mixing plate 93 to turn the kitchen waste, and then increase the pressure of the high-pressure water flow, and spray the water flow with a pressure of 6~7MPA to the auxiliary plate through the water injection nozzle 87, pushing the push rod 91 to rotate in a circle along the guide rail 95 from the main shaft 90, thereby improving the mixing efficiency of the mixing shovel and saving water resources; When there is a little more material in the cavity, the material is lower than the height of the surface of the mixing plate 93 in the box but higher than the height of the bottom shovel 92. A 4-5 MPA high-pressure water flow is sprayed toward the auxiliary plate through the water injection nozzle 87, which can push the push rod 91 to swing back and forth less than 120 degrees along the guide rail 95 from the main shaft 90. The swinging behavior will last for about ten to twenty minutes, pushing the bottom shovel 92 and the mixing plate 93 to turn over the kitchen waste, and then increasing the pressure of the high-pressure water outflow, spraying 8-9 MPA water flow toward the auxiliary plate through the water injection nozzle 87, pushing the push rod 91 to rotate in a circle along the guide rail 95 from the main shaft 90, thereby improving the mixing efficiency of the mixing shovel and saving water resources; When there are more materials in the cavity, the materials are lower than the height of the top of the push rod 91 in the box but higher than the height of the mixing plate 93. The 6~7MPA high-pressure water flow is sprayed toward the auxiliary plate through the water injection nozzle 87, which can push the push rod 91 to swing back and forth less than 120 degrees along the guide rail 95 from the main shaft 90. The swinging behavior will be carried out for about ten to twenty minutes, pushing the bottom shovel 92 and the mixing plate 93 to turn the kitchen waste, and then increasing the pressure of the high-pressure water flow, spraying 9~10MPA water flow toward the auxiliary plate through the water injection nozzle 87, pushing the push rod 91 to rotate in a circle along the guide rail 95 from the main shaft 90, improving the mixing efficiency of the mixing shovel, saving water resources, and the material height will not exceed the height of the top of the push rod 91, that is, lower than the height of the bottom of the water injection nozzle 87; The arc-shaped edge of the shovel edge 921 is convenient for scooping up the kitchen waste, and the shovel groove 922 can receive the kitchen waste. The push rod is rotated to lift and flip the kitchen waste to accelerate and evenly mix it. The water sprayed from the flushing nozzle passes through the filter and is discharged from the water outlet. After processing, the sliding door can be opened to take out the deoiled and desalted kitchen waste. This equipment can process kitchen waste below 100 kilograms and is suitable for processing kitchen waste in residential areas. The equipment is equipped with casters to facilitate moving to a centralized area to take out the processed materials and carry out subsequent fermentation and composting operations, so as to achieve the purpose of making full use of the kitchen waste.
[0025] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic features of the present invention. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the attached claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims are included in the present invention. Any figure mark in the claims should not be regarded as limiting the claims involved.
[0026] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.
Claims
1. A microbial garbage intelligent separation and treatment device, wherein the box (1) is characterized by: The box (1) comprises an operation panel (2), a glass cover (3), a fixing plate (4), a processing chamber (6), and a washing chamber (7); the operation panel (2) is fixed to the top of the box (1); the glass cover (3) is placed on the top of the box (1) and on the side of the operation panel (2); two fixing plates (4) are provided, one of which is fixed in the middle of the box (1) and the other is fixed to the side of the box (1); the fixing plate (4) comprises a partition door (5); a receiving groove is provided in the fixing plate (4), and the receiving groove is connected to the partition door (5). ), the partition door (5) is connected to one side of the fixed plate (4), the processing chamber (6) is located below the glass cover (3), the rinsing chamber (7) is located below the operation panel (2), the rinsing chamber (7) comprises a rotating nozzle (8) and a stirring shovel (9), the rotating nozzle (8) is fixed to the box body (1) below the operation panel (2), two stirring shovels (9) are provided, one stirring shovel (9) is connected to the side of the box body (1), and the other stirring shovel (9) is connected to the side of the fixed plate (4), and casters are provided at the bottom of the box body (1).
2. The microbial garbage intelligent separation and treatment equipment according to claim 1 is characterized by: The processing chamber (6) comprises a stirring rod, the stirring rod comprising a rotating rod (61) and a stirring blade (62), the rotating rod (61) being connected to both sides of the box body (1), the stirring blade (62) being Z-shaped, a plurality of stirring blades (62) being provided, and each stirring blade (62) being fixed to a side of the rotating rod (61), one end of the rotating rod (61) being connected to a motor, the motor being fixed to a side of the box body (1), the side of the box body (1) being connected to a water outlet and an oil outlet, the water outlet being located on one side of the flushing chamber (7), the oil outlet being located on one side of the processing chamber (6), the inner side of the box body being connected to a heating layer, the box body being connected to a filter screen (10), the filter screen (10) being located below the stirring blade, and the water outlet and the oil outlet being located below the filter screen (10).
3. The microbial garbage intelligent separation and treatment equipment according to claim 1 is characterized by: The partition door (5) comprises a sliding door (51) and a slideway (54). Two slideways (54) are provided, and the slideways (54) are fixed at both ends of the box body (1). The sliding door (51) is connected to one side of the slideway (54). The slideway (54) comprises a motor (50), a moving block (52), and a screw rod (53). The motor (50) is fixed to the bottom end of the slideway (54), and the screw rod (53) is fixed to one side of the slideway (54). The output end of the motor (50) is connected to one side of the screw rod (53). Two moving blocks (52) are provided, and each moving block (52) is connected to a circular side surface of the screw rod (53). The moving blocks (52) are connected to both sides of the sliding door (51).
4. The microbial garbage intelligent separation and treatment equipment according to claim 1 is characterized by: The rotary spray head (8) comprises a fixing frame (80), a top motor (81), a side motor (82), a bottom rotating arc (83), a top rod (84), a top rotating arc (831), a limiting body (85), a water injection rod (86), a water injection head (87), and a slider (800). The fixing frame (80) is fixed to the bottom end of the box body (1) near the operation panel (2). The top motor (81) is fixed to the bottom end of the fixing frame (80). Two side motors (82) are provided and are both fixed to the side of the fixing frame (80). The bottom rotating arc (83), The top rotating arcs (831) are each connected to an output end of a side motor (82), the top rod (84) is connected to an output end of a top motor (81), the bottom end of the top rod (84) is connected to a limiting block (800), the water injection rod (86) is located below the limiting body (85), two limiting blocks (800) are provided, one of which is connected to one side of the top rod (84) and the other is connected to a top end of the water injection rod (86), the water injection head (87) is fixed to the bottom end of the water injection rod (86), and the side of the water injection rod (86) is connected to a water inlet (871).
5. The microbial garbage intelligent separation and treatment equipment according to claim 1 is characterized by: The limiting body (85) is spherical in shape, and a slide groove is connected to the surface of the sphere. The slide groove is a circular groove connected to the surface of the sphere through a cross. The two limiting blocks (800) are both located in the slide groove of the limiting body (85). The bottom turning arc (83) and the top turning arc (831) are semicircular in shape, and a slide groove runs through the middle. The water injection rod rotates along the slide groove.
6. The microbial garbage intelligent separation and treatment equipment according to claim 1 is characterized by: The mixing shovel (9) comprises a main shaft (90), a push rod (91), a bottom shovel (92), a mixing plate (93), an auxiliary plate (94), and a guide rail (95); one end of the main shaft (90) is fixed to one side of a fixed plate (4); the push rod (91) is rotatably connected to one side of the main shaft (90); the bottom shovel (92) is connected to the bottom end of the push rod (91); two mixing plates (93) are provided, each mixing plate (93) is connected to one side of the push rod (91); the auxiliary plate (94) is fixed to one side of the push rod (91); the auxiliary plate (94) and the mixing plate (93) are located above the bottom shovel (92); and the guide rail (95) is fixed to a side of the fixed plate (4).
7. The microbial garbage intelligent separation and treatment equipment according to claim 6 is characterized by: A notch (911) is connected to one side of the push rod (91) close to the guide rail (95); the notch (911) passes through the guide rail (95) to stabilize the process of the push rod (91) rotating along the guide rail (95).
8. The microbial garbage intelligent separation and treatment equipment according to claim 6 is characterized by: The bottom shovel (92) comprises a shovel edge (921) and a shovel groove (922), wherein the shovel edge (921) is fixed to a side of the bottom shovel (92), and the shovel groove (922) is fixed to a side of the bottom shovel (92) away from the shovel edge (921).
9. The microbial garbage intelligent separation and treatment equipment according to claim 6 is characterized by: The auxiliary plate (94) comprises a punched opening (941), a protruding edge (942), and a limiting plate (943); the punched opening (941) is fixed to one side of the auxiliary plate (94); the limiting plate (943) is fixed to the middle of the auxiliary plate (94); two punched openings (941) are provided, and the punched openings (941) are separated by the limiting plate (943), that is, the limiting plate (943) is connected to the middle of the two punched openings (941); four protruding edges (942) are provided, and the two protruding edges (942) are fixed to both ends of the punched opening (941).
10. The microbial garbage intelligent separation and treatment equipment according to claim 9 is characterized in that: A plurality of springs are connected to the bottom of the filter screen (10), and an elastic edge (923) is fixed to the bottom end of the shovel edge (921).
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