A remote control cooling device for an automobile air conditioner
By designing dust removal and deodorization devices, and utilizing wind power to vibrate the ring frame, screen plate, and hook body, the problem of dust accumulation and odor on automotive air conditioning filters has been solved, resulting in improved cleanliness and cooling performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- JIANGYONG YUANJIE TECH CO LTD
- Filing Date
- 2023-10-23
- Publication Date
- 2026-05-19
AI Technical Summary
In existing automotive air conditioning systems, the refrigerant filter is prone to accumulating dust, which leads to reduced cooling efficiency and a pungent odor. Existing remote control devices have failed to effectively address this issue.
A remote-controlled refrigeration device for automotive air conditioning was designed, which includes dust removal and deodorization devices. By using wind power to cause the ring frame to vibrate, the screening plate to vibrate, and the hook body to swing, the device can automatically clean and remove dust and odors.
It effectively prevents dust accumulation, improves cooling efficiency, reduces pungent odors, ensures the cleanliness of internal air conditioner parts, and achieves fast and clean cooling.
Smart Images

Figure CN117325626B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of remote-controlled refrigeration technology, specifically to a remote-controlled refrigeration device for an automotive air conditioner. Background Technology
[0002] In summer, due to the intense sunlight and high ambient temperature, the temperature inside a car inevitably rises. In open-air environments, the temperature inside a car can even soar when exposed to the sun. In summer, when people enter a car, they often need to first cool down the interior by ventilating or turning on the air conditioning to avoid discomfort caused by the temperature.
[0003] According to Chinese Patent No. CN202010588244.1, a remote control device for automotive air conditioning includes a housing, a piston disposed within the housing and movable relative to the housing, a pressurizing device for injecting air into the cavity formed by the housing and the piston to drive the piston to move, and a spraying device disposed within the housing to expel water mist by squeezing the air within the housing through the movement of the piston.
[0004] In summary, the shortcomings of the existing technology are that although it can reduce the temperature inside the vehicle, a lot of dust tends to accumulate above the cooling filter, which can affect the cooling effect over time and also produces a pungent odor. Therefore, there is still room for improvement. Summary of the Invention
[0005] To address the shortcomings of existing technologies, the technical solution adopted by this invention to solve its technical problems is as follows:
[0006] A remote-controlled cooling device for an automotive air conditioner, specifically comprising:
[0007] The compressor has a pipe fixedly installed at the bottom front of the compressor. A cleaning housing is movably installed at the output end of the pipe. The cleaning housing is used to adjust the cleanliness of the internal air circulation. The top of the cleaning housing has an evaporator. A dust removal device is movably installed on the right side of the front of the cleaning housing. A deodorizing device is movably installed in the middle of the inner cavity of the cleaning housing. The deodorizing device is used to adjust the strong odor produced by the air conditioner. The dust removal device is used to adjust the dust removal status. An air outlet pipe is fixedly installed on the left side of the front of the cleaning housing.
[0008] The deodorization device includes a shelf, on which vertical bars are movably mounted. A spinning drum is movably mounted on one side of the vertical bars. The spinning drum tends to expand in the middle, and the wind force gradually squeezes the ring frame, causing the ring frame to vibrate. When the ring frame vibrates, the push bar swings synchronously. The ring frame is movably mounted in the inner cavity of the spinning drum. A push bar is fixedly mounted on the end of the ring frame away from the vertical bars. An actuating element is movably mounted on the side of the spinning drum away from the vertical bars. A shaft cylinder is fixedly mounted on the top of the actuating element. A cleaning shell is movably mounted on the side of the actuating element away from the vertical bars. A screening plate is fixedly mounted on the left end of the shelf.
[0009] The cleaning housing also includes a liquid storage dryer. An arc strip is movably installed at the bottom of the liquid storage dryer. A central swing rod is movably installed on the inner surface of the arc strip. The arc strip tilts and squeezes the central swing rod to operate. The central swing rod contracts, and the friction frame impacts the sliding plate. A friction frame is fixedly installed on the outer surface of the arc strip. A sliding plate is fixedly connected to the end of the central swing rod away from the arc strip. A blade is movably installed in the inner cavity of the sliding plate.
[0010] Furthermore, a pusher bar is movably installed on the inner surface of the spinning drum. The wind force gradually compresses the ring frame as the middle of the spinning drum expands, causing the ring frame to vibrate. When the ring frame vibrates, the pusher bar swings synchronously. The cleaning shell is located in the middle of the inner top wall of the cleaning shell. The middle spinning rod is made of soft rubber. The liquid storage dryer is connected to the middle spinning rod through an arc strip. The blade penetrates the inner cavity of the slide plate. The screening plate itself has evenly distributed slots.
[0011] Furthermore, the dust removal device includes an air inlet pipe, a low-pressure pipe movably installed on the bottom of the outer surface of the air inlet pipe, the low-pressure pipe and the clamping plate are blown together, the clamping plate squeezes the extension bar to move, the extension bar blocks dust that may bounce back and float, the throwing member tilts at an arc with the wind force, the blowing bar provides auxiliary support for the throwing member, a sleeve frame is movably installed on the outer surface of the bottom end of the low-pressure pipe, a clamping plate is slidably installed in the inner cavity of the sleeve frame, an extension bar is fixedly installed on the side of the clamping plate away from the low-pressure pipe, the throwing member is movably installed on the two inner side walls of the sleeve frame, a blowing bar is fixedly installed on the inner surface of the throwing member, the sleeve frame has a hollow internal structure, there are two extension bars in total, and the angle between the extension bars and the clamping plate is ninety degrees, the low-pressure pipe passes through the inner cavity of the sleeve frame, the air inlet pipe is connected to the sleeve frame through the low-pressure pipe, and the throwing member is made of rubber.
[0012] Furthermore, the heat dissipation device includes a condenser and a hook. The hook is affected by a blowing force and swings towards the main shaft. The hook also swings irregularly in the back and forth direction, and the swinging of the hook impacts the central bar. The central bar is movably installed on the back of the hook. A deflection angle is slidably connected to the left side of the central bar. The main shaft is fixedly installed in the inner cavity of the deflection angle. A disc is fixedly connected to the bottom end of the main shaft. Thin strips are fixedly installed on the outer surface of the bottom end of the disc. The thin strips are evenly distributed with reference to the center line of the main shaft. The deflection angle has an irregular shape. The center lines of the disc and the main shaft are on the same straight line. The diameter of the disc is larger than the diameter of the main shaft. The central bar is a cuboid. Adhesive is coated between the thin strips and the disc.
[0013] This invention provides a remote-controlled cooling device for automotive air conditioning. It has the following advantages:
[0014] 1. The remote-controlled refrigeration device of this car air conditioner draws in low-pressure air from the compressor and compresses it into high-pressure air before it is discharged to the condenser. Outside air drawn in by the outside fan flows through the air inlet pipe into the condenser, carrying away the heat released by the refrigerant and turning the high-pressure air into a high-pressure liquid. The high-pressure liquid is throttled and depressurized before flowing into the evaporator, where it evaporates under the corresponding pressure, absorbing heat from the surroundings. At the same time, it exchanges heat with the outside air between the evaporator fins and sends the cooled air into the car. In this way, the indoor and outdoor air circulate continuously, achieving the purpose of cooling.
[0015] 2. The remote-controlled cooling device of this car air conditioner introduces airflow through the air inlet duct. The airflow gradually impacts the vertical strip and is blown in from the swivel cylinder. The swivel cylinder expands in the middle, and the airflow gradually compresses the ring frame, causing it to vibrate. When the ring frame vibrates, the pusher swings synchronously, cleaning and wiping the outer surface of the working parts. This ensures that the internal parts are cleaned, improves the cleaning effect, and prevents the development of a pungent odor due to accumulated dust.
[0016] 3. The remote-controlled cooling device of this car air conditioner changes from a full state to a compressed state through the action of the component, and blows the screen plate. The dust on the screen plate filter is blown away, and the arc strip is blown away to create a shaking effect. The arc strip tilts and squeezes the middle swing rod to operate. The middle swing rod contracts, and the scraper hits the sliding plate. The sliding plate beats the screen plate through the blades. The dust on the side wall of the screen plate is gradually scraped and removed by the sliding plate, so that the equipment has the function of automatically shaking off surface dust, reducing the adhesion of stubborn stains and improving the degree of cleaning.
[0017] 4. The remote-controlled cooling device of this car air conditioner blows air through a low-pressure pipe and a clamping plate. The clamping plate squeezes the extension bar to move, and the extension bar blocks dust that may bounce back and drift. The ejector component tilts at an arc with the wind force, and the air blower provides auxiliary support for the ejector component. The ejector component promotes the passage of air with the wind force, and conversely, it can block dust. Finally, it passes through the condenser and is converted into cold air that stays in the left area. This ensures that dust in the airflow does not easily drift back during the cooling process, achieving the purpose of rapid and clean treatment.
[0018] 5. The remote-controlled cooling device of this car air conditioner, through the influence of the blowing force, causes the hook to swing towards the main shaft, and the hook also swings irregularly in the back and forth direction. The swinging of the hook hits the middle bar, and the middle bar, with its middle part as the fulcrum, is hit backward on the right side and swings forward on the left side. The left side of the middle bar hits the deflection angle movement, and the deflection angle swing is linked to the synchronous movement of the main shaft. The rotation of the main shaft drives the disc to operate, and the thin bar moves accordingly. The swinging of the thin bar evenly disperses the internal cold air, and finally discharges it through the air outlet pipe, thereby ensuring the rapid expansion of the internal cold air and improving the cooling effect of the car. Attached Figure Description
[0019] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0020] Figure 2 This is a three-dimensional schematic diagram of the through-pipe structure of the present invention;
[0021] Figure 3 This is a three-dimensional structural schematic diagram of the component of the present invention;
[0022] Figure 4 This is a three-dimensional schematic diagram of the structure of the slinger of the present invention;
[0023] Figure 5 This is a three-dimensional structural diagram of the vertical strip of the present invention;
[0024] Figure 6 This is a three-dimensional schematic diagram of the pusher bar structure of the present invention;
[0025] Figure 7 This is a three-dimensional schematic diagram of the arc strip structure of the present invention;
[0026] Figure 8 This is a three-dimensional schematic diagram of the low-pressure tube structure of the present invention;
[0027] Figure 9 This is a three-dimensional schematic diagram of the extension bar structure of the present invention;
[0028] Figure 10 For the present invention Figure 9 A partially enlarged schematic diagram of the blower structure at point E;
[0029] Figure 11 This is a three-dimensional schematic diagram of the deflection angle of the present invention.
[0030] In the diagram: 1. Compressor; 2. Through pipe; 3. Cleaning casing; 4. Dust removal device; 5. Odor removal device; 6. Air outlet pipe; 7. Heat dissipation device; 41. Air inlet pipe; 42. Low-pressure pipe; 43. Sleeve frame; 44. Clamping plate; 45. Extension bar; 46. Swinging component; 47. Blowing bar; 51. Shelf; 52. Vertical bar; 53. Swinging cylinder; 54. Shaft cylinder; 55. Actuating component; 56. Mounting seat; 57. Screening plate; 58. Push bar; 59. Ring frame; 561. Liquid storage dryer; 562. Arc bar; 563. Friction frame; 564. Middle swing rod; 565. Slide plate; 566. Knife component; 71. Condenser; 72. Main shaft; 73. Deflection angle; 74. Disc body; 75. Thin bar; 76. Hook body; 77. Middle bar. Detailed Implementation
[0031] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.
[0032] Example 1: Please refer to Figures 1-3 , Figures 8-10 This invention provides a technical solution: a remote-controlled cooling device for an automotive air conditioner, specifically comprising:
[0033] Compressor 1, a pipe 2 is fixedly installed on the bottom front of compressor 1, and a cleaning housing 3 is movably installed on the output end of the pipe 2. The cleaning housing 3 is used to adjust the cleanliness of the internal air circulation. The top of the cleaning housing 3 has an evaporator, and a dust removal device 4 is installed inside the cleaning housing 3. The dust removal device 4 is used to adjust the dust removal status.
[0034] Dust removal device 4 includes an air inlet pipe 41, with a low-pressure pipe 42 movably installed on the bottom of the outer surface of the air inlet pipe 41. The low-pressure pipe 42 is blown by a clamping plate 44, and the clamping plate 44 presses the extension bar 45 to move. The extension bar 45 blocks dust that may bounce back and float. The ejector 46 tilts at an arc under the action of the wind force, and the blowing strip 47 provides auxiliary support for the ejector 46. A sleeve frame 43 is movably installed on the outer surface of the bottom end of the low-pressure pipe 42, and the clamping plate 44 is slidably installed in the inner cavity of the sleeve frame 43. An extension bar 45 is fixedly installed on the side of plate 44 away from low-pressure pipe 42. A swing member 46 is movably installed on both sides of the inner side wall of sleeve frame 43. A blower 47 is fixedly installed on the inner surface of the swing member 46. The inside of sleeve frame 43 is a hollow structure. There are two extension bars 45 in total, and the angle between the extension bar 45 and the clamping plate 44 is ninety degrees. Low-pressure pipe 42 passes through the inner cavity of sleeve frame 43. Air inlet pipe 41 is connected to sleeve frame 43 through low-pressure pipe 42. Swing member 46 is made of rubber.
[0035] When a refrigeration cycle is required, the gas inside the inlet duct 41 enters the low-pressure duct 42. The airflow from the low-pressure duct 42 gradually blows into the inner cavity of the sleeve 43. The low-pressure duct 42 and the clamping plate 44 are blown together. The clamping plate 44 squeezes the extension bar 45 and moves it. The extension bar 45 blocks dust that may bounce back and drift. The swing piece 46 tilts at an arc with the action of the airflow. The blowing bar 47 provides auxiliary support for the swing piece 46. The swing piece 46 quickly promotes the passage of airflow with the airflow and can block dust. Finally, it passes through the condenser 71 and is converted into cold air that stays in the left area. This ensures that the dust in the airflow does not easily drift back during the refrigeration process, achieving the purpose of rapid and clean treatment.
[0036] Example 2: Please refer to Figures 1-9 The present invention provides a technical solution: a dust removal device 4 is provided inside the cleaning housing 3, and a deodorizing device 5 located inside the cleaning housing 3 is provided on one side of the dust removal device 4. The top of the cleaning housing 3 has an evaporator. The deodorizing device 5 is used to adjust the strong odor generated by the air conditioner.
[0037] The deodorizing device 5 includes a shelf 51, a vertical bar 52 is movably installed in the middle of the bottom of the shelf 51, a spinning drum 53 is movably installed in the middle of the left side wall of the vertical bar 52, a ring frame 59 is movably installed in the inner cavity of the spinning drum 53, a pusher 58 is fixedly installed at the end of the ring frame 59 away from the vertical bar 52, an actuating element 55 is movably installed on the side of the spinning drum 53 away from the vertical bar 52, the actuating element 55 contains an air bladder, the actuating element 55 is pushed and squeezed by the pusher 58 to spray gas, the actuating element 55 changes from a full state to a compressed state, a shaft cylinder 54 is fixedly installed at the top of the actuating element 55, a mounting seat 56 is movably installed on the side of the actuating element 55 away from the vertical bar 52, and a screening plate 57 is fixedly installed at the left end of the shelf 51.
[0038] The mounting base 56 also includes a liquid storage dryer 561. An arc strip 562 is movably installed at the bottom of the liquid storage dryer 561. The arc strip 562 is blown and shakes. The arc strip 562 tilts and squeezes the middle swing rod 564 to operate. The middle swing rod 564 retracts. The rubbing frame 563 moves by hitting the sliding plate 565. The middle swing rod 564 is movably installed on the inner surface of the arc strip 562. The rubbing frame 563 is fixedly installed on the outer surface of the arc strip 562. The end of the middle swing rod 564 away from the arc strip 562 is fixedly connected to the sliding plate 565. A blade 566 is movably installed in the inner cavity of the sliding plate 565.
[0039] A pusher 58 is movably installed on the inner surface of the spinning drum 53. The mounting seat 56 is located in the middle of the inner top wall of the cleaning shell 3. The middle spinning rod 564 is made of soft rubber. The liquid storage dryer 561 is connected to the middle spinning rod 564 through the arc strip 562. The middle spinning rod 564 retracts, and the brush frame 563 impacts the sliding plate 565. The sliding plate 565 beats the screening plate 57 through the blade 566. The blade 566 penetrates the inner cavity of the sliding plate 565. The screening plate 57 itself has evenly distributed slots.
[0040] When it is necessary to process the circulation generated by the external wind, the wind rushes into the air inlet duct 41, gradually impacts the vertical bar 52, and is blown in from the swivel duct 53. The swivel duct 53 forms an expanding trend, and the wind gradually squeezes the ring frame 59, causing the ring frame 59 to vibrate. When the ring frame 59 vibrates, the push bar 58 swings synchronously. The push bar 58 cleans and wipes the outer surface of the action part 55, thereby ensuring that the internal parts have a clean treatment effect, improving the cleaning effect, and preventing the appearance of a pungent odor due to the accumulation of dust.
[0041] When the refrigeration filter needs to be shaken off and cleaned, the actuating element 55 contains an air bladder. The actuating element 55 is pushed and squeezed by the pusher 58 to spray out gas. The actuating element 55 changes from a full state to a compressed state and blows the screen plate 57. The dust on the screen opening of the screen plate 57 is blown away, and the arc strip 562 is blown away and creates a shaking effect. The arc strip 562 tilts and squeezes the middle swing rod 564 to operate. The middle swing rod 564 retracts, and the scraper 563 hits the sliding plate 565. The sliding plate 565 beats the screen plate 57 through the blade 566. The dust on the side wall of the screen plate 57 is gradually scraped and removed by the sliding plate 565, so that the equipment can automatically shake off surface dust, reduce the adhesion of stubborn stains, and improve the cleanliness.
[0042] Example 3: Please refer to Figures 1-11 The present invention provides a technical solution: based on the first embodiment, an air outlet pipe 6 is fixedly installed on the left side of the front of the cleaning shell 3, and a heat dissipation device 7 is movably installed on the left side inside the cleaning shell 3. The heat dissipation device 7 is used to adjust the rapid diffusion state of the cold air.
[0043] The heat dissipation device 7 includes a condenser 71 and a hook 76. The hook 76 is affected by the blowing force and tends to extend towards the main shaft 72. It is also affected by the blowing force and will swing forward or backward. When the hook 76 swings backward, it will swing and hit the middle bar 77. The middle bar 77 is movably installed on the back of the hook 76. A deflection angle 73 is slidably connected to the left side of the middle bar 77. The main shaft 72 is fixedly installed in the inner cavity of the deflection angle 73. The bottom end of the main shaft 72 is fixedly connected to the disc 74. The outer surface of the bottom end of the disc 74 is fixedly installed with thin strips 75. The thin strips 75 are evenly distributed with reference to the center line of the main shaft 72. The deflection angle 73 has an irregular shape. The center lines of the disc 74 and the main shaft 72 are on the same straight line. The diameter of the disc 74 is larger than the diameter of the main shaft 72. The middle bar 77 is a cuboid. The thin strips 75 are coated with adhesive between the disc 74 and the disc 74.
[0044] In use, the compressor 1 is first turned on by remote control. The low pressure in the refrigeration system is drawn in by the compressor 1 and compressed into high pressure before being discharged to the condenser 71. The outside air drawn in by the outside fan flows through the air inlet pipe 41 and through the condenser 71, carrying away the heat released by the refrigerant and turning the high pressure into a high pressure liquid. The high pressure liquid flows into the evaporator after being throttled and depressurized, and evaporates under the corresponding pressure, absorbing the surrounding heat. At the same time, it exchanges heat with the outside air between the evaporator fins and sends the cooled gas into the car. In this way, the indoor and outdoor air circulate continuously, achieving the purpose of cooling.
[0045] When rapid diffusion of the cool air inside the car is required, ventilation at the slot of the sieve plate 57 causes the hook 76 to move. Under the influence of the blowing force, the hook 76 tends to extend towards the main shaft 72. The hook 76 also swings forward or backward under the influence of the blowing force. When the hook 76 swings backward, it impacts the middle bar 77. The middle bar 77 uses its middle part as a fixed support point. The right side of the middle bar 77 is impacted backward. Due to the relative motion of the force, the left side of the middle bar 77 swings forward. The left side of the middle bar 77 impacts the more protruding deflection angle 73. The deflection angle 73 swings and moves synchronously with the main shaft 72. The rotation of the main shaft 72 drives the disc 74 to operate, and the thin bar 75 moves accordingly. The thin bar 75 swings to evenly disperse the internal cool air, which is finally discharged through the air outlet 6, thereby ensuring the rapid expansion of the internal cool air and improving the cooling effect of the car.
[0046] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.
Claims
1. A remote-controlled cooling device for an automotive air conditioner, specifically comprising: The compressor (1) is fixedly equipped with a connecting pipe (2), and a cleaning housing (3) is movably installed at the output end of the connecting pipe (2). Its characteristic is that: The cleaning shell (3) is provided with a dust removal device (4) inside, and a deodorizing device (5) located inside the cleaning shell (3) is provided on one side of the dust removal device (4). The deodorizing device (5) includes a shelf (51), on which a vertical bar (52) is movably installed. A spinning drum (53) is movably installed on one side of the vertical bar (52). A ring frame (59) is movably installed in the inner cavity of the spinning drum (53). A pusher (58) is fixedly installed at the end of the ring frame (59) away from the vertical bar (52). An actuating element (55) is movably installed on the side of the spinning drum (53) away from the vertical bar (52). A shaft cylinder (54) is fixedly installed at the top of the actuating element (55). A mounting seat (56) is movably installed on the side of the actuating element (55) away from the vertical bar (52). A screening plate (57) is fixedly installed at the left end of the shelf (51). An air outlet pipe (6) is fixedly installed on the left side of the front of the cleaning shell (3), and a heat dissipation device (7) is movably installed on the left side inside the cleaning shell (3). The mounting base (56) also includes a liquid storage dryer (561). An arc strip (562) is movably installed at the bottom of the liquid storage dryer (561). A central swing rod (564) is movably installed on the inner surface of the arc strip (562). A brush holder (563) is fixedly installed on the outer surface of the arc strip (562). A sliding plate (565) is fixedly connected to one end of the central swing rod (564) away from the arc strip (562). A blade (566) is movably installed in the inner cavity of the sliding plate (565). The liquid storage dryer (561) is connected to the central swing rod (564) through the arc strip (562). The blade (566) penetrates the inner cavity of the sliding plate (565). The screening plate (57) itself is provided with uniformly distributed slots. The inner surface of the swing cylinder (53) is movably mounted with a pusher (58), the mounting seat (56) is located in the middle of the inner top wall of the cleaning shell (3), and the middle swing rod (564) is made of soft rubber material.
2. The remote-controlled refrigeration device for an automotive air conditioner according to claim 1, characterized in that: The dust removal device (4) includes an air inlet pipe (41), a low-pressure pipe (42) is movably installed on the bottom of the outer surface of the air inlet pipe (41), a sleeve frame (43) is movably installed on the outer surface of the bottom end of the low-pressure pipe (42), a clamping plate (44) is slidably installed in the inner cavity of the sleeve frame (43), an extension bar (45) is fixedly installed on the side of the clamping plate (44) away from the low-pressure pipe (42), and a blower (46) is movably installed on the two inner side walls of the sleeve frame (43), and a blower (47) is fixedly installed on the inner surface of the blower (46).
3. The remote-controlled refrigeration device for an automotive air conditioner according to claim 2, characterized in that: The frame (43) has a hollow structure inside. There are two extension bars (45), and the angle between the extension bar (45) and the plate (44) is 90 degrees.
4. The remote-controlled refrigeration device for an automotive air conditioner according to claim 3, characterized in that: The low-pressure pipe (42) penetrates the inner cavity of the sleeve frame (43), the air inlet pipe (41) is connected to the sleeve frame (43) through the low-pressure pipe (42), and the sling (46) is made of rubber.
5. A remote-controlled refrigeration device for an automotive air conditioner according to claim 1, characterized in that: The heat dissipation device (7) includes a condenser (71) and a hook (76). A middle strip (77) is movably installed on the back of the hook (76). A deflection angle (73) is slidably connected to the left side of the middle strip (77). A main shaft (72) is fixedly installed in the inner cavity of the deflection angle (73). A disc (74) is fixedly connected to the bottom end of the main shaft (72). A thin strip (75) is fixedly installed on the outer surface of the bottom end of the disc (74).
6. A remote-controlled refrigeration device for an automotive air conditioner according to claim 5, characterized in that: The thin strips (75) are evenly distributed with reference to the center line of the main shaft (72), the deflection angle (73) is an irregular shape structure, and the center lines of the disk body (74) and the main shaft (72) are on the same straight line.
7. A remote-controlled refrigeration device for an automotive air conditioner according to claim 5, characterized in that: The diameter of the disc (74) is larger than the diameter of the spindle (72), the middle strip (77) is a cuboid, and the thin strip (75) is coated with adhesive between itself and the disc (74).