A high efficiency condenser assembly

By combining the adaptive adjustment mechanism and the filtration mechanism, the condenser achieves energy-saving heat dissipation and effective filtration, solving the problems of long-term fan operation and scale buildup in the condenser pipes, extending fan life and improving condenser reliability.

CN120160448BActive Publication Date: 2025-11-18JIANGSU HAISEN ELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202510592106.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2025-11-18
Estimated Expiration
2045-05-09

AI Technical Summary

Technical Problem

Existing condensers require the fan to run continuously during operation, increasing energy consumption and affecting fan lifespan. Furthermore, the lack of a filtration structure leads to the accumulation of impurities and dirt in the condenser pipes, increasing the risk of blockage and leakage.

Method used

An adaptive adjustment mechanism is used to automatically control the start and stop of the cooling fan. Combined with a filtration mechanism, high-temperature steam is filtered and cleaned. The system includes an adaptive adjustment mechanism and a filtration mechanism, uses heat sinks and condenser tubes for heat dissipation, and cleans the filter screen through a cleaning motor and atomizing nozzles.

Benefits of technology

It enables energy-saving operation of the cooling fan, avoids fan overheating, extends service life, and effectively removes impurities from the condensation pipe, preventing blockage and leakage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of high-efficiency condenser assemblies, it is related to condenser technical field, including adaptive adjustment mechanism, and the wind scooper of adaptive adjustment mechanism back is installed, the side of the adaptive adjustment mechanism is provided with filter mechanism, and the top side of filter mechanism is provided with cleaning water tank, the adaptive adjustment mechanism includes condenser body, the inside of the condenser body is provided with fin, the inside of the fin is fixedly installed with condenser pipe, the bottom of the condenser body is fixedly installed with base, wherein, the side of base is respectively provided with air inlet and liquid discharge, the front and back of the condenser body are fixedly installed with radiating frame, when radiating fan blade rotates to horizontal, start, non-horizontal state is closed, can be according to the entering amount of high-temperature gas, automatically control the start and shutdown of radiating fan, to reach the effect of energy saving, avoid radiating fan continuous uninterrupted work simultaneously, to affect the service life of radiating fan.
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Description

Technical Field

[0001] This invention relates to the field of condenser technology, specifically to a high-efficiency condenser assembly. Background Technology

[0002] A condenser is a component of a refrigeration system and a type of heat exchanger. It can convert gas or vapor into liquid and quickly transfer heat from the tubes to the air near the tubes. The condenser's operation is an exothermic process, so the temperature of the condenser is always relatively high.

[0003] Publication No. CN222278921U discloses a condenser assembly that can completely cover the condenser body with the air generated by the fan, increasing the heat dissipation effect of the condenser body. This makes the entire condenser assembly less prone to serious damage due to overheating during long-term operation, thus increasing the service life of the condenser assembly. However, this patent still has the following problems in actual use:

[0004] While this condenser assembly can completely cover the condenser body with the airflow generated by the fan, increasing the condenser's heat dissipation and preventing serious damage from overheating during long-term operation, thus extending its lifespan, the continuous operation of the fan increases energy consumption and generates heat. Prolonged operation can lead to fan overheating, affecting its lifespan. Furthermore, the lack of a filtration system for the passing steam means that long-term use will cause impurities and dirt to accumulate inside the condenser pipes, affecting heat dissipation and increasing the risk of blockages and leaks.

[0005] Therefore, a high-efficiency condenser assembly is proposed to address the problems mentioned above. Summary of the Invention

[0006] The purpose of this invention is to provide a high-efficiency condenser assembly to solve the problems mentioned in the background art, which are that the fan needs to be running continuously when the condenser is working, which not only increases the energy consumption required for the fan to rotate, but also generates a certain amount of heat when the fan rotates itself. Prolonged rotation will cause the fan to overheat and affect its service life. At the same time, without the setting of a relevant filter structure to filter the passing steam, long-term use will cause a certain amount of impurities and dirt to accumulate inside the condenser pipe, which will not only affect the heat dissipation effect of the condenser pipe, but also cause the risk of pipe blockage and leakage.

[0007] To achieve the above objectives, the present invention provides the following technical solution: a high-efficiency condenser assembly, including an adaptive adjustment mechanism and an air guide shroud installed on the back of the adaptive adjustment mechanism;

[0008] A filter mechanism is provided on one side of the adaptive adjustment mechanism, and a cleaning water tank is provided on the top side of the filter mechanism.

[0009] Also includes:

[0010] The adaptive adjustment mechanism includes a condenser body, inside which heat sinks are provided, and inside which condenser tubes are fixedly installed, and at the bottom of the condenser body a base is fixedly installed.

[0011] The base has an air inlet and a liquid outlet on one side, and heat dissipation frames are fixedly installed on the front and back of the condenser body.

[0012] The heat sink frame has sliding brackets fixedly installed on both sides, and several rotating connecting shafts are rotatably connected inside the heat sink frame. Heat dissipation fan blades are symmetrically installed on the outer side of the rotating connecting shafts.

[0013] Preferably, rotating gears are fixedly installed at both ends of the rotating connecting shaft, meshing racks are engaged on one side of the rotating gears, a supporting base plate is fixedly installed at the bottom of the two meshing racks, a supporting spring is symmetrically installed at the bottom of the supporting base plate, a first slider is symmetrically installed at the top of the supporting base plate, and a piston is slidably connected inside the air inlet and the liquid outlet.

[0014] Preferably, a second slider is fixedly installed on one side of the top of the piston, a slider connecting rod is fixedly installed on one side of the second slider, a third slider is fixedly installed at the end of the slider connecting rod, the first slider is slidably connected to the second slider and the third slider respectively, and the air guide is fixedly installed on the outside of the heat dissipation frame.

[0015] Preferably, a plurality of air guide plates are fixedly installed inside the air guide shroud, a fan shroud is fixedly installed at the end of the air guide shroud away from the heat dissipation frame, sealing blocks are fixedly installed on both the top and bottom of the inside side of the fan shroud, a plurality of sealing baffles are rotatably connected between the fan shroud and the sealing blocks, a heat dissipation fan is fixedly installed inside the fan shroud, and a dust cover is fixedly installed on the side of the fan shroud away from the air guide shroud.

[0016] Preferably, the filtration mechanism includes a filter box, a connecting cover is fixedly installed on one side of the filter box, the connecting cover is fixedly installed on the outer side of the base near the air inlet, a limit cover is fixedly installed on the top of the filter box, a cleaning motor is fixedly installed on one side of the inner side of the limit cover, and a sprocket drive assembly is fixedly connected to the output end of the cleaning motor.

[0017] Preferably, the bottom of the sprocket drive assembly is symmetrically equipped with cleaning threaded rods, and the outer sides of the two cleaning threaded rods are threaded with cleaning threaded sleeves. The outer sides of the two cleaning threaded sleeves are fixedly equipped with cleaning sliding plates. A plurality of connecting springs are fixedly installed on one side of the cleaning sliding plate, and cleaning scrapers are fixedly installed at the ends of the connecting springs. Limit blocks are fixedly installed at both ends of the cleaning scrapers.

[0018] Preferably, an atomizer is fixedly installed on the top of the cleaning sliding plate, an atomizing nozzle is fixedly installed on one side of the atomizer, the cleaning water tank is fixedly installed on the side of the filter box near the limiting cover, a sealing plug is threadedly connected to the top side of the cleaning water tank, a water pump is fixedly installed at the bottom of the cleaning water tank, several connecting pipes are fixedly installed at the bottom of the water pump, and the connecting pipes are fixedly installed on the top of the atomizer.

[0019] Preferably, the filter box has circulation grooves on both sides inside, the limiting block is slidably connected to the filter box through the circulation grooves, the filter box has a first slot on the bottom inner side, the first slot has an installation block slidably connected inside, and the bottom of the installation block has a collection box fixedly installed.

[0020] Preferably, the filter box has a second slot inside, and ejector springs are symmetrically installed at the bottom of the second slot. A filter bracket is slidably connected inside the second slot, and a filter screen is fixedly installed inside the filter bracket. A limit plate is fixedly installed at the top of the filter bracket. A fixing bracket is symmetrically installed on the side of the collection box near the limit plate. A fixing spring is fixedly installed inside the fixing bracket, and an installation hook is fixedly installed at the end of the fixing spring. The installation hook is engaged with the limit plate.

[0021] Compared with the prior art, the beneficial effects of this invention are as follows: This high-efficiency condenser assembly starts when the cooling fan blades rotate to a horizontal position and shuts off when they are not horizontal. It can automatically control the start and stop of the cooling fan according to the amount of high-temperature gas entering, thereby achieving energy saving. At the same time, it avoids the cooling fan from working continuously without interruption, which would affect the service life of the cooling fan. The filter bracket and filter screen can be installed through the second slot. The ejection spring facilitates the ejection of the filter bracket and filter screen. The feature of the mounting hook engaging with the fixing bracket can fix the filter bracket and filter screen, facilitating the installation and removal of the filter bracket and filter screen. The specific details are as follows:

[0022] 1. By setting an adaptive adjustment mechanism, not only can the heat sink and condenser tubes inside the condenser body rapidly cool the incoming high-temperature gas and convert it into liquid which is discharged from the drain port, but when high-temperature gas is introduced into the inlet, if the gas volume and pressure are high, it will push the piston to slide inside the inlet, thereby pushing the second slider, slider connecting rod, and third slider to slide. Utilizing the sliding connection between the second and third sliders and the first slider, the first slider drives the support base plate to squeeze the support spring. At the same time, the support base plate drives the meshing rack to descend. Utilizing the meshing connection between the meshing rack and the rotating gear, the rotating gear drives the rotating connecting shaft and the cooling fan to rotate, rotating the cooling fan to a horizontal position. Simultaneously, it triggers the cooling fan switch, causing the cooling fan to rotate. The cooling fan generates airflow, which, in conjunction with the air guide shroud and air guide plate, facilitates rapid air circulation, thereby improving… The high heat dissipation effect is achieved by increasing the amount of cooling liquid produced when more high-temperature gas is introduced. This causes the second slider and piston at the drain port to slide synchronously, facilitating rapid heat dissipation from the heat sink. When less high-temperature gas is introduced, the amount of condensate produced is also relatively reduced. Under the elastic force of the support spring, the support base plate drives the meshing rack to rise, thereby causing the rotating connecting shaft to rotate the cooling fan blades to the tilt direction. At this time, the trigger switch of the cooling fan is closed, and the cooling fan stops rotating. Heat dissipation can be achieved through the heat dissipation effect of the heat sink and condenser tubes themselves. The trigger switch of the cooling fan is a current technology that starts when the cooling fan blades rotate to a horizontal position and shuts off when they are not horizontal. It can automatically control the start and stop of the cooling fan according to the amount of high-temperature gas entering, thereby achieving energy saving and avoiding continuous uninterrupted operation of the cooling fan, which would affect its service life.

[0023] 2. By setting up a filtration mechanism, not only can high-temperature gas be filtered using a filter screen before it enters the condenser tube, separating impurities and foreign objects from the high-temperature gas, but the cleaning motor also drives the sprocket drive assembly and the cleaning threaded rod to rotate. This causes the cleaning threaded sleeve to move the cleaning sliding plate, connecting spring, and cleaning scraper up and down. The cleaning scraper cleans impurities and foreign objects from the surface of the filter screen, which are then collected in a collection box. Utilizing the sliding connection between the limiting block and the circulating chute, the cleaning scraper can be in contact with the filter screen when it descends and separate from the filter screen when it rises. It can achieve one-way cleaning of impurities and foreign objects, thereby improving the cleaning effect of the filter screen. The water in the cleaning water tank is pumped into the atomizer through the connecting pipe by the water pump, and then sprayed out through the atomizing nozzle. It can not only cool the high-temperature steam, but also clean the filter screen, thereby improving the cleaning effect of the filter screen. The filter bracket and filter screen can be installed through the second slot. The ejection spring facilitates the ejection of the filter bracket and filter screen. The feature of the installation hook engaging with the fixed bracket can fix the filter bracket and filter screen, making it easy to install and remove the filter bracket and filter screen. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the present invention;

[0025] Figure 2 This is a three-dimensional structural diagram of the adaptive adjustment mechanism in this invention;

[0026] Figure 3 This is a three-dimensional structural diagram of the heat sink and condenser tube in this invention;

[0027] Figure 4 This is a three-dimensional structural diagram of the rotating connecting shaft and the heat dissipation fan blades in this invention;

[0028] Figure 5 This is a three-dimensional structural diagram of the supporting base plate and supporting spring in this invention;

[0029] Figure 6 This is a three-dimensional cross-sectional structural diagram of the air guide cover and fan cover in this invention;

[0030] Figure 7 This is a three-dimensional structural diagram of the filtration mechanism in this invention;

[0031] Figure 8 This is a three-dimensional structural diagram of the filter box cross-section in this invention;

[0032] Figure 9 This is a three-dimensional structural diagram of the cleaning water tank in this invention;

[0033] Figure 10 This is a schematic diagram of the three-dimensional structure of the cleaning scraper in this invention;

[0034] Figure 11 This is a three-dimensional cross-sectional structural diagram of the fixed bracket in this invention.

[0035] In the diagram: 1. Adaptive adjustment mechanism; 101. Condenser body; 102. Heat sink; 103. Condenser tube; 104. Base; 105. Air inlet; 106. Drain outlet; 107. Heat sink frame; 108. Sliding bracket; 109. Rotating connecting shaft; 110. Heat dissipation fan blade; 111. Rotating gear; 112. Meshing rack; 113. Support base plate; 114. Support spring; 115. First slider; 116. Piston; 117. Second slider; 118. Slider connecting rod; 119. Third slider; 120. Air guide shroud; 121. Air guide plate; 122. Fan cover; 123. Sealing block; 124. Sealing baffle; 125. Heat dissipation fan; 126. Dust cover; 2. Filtering mechanism; 201. Filter box; 202, connecting cover; 203, limiting cover; 204, cleaning motor; 205, sprocket drive assembly; 206, cleaning threaded rod; 207, cleaning threaded sleeve; 208, cleaning sliding plate; 209, connecting spring; 210, cleaning scraper; 211, limiting block; 212, atomizer; 213, atomizing nozzle; 214, cleaning water tank; 215, sealing plug; 216, water pump; 217, connecting pipe; 218, circulating chute; 219, first slot; 220, mounting block; 221, collection box; 222, second slot; 223, ejection spring; 224, filter bracket; 225, filter screen; 226, limiting plate; 227, fixed bracket; 228, fixed spring; 229, mounting hook. Detailed Implementation

[0036] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0037] Please see Figures 1-11This invention provides a technical solution: a high-efficiency condenser assembly, including an adaptive adjustment mechanism 1 and an air guide shroud 120 installed on the back of the adaptive adjustment mechanism 1. A filter mechanism 2 is provided on one side of the adaptive adjustment mechanism 1, and a cleaning water tank 214 is provided on the top side of the filter mechanism 2. The adaptive adjustment mechanism 1 includes a condenser body 101, with a heat sink 102 inside the condenser body 101. A condenser tube 103 is fixedly installed inside the heat sink 102. A base 104 is fixedly installed at the bottom of the condenser body 101. An air inlet 105 and a drain outlet 106 are respectively opened on one side of the base 104. Heat dissipation frames 107 are fixedly installed on both the front and back of the condenser body 101. Sliding brackets 108 are fixedly installed on both sides of the heat dissipation frame 107. Several rotating connecting shafts 109 are rotatably connected inside the heat dissipation frame 107. Heat dissipation fan blades 110 are symmetrically installed on the outer side of the rotating connecting shafts 109. Rotating gears 111 are fixedly installed at both ends of the rotating connecting shafts 109. A meshing rack 112 is meshed on one side of the rotating gear 111. A support base plate 113 is fixedly installed at the bottom of the two meshing racks 112. Support springs 114 are symmetrically installed at the bottom of the support base plate 113. A first slider 115 is symmetrically installed on the top of the support base plate 113. A piston 116 is slidably connected inside the air inlet 105 and the liquid outlet 106. A second slider 117 is fixedly installed on one side of the top of the piston 116. A slider connecting rod 118 is fixedly installed on one side of 117, and a third slider 119 is fixedly installed at the end of the slider connecting rod 118. The first slider 115 is slidably connected to the second slider 117 and the third slider 119 respectively. The air guide shroud 120 is fixedly installed on the outside of the heat dissipation frame 107, and several air guide plates 121 are fixedly installed inside the air guide shroud 120. The heat dissipation fins 102 and condenser tubes 103 inside the condenser body 101 are used to quickly cool the incoming high-temperature gas and convert it into liquid, which is discharged from the drain port 106. When high-temperature gas is introduced into the air inlet 105, when the gas volume is large and the pressure is high, it will push the piston 116 to slide inside the air inlet 105, thereby pushing the second slider 117 and the slider connecting rod 119. The connecting rod 118 and the third slider 119 slide. Taking advantage of the sliding connection between the second slider 117 and the third slider 119 and the first slider 115, the first slider 115 drives the support base plate 113 to compress the support spring 114. At the same time, the support base plate 113 drives the meshing rack 112 to descend. Taking advantage of the meshing connection between the meshing rack 112 and the rotating gear 111, the rotating gear 111 drives the rotating connecting shaft 109 and the cooling fan 110 to rotate, rotating the cooling fan 110 to a horizontal state. At the same time, the cooling fan 125 is triggered to rotate, generating airflow through the cooling fan 125. This, combined with the air guide shroud 120 and the air guide plate 121, allows for rapid air circulation, thereby improving the heat dissipation effect.

[0038] A fan cover 122 is fixedly installed at the end of the air guide shroud 120 away from the heat sink frame 107. Sealing blocks 123 are fixedly installed on both the top and bottom of one side of the inside of the fan cover 122. Several sealing baffles 124 are rotatably connected between the fan cover 122 and the sealing blocks 123. A cooling fan 125 is fixedly installed inside the fan cover 122. A dust cover 126 is fixedly installed on the side of the fan cover 122 away from the air guide shroud 120. When more high-temperature gas is introduced, the amount of cooling liquid produced also increases, causing the second slider 117 and piston 116 at one end of the drain port 106 to slide synchronously, facilitating rapid heat dissipation of the heat sink 102. When the amount of high-temperature gas introduced is small, the amount of condensate produced by cooling is relatively reduced. (The last sentence appears to be incomplete and possibly refers to a different topic.) Under the elastic force of 14, the supporting base plate 113 drives the meshing rack 112 to rise, thereby causing the rotating connecting shaft 109 to drive the cooling fan 110 to rotate to the tilt direction. At this time, the trigger switch of the cooling fan 125 is closed, so the cooling fan 125 stops rotating. Heat can be dissipated through the heat dissipation effect of the heat sink 102 and the condenser tube 103. The trigger switch of the cooling fan 125 is existing technology. It starts when the cooling fan 110 rotates to the horizontal position and stops when it is not horizontal. It can automatically control the start and stop of the cooling fan 125 according to the amount of high temperature gas entering, thereby achieving the effect of saving energy and avoiding the continuous uninterrupted operation of the cooling fan 125, which would affect the service life of the cooling fan 125.

[0039] The filtration mechanism 2 includes a filter box 201. A connecting cover 202 is fixedly installed on one side of the filter box 201. The connecting cover 202 is fixedly installed on the outer side of the base 104 near the air inlet 105. A limit cover 203 is fixedly installed on the top of the filter box 201. A cleaning motor 204 is fixedly installed on one side inside the limit cover 203. A sprocket drive assembly 205 is fixedly connected to the output end of the cleaning motor 204. Cleaning threaded rods 206 are symmetrically installed at the bottom of the sprocket drive assembly 205. Cleaning threaded sleeves 207 are threadedly connected to the outer sides of the two cleaning threaded rods 206. A cleaning sliding plate 208 is fixedly installed on the outer side of the two cleaning threaded sleeves 207. Several connecting springs 209 are fixedly installed on one side of the cleaning sliding plate 208. A cleaning scraper 210 is fixedly installed at the end of the connecting spring 209. Limit blocks 211 are fixedly installed at both ends of the cleaning scraper 210. A limit block 211 is fixedly installed on the top of the cleaning sliding plate 208. Atomizer 212 is provided, with atomizing nozzle 213 fixedly installed on one side. Before the high-temperature steam enters the interior of condenser 103, the high-temperature gas is filtered by filter screen 225 to separate impurities and foreign objects from the high-temperature gas. At the same time, cleaning motor 204 is started to drive sprocket drive assembly 205 and cleaning threaded rod 206 to rotate, causing cleaning threaded sleeve 207 to drive cleaning sliding plate 208, connecting spring 209 and cleaning scraper 210 to move up and down. The cleaning scraper 210 can clean impurities and foreign objects on the surface of filter screen 225 and collect them through collection box 221. Utilizing the feature of limit block 211 slidingly connected to circulation chute 218, the cleaning scraper 210 can be in contact with filter screen 225 when it descends and separate from filter screen 225 when it rises, which can realize one-way cleaning of impurities and foreign objects, thereby improving the cleaning effect of filter screen 225.

[0040] A cleaning water tank 214 is fixedly installed on the side of the filter box 201 near the limiting cover 203. A sealing plug 215 is threaded onto the top side of the cleaning water tank 214. A water pump 216 is fixedly installed at the bottom of the cleaning water tank 214. Several connecting pipes 217 are fixedly installed at the bottom of the water pump 216. The connecting pipes 217 are fixedly installed on the top of the atomizer 212. Circulation grooves 218 are provided on both sides of the interior of the filter box 201. The limiting block 211 is slidably connected to the filter box 201 through the circulation grooves 218. The filter box 201 has a first slot 219 on its bottom inner side. A mounting block 220 is slidably connected inside the first slot 219. A collection box 221 is fixedly installed at the bottom of the mounting block 220. The filter box 201 also has a second slot 222 inside. Ejection springs 223 are symmetrically installed at the bottom of the second slot 222. A filter bracket 224 is slidably connected inside the second slot 222. A filter screen 225 is fixedly installed inside the filter bracket 224. The top of the filter bracket 224 is fixed... A limiting plate 226 is installed, and a fixing bracket 227 is symmetrically installed on the side of the collection box 221 near the limiting plate 226. A fixing spring 228 is fixedly installed inside the fixing bracket 227, and an installation hook 229 is fixedly installed at the end of the fixing spring 228. The installation hook 229 is engaged with the limiting plate 226. Water from the cleaning water tank 214 is pumped into the atomizer 212 through the connecting pipe 217 by the water pump 216, and then sprayed out through the atomizing nozzle 213. This not only reduces the temperature of the steam, but also... The filter can be heated and cleaned at the same time, thereby improving the cleaning effect of the filter 225. The filter bracket 224 and the filter 225 can be installed through the second slot 222. The ejection spring 223 facilitates the ejection of the filter bracket 224 and the filter 225. The installation hook 229 can be engaged with the fixed bracket 227 to fix the filter bracket 224 and the filter 225, which facilitates the installation and removal of the filter bracket 224 and the filter 225.

[0041] Working principle: Before using this high-efficiency condenser assembly, it is necessary to check the overall condition of the device to ensure it can operate normally. Figure 1 - Figure 11As shown, firstly, before the high-temperature steam enters the condenser 103, the high-temperature gas is filtered using a filter screen 225 to separate impurities and foreign objects from the gas. Simultaneously, the cleaning motor 204 is activated, driving the sprocket drive assembly 205 and the cleaning threaded rod 206 to rotate. This causes the cleaning threaded sleeve 207 to move the cleaning sliding plate 208, connecting spring 209, and cleaning scraper 210 up and down. The cleaning scraper 210 cleans the impurities and foreign objects on the surface of the filter screen 225, which are then collected in the collection box 221. Utilizing the sliding connection between the limiting block 211 and the circulating chute 218, the cleaning scraper 210 can adhere to the filter screen 225 when descending and separate from it when rising, thus achieving the desired separation of impurities and foreign objects. The one-way cleaning of foreign objects improves the cleaning effect of the filter screen 225. Water from the cleaning water tank 214 is pumped into the atomizer 212 through the connecting pipe 217 by the water pump 216, and sprayed out through the atomizing nozzle 213. This not only cools the high-temperature steam, but also cleans the filter screen 225, thereby improving the cleaning effect of the filter screen 225. The filter bracket 224 and the filter screen 225 can be installed through the second slot 222. The ejection spring 223 facilitates the ejection of the filter bracket 224 and the filter screen 225. The installation hook 229 and the fixed bracket 227 can be engaged to fix the filter bracket 224 and the filter screen 225, which facilitates the installation and removal of the filter bracket 224 and the filter screen 225.

[0042] Secondly, the heat sink 102 and condenser tube 103 inside the condenser body 101 rapidly cool the incoming high-temperature gas, converting it into liquid and discharging it from the drain port 106. When high-temperature gas is introduced into the air inlet 105, if the gas volume is large and the pressure is high, it will push the piston 116 to slide inside the air inlet 105, thereby pushing the second slider 117, the slider connecting rod 118, and the third slider 119 to slide. Utilizing the sliding connection between the second slider 117 and the third slider 119 and the first slider 115, the first slider 115... The support base plate 113 compresses the support spring 114, and at the same time, the support base plate 113 drives the meshing rack 112 to descend. Utilizing the meshing connection between the meshing rack 112 and the rotating gear 111, the rotating gear 111 drives the rotating connecting shaft 109 and the cooling fan 110 to rotate, rotating the cooling fan 110 to a horizontal state. Simultaneously, the cooling fan 125 is triggered to rotate, generating airflow through the cooling fan 125. This, combined with the air guide shroud 120 and air guide plate 121, facilitates rapid air circulation, thereby improving the heat dissipation effect.

[0043] Finally, when more high-temperature gas is introduced, the amount of cooling liquid produced will also increase, causing the second slider 117 and piston 116 at one end of the drain port 106 to slide synchronously, facilitating rapid heat dissipation of the heat sink 102. When the amount of high-temperature gas introduced is small, the amount of condensate produced by cooling is also relatively reduced. Under the elastic force of the support spring 114, the support base plate 113 drives the meshing rack 112 to rise, thereby causing the rotating connecting shaft 109 to drive the cooling fan 110 to rotate to the tilt direction. At this time, the trigger switch of the cooling fan 125 is closed, and the cooling fan 125 stops rotating. Heat dissipation can be achieved through the heat dissipation effect of the heat sink 102 and the condenser tube 103. The trigger switch of the cooling fan 125 is existing technology. It starts when the cooling fan 110 rotates to the horizontal position and closes when it is not horizontal. It can automatically control the start and stop of the cooling fan 125 according to the amount of high-temperature gas entering, thereby achieving the effect of saving energy and avoiding continuous uninterrupted operation of the cooling fan 125, which would affect the service life of the cooling fan 125.

[0044] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A high-efficiency condenser assembly, comprising an adaptive adjustment mechanism (1) and an air guide shroud (120) mounted on the back of the adaptive adjustment mechanism (1). A filter mechanism (2) is provided on one side of the adaptive adjustment mechanism (1), and a cleaning water tank (214) is provided on the top side of the filter mechanism (2). Its features are, Also includes: The adaptive adjustment mechanism (1) includes a condenser body (101), a heat sink (102) is provided inside the condenser body (101), a condenser tube (103) is fixedly installed inside the heat sink (102), and a base (104) is fixedly installed at the bottom of the condenser body (101). The base (104) has an air inlet (105) and a drain outlet (106) on one side, and the condenser body (101) has heat dissipation frames (107) fixedly installed on both the front and back sides. Among them, sliding brackets (108) are fixedly installed on both sides of the heat dissipation frame (107), and several rotating connecting shafts (109) are rotatably connected inside the heat dissipation frame (107). Heat dissipation fan blades (110) are symmetrically installed on the outside of the rotating connecting shafts (109). Rotary gears (111) are fixedly installed at both ends of the rotating connecting shaft (109). A meshing rack (112) is meshed on one side of the rotating gear (111). A support base plate (113) is fixedly installed at the bottom of the two meshing racks (112). A support spring (114) is symmetrically installed at the bottom of the support base plate (113). A first slider (115) is symmetrically installed at the top of the support base plate (113). A piston (116) is slidably connected inside the air inlet (105) and the liquid outlet (106). A second slider (117) is fixedly installed on one side of the top of the piston (116), a slider connecting rod (118) is fixedly installed on one side of the second slider (117), a third slider (119) is fixedly installed at the end of the slider connecting rod (118), the first slider (115) is slidably connected to the second slider (117) and the third slider (119) respectively, and the air guide shroud (120) is fixedly installed on the outside of the heat dissipation frame (107); The air guide shroud (120) has several air guide plates (121) fixedly installed inside. The air guide shroud (120) is fixedly installed with a fan shroud (122) at the end away from the heat dissipation frame (107). The fan shroud (122) has sealing blocks (123) fixedly installed on both the top and bottom of one side inside. The fan shroud (122) is rotatably connected with several sealing baffles (124) near the sealing blocks (123). The fan shroud (122) has a cooling fan (125) fixedly installed inside. The fan shroud (122) has a dust cover (126) fixedly installed on the side away from the air guide shroud (120). The cooling fan starts when the cooling fan blades rotate to a horizontal position and shuts off when the fan blades are not horizontal. The system can automatically control the start and stop of the cooling fan based on the amount of high-temperature gas entering the fan.

2. The high-efficiency condenser assembly according to claim 1, characterized in that: The filtration mechanism (2) includes a filter box (201), a connecting cover (202) is fixedly installed on one side of the filter box (201), the connecting cover (202) is fixedly installed on the outside of the base (104) near the air inlet (105), a limiting cover (203) is fixedly installed on the top of the filter box (201), a cleaning motor (204) is fixedly installed on one side inside the limiting cover (203), and a sprocket drive assembly (205) is fixedly connected to the output end of the cleaning motor (204).

3. A high-efficiency condenser assembly according to claim 2, characterized in that: The bottom of the sprocket drive assembly (205) is symmetrically equipped with cleaning threaded rods (206). The outer sides of the two cleaning threaded rods (206) are threaded with cleaning threaded sleeves (207). The outer sides of the two cleaning threaded sleeves (207) are fixedly equipped with cleaning sliding plates (208). A number of connecting springs (209) are fixedly installed on one side of the cleaning sliding plate (208). The ends of the connecting springs (209) are fixedly equipped with cleaning scrapers (210). Both ends of the cleaning scrapers (210) are fixedly equipped with limit blocks (211).

4. A high-efficiency condenser assembly according to claim 3, characterized in that: An atomizer (212) is fixedly installed on the top of the cleaning sliding plate (208), and an atomizing nozzle (213) is fixedly installed on one side of the atomizer (212). The cleaning water tank (214) is fixedly installed on the side of the filter box (201) near the limiting cover (203). A sealing plug (215) is threadedly connected to the top side of the cleaning water tank (214). A water pump (216) is fixedly installed at the bottom of the cleaning water tank (214). Several connecting pipes (217) are fixedly installed at the bottom of the water pump (216). The connecting pipes (217) are fixedly installed on the top of the atomizer (212).

5. A high-efficiency condenser assembly according to claim 4, characterized in that: The filter box (201) has circulation grooves (218) on both sides inside. The limiting block (211) is slidably connected to the filter box (201) through the circulation grooves (218). The filter box (201) has a first slot (219) on the inner side of the bottom. The first slot (219) has an installation block (220) slidably connected inside. The bottom of the installation block (220) has a collection box (221) fixedly installed.

6. A high-efficiency condenser assembly according to claim 5, characterized in that: The filter box (201) has a second slot (222) inside. A push-out spring (223) is symmetrically installed at the bottom of the second slot (222). A filter bracket (224) is slidably connected inside the second slot (222). A filter screen (225) is fixedly installed inside the filter bracket (224). A limit plate (226) is fixedly installed at the top of the filter bracket (224). A fixed bracket (227) is symmetrically installed on the side of the collection box (221) near the limit plate (226). A fixed spring (228) is fixedly installed inside the fixed bracket (227). An installation hook (229) is fixedly installed at the end of the fixed spring (228). The installation hook (229) is engaged with the limit plate (226).

Citation Information

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