Household appliance accessory mold cleaning equipment and using method thereof
By designing a cleaning equipment for household appliance parts molds, a rotating fixing mechanism and a spraying component are used to achieve efficient cleaning and drying of the molds, solving the problem of low cleaning efficiency in existing technologies and improving the utilization efficiency and resource utilization of the molds.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- JIANGYIN YONGSHENG COOLING & HEATING EQUIP CO LTD
- Filing Date
- 2026-03-23
- Publication Date
- 2026-04-21
AI Technical Summary
Existing technologies for mold cleaning are inefficient and ineffective, often resulting in omissions and affecting the normal use of the mold.
A cleaning device for household appliance parts molds has been designed, including a support plate, a rotating fixing mechanism, a cleaning mechanism, and a recycling mechanism. A rotary motor drives a transmission shaft to rotate a support plate, and a linkage rod supports and fixes the rotating plate. Combined with a spray washing component and an air pump, the device achieves the rotation cleaning and drying of the molds, integrates the recycling of impurities, and recycles water resources.
It enables simultaneous cleaning and rapid drying of multiple molds, improving cleaning efficiency, avoiding omissions and waste, and ensuring the normal use of the molds.
Smart Images

Figure CN121892431A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of mold cleaning technology, specifically relating to a mold cleaning device for household appliance parts and its usage method. Background Technology
[0002] Home appliance components refer to the essential components and parts that make up various household appliances. They are the cornerstone of the appliances' functionality, performance, and durability. Common home appliance components include air conditioners, refrigerators, washing machines, and microwave ovens, which are assembled from different components. Currently, home appliance components are typically manufactured using molds. Molds are various molds and tools used in industrial production to obtain the desired products through methods such as injection molding, blow molding, extrusion, die casting, forging, forming, smelting, and stamping.
[0003] During prolonged use or storage, molds are prone to developing dirt and rust on their surfaces, necessitating cleaning. However, current mold cleaning methods typically rely on manual cleaning, which is not only inefficient but also prone to omissions, thus affecting the normal use of the mold and causing unnecessary trouble for the user.
[0004] Therefore, in order to address the above-mentioned technical problems, it is necessary to provide a household appliance parts mold cleaning device and its usage method. Summary of the Invention
[0005] The purpose of this invention is to provide a household appliance parts mold cleaning device and its usage method, which can solve the problems of poor mold cleaning efficiency and cleaning effect in the prior art.
[0006] To achieve the above objectives, a specific embodiment of the present invention provides a household appliance parts mold cleaning device, comprising: a support plate, a rotating fixing mechanism, a cleaning mechanism, and a recycling mechanism.
[0007] A rotating annular groove is carved into the supporting upright plate; the rotating fixing mechanism is disposed on one side of the supporting upright plate, and the rotating fixing mechanism includes a rotating support plate, multiple fixed rotating plates, rotating columns and a fan-shaped plate. The multiple rotating columns are rotatably fixed to the fixed rotating plates, and the fan-shaped plate is fixed to the rotating columns; the cleaning mechanism is fixed to the supporting upright plate, and the cleaning mechanism includes a cleaning chamber and a spray washing assembly. The bottom of the cleaning chamber is carved with a drain port for discharging the rinsing water; the recycling mechanism is disposed below the cleaning chamber, and the recycling mechanism is used to recycle the cleaning water and collect the rinsed impurities; wherein, the recycling mechanism includes a supporting column, a side inclined plate and a collection box, the cleaning chamber is fixed to the supporting column, and a storage cavity is provided in the side inclined plate.
[0008] In one or more embodiments of the present invention, a rotary motor is fixed on the support plate, and a transmission shaft is fixedly connected between the rotary motor and the rotary support plate. After the rotary motor is started, it drives the transmission shaft to rotate, and then the transmission shaft drives the rotary support plate to rotate, thereby providing power for the rotation of multiple fixed rotating plates. A linkage rod is fixedly connected between the rotary support plate and the multiple fixed rotating plates. The linkage rod supports the fixed rotating plates and drives the fixed rotating plates to rotate, so that the fixed rotating plates can drive the fixed mold to rotate.
[0009] Multiple limiting sliders are rotatably arranged inside the rotating annular groove. The number of limiting sliders is the same as the number of fixed rotating plates. A connecting support rod is fixedly connected between the limiting sliders and the linkage rotating rod. The limiting sliders and the connecting support rod assist in supporting the linkage rotating rod, so that the linkage rotating rod will not fall off. This can stably support the fixed rotating plate and the mold, and prevent the linkage rotating rod from tilting during rotation, thus ensuring the stability of the device.
[0010] In one or more embodiments of the present invention, a fixing groove is chiseled on the fixing plate for fixing the mold and facilitating the rotation of the mold. Multiple evenly distributed first through holes are chiseled on the side wall of the fixing groove for draining rinsing water. Rotating blocks are fixed on multiple rotating columns to facilitate the rotation of the rotating columns and make it easier for operators to operate.
[0011] In one or more embodiments of the present invention, a clamping bolt is threadedly connected to the fan-shaped plate, and a rubber pad is fixed on one end of the clamping bolt near the fixed rotating plate. By rotating the clamping bolt, the rubber pad is pressed against the mold, thereby fixing the mold in the fixed groove, which facilitates the rotation of the mold and the rinsing of the mold. The fan-shaped plate is drilled with multiple second through holes to facilitate the passage of water and prevent obstruction of the water flow.
[0012] In one or more embodiments of the present invention, a drive air pump is fixedly mounted on the support plate, and a delivery air pipe is fixedly connected to the drive air pump. Gas is drawn in by starting the drive air pump and then delivered and sprayed onto the rinsed mold through the delivery air pipe, so that the mold dries quickly and thus improves the cleaning efficiency of the mold. The delivery air pipe is provided with a plurality of fixing bolts for fixing the delivery air pipe to the support plate, so as to fix the delivery air pipe in place, prevent the delivery air pipe from falling off or bending, and improve the operational stability of the device.
[0013] In one or more embodiments of the present invention, the cleaning chamber is fixedly equipped with multiple side anti-spray strips and a pair of top anti-spray strips. These strips can block the water flow during mold rinsing, preventing water from spreading outwards, reducing cleaning pressure, and preventing water leakage. Furthermore, they do not affect the movement of the fixed rotating plate into and out of the chamber. The ends of the pair of top anti-spray strips that are close to each other are chiseled with interlocking semi-circular grooves. The diameter of the pair of semi-circular grooves is slightly larger than the diameter of the end of the linkage rod near the fixed rotating plate. This prevents water from easily spraying out from around the linkage rod after the fixed rotating plate and the mold are moved into the cleaning chamber, thus avoiding water leakage.
[0014] In one or more embodiments of the present invention, the spray washing assembly includes: a delivery liquid pipe and a rotating rinsing plate; one end of the delivery liquid pipe is fixed to the cleaning chamber and is connected to a rotating support plate; the rotating rinsing plate is connected to one end of the delivery liquid pipe, and water is drawn out by activating the rotating rinsing plate and then delivered to the rotating rinsing plate through the delivery liquid pipe, facilitating its dispersion and spraying, thereby improving the rinsing effect on the mold. A support bearing is fixedly connected between the delivery liquid pipe and the rotating rinsing plate, and multiple rinsing nozzles are fixed on the rotating rinsing plate for spraying rinsing water outward to clean the mold, and also to enable the rotating rinsing plate to rotate, thereby improving the rinsing effect on the mold and preventing any omissions.
[0015] In one or more embodiments of the present invention, a plurality of evenly distributed side spray pipes are fixed on the side wall of the rotating rinsing disc. The thrust generated when water is sprayed through the side spray pipes causes the rotating rinsing disc to rotate, thereby driving the plurality of rinsing nozzles to rotate and improving the rinsing effect on the mold. A rinsing water pump is fixed inside the supporting column, and the lower end of the delivery pipe is fixed to the rinsing water pump. The rinsing water pump is also fixedly connected to a water suction pipe, the other end of which is inserted into the storage cavity. Water in the storage cavity is drawn out through the water suction pipe and then delivered to the rotating rinsing disc through the delivery pipe, thereby enabling the plurality of rinsing nozzles and side spray pipes to spray water outward to rinse the mold.
[0016] In one or more embodiments of the present invention, a cleaning box is provided inside the collection box for collecting impurities washed down for convenient centralized processing. A pair of handles are fixed to the cleaning box for easy lifting and movement. A sliding groove is carved into the side slope plate to facilitate the downward sliding of impurities and water, achieving the effect of discharge from the cleaning chamber. Multiple filter holes are carved into the side wall of the sliding groove, allowing water to flow back into the storage chamber, thereby achieving resource recycling and reducing waste.
[0017] A method for using a household appliance parts mold cleaning device includes the following steps: S1. Place the mold into a fixed slot, then rotate multiple rotating columns to rotate a fan-shaped plate above the mold, and then rotate the clamping bolts so that the rubber pad at one end of the clamping bolts can press tightly against the mold, thus fixing the mold to the fixed rotating plate; S2. Then, start the rotating motor to drive the transmission shaft and rotating support plate to rotate, and the rotating support plate will drive the fixed rotating plate to rotate through multiple linkage rotating rods, thereby driving the mold to rotate and move into the cleaning chamber; S3. At this time, start the flushing water pump, extract the cleaning water from the storage chamber through the water pump pipe, and then transport it to the rotating flushing plate through the delivery pipe. Then, multiple flushing nozzles will impact the mold to achieve flushing of the mold. At the same time, multiple side spray pipes will also spray flushing water outwards, so that the rotating flushing plate can rotate, thereby improving the flushing effect on the mold; S4. In After rinsing, starting the rotary motor will continue to drive multiple fixed rotating plates to rotate, which will also drive the rinsed mold to rotate. This allows the mold to rotate and move to one end of the air delivery pipe. At this time, starting the drive air pump will deliver gas through the air delivery pipe, allowing the gas to be sprayed onto the mold to wash away the water and dry it quickly. S5. Then, the rotating support plate will drive it to rotate. When the rinsed and dried mold moves directly above the rotating support plate, the clamping bolts can be turned to release the mold from its fixation. Then, the multiple rotating columns will be rotated so that the fan-shaped plate is no longer above the mold, and the mold can then be removed. S6. The wastewater in the cleaning chamber, carrying the flushed impurities, will flow down through the drain outlet and into the sliding trough. The wastewater can then re-enter the storage chamber for easy recycling. The impurities will gradually slide down the sliding trough and finally enter the cleaning box for easy collection and cleaning by the staff.
[0018] Compared with the prior art, the present invention, by setting multiple rotating support discs, can simultaneously clean and process multiple molds, and after cleaning, the molds can be dried by air blowing, thereby improving the cleaning efficiency of the molds and not delaying their use, thus reducing unnecessary trouble for users. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1This is a perspective view of a household appliance parts mold cleaning device according to an embodiment of the present invention;
[0021] Figure 2 This is a partial structural cross-sectional view of a household appliance parts mold cleaning device according to an embodiment of the present invention;
[0022] Figure 3 This is a schematic diagram of the rotating fixing mechanism in one embodiment of the present invention.
[0023] Figure 4 for Figure 3 The structural diagram shown at point A in the middle;
[0024] Figure 5 This is a cross-sectional view of the recycling mechanism in one embodiment of the present invention;
[0025] Figure 6 This is a schematic diagram of the cleaning chamber in one embodiment of the present invention;
[0026] Figure 7 This is a schematic diagram of the structure of the rotating rinsing disc in one embodiment of the present invention.
[0027] Explanation of key figure labels:
[0028] 1-Support plate, 101-Rotating annular groove, 2-Rotating fixing mechanism, 201-Rotating support plate, 202-Fixing rotating plate, 203-Rotating column, 204-Sector plate, 205-Rotating motor, 206-Transmission shaft, 207-Fixing bolt, 208-Limiting slider, 209-Connecting support rod, 210-Linkage rotating rod, 211-Rotating lever, 212-Fixing groove, 213-First through hole, 214-Clamping bolt, 215-Second through hole, 216-Drive air pump 217-Air delivery pipe, 3-Cleaning mechanism, 301-Cleaning chamber, 302-Side anti-spray strip, 303-Top anti-spray strip, 304-Drain outlet, 305-Liquid delivery pipe, 306-Rotating flushing disc, 307-Flushing nozzle, 308-Side spray pipe, 309-Flushing water pump, 310-Water suction pipe, 4-Recovery mechanism, 401-Support column, 402-Side inclined plate, 403-Collection box, 404-Cleaning box, 405-Handle, 406-Filter hole, 407-Slide trough. Detailed Implementation
[0029] To enable those skilled in the art to better understand the technical solutions in this disclosure, the technical solutions in the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this disclosure, and not all embodiments. Based on the embodiments in this disclosure, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of this disclosure.
[0030] like Figures 1-7 As shown, an embodiment of the present invention provides a household appliance parts mold cleaning device and its usage method, comprising: a support plate 1, a rotating fixing mechanism 2, a cleaning mechanism 3, and a recycling mechanism 4.
[0031] like Figures 1-7 As shown, a rotating annular groove 101 is carved into the support plate 1; a rotating fixing mechanism 2 is disposed on one side of the support plate 1, and the rotating fixing mechanism 2 includes a rotating support plate 201, multiple fixed rotating plates 202, a rotating column 203, and a fan-shaped plate 204. The multiple rotating columns 203 are rotatably fixed on the fixed rotating plates 202, and the fan-shaped plate 204 is fixed on the rotating columns 203. A cleaning mechanism 3 is fixed to the support plate 1, and the cleaning mechanism 3 includes a cleaning chamber 301 and a spray washing assembly. A drain port 304 is carved into the bottom of the cleaning chamber 301 for discharging the rinsing water. A recycling mechanism 4 is disposed below the cleaning chamber 301. The recycling mechanism 4 is used to recycle the cleaning water and collect the impurities rinsed off; wherein, the recycling mechanism 4 includes a support column 401, a side inclined plate 402, and a collection box 403, the cleaning chamber 301 is fixed on the support column 401, and a storage cavity is provided in the side inclined plate 402.
[0032] Specifically, by fixing the mold on the fixed rotating plate 202, and then driving multiple fixed rotating plates 202 to rotate simultaneously, the mold on one of the fixed rotating plates 202 is washed, one is blown dry, one is fixed for loading, and one is disassembled for unloading, which improves the cleaning efficiency of the mold. The mold is then moved into the cleaning chamber 301, and then the mold is cleaned by the spray washing component. Finally, the impurities washed off are collected by the collection box 403, while the water flows back into the storage chamber, which facilitates the recycling of resources.
[0033] like Figures 1-2 As shown, a rotary motor 205 is fixed on the support plate 1. A transmission shaft 206 is fixedly connected between the rotary motor 205 and the rotary support plate 201. After the rotary motor 205 is started, it drives the transmission shaft 206 to rotate, which in turn drives the rotary support plate 201 to rotate, thus providing power for the rotation of multiple fixed rotating plates 202. A linkage rod 210 is fixedly connected between the rotary support plate 201 and the multiple fixed rotating plates 202. The linkage rod 210 supports the fixed rotating plates 202 and drives them to rotate, enabling the fixed rotating plates 202 to drive the fixed mold to rotate.
[0034] like Figures 1-2As shown, multiple limiting sliders 208 are rotatably arranged within the rotating annular groove 101. The number of limiting sliders 208 is the same as the number of fixed rotating plates 202. A connecting support rod 209 is fixedly connected between the limiting sliders 208 and the linkage rotating rod 210. The limiting sliders 208 and the connecting support rod 209 assist in supporting the linkage rotating rod 210, preventing the linkage rotating rod 210 from falling off. This ensures stable support for the fixed rotating plate 202 and the mold, and also prevents the linkage rotating rod 210 from tilting during rotation, thus guaranteeing the stability of the device.
[0035] like Figures 1-3 As shown, a fixing groove 212 is carved on the fixing plate 202 for fixing the mold and facilitating the rotation of the mold. Multiple evenly distributed first through holes 213 are carved on the side wall of the fixing groove 212 for the drainage of flushing water. Rotating blocks 211 are fixed on multiple rotating columns 203 to facilitate the rotation of the rotating columns 203 and make it easier for the staff to operate.
[0036] Specifically, a clamping bolt 214 is threaded onto the sector plate 204. A rubber pad is fixed to one end of the clamping bolt 214 near the fixed rotating plate 202. By rotating the clamping bolt 214, the rubber pad is pressed against the mold, thereby fixing the mold in the fixed groove 212. This facilitates the rotation of the mold and makes it easier to wash the mold. Multiple second through holes 215 are drilled on the sector plate 204 to facilitate the passage of water and prevent obstruction of the water flow.
[0037] like Figure 1 As shown, a drive air pump 216 is fixed on the support plate 1, and a delivery air pipe 217 is fixedly connected to the drive air pump 216. The drive air pump 216 is activated to draw in gas, which is then delivered and sprayed onto the rinsed mold through the delivery air pipe 217, allowing the mold to dry quickly and thus improving the cleaning efficiency. Multiple fixing bolts 207 are provided on the delivery air pipe 217 to secure it to the support plate 1, preventing it from falling off or bending, and improving the operational stability of the device.
[0038] like Figures 1-6 As shown, the cleaning chamber 301 is fixedly equipped with multiple side anti-spray strips 302 and a pair of top anti-spray strips 303. The side anti-spray strips 302 and top anti-spray strips 303 can block the water flow when rinsing the mold, prevent the water flow from spreading outward, reduce cleaning pressure, prevent water leakage, and will not affect the movement of the fixed rotating plate 202 in and out.
[0039] Among them, the ends of the pair of top anti-spray strips 303 that are close to each other are chiseled with semi-circular grooves that combine with each other. The diameter of the pair of semi-circular grooves is slightly larger than the diameter of the end of the linkage rotating rod 210 that is close to the fixed rotating plate 202. This makes it difficult for water to spray out from around the linkage rotating rod 210 after the fixed rotating plate 202 and the mold are moved into the cleaning chamber 301, thus avoiding water leakage.
[0040] like Figures 1-7 As shown, the spray washing assembly includes a liquid delivery pipe 305 and a rotating flushing disc 306. One end of the liquid delivery pipe 305 is fixed to the cleaning chamber 301, and the liquid delivery pipe 305 is connected to the rotating support disc 201. The rotating flushing disc 306 is connected to one end of the liquid delivery pipe 305. By activating the rotating flushing disc 306, water is drawn out and then transported into the rotating flushing disc 306 through the liquid delivery pipe 305, facilitating its dispersion and spraying, thereby improving the washing effect on the mold.
[0041] In addition, a support bearing is fixedly connected between the liquid delivery pipe 305 and the rotary flushing plate 306. Multiple flushing nozzles 307 are fixed on the rotary flushing plate 306 for spraying flushing water outward to clean the mold. The rotary flushing plate 306 can also rotate, thereby improving the flushing effect on the mold and preventing any omissions.
[0042] like Figures 1-7 As shown, multiple evenly distributed side spray pipes 308 are also fixed on the side wall of the rotating flushing plate 306. The reverse thrust generated when the water is sprayed by the side spray pipes 308 enables the rotating flushing plate 306 to rotate, thereby driving multiple flushing nozzles 307 to rotate, improving the flushing effect on the mold.
[0043] like Figures 1-5 As shown, a flushing water pump 309 is fixed inside the support column 401. The lower end of the delivery pipe 305 is fixed to the flushing water pump 309. The flushing water pump 309 is also fixedly connected to a water suction pipe 310. The other end of the water suction pipe 310 is inserted into the storage cavity. The water in the storage cavity is drawn out through the water suction pipe 310 and then delivered to the rotating flushing plate 306 through the delivery pipe 305. This allows multiple flushing nozzles 307 and side spray pipes 308 to spray water outwards to flush the mold.
[0044] like Figures 1-5 As shown, a cleaning box 404 is provided inside the collection box 403 to collect the impurities washed down for convenient centralized processing. A pair of handles 405 are fixed on the cleaning box 404 to facilitate pulling the cleaning box 404 up, thereby facilitating the movement of the cleaning box 404.
[0045] Specifically, a sliding groove 407 is carved on the side inclined plate 402 to facilitate the downward sliding of impurities and water flow, thereby achieving the effect of discharge from the cleaning chamber 301. Multiple filter holes 406 are carved on the side wall of the sliding groove 407, so that the water flow can flow back into the storage chamber, thereby realizing the recycling of resources and reducing waste.
[0046] A method for using a household appliance parts mold cleaning device includes the following steps:
[0047] S1. Place the mold into the fixed groove 212, then rotate multiple rotating columns 203 so that the fan-shaped plate 204 rotates to the top of the mold, and then rotate the clamping bolt 214 so that the rubber pad at one end of the clamping bolt 214 can press tightly onto the mold, thereby fixing the mold on the fixed rotating plate 202.
[0048] S2. Then, the starting of the rotary motor 205 drives the transmission shaft 206 and the rotary support plate 201 to rotate. The rotary support plate 201 will drive the fixed rotating plate 202 to rotate through multiple linkage rotating rods 210, thereby driving the mold to rotate and enabling the mold to rotate and move into the cleaning chamber 301.
[0049] S3. At this time, the flushing water pump 309 is started, and the cleaning water in the storage chamber is drawn out through the water pumping pipe 310. Then, it is transported to the rotating flushing plate 306 through the liquid delivery pipe 305. Then, it is impacted on the mold through multiple flushing nozzles 307 to achieve the flushing of the mold. At the same time, multiple side spray pipes 308 will also spray flushing water outward, so that the rotating flushing plate 306 can rotate, thereby improving the flushing effect on the mold.
[0050] S4. After rinsing, starting the rotary motor 205 will continue to drive multiple fixed rotating plates 202 to rotate, which will drive the rinsed mold to rotate, so that the mold can rotate and move to one end of the air conveying pipe 217. At this time, starting the drive air pump 216 will deliver gas through the air conveying pipe 217, so that the gas can be sprayed on the mold to wash away the water and make it dry quickly.
[0051] S5. Then, the rotating support plate 201 is used to rotate the mold. When the mold that has been rinsed and dried is moved directly above the rotating support plate 201, the clamping bolt 214 can be rotated to release the mold from the fixation. Then, the multiple rotating columns 203 are rotated so that the fan-shaped plate 204 is no longer above the mold. At this time, the mold can be removed.
[0052] S6. After rinsing in the cleaning chamber 301, the wastewater, carrying the impurities washed down, flows down through the drain port 304 and then into the sliding groove 407. The wastewater can then re-enter the storage chamber for easy recycling. The impurities will gradually slide down through the sliding groove 407 and finally enter the cleaning box 404 for easy centralized cleaning by staff.
[0053] It will be apparent to those skilled in the art that this disclosure is not limited to the details of the exemplary embodiments described above, and that this disclosure can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of this disclosure is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this disclosure. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0054] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A household appliance parts mold cleaning device, characterized in that, include: A support plate, wherein a rotating annular groove is cut into the support plate; A rotating fixing mechanism is provided on one side of the supporting plate. The rotating fixing mechanism includes a rotating support plate, multiple fixed rotating plates, rotating columns and a sector plate. The multiple rotating columns are rotatably fixed on the fixed rotating plates, and the sector plate is fixed on the rotating columns. A cleaning mechanism is fixed to the support plate. The cleaning mechanism includes a cleaning chamber and a spraying assembly. The bottom of the cleaning chamber is drilled with a drain port for draining the rinsing water. A recycling mechanism is located below the cleaning chamber. The recycling mechanism is used to recycle the cleaning water and collect the impurities washed off. The recycling mechanism includes a support column, a side inclined plate, and a collection box. The cleaning chamber is fixed on the support column, and a storage cavity is provided inside the side inclined plate.
2. The appliance parts mold cleaning equipment according to claim 1, characterized in that, A rotary motor is fixed on the support plate. A transmission shaft is fixedly connected between the rotary motor and the rotary support plate. A linkage rod is fixedly connected between the rotary support plate and multiple fixed rotating plates. Multiple limiting sliders are rotatably arranged in the rotary annular groove. The number of limiting sliders is the same as the number of fixed rotating plates. A connecting support rod is fixedly connected between the limiting sliders and the linkage rod.
3. The appliance parts mold cleaning equipment according to claim 1, characterized in that, The fixed rotating plate has a fixed groove, and the side wall of the fixed groove has multiple evenly distributed first through holes. Rotating blocks are fixed on each of the multiple rotating columns.
4. The appliance parts mold cleaning equipment according to claim 1, characterized in that, A clamping bolt is threaded onto the sector plate, and a rubber pad is fixed to one end of the clamping bolt near the fixed rotating plate. Multiple second through holes are drilled into the sector plate.
5. The appliance parts mold cleaning equipment according to claim 1, characterized in that, A drive air pump is fixed on the support plate, and a delivery air pipe is fixedly connected to the drive air pump. The delivery air pipe is provided with a plurality of fixing bolts for fixing the delivery air pipe to the support plate.
6. The appliance parts mold cleaning equipment according to claim 2, characterized in that, The cleaning chamber is fixedly equipped with multiple side anti-spray strips and a pair of top anti-spray strips. The ends of the pair of top anti-spray strips that are close to each other are chiseled with semi-circular grooves that combine with each other. The diameter of the pair of semi-circular grooves is slightly larger than the diameter of the end of the linkage rod that is close to the fixed rotating plate.
7. The appliance parts mold cleaning equipment according to claim 1, characterized in that, The spray washing assembly includes: A liquid delivery pipe is fixed at one end to the cleaning chamber and is connected to the rotating support plate. A rotating flushing disc is connected to one end of a liquid delivery pipe, and a support bearing is fixedly connected between the liquid delivery pipe and the rotating flushing disc. Multiple flushing nozzles are fixed on the rotating flushing disc.
8. The appliance parts mold cleaning equipment according to claim 7, characterized in that, Multiple evenly distributed side spray pipes are fixed on the side wall of the rotating flushing disc. A flushing water pump is fixed inside the supporting column. The lower end of the delivery pipe is fixed to the flushing water pump. The flushing water pump is also fixedly connected to a water suction pipe. The other end of the water suction pipe is inserted into the storage cavity.
9. The appliance parts mold cleaning equipment according to claim 1, characterized in that, The collection box contains a cleaning box, which is equipped with a pair of handles. A sliding groove is carved into the side plate, and multiple filter holes are carved into the side wall of the sliding groove.
10. A method of using a household appliance parts mold cleaning device according to any one of claims 1-9, characterized in that, Includes the following steps: S1. Place the mold into the fixed groove, then rotate multiple rotating columns to make the fan-shaped plate rotate above the mold, and then rotate the clamping bolt so that the rubber pad at one end of the clamping bolt can press tightly onto the mold. S2. Then, the starting of the rotary motor drives the transmission shaft and the rotary support plate to rotate. The rotary support plate then drives the fixed rotating plate to rotate through multiple linkage rods, thereby driving the mold to rotate and allowing the mold to rotate and move into the cleaning chamber. S3. At this time, the flushing water pump is started, and the cleaning water in the storage chamber is drawn out through the water pumping pipe. Then, it is transported to the rotating flushing plate through the liquid delivery pipe. Then, it is impacted on the mold through multiple flushing nozzles to achieve the flushing of the mold. At the same time, multiple side spray pipes will also spray flushing water outward, causing the rotating flushing plate to rotate. S4. After rinsing, starting the rotary motor will continue to drive multiple fixed rotating plates to rotate, which will drive the rinsed mold to rotate and move the mold to one end of the air delivery pipe. At this time, starting the drive air pump will deliver gas through the air delivery pipe so that the gas can be sprayed onto the mold. S5. Then, rotate the mold by rotating the support plate. When the mold is moved directly above the rotating support plate after rinsing and drying, turn the clamping bolts to release the mold. Then rotate the multiple rotating columns so that the fan-shaped plate is no longer above the mold and remove the mold. S6. After rinsing in the cleaning chamber, the wastewater, carrying the impurities washed down, flows downward through the drain outlet and then into the sliding trough, while the wastewater can then re-enter the storage chamber.