A UV point light source curing machine
By designing a UV point light source curing machine that includes coating unit, purification component, washing component and drying component, the problem of uneven distribution of endoscope coating is solved, and more efficient coating and cleaning treatment is achieved, and the service life of the endoscope is extended.
Patent Information
- Application Number
- CN202411961689.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2044-12-30
AI Technical Summary
During the endoscope coating process, the coating may be difficult to evenly distribute, resulting in insufficient protection in some parts. Improper coating process may lead to uneven coating or problems such as bubbles and scratches, affecting the performance and service life of the endoscope.
A UV point light source curing machine is designed, including coating units, purification components, washing and drying components. Through the coordinated work of these components, it ensures that the endoscope surface is uniformly coated and cleaned and improves the coating quality.
Through the use of this curing machine, the uniformity and firmness of the endoscope surface coating can be effectively improved, the service life of the endoscope can be extended, and the coating quality can be improved.
Smart Images

Figure CN119368395B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of curing machines, and particularly to a UV point light source curing machine. Background Art
[0002] A protective film or coating is usually required to be coated on the surface of an endoscope to improve its wear resistance, corrosion resistance or biocompatibility. A UV point light source curing machine is used to cure these coatings to ensure that the coatings crosslink and harden rapidly under the irradiation of ultraviolet rays, forming a firm protective layer.
[0003] During the coating process, it may be difficult to ensure the uniform distribution of the coating on the surface, resulting in insufficient protection of some parts of the endoscope. Improper coating process will lead to problems such as uneven coating, bubbles, scratches, etc., thus affecting the performance and service life of the endoscope, and making the effect of the UV point light source curing machine unavailable. Summary of the Invention
[0004] In view of the above problems of a UV point light source curing machine, the present invention is proposed.
[0005] Therefore, the object of the present invention is to provide a UV point light source curing machine, which is used to solve the problems that it may be difficult to ensure the uniform distribution of the coating on the surface during the coating process, resulting in insufficient protection of some parts of the endoscope, and improper coating process will lead to problems such as uneven coating, bubbles, scratches, etc., thus affecting the performance and service life of the endoscope, and making the effect of the UV point light source curing machine unavailable.
[0006] To solve the above technical problems, the present invention provides the following technical solution: A UV point light source curing machine, comprising: a curing unit, the curing unit includes a bottom plate, a first bracket and a top plate, the first bracket is arranged on the top surface of the bottom plate, the top plate is arranged on the front side of the first bracket, a curing machine body is arranged on the inner side surface of the top plate, a liquid storage tank is arranged on the inner side surface of the top plate, and the liquid storage tank is located on the right side of the curing machine body. A plurality of fixed cylinders are arranged on the bottom surface of the top plate, and two fixed cylinders are respectively located below the curing machine body or the liquid storage tank. A clamping plate is arranged on the bottom surface of the fixed cylinder. A coating unit is arranged on the top surface of the bottom plate, and the coating unit is located below the top plate;
[0007] The coating unit includes a motor arranged on the inner side surface of the bottom plate, a rotating shaft is arranged at the output end of the motor, a first gear is arranged on the outer side surface of the rotating shaft, a purification component with a purification function is arranged on the inner side surface of the first bracket, a processing curved plate is arranged on the front side of the first bracket, and the processing curved plate is located above the rotating shaft. A washing and care component with a cleaning function is arranged on the inner side surface of the processing curved plate. Drying components with a tidying function are arranged on the upper and lower side surfaces of the processing curved plate. A moving component with an auxiliary coating function is arranged on the inner side surface of the bottom plate, and a moving groove matching the moving component is opened on the inner side surface of the bottom plate.
[0008] As a preferred embodiment of the UV point light source curing machine described in the present invention, wherein: the purification component includes a first reciprocating lead screw disposed on the inner side surface of the first bracket, a second gear is disposed on the outer side surface of the first reciprocating lead screw, and the second gear meshes with the first gear. A pressing plate is disposed on the outer side surface of the first reciprocating lead screw. A drain groove matching the pressing plate is formed on the inner side surface of the first bracket. A water spray pipe is disposed on the top surface of the drain groove, and the water spray pipe is located behind the first reciprocating lead screw. A rotating cylinder is disposed at one end of the water spray pipe away from the drain groove. A water ring is disposed on the outer side surface of the rotating cylinder. A plurality of water spray heads are disposed on the right side surface of the water ring.
[0009] As a preferred embodiment of the UV point light source curing machine described in the present invention, wherein: a water suction pipe is disposed on the inner side surface of the first bracket, and the water suction pipe is located in front of the first reciprocating lead screw. A water storage tank is disposed at one end of the water suction pipe away from the drain groove. A filter box is disposed between the water storage tank and the processing curved plate.
[0010] As a preferred embodiment of the UV point light source curing machine described in the present invention, wherein: the washing and care component includes a first bevel gear disposed on the outer side surface of the first reciprocating lead screw. A connecting rod is disposed on the inner side surface of the processing curved plate, and the connecting rod is located above the first reciprocating lead screw. A second bevel gear is disposed on the outer side surface of the connecting rod, and the second bevel gear meshes with the first bevel gear. A third bevel gear is disposed at one end of the water spray pipe away from the second bevel gear. A friction wheel is disposed on the inner side surface of the processing curved plate, and the friction wheel is located on the left side surface of the water ring. A fourth bevel gear is disposed on the outer side surface of the friction wheel, and the fourth bevel gear meshes with the third bevel gear.
[0011] As a preferred embodiment of the UV point light source curing machine described in the present invention, wherein: the drying component includes a connecting ring disposed on the outer side surface of the connecting rod, and the connecting ring is located at the middle position of the connecting rod. A belt is disposed on the outer side surface of the connecting ring. A plurality of storage rolls are disposed on the inner side surface of the belt. Second brackets are disposed on the front and rear side surfaces of the storage roll, and the second brackets are fixedly connected to the processing curved plate. A drying roll is disposed between the inner side surfaces of the front and rear two connecting rings, and the drying roll is located on the left side of the storage roll. An extrusion pipe is disposed between the front and rear two second brackets, and the extrusion pipe is disposed between the two drying rolls.
[0012] As a preferred solution of the UV point light source curing machine described in the present invention, wherein: the moving assembly includes a worm disposed on the inner side surface of the bottom plate, and the worm is located in front of the rotating shaft. A third gear is disposed on the outer side surface of the worm, and the third gear meshes with the first gear. A second reciprocating screw rod is disposed on the inner side surface of the bottom plate in front of the worm. A worm gear is disposed on the outer side surface of the second reciprocating screw rod, and the worm gear meshes with the worm. A plurality of moving blocks are disposed on the outer side surface of the second reciprocating screw rod, and the left moving block is connected to the second reciprocating screw rod through a reciprocating thread. A moving plate is disposed between the top surfaces of the two moving blocks. A plurality of fixing plates are disposed on the top surface of the moving plate. One side between the two fixing plates is provided with an extrusion cylinder, and an extrusion ring is disposed on the outer side surface of the extrusion cylinder through a thread.
[0013] As a preferred solution of the UV point light source curing machine described in the present invention, wherein: a storage plate is disposed between the sides of the two clamping plates away from the top plate. A connecting plate is disposed on the top surface of the storage plate. A plurality of clamping plates are disposed on the inner side surface of the connecting plate, and the clamping plates are fixedly connected to the clamping plates. A guiding cylinder is disposed on the side of the storage plate away from the fixed cylinder. A storage box is disposed on the side of the guiding cylinder away from the storage plate.
[0014] The beneficial effects of the present invention:
[0015] 1. Start the coating unit structure. The coating unit structure drives the moving assembly structure to move to the left when starting. During the start of the coating unit, it drives the purification component structure to operate. The purification component structure sprays and wets the endoscopic detection part inside the processed curved plate, and at the same time cleans the surface of the endoscope, separating some impurities from the endoscope, so as to keep the surface of the endoscope clean. Then the endoscope passes through the washing and care component structure part. Through the contact and friction between the washing and care component structure and the surface of the endoscope, the adhered and solidified impurities are processed. Then the endoscope passes through the position of the drying component. Through the operation of the drying component structure, the wet part attached to the surface of the endoscope is processed, so as to keep the surface of the endoscope dry. Thus, when the right clamping plate structure coats the endoscope, the coating quality is improved.
[0016] 2. Discharged through the water spray head under the action of water pressure. The flying water flow cleans the surface of the endoscope, wets the surface of the endoscope, and drips with impurities, improving the cleanliness of the surface of the endoscope, which helps to improve the coating quality of the endoscope, and thus improves the effect after the curing machine processes the endoscope.
[0017] 3. The storage roll pulls the absorbent cotton wrapped around the outer surface of the storage roll for storage. The absorbent cotton is wound around the surface of the drying roll and passes over the surface of the extrusion tube under the pull of the storage roll. Under the extrusion of the extrusion tube, it comes into full contact with the surface of the endoscope, so as to fully absorb the residual moisture on the surface of the endoscope, and then be stored on the surface of the storage roll. The structure of the drying component can be replaced by disassembly, so as to maintain the use of the drying component structure, keep the surface of the endoscope dry, and ensure that no liquid remains on the surface of the endoscope after cleaning, which will affect the coating on the surface of the endoscope. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained according to these drawings. Among them:
[0019] Figure 1 is a three-dimensional structure schematic diagram of a UV point light source curing machine of the present invention.
[0020] Figure 2 is a front view sectional structure schematic diagram of a UV point light source curing machine of the present invention.
[0021] Figure 3 is Figure 2 the enlarged structure schematic diagram at A in
[0022] Figure 4 is a connection structure schematic diagram of the coating unit of a UV point light source curing machine of the present invention.
[0023] Figure 5 is a structure schematic diagram of the curing unit of a UV point light source curing machine of the present invention.
[0024] Figure 6 is a structure schematic diagram of the drying component of a UV point light source curing machine of the present invention.
[0025] Figure 7 is a connection structure schematic diagram of the purification component and the washing and care component of a UV point light source curing machine of the present invention.
[0026] Description of the Drawings: 100, curing unit; 101, bottom plate; 102, first bracket; 103, top plate; 104, fixing cylinder; 105, clamping plate; 106, curing machine body; 107, liquid storage tank; 108, storage plate; 109, storage box; 110, connecting plate; 111, clamping board; 112, guiding cylinder; 200, coating unit; 201, motor; 202, rotating shaft; 203, purification component; 2031, first reciprocating lead screw; 2032, second gear; 2033, pressing plate; 2034, water suction pipe; 2035, water storage tank; 2036, water spraying pipe; 2037, rotating cylinder; 2038, water ring; 2039, water spraying head; 20310, filter box; 204, first gear; 205, processing curved plate; 206, moving groove; 207, drying component; 2071, connecting ring; 2072, second bracket; 2073, drying roll; 2074, extrusion pipe; 2075, storage roll; 2076, belt; 208, moving component; 2081, worm; 2082, third gear; 2083, second reciprocating lead screw; 2084, worm gear; 2085, moving block; 2086, moving plate; 2087, fixing plate; 2088, extrusion cylinder; 2089, extrusion ring; 209, washing and care component; 2091, first bevel gear; 2092, connecting rod; 2093, second bevel gear; 2094, third bevel gear; 2095, friction wheel; 2096, fourth bevel gear. Detailed Description of the Invention
[0027] In order to make the above objects, features and advantages of the present invention more obvious and understandable, the following detailed description of the specific embodiments of the present invention will be made with reference to the accompanying drawings of the specification.
[0028] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art can make similar generalizations without departing from the connotation of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed below.
[0029] Secondly, the so-called "one embodiment" or "embodiment" herein refers to a specific feature, structure or characteristic that may be included in at least one implementation manner of the present invention. The appearances of "in one embodiment" in different places in this specification do not all refer to the same embodiment, nor are they separate or alternative embodiments that are mutually exclusive with other embodiments.
[0030] Furthermore, the present invention will be described in detail with reference to the schematic diagrams. When describing the embodiments of the present invention in detail, for the convenience of explanation, the cross-sectional views showing the device structures will be enlarged locally in a non-general proportion, and the schematic diagrams are only examples and should not limit the scope of protection of the present invention herein. In addition, in actual production, three-dimensional spatial dimensions including length, width and depth should be included.
[0031] Reference Figure 1-7 Figure 1-7 , an embodiment of the present invention provides a UV point light source curing machine, which includes: a curing unit 100, the curing unit 100 includes a bottom plate 101, a first bracket 102 and a top plate 103. The first bracket 102 is arranged on the top surface of the bottom plate 101, the top plate 103 is arranged on the front side surface of the first bracket 102, a curing machine body 106 is arranged on the inner side surface of the top plate 103, a liquid storage tank 107 is arranged on the inner side surface of the top plate 103, and the liquid storage tank 107 is located on the right side of the curing machine body 106. A plurality of fixing cylinders 104 are arranged on the bottom surface of the top plate 103, and two fixing cylinders 104 are respectively located below the curing machine body 106 or the liquid storage tank 107. A clamping plate 105 is arranged on the bottom surface of the fixing cylinder 104. A coating unit 200 is arranged on the top surface of the bottom plate 101, and the coating unit 200 is located below the top plate 103;
[0032] The coating unit 200 includes a motor 201 arranged on the inner side surface of the bottom plate 101. The output end of the motor 201 is provided with a rotating shaft 202. A first gear 204 is arranged on the outer side surface of the rotating shaft 202. A purification component 203 with a purification function is arranged on the inner side surface of the first bracket 102. A processing curved plate 205 is arranged on the front side surface of the first bracket 102, and the processing curved plate 205 is located above the rotating shaft 202. A washing and care component 209 with a cleaning function is arranged on the inner side surface of the processing curved plate 205. Drying components 207 with a neatening function are arranged on the upper and lower side surfaces of the processing curved plate 205. A moving component 208 with an auxiliary coating function is arranged on the inner side surface of the bottom plate 101. A moving groove 206 matching the moving component 208 is formed on the inner side surface of the bottom plate 101;
[0033] Specifically, when using this device, it is necessary to start the curing machine body 106, then replenish the coating liquid inside the liquid storage tank 107, then fixedly connect the endoscopic detection part to the right-side structure of the moving component 208, and then the left-side part passes through the processing curved plate 205 and is fixedly connected to the left-side structure of the moving component 208, and the left end of the endoscope is located on the right side of the clamping plate 105. Then, start the coating unit 200 structure. The start of the coating unit 200 structure drives the moving component 208 structure to move to the left. During the start of the coating unit 200, it drives the purification component 203 structure to operate. The operation of the purification component 203 structure sprays and wets the endoscopic detection part passing through the inside of the processing curved plate 205, and at the same time cleans the surface of the endoscope, separating some impurities from the endoscope, so as to keep the surface of the endoscope clean. Then, the endoscope passes through the washing and care component 209 structure. Through the contact friction between the washing and care component 209 structure and the surface of the endoscope, the adhered impurities are processed. Then, the endoscope passes through the position of the drying component 207. Through the operation of the drying component 207 structure, the wet part attached to the surface of the endoscope is processed, so as to keep the surface of the endoscope dry. Thus, when the right clamping plate 105 structure coats the endoscope, the coating quality is improved. After starting, the liquid outlet is arranged inside the right clamping plate 105 and starts when the endoscope structure passes by, and the surface of the endoscope is coated. Then, the coating unit 200 structure drives the coated part of the endoscope through the moving component 208 to pass through the curing machine body 106 connected to the left clamping plate 105 for curing treatment, thus completing the surface coating treatment of the endoscope production and improving the service life of the endoscope. Through the mutual cooperation between the structures, the surface of the endoscope can be effectively treated.
[0034] Referring to Figure 3-4 As shown in FIGS. 7, the purification component 203 includes a first reciprocating lead screw 2031 arranged on the inner side surface of the first support 102. A second gear 2032 is arranged on the outer side surface of the first reciprocating lead screw 2031, and the second gear 2032 meshes with the first gear 204. A pressing plate 2033 is arranged on the outer side surface of the first reciprocating lead screw 2031. A drainage groove matching the pressing plate 2033 is formed on the inner side surface of the first support 102. A water spray pipe 2036 is arranged on the top surface of the drainage groove, and the water spray pipe 2036 is located behind the first reciprocating lead screw 2031. A rotating cylinder 2037 is arranged at one end of the water spray pipe 2036 away from the drainage groove. A water ring 2038 is arranged on the outer side surface of the rotating cylinder 2037. A plurality of water spray heads 2039 are arranged on the right side surface of the water ring 2038;
[0035] Specifically, when using this device, with the motor 201 as the power source, the first gear 204 drives the first reciprocating lead screw 2031 to rotate through the second gear 2032. The first reciprocating lead screw 2031 drives the pressure plate 2033 to move up and down in the drainage groove through the reciprocating thread on the outer side, pressing the water accumulated inside the drainage groove into the inside of the water spray pipe 2036. A one-way valve that only allows water to flow out but not in is provided between the water spray pipe 2036 and the drainage groove. The water flows through the water spray pipe 2036 into the inside of the rotating cylinder 2037, enabling the water to accumulate inside the water ring 2038, and then being discharged through the water spray head 2039 under the action of water pressure. The flying water flow cleans the surface of the endoscope, moistens the surface of the endoscope, and carries impurities to drip off, improving the cleanliness of the surface of the endoscope, which helps to improve the coating quality of the endoscope, thereby enhancing the effect after the endoscope is processed by the curing machine.
[0036] Refer to Figure 3-4 and Figure 7 As shown, a water suction pipe 2034 is provided on the inner side of the first support 102, and the water suction pipe 2034 is located in front of the first reciprocating lead screw 2031. A water storage tank 2035 is provided at one end of the water suction pipe 2034 away from the drainage groove, and a filter box 20310 is provided between the water storage tank 2035 and the processing curved plate 205;
[0037] Specifically, when the purification component 203 structure is operating, the first reciprocating lead screw 2031 drives the pressure plate 2033 to move up and down, extracting clean liquid from the inside of the water storage tank 2035 through the water suction pipe 2034 and entering the drainage groove. After the water spray head 2039 cleans the endoscope, the liquid with impurities drips into the inside of the processing curved plate 205, and then enters the inside of the water storage tank 2035 through the filter box 20310 for reuse. Filter materials are provided inside the filter box 20310. At the same time, the filter box 20310 is connected to the processing curved plate 205 and the water storage tank 2035 through snap connection. The outer shell of the filter box 20310 is made of rubber material, which will not easily deform and is convenient for disassembly and cleaning.
[0038] Refer to Figure 3-4 and Figure 7 As shown, the washing and care component 209 includes a first bevel gear 2091 provided on the outer side of the first reciprocating lead screw 2031. A connecting rod 2092 is provided on the inner side of the processing curved plate 205, and the connecting rod 2092 is located above the first reciprocating lead screw 2031. A second bevel gear 2093 is provided on the outer side of the connecting rod 2092, and the second bevel gear 2093 meshes with the first bevel gear 2091. A third bevel gear 2094 is provided at one end of the water spray pipe 2036 away from the second bevel gear 2093. A friction wheel 2095 is provided on the inner side of the processing curved plate 205, and the friction wheel 2095 is located on the left side of the water ring 2038. A fourth bevel gear 2096 is provided on the outer side of the friction wheel 2095, and the fourth bevel gear 2096 meshes with the third bevel gear 2094;
[0039] Specifically, when using this device, the purification component 203 is used as the power transmission structure to transmit the power of the motor 201 to the first bevel gear 2091. Then, the first bevel gear 2091 drives the connecting rod 2092 to rotate through the second bevel gear 2093. The connecting rod 2092 drives the fourth bevel gear 2096 to rotate through the third bevel gear 2094. During the rotation of the fourth bevel gear 2096, the friction wheel 2095 is driven to rotate. During the rotation of the friction wheel 2095, it frictions the surface of the endoscope moistened by the water spray head 2039. At the same time, the water spray head 2039 sprays the position where the friction wheel 2095 contacts the endoscope, so as to accelerate the separation of the attached substances, thereby improving the cleaning degree of the endoscope by the friction wheel 2095. Then, the friction wheel 2095 drives the water spray head 2039 to rotate through the rotating cylinder 2037 to perform rotary spraying cleaning on the surface of the endoscope, so as to increase the cleaning range and improve the coating quality. The water flow flowing down from the water spray head 2039 spraying on the friction wheel 2095 carries impurities into the filter box 20310 for filtering and collection.
[0040] Refer to Figure 4 As shown in FIG. 6, the drying component 207 includes a connecting ring 2071 disposed on the outer side surface of the connecting rod 2092, and the connecting ring 2071 is located at the middle position of the connecting rod 2092. A belt 2076 is disposed on the outer side surface of the connecting ring 2071. A plurality of storage rolls 2075 are disposed on the inner side surface of the belt 2076. Second brackets 2072 are disposed on the front and rear side surfaces of the storage roll 2075, and the second brackets 2072 are fixedly connected to the processing curved plate 205. A drying roll 2073 is disposed between the inner side surfaces of the front and rear two connecting rings 2071, and the drying roll 2073 is located on the left side of the storage roll 2075. An extrusion tube 2074 is disposed between the front and rear two second brackets 2072, and the extrusion tube 2074 is disposed between the two drying rolls 2073;
[0041] Specifically, when using this device, the connecting rod 2092 is used as the power conduction structure. The connecting rod 2092 drives the belt 2076 to rotate through the connecting ring 2071. The belt 2076 drives the storage roll 2075 to rotate. The storage roll 2075 pulls the absorbent cotton wrapped around the outer side surface of the storage roll 2075 for storage. The absorbent cotton is wound around the surface of the drying roll 2073 and passes through the surface of the extrusion tube 2074 under the pulling of the storage roll 2075. Under the extrusion of the extrusion tube 2074, it is in full contact with the surface of the endoscope, so as to fully absorb the remaining moisture on the surface of the endoscope, and then store it on the surface of the storage roll 2075. The structure of the drying component 207 can be replaced by a detachable method, so as to maintain the use of the structure of the drying component 207 and keep the surface of the endoscope dry, ensuring that the surface of the cleaned endoscope will not have residual liquid affecting the coating on the surface of the endoscope.
[0042] Reference Figure 2 , Figure 4 and Figure 7 As shown, the moving component 208 includes a worm 2081 disposed on the inner side of the bottom plate 101, and the worm 2081 is located in front of the rotating shaft 202. A third gear 2082 is disposed on the outer side of the worm 2081, and the third gear 2082 meshes with the first gear 204. A second reciprocating lead screw 2083 is disposed on the inner side of the bottom plate 101 in front of the worm 2081. A worm gear 2084 is disposed on the outer side of the second reciprocating lead screw 2083, and the worm gear 2084 meshes with the worm 2081. A plurality of moving blocks 2085 are disposed on the outer side of the second reciprocating lead screw 2083, and the left moving block 2085 is connected to the second reciprocating lead screw 2083 by a reciprocating thread. A moving plate 2086 is disposed between the tops of the two moving blocks 2085. A plurality of fixing plates 2087 are disposed on the top surface of the moving plate 2086. On one side between the two fixing plates 2087, an extrusion cylinder 2088 is disposed. An extrusion ring 2089 is disposed on the outer side of the extrusion cylinder 2088 by a thread;
[0043] Specifically, when using this device, the right side of the endoscope needs to be connected to the right extrusion cylinder 2088, and then the extrusion ring 2089 is screwed to make the extrusion cylinder 2088 with a gap clamp and fix the endoscope. Then the left side of the endoscope passes through the processing curved plate 205 and is fixedly connected to the left extrusion cylinder 2088. Then the coating unit 200 structure is started, and the first gear 204 drives the worm 2081 to rotate through the third gear 2082. The worm 2081 drives the second reciprocating lead screw 2083 to rotate through the worm gear 2084. The second reciprocating lead screw 2083 drives the left moving block 2085 to move to the left through the reciprocating thread on the surface, and at the same time drives the moving plate 2086 to move. The right moving block 2085 keeps the moving plate 2086 stable during the movement. During the process of the moving component 208 structure driving the endoscope to move, the surface of the endoscope is carefully processed by the purification component 203, the washing and care component 209 and the drying component 207 structures, and then the surface of the endoscope is coated by the right clamping plate 105. Then the coated surface of the endoscope is cured by the right UV point light source curing machine, so as to maintain the quality of the coating of the UV point light source curing machine on the surface of the endoscope.
[0044] Reference Figure 1-2 , Figure 5 As shown, a storage plate 108 is disposed between the two clamping plates 105 away from the top plate 103. A connecting plate 110 is disposed on the top surface of the storage plate 108. A plurality of clamping plates 111 are disposed on the inner side of the connecting plate 110, and the clamping plates 111 are fixedly connected to the clamping plates 105. A guiding cylinder 112 is disposed on the storage plate 108 away from the fixed cylinder 104. A storage box 109 is disposed on the guiding cylinder 112 away from the storage plate 108;
[0045] Specifically, after the right clamping plate 105 coats the endoscope, a storage plate 108 is provided to prevent the coating liquid from separating from the endoscope and adhering to the surface of the bottom plate 101, and to prevent external impurities from adhering to the surface of the coated endoscope. The impurities and liquid enter the interior of the storage box 109 through the guiding cylinder 112 for collection. When repairing the interior of the clamping plate 105, the gap at the rear side of the clamping plate 105 can be separated by operating to separate the connecting plate 110 and the clamping plate 111, so as to process the inner side of the clamping plate 105.
[0046] Working principle: When using this device, the curing machine body 106 needs to be started. Then, the coating liquid is replenished inside the liquid storage tank 107. Next, the detection part of the endoscope is fixedly connected to the right-side structure of the moving component 208, and then the left-side part passes through the processing curved plate 205 and is fixedly connected to the left-side structure of the moving component 208. And the left end of the endoscope is located at the right side position of the clamping plate 105. Then, the coating unit 200 structure is started. The start of the coating unit 200 structure drives the moving component 208 structure to move to the left. During the start of the coating unit 200, the purification component 203 structure is driven to operate. The operation of the purification component 203 structure sprays and wets the detection part of the endoscope passing through the inner side of the processing curved plate 205, and at the same time cleans the surface of the endoscope, separating some impurities from the endoscope, so as to keep the surface of the endoscope clean. Then, the endoscope passes through the washing and care component 209 structure. Through the contact friction between the washing and care component 209 structure and the surface of the endoscope, the adhered and solidified impurities are processed. Then, the endoscope passes through the position of the drying component 207. Through the operation of the drying component 207 structure, the wet part adhered to the surface of the endoscope is processed, so as to keep the surface of the endoscope dry. Thus, when the right clamping plate 105 structure coats the endoscope, the coating quality is improved. After starting, the liquid outlet is provided inside the right clamping plate 105 and is started when the endoscope structure passes by, and the surface of the endoscope is coated. Then, the coating unit 200 structure drives the coated part of the endoscope through the moving component 208 to pass through the curing machine body 106 connected to the left clamping plate 105 for curing treatment, so as to complete the surface coating treatment of the endoscope production, improve the service life of the endoscope, and through the mutual cooperation between the structures, the surface of the endoscope can be effectively treated.
[0047] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.
Claims
1. A UV point light source curing machine, characterized in that: include: A curing unit (100), the curing unit (100) comprising a bottom plate (101), a first bracket (102) and a top plate (103), the first bracket (102) being arranged on the top surface of the bottom plate (101), the top plate (103) being arranged on the front side of the first bracket (102), a curing machine body (106) being arranged on the inner side of the top plate (103), a liquid storage tank (107) being arranged on the inner side of the top plate (103), and the liquid storage tank (107) being located on the right side of the curing machine body (106), a plurality of fixed cylinders (104) being arranged on the bottom surface of the top plate (103), and two fixed cylinders (104) being respectively located below the curing machine body (106) or the liquid storage tank (107), a clamping plate (105) being arranged on the bottom surface of the fixed cylinder (104), and a coating unit (200) being arranged on the top surface of the bottom plate (101), and the coating unit (200) being located below the top plate (103); The coating unit (200) comprises a motor (201) arranged on the inner side of a bottom plate (101); a rotating shaft (202) is arranged at the output end of the motor (201); a first gear (204) is arranged on the outer side of the rotating shaft (202); a purification component (203) with a purification function is arranged on the inner side of the first bracket (102); a processing curved plate (205) is arranged on the front side of the first bracket (102); the processing curved plate (205) is located above the rotating shaft (202); a washing component (209) with a cleaning function is arranged on the inner side of the processing curved plate (205); a drying component (207) with a tidying function is arranged on both the upper and lower sides of the processing curved plate (205); a moving component (208) with an auxiliary coating function is arranged on the inner side of the bottom plate (101); and a moving groove (206) matching the moving component (208) is opened on the inner side of the bottom plate (101); The purification component (203) comprises a first reciprocating screw (2031) arranged on the inner side of the first bracket (102), a water suction pipe (2034) is arranged on the inner side of the first bracket (102), and the water suction pipe (2034) is located in front of the first reciprocating screw (2031); The washing and protecting assembly (209) comprises a first bevel gear (2091) arranged on the outer side surface of the first reciprocating screw (2031), and a connecting rod (2092) is arranged on the inner side surface of the processing curved plate (205), and the connecting rod (2092) is located above the first reciprocating screw (2031).
2. A UV point light source curing machine according to claim 1, characterized in that: A second gear (2032) is disposed on the outer side surface of the first reciprocating screw (2031), and the second gear (2032) and the first gear (204) are meshed with each other; a pressure plate (2033) is disposed on the outer side surface of the first reciprocating screw (2031); a drainage groove matching the pressure plate (2033) is provided on the inner side surface of the first bracket (102); a water spray pipe (2036) is disposed on the top surface of the drainage groove, and the water spray pipe (2036) is located behind the first reciprocating screw (2031); a rotating drum (2037) is disposed at one end of the water spray pipe (2036) away from the drainage groove; a water ring (2038) is disposed on the outer side surface of the rotating drum (2037), and a plurality of water spray heads (2039) are disposed on the right side surface of the water ring (2038).
3. A UV point light source curing machine according to claim 2, characterized in that: A water storage tank (2035) is provided at one end of the water suction pipe (2034) away from the drainage trough, and a filter box (20310) is provided between the water storage tank (2035) and the processing curved plate (205).
4. A UV point light source curing machine according to claim 2, characterized in that: A second bevel gear (2093) is arranged on the outer side surface of the connecting rod (2092), and the second bevel gear (2093) and the first bevel gear (2091) are meshed with each other; a third bevel gear (2094) is arranged on the end of the water spray pipe (2036) away from the second bevel gear (2093); a friction wheel (2095) is arranged on the inner side surface of the processing curved plate (205), and the friction wheel (2095) is located on the left side surface of the water ring (2038); a fourth bevel gear (2096) is arranged on the outer side surface of the friction wheel (2095), and the fourth bevel gear (2096) and the third bevel gear (2094) are meshed with each other.
5. A UV point light source curing machine according to claim 4, characterized in that: The drying component (207) comprises a connecting ring (2071) arranged on the outer side of the connecting rod (2092), and the connecting ring (2071) is located in the middle of the connecting rod (2092); a belt (2076) is arranged on the outer side of the connecting ring (2071); a plurality of groups of storage rolls (2075) are arranged on the inner side of the belt (2076); second brackets (2072) are arranged on both the front and rear sides of the storage roll (2075), and the second bracket (2072) is fixedly connected to the processing curved plate (205); a drying roll (2073) is arranged between the inner sides of the front and rear two connecting rings (2071), and the drying roll (2073) is located on the left side of the storage roll (2075); an extrusion tube (2074) is arranged between the front and rear two second brackets (2072), and the extrusion tube (2074) is arranged between the two drying rolls (2073).
6. A UV point light source curing machine according to claim 5, characterized in that: The moving assembly (208) comprises a worm (2081) arranged on the inner side of the base plate (101), and the worm (2081) is located in front of the rotating shaft (202); a third gear (2082) is arranged on the outer side of the worm (2081), and the third gear (2082) and the first gear (204) are meshed with each other; a second reciprocating screw (2083) is arranged on the inner side of the base plate (101) in front of the worm (2081); a worm wheel (2084) is arranged on the outer side of the second reciprocating screw (2083), and the worm wheel (2084) and the worm (2084) are meshed with each other. 2081) are meshed with each other, a plurality of moving blocks (2085) are arranged on the outer side surface of the second reciprocating screw rod (2083), and the left moving block (2085) is connected to the second reciprocating screw rod (2083) through a reciprocating thread, a moving plate (2086) is arranged between the top surfaces of the two moving blocks (2085), a plurality of fixed plates (2087) are arranged on the top surface of the moving plate (2086), an extrusion cylinder (2088) is arranged on one side between the two fixed plates (2087), and an extrusion ring (2089) is arranged on the outer side surface of the extrusion cylinder (2088) through a thread.
7. The UV point light source curing machine according to claim 1, characterized in that: A storage plate (108) is arranged between the two clamping plates (105) on the side away from the top plate (103), a connecting plate (110) is arranged on the top surface of the storage plate (108), a plurality of clamping plates (111) are arranged on the inner side of the connecting plate (110), and the clamping plates (111) are fixedly connected to the clamping plates (105), a guide tube (112) is arranged on the side of the storage plate (108) away from the fixing tube (104), and a storage box (109) is arranged on the side of the guide tube (112) away from the storage plate (108).
Citation Information
Patent Citations
Polyester plastic coating device
CN113967564A
Device for cleaning cylinder part and coating silicone grease
CN117839977A