Mold ultrasonic cleaning device

The ultrasonic cleaning device for molds, designed with splicing grooves and winding units, solves the problems of high cleaning costs and space occupation in aviation molds, and achieves all-round cleaning and efficient production.

CN118023203BActive Publication Date: 2025-12-05KEJIA (CHANGXING) MOULD BASE MFG CO LTD
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Patent Information

Application Number
CN202410372640.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-03-29
Publication Date
2025-12-05
Estimated Expiration
2044-03-29

AI Technical Summary

Technical Problem

The special structure and size of aerospace molding dies result in high costs and space requirements for existing ultrasonic cleaning equipment, which affects production efficiency.

Method used

An ultrasonic cleaning device for molds was designed. It achieves all-round cleaning of molds through splicing grooves and adjustable winding units. The ultrasonic vibrating plate and lifting mechanism enhance the cleaning effect and save space and cost.

Benefits of technology

It enables comprehensive cleaning of aircraft molds, reduces equipment costs, optimizes production space utilization, and improves cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of mold cleaning, in particular to a mold ultrasonic cleaning device, which comprises a cleaning tank, the cleaning tank comprises a left side plate and a right side plate, a plurality of splicing grooves are fixedly connected between the left side plate and the right side plate through insertion, the plurality of splicing grooves are fixedly connected to each other through insertion, bolts are screw-connected to the outer walls of the left side plate, the right side plate and the plurality of splicing grooves, winding units one are fixedly connected to the top surfaces of the left side plate and the right side plate, and each winding unit one comprises two winding units one. In the application, the left side plate, the right side plate and the plurality of splicing grooves are arranged, Z-shaped insertion ports capable of being inserted to each other are arranged on the side walls of the three, the aviation mold to be cleaned can be assembled according to the size, and the cost is reduced. Through the connection and cooperation between the two winding units one, the hoisting mechanism and the ultrasonic vibration plate one, the aviation mold in the cleaning agent can be cleaned in all directions, and the cleaning efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of mold cleaning, in particular to a mold ultrasonic cleaning device. BACKGROUND

[0002] In the aviation industry, the cleanliness of the mold has a crucial influence on the quality and performance of the final product. In particular, the aviation forming mold, due to its application in high temperature, high pressure and complex environment, the mold surface often adheres to oil stains, oxides, tiny particles and other impurities, which not only affects the service life of the mold, but also may have a serious impact on the precision and performance of the molded parts. In recent years, ultrasonic cleaning technology has been widely used in the aviation industry due to its high efficiency, environmental protection, non-damage and other characteristics. Ultrasonic cleaning technology uses the rapid expansion and rupture of tiny bubbles generated by high-frequency vibration in the liquid to produce strong impact force and micro-jet, thereby effectively removing the pollutants on the surface of the mold. In addition, ultrasonic cleaning can also improve the permeability and emulsification of the cleaning liquid, further enhancing the cleaning effect.

[0003] However, the aviation forming mold usually has a special structure and size, and the ordinary ultrasonic cleaning tank is not enough to adapt to the size of all aviation molds. Therefore, it is necessary to configure ultrasonic cleaning machines of different sizes, which will be very expensive. In addition, multiple ultrasonic cleaning machines need to occupy a large amount of production space. In the limited factory space, the installation of multiple large equipment may cause space shortage, affecting the production efficiency. SUMMARY

[0004] The purpose of the present application is to provide a mold ultrasonic cleaning device to solve the problems raised in the background art.

[0005] To achieve the above purpose, the present application provides the following technical scheme:

[0006] A mold ultrasonic cleaning device, comprising a cleaning tank, the cleaning tank comprises a left side plate and a right side plate, a plurality of splicing grooves are inserted and fixed between the left side plate and the right side plate, a plurality of splicing grooves are inserted and fixed with each other, the outer walls of the left side plate, the right side plate and a plurality of splicing grooves are all screw-connected with bolts, the top surfaces of the left side plate and the right side plate are all fixedly connected with a winding unit one, the two winding units one each comprise two fixed seats one, a winding roller one is rotatably connected between the two fixed seats one, two partition plates are fixedly connected with the outer wall of the winding roller one at equal distances, a motor one is fixedly connected with the side wall of the fixed seat one, the motor shaft of the motor one is drivingly connected with one end of the winding roller one, and the top surface of the splicing groove is slidingly connected with a hoisting mechanism.

[0007] Further, the outer wall of each of the two winding rollers is wound with two rope one and one rope two, the top surface of the left and right side plates is provided with rope holes.

[0008] Further, the inner bottom surface of each of the plurality of splicing grooves is provided with a groove, and the inside of the groove is slidably connected with an ultrasonic vibration plate one.

[0009] Further, the ultrasonic vibration plate one is rectangular in shape, the bottom surface of the ultrasonic vibration plate one is in contact with the bottom surface of the groove, the opposite two long side walls of the ultrasonic vibration plate one are fixedly connected with two connecting rings one, the inside of each of the four connecting rings one is detachably fixed with a rope buckle one, the four rope buckles one are fixedly connected with the end portions of the four rope one respectively, the opposite two short side walls of the ultrasonic vibration plate one are fixedly connected with two fixed blocks at equal distances, the inside of each of the four fixed blocks is rotatably connected with a roller one, and the outer arc surface of the roller one is in contact with the side wall of the groove.

[0010] Further, the hoisting mechanism comprises a strip-shaped plate, the bottom surface of the strip-shaped plate is fixedly connected with four support seats symmetrically, the inside of each of the four support seats is rotatably connected with a roller two, the outer wall of each of the four rollers two is in contact with the top surface of the splicing groove, the opposite side walls of each of the four rollers two are fixedly connected with a limiting plate, the side wall of the limiting plate is in contact with the outer wall of the splicing groove, the opposite two long side walls of the strip-shaped plate are fixedly connected with two connecting rings two, the inside of each of the two connecting rings two is detachably fixed with a rope buckle two, the two rope buckles two are fixedly connected with the end portions of the two rope two respectively, and the top surface of the strip-shaped plate is fixedly connected with a winding unit two.

[0011] Further, the winding unit two comprises two fixed seats two, a winding roller two is rotatably connected between the two fixed seats two, the top surface of each of the fixed seats two is fixedly connected with a motor two, the motor shaft of the motor two is in transmission connection with one end of the winding roller two, the outer wall of the winding roller two is wound with a rope three, the rope three penetrates through the top surface of the strip-shaped plate, the bottom end of the rope three is fixedly sleeved with a sleeve ring, and the inside of the sleeve ring is fixedly connected with an ultrasonic vibration plate two.

[0012] Further, the top surface of the ultrasonic vibration plate two is fixedly connected with a connecting ring three at each of the four corners, the inside of each of the four connecting rings three is fixedly connected with four hoisting ropes, and the other end of each of the four hoisting ropes is fixedly connected with the inside of the sleeve ring.

[0013] Further, the side wall of the left side plate, the right side plate and the plurality of splicing grooves is provided with a Z-shaped insertion port.

[0014] Preferably, the positions of the left side plate, the right side plate and the plurality of splicing grooves which are inserted with each other are adhesively fixed with a leakage-proof rubber strip.

[0015] Further in: the inner bottom surface of several splicing grooves is provided with several brackets, the bracket includes a round rod, the bottom surface of the round rod is symmetrically and fixedly connected with two legs, and the bottom surface of the leg is in contact with the inner bottom surface of the splicing groove.

[0016] The application also provides an operating method of the mold ultrasonic cleaning device, which specifically comprises the following steps:

[0017] Compared with the prior art, the application has the following beneficial effects:

[0018] By providing the Z-shaped insertion port on the side wall of the left side plate, the right side plate and the plurality of splicing grooves, the plurality of splicing grooves are inserted and fixed between the left side plate and the right side plate, the plurality of splicing grooves are inserted and fixed with each other, the left side plate, the right side plate and the plurality of splicing grooves are fixedly connected through bolts, and the leakproof rubber strips are fixedly bonded at the positions of the left side plate, the right side plate and the plurality of splicing grooves.

[0019] By fixing the winding unit one on the top surface of the left side plate and the right side plate, the two winding unit ones each include two fixed seats one, the two fixed seats one are rotationally connected with the winding roller one, the outer wall of the two winding rollers one is woundly connected with two winding ropes one and one winding rope two, four and are fixedly connected, two and are fixedly connected, and the lower side of is hoisted, so that the motor shaft of the driving motor drives the 2 and to reciprocate, the aviation mold in the cleaning agent is cleaned in all directions, and the cleaning efficiency is improved due to the size problem. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a whole structure schematic diagram of the mold ultrasonic cleaning device.

[0021] Figure 2 It is a cleaning tank structure schematic diagram in the application.

[0022] Figure 3 It is a splicing groove structure schematic diagram in the application.

[0023] Figure 4 It is an ultrasonic vibration plate one structure schematic diagram in the application.

[0024] Figure 5 It is a splicing groove and ultrasonic vibration plate one combined structure schematic diagram in the application.

[0025] Figure 6 It is a hoisting mechanism structure schematic diagram in the application.

[0026] Figure 7 It is a part structure schematic diagram of the mold ultrasonic cleaning device in the application.

[0027] Figure 8It is a bracket structure schematic diagram in the application.

[0028] In the figure: 100, cleaning tank; 110, left side plate; 120, right side plate; 130, splicing groove; 131, groove; 140, winding unit one; 141, fixed seat one; 142, winding roller one; 143, winding rope one; 144, winding rope two; 145, partition plate; 146, motor one; 150, ultrasonic vibration plate one; 151, connecting ring one; 152, rope buckle one; 153, fixed block; 154, roller one; 160, bolt; 200, hoisting mechanism; 210, strip plate; 211, support seat; 212, roller two; 213, limiting plate; 214, connecting ring two; 215, rope buckle two; 220, winding unit two; 221, fixed seat two; 222, winding roller two; 223, motor two; 224, winding rope three; 225, sleeve ring; 230, ultrasonic vibration plate two; 231, connecting ring three; 232, hoisting rope; 300, bracket; 310, round rod; 311, supporting leg. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the application.

[0030] Please refer to Figures 1-8 In the embodiments of the application, the mold ultrasonic cleaning device comprises a cleaning tank 100, the cleaning tank 100 comprises a left side plate 110 and a right side plate 120, a plurality of splicing grooves 130 are inserted and fixed between the left side plate 110 and the right side plate 120, the plurality of splicing grooves 130 are inserted and fixed with each other, bolts 160 are screw-connected to the outer walls of the left side plate 110, the right side plate 120 and the plurality of splicing grooves 130, winding unit ones 140 are fixedly connected to the top surfaces of the left side plate 110 and the right side plate 120, each winding unit one 140 comprises two fixed seats one 141, a winding roller one 142 is rotatably connected between the two fixed seats one 141, two partition plates 145 are fixedly connected to the outer wall of the winding roller one 142 at equal distances, a motor one 146 is fixedly connected to the side wall of the fixed seat one 141, the motor shaft of the motor one 146 is in transmission connection with one end of the winding roller one 142, a hoisting mechanism 200 is slidingly connected to the top surface of the splicing groove 130, Z-shaped insertion ports are formed in the side walls of the left side plate 110, the right side plate 120 and the plurality of splicing grooves 130, and leakproof rubber strips are fixedly bonded at the positions where the left side plate 110, the right side plate 120 and the plurality of splicing grooves 130 are inserted.

[0031] Specifically, according to the size of the aviation forming mold to be cleaned, the number of spliced grooves 130 required is determined, the Z-shaped insertion interfaces of a plurality of spliced grooves 130 are inserted into each other, and then the left side plate 110 and the right side plate 120 are respectively inserted into the left and right sides of the spliced grooves 130 combined together, so as to form a complete cleaning groove 100. Then the left side plate 110, the right side plate 120 and the plurality of spliced grooves 130 are fixedly connected together through a plurality of bolts 160 to ensure the stability of the whole. The Z-shaped insertion interfaces of the left side plate 110, the right side plate 120 and the plurality of spliced grooves 130 are all bonded and fixed with waterproof rubber strips to avoid water leakage during the cleaning of the mold. Two rope winding two 144 and the lifting mechanism 200 are connected. When the motor shaft of the driving motor one 146 drives the winding roller one 142, the lifting mechanism 200 can be reciprocally moved on the top surface of the spliced groove 130.

[0032] Embodiment one

[0033] As shown in Figures 2-5 and Figure 7 In this embodiment, the outer walls of the two winding rollers one 142 are both wound with two rope winding one 143 and one rope winding two 144. The top surfaces of the left side plate 110 and the right side plate 120 are both provided with rope holes. The inner bottom surfaces of the plurality of spliced grooves 130 are both provided with grooves 131. The inside of the groove 131 is slidably connected with an ultrasonic vibration plate one 150. The shape of the ultrasonic vibration plate one 150 is rectangular. The bottom surface of the ultrasonic vibration plate one 150 is in contact with the bottom surface of the groove 131. The opposite two long side walls of the ultrasonic vibration plate one 150 are both fixedly connected with two connecting rings one 151. The interiors of the four connecting rings one 151 are all detachably fixed with rope buckles one 152. The four rope buckles one 152 are respectively fixedly connected with the end portions of the four rope winding one 143. The opposite two short side walls of the ultrasonic vibration plate one 150 are both fixedly connected with two fixed blocks 153 at equal distances. The interiors of the four fixed blocks 153 are all rotatably connected with rollers one 154. The outer arc surfaces of the rollers one 154 are in contact with the side walls of the groove 131.

[0034] In the embodiment, after the plurality of splicing grooves 130 are spliced together, the ultrasonic vibration plate 150 is embedded into the groove 131, and the four ropes 143 passing through the top surface of the left plate 110 and the right plate 120 and then passing out from the inner side wall are fixed with the four buckles 152 respectively, and then the four buckles 152 are buckled with the four connecting rings 151 respectively, and finally the left plate 110 and the right plate 120 are spliced and fixed by the bolts 160, water and cleaning agent are added into the cleaning tank 100, the aviation forming mold is placed in the cleaning agent in the cleaning tank 100, the ultrasonic vibration plate 150 is started, the transducer in the ultrasonic vibration plate 150 converts the acoustic energy of the power ultrasonic frequency source into mechanical vibration, the ultrasonic wave is radiated to the cleaning liquid in the tank through the tank wall 100, the micro-bubbles in the liquid in the tank can vibrate under the action of the ultrasonic wave, the adsorption of the dirt and the surface of the cleaning part is destroyed, the fatigue failure of the dirt layer is caused and peeled off, the vibration of the gas type bubble scrubs the surface of the solid, so that the dirt is peeled off, and the cleaning effect is achieved. The driving of the two motors 146 in the same direction on the winding roller 142 can make the rope 143 pull and pull the ultrasonic vibration plate 150, the roller 154 and the inner wall of the groove 131 are matched, the friction is reduced, and the ultrasonic vibration plate 150 can move along the groove 131 under the pulling action of the rope 143. The clockwise rotation or counterclockwise rotation of the driving motor 146 can drive the ultrasonic vibration plate 150 to reciprocate at the bottom of the splicing groove 130, and the aviation forming mold is cleaned comprehensively, the problem that the mold is too large to be cleaned completely is solved, and the corresponding cost is saved. The shape of the splicing groove 130 is trapezoidal, and the splicing groove 130 can be stacked for storage, reducing the floor area.

[0035] As shown in Figure 1 and Figure 8 In the embodiment, a plurality of splicing grooves 130 are provided with a plurality of brackets 300 on the inner bottom surface, the bracket 300 comprises a round rod 310, and the bottom surface of the round rod 310 is fixedly connected with two legs 311 in symmetry, and the bottom surface of the leg 311 is in contact with the inner bottom surface of the splicing groove 130.

[0036] In the embodiment, after the plurality of splicing grooves 130 are spliced together, the ultrasonic vibration plate 150 is embedded into the groove 131, and the four ropes 143 passing through the top surface of the left plate 110 and the right plate 120 and then passing out from the inner side wall are fixed with the four buckles 152 respectively, and then the four buckles 152 are buckled with the four connecting rings 151 respectively, and finally the left plate 110 and the right plate 120 are spliced and fixed by the bolts 160, water and cleaning agent are added into the cleaning tank 100, the aviation forming mold is placed in the cleaning agent in the cleaning tank 100, the ultrasonic vibration plate 150 is started, the transducer in the ultrasonic vibration plate 150 converts the acoustic energy of the power ultrasonic frequency source into mechanical vibration, the ultrasonic wave is radiated to the cleaning liquid in the tank through the tank wall 100, the micro-bubbles in the liquid in the tank can vibrate under the action of the ultrasonic wave, the adsorption of the dirt and the surface of the cleaning part is destroyed, the fatigue failure of the dirt layer is caused and peeled off, the vibration of the gas type bubble scrubs the surface of the solid, so that the dirt is peeled off, and the cleaning effect is achieved. The driving of the two motors 146 in the same direction on the winding roller 142 can make the rope 143 pull and pull the ultrasonic vibration plate 150, the roller 154 and the inner wall of the groove 131 are matched, the friction is reduced, and the ultrasonic vibration plate 150 can move along the groove 131 under the pulling action of the rope 143. The clockwise rotation or counterclockwise rotation of the driving motor 146 can drive the ultrasonic vibration plate 150 to reciprocate at the bottom of the splicing groove 130, and the aviation forming mold is cleaned comprehensively, the problem that the mold is too large to be cleaned completely is solved, and the corresponding cost is saved. The shape of the splicing groove 130 is trapezoidal, and the splicing groove 130 can be stacked for storage, reducing the floor area.

[0037] Embodiment two

[0038] On the basis of embodiment one, in order to make up for the ultrasonic cleaning area not enough due to the mold too large in embodiment one, the lifting mechanism 200 is arranged on the top surface of the splicing groove 130.

[0039] As shown in Figure 1 and Figures 6-7 In this embodiment, the lifting mechanism 200 includes a strip-shaped plate 210, the bottom surface of the strip-shaped plate 210 is symmetrically and fixedly connected with four support seats 211, the inner part of each of the four support seats 211 is rotatably connected with a roller two 212, the outer wall of each of the four roller two 212 is in contact with the top surface of the splicing groove 130, the side wall opposite to each other of the four roller two 212 is fixedly connected with a limiting plate 213, the side wall of the limiting plate 213 is in contact with the outer wall of the splicing groove 130, the two long side walls opposite to each other of the strip-shaped plate 210 are fixedly connected with a connecting ring two 214, the inner part of each of the two connecting ring two 214 is detachably fixed with a rope buckle two 215, the two rope buckle two 215 are respectively fixedly connected with the end part of the two rope winding two 144, the top surface of the strip-shaped plate 210 is fixedly connected with a winding unit two 220, the winding unit two 220 includes two fixed seats two 221, the two fixed seats two 221 are rotatably connected with a winding roller two 222, the top surface of the fixed seat two 221 is fixedly connected with a motor two 223, the motor shaft of the motor two 223 is drivingly connected with one end of the winding roller two 222, the outer wall of the winding roller two 222 is woundly connected with a rope winding three 224, the rope winding three 224 penetrates through the top surface of the strip-shaped plate 210, the bottom end of the rope winding three 224 is fixedly sleeved with a thimble 225, the inner part of the thimble 225 is fixedly connected with an ultrasonic vibration plate two 230, the top surface of the ultrasonic vibration plate two 230 is fixedly connected with a connecting ring three 231 at four corners, the inner part of each of the four connecting ring three 231 is fixedly connected with four lifting ropes 232, the other end of each of the four lifting ropes 232 is fixedly connected with the inner part of the thimble 225.

[0040] In the embodiment, after the cleaning tank 100 and the bracket 300 are installed, the lifting mechanism 200 is placed above the splicing groove 130, the outer arc surface of the roller two 212 is in contact with the top surface of the splicing groove 130, the four limiting plates 213 are in contact with the outer side walls of the splicing groove 130 respectively, the position of the lifting mechanism 200 is limited, the lifting mechanism 200 is prevented from falling from the top surface of the splicing groove 130 during movement, the two rope two 144 are fixedly connected with the two rope buckles two 215 respectively, the two rope buckles two 215 are buckled with the two connecting rings two 214 respectively, the rope two 144 is wound and adjusted, the positions of the ultrasonic vibration plate one 150 and the ultrasonic vibration plate two 230 correspond to each other, when the driving motor one 146 is driven, the two are moved synchronously, after the positions are adjusted, the motor shaft of the driving motor two 223 is driven to drive the winding roller two 222, the rope three 224 is released downward, the ultrasonic vibration plate two 230 is immersed in the cleaning agent and located above the aviation mold, after the ultrasonic vibration plate two 230 and the ultrasonic vibration plate one 150 are started synchronously, the motor shaft of the two driving motors one 146 is driven to drive the winding roller one 142, the roller one 154 slides in the plurality of grooves 131 with the ultrasonic vibration plate one 150, the roller two 212 moves on the top surface of the plurality of splicing grooves 130 with the ultrasonic vibration plate two 230, the cleaning range of the aviation mold is increased, and the ultrasonic cleaning effect is enhanced.

[0041] It will be apparent to those skilled in the art that the application is not limited to the details of the above-exemplified embodiments and that the present application can be implemented in other particular forms without departing from the spirit or essential characteristics thereof. The presently disclosed embodiments are therefore considered in all respects to be illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the description given above, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the scope of the claims.

[0042] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be combined appropriately to form other embodiments that those skilled in the art can understand.

Claims

1. A mold ultrasonic cleaning apparatus characterized by comprising: The utility model provides a cleaning tank, the cleaning tank includes left side board (110) and right side board (120), and the left side board (110) and right side board (120) between jointing fixed with a plurality of spliced groove (130), a plurality of spliced groove (130) between each other jointing fixed, the outer wall of left side board (110), right side board (120) and a plurality of spliced groove (130) all are screwed with bolt (160), the top of left side board (110) and right side board (120) all are fixedly connected with winding unit one (140), two winding unit one (140) all include two fixed seat one (141), two fixed seat one (141) between rotationally connected with winding roller one (142), the outer wall of winding roller one (142) equidistantly sleeve joint fixed with two partition board (145), the side wall of fixed seat one (141) is fixedly connected with motor one (146), the motor shaft of motor one (146) drive and winding roller one (142) one end transmission connection, the top of spliced groove (130) is slidably connected with hoisting mechanism (200); The inner bottom of a plurality of spliced groove (130) is provided with groove (131), and the inside of groove (131) is slidably connected with ultrasonic vibration plate one (150); The hoisting mechanism (200) includes a strip-shaped plate (210), the bottom of the strip-shaped plate (210) is fixedly connected with four supporting seats (211) symmetrically, the inside of the four supporting seats (211) is rotatably connected with four rollers (212), the outer wall of the four rollers (212) is in contact with the top of the spliced groove (130), the opposite side walls of the four rollers (212) are fixedly connected with limit plates (213), the side wall of the limit plate (213) is in contact with the outer wall of the spliced groove (130), the opposite two long side walls of the strip-shaped plate (210) are fixedly connected with two connecting rings (214), the inside of the two connecting rings (214) is detachably fixed with two rope buckles (215), the two rope buckles (215) are fixedly connected with the ends of two winding ropes (144) respectively, and the top of the strip-shaped plate (210) is fixedly connected with winding unit two (220). The winding unit two (220) includes two fixed seats two (221), and the two fixed seats two (221) are rotatably connected with winding rollers two (222), the top of the fixed seat two (221) is fixedly connected with a motor two (223), the motor shaft of the motor two (223) is in transmission connection with one end of the winding rollers two (222), and the outer wall of the winding rollers two (222) is woundly connected with a winding rope three (224), the winding rope three (224) penetrates through the top of the strip-shaped plate (210), the bottom end of the winding rope three (224) is fixedly sleeved with a sleeve ring (225), and the inside of the sleeve ring (225) is fixedly connected with an ultrasonic vibration plate two (230).

2. The ultrasonic cleaning apparatus for a mold according to claim 1, wherein The outer wall of each of the two winding rollers (142) is wound with two rope one (143) and one rope two (144), the top surface of the left side plate (110) and the right side plate (120) is provided with rope holes.

3. The ultrasonic cleaning apparatus for a mold according to claim 1, wherein The side wall of the left side plate (110), the right side plate (120) and the plurality of splicing grooves (130) is provided with a Z-shaped insertion port.

4. The ultrasonic cleaning apparatus for molds according to claim 1, wherein The position between the left side plate (110), the right side plate (120) and the plurality of splicing grooves (130) is adhered and fixed with a leakage-proof rubber strip.

5. The ultrasonic cleaning apparatus for molds according to claim 1, wherein The inner bottom surface of the plurality of splicing grooves (130) is provided with a plurality of brackets (300), the bracket (300) comprises a round rod (310), the bottom surface of the round rod (310) is fixedly connected with two legs (311) in a symmetrical manner, and the bottom surface of the leg (311) is in contact with the inner bottom surface of the splicing groove (130).

6. The ultrasonic cleaning apparatus for molds according to claim 1, wherein The shape of the ultrasonic vibration plate one (150) is rectangular, the bottom surface of the ultrasonic vibration plate one (150) is in contact with the bottom surface of the groove (131), the opposite two long side walls of the ultrasonic vibration plate one (150) are fixedly connected with two connecting rings one (151), the interiors of the four connecting rings one (151) are detachably fixed with rope buckles one (152), the four rope buckles one (152) are respectively fixedly connected with the end portions of the four rope one (143), the opposite two short side walls of the ultrasonic vibration plate one (150) are fixedly connected with two fixed blocks (153) at equal distances, the interiors of the four fixed blocks (153) are rotatably connected with rollers one (154), and the outer arc surfaces of the rollers one (154) are in contact with the side walls of the groove (131).

7. The ultrasonic cleaning apparatus of claim 1, wherein The top surface of the ultrasonic vibration plate two (230) is fixedly connected with connecting rings three (231) at four corners, the interiors of the four connecting rings three (231) are fixedly connected with four hoisting ropes (232), and the other ends of the four hoisting ropes (232) are fixedly connected with the interiors of the sleeve rings (225).

Citation Information

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