Adjustable air-cooled air conditioner cooling clothes

By introducing adjustable fan components and temperature sensors into the cooling suit, the fan gear and power are automatically adjusted, and combined with the removable housing frame and blank design, the problem of low cooling efficiency is solved, and the rapid and convenient cooling effect is achieved, and the battery life is extended.

CN223262392UActive Publication Date: 2025-08-26JOEONE
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Patent Information

Application Number
CN202421465562.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-25
Publication Date
2025-08-26
Estimated Expiration
2034-06-25

AI Technical Summary

Technical Problem

The power of existing cooling suits is low in built-in fans or cooling devices, resulting in low cooling efficiency and cannot effectively reduce body temperature in a short period of time, affecting the user's cooling experience.

Method used

An adjustable air-cooled air-conditioning cooling suit is designed, including the main garment body, fan assembly, control switch, temperature sensor and temperature control module. The body temperature is detected through the temperature sensor, and the gear and power of the fan are automatically adjusted. Combined with the removable housing frame and baffle, it can achieve efficient cooling and portability.

Benefits of technology

It achieves rapid and effective body temperature reduction, extends battery life, improves users' comfort and convenience in high-temperature environments, and solves the problem of slow cooling speed of traditional cooling services.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an adjustable air-cooling air-conditioning cooling garment which comprises a main garment body, a zipper is arranged on the front face of the main garment body, a lacing belt is arranged on the lower portion of the main garment body, and an air cavity is formed in the main garment body when the zipper is zipped and matched with the lacing belt. The fan assembly is arranged on the back of the main clothes body and comprises a fan detachably installed on the back of the main clothes body, and an output port of the fan faces the interior of the main clothes body and is communicated with the air cavity; through the design of the foldable cap body and the detachable fan, the cooling clothes are convenient to carry and comfortable to wear, due to the fact that air flow is efficiently utilized from bottom to top, dependence on the high-power fan is reduced, the endurance time of a battery is prolonged, and a user can continuously enjoy the cooling effect in long-time outdoor activities. Through efficient utilization of air flow from bottom to top, the experience of a user in a high-temperature environment is improved through the rapid and remarkable cooling effect, and the problem that the cooling speed of traditional cooling clothes is low is solved.
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Description

Technical Field

[0001] The utility model relates to an adjustable air-cooling and air-conditioning cooling garment, belonging to the technical field of clothing. Background Art

[0002] Outdoor cooling clothing is a wearable device designed for outdoor activities in hot weather. It uses various technical means to effectively reduce the wearer's body surface temperature, improving comfort and work efficiency. Outdoor cooling clothing is typically made of lightweight, flexible materials, making it easy to wear and carry for extended periods. It utilizes wear-resistant and tear-resistant fabrics to withstand harsh outdoor environments and frequent use. The fabric is typically waterproof, dustproof, and UV-resistant, providing comprehensive protection. It is also highly breathable, allowing for quick perspiration removal to prevent excessive heatstroke.

[0003] In order to ensure portability and battery life, existing cooling suits usually have low-power built-in fans or cooling devices, which limits the cooling efficiency and slows the cooling speed. They cannot effectively reduce body temperature in a short period of time, affecting the user's cooling experience. Utility Model Content

[0004] In view of the deficiencies in the prior art, the purpose of this utility model is to provide an adjustable air-cooled air-conditioning cooling garment to solve the problems of the prior art.

[0005] In order to achieve the above purpose, the present invention is implemented through the following technical solutions:

[0006] An adjustable air-cooling and air-conditioning cooling suit, comprising:

[0007] A main garment body, wherein a zipper is provided on the front of the main garment body, and a tightening belt is provided below the main garment body. Pulling and closing the zipper cooperates with the tightening belt to form an air cavity inside the main garment body;

[0008] A fan assembly is provided on the back of the main garment body, and the fan assembly comprises:

[0009] a fan detachably mounted on the back of the main garment body, wherein the fan output port faces the interior of the main garment body and is in communication with the air cavity;

[0010] A control switch and a power supply assembly are sewn onto the front of the main garment body, wherein the control switch is electrically connected to the fan and the power supply assembly;

[0011] The fan is started / shut down by the control switch, and the air flow is converted into wind flow by the fan and enters the wind cavity, and the wind flow is discharged from above the main garment body.

[0012] As a further improvement, the control switch includes a switch module and a gear module, the switch module is electrically connected to the gear module, and the gear module is set with multiple gears from low to high according to power.

[0013] As a further improvement, the control switch is set with three gears from low to high according to power, specifically low, medium and high.

[0014] As a further improvement, the invention further comprises a gear shift button sewn on the inside of the main garment body, the gear shift button is electrically connected to the gear module, and the gear shift button is located at the upper third of the overall height of the main garment body.

[0015] As a further improvement, it also includes a temperature sensor sewn to the inside of the main garment body, and a temperature control module that controls the temperature sensor to cooperate with the control switch. The temperature control module is connected to the fan assembly and the power supply assembly through the control switch. The temperature inside the main garment body is detected by the temperature sensor, and the fan assembly and the power supply assembly are connected through the control switch to turn on the fan.

[0016] As a further improvement, when the temperature sensor detects a temperature equal to or higher than 35°, the high gear of the control switch is turned on; when the temperature sensor detects a temperature range of 30°-34°, the mid-gear of the control switch is turned on; when the temperature sensor detects a temperature lower than 30°, the low gear of the control switch is turned on.

[0017] As a further improvement, the invention further comprises a baffle provided on the back of the main garment body, the baffle being located outside the fan and being conveniently fixed to the main garment body by seaming. A buckle is fixedly provided on the inner side below the baffle, and a first fastener is provided on the back of the main garment body corresponding to the buckle. The buckle cooperates with the first fastener to cover the fan.

[0018] A second fastener is fixedly provided on the outer side above the baffle. The second fastener has the same structure as the first fastener and matches the baffle. The baffle is flipped upward, and the fan is exposed through the cooperation between the baffle and the second fastener.

[0019] As a further improvement, a detachable containing frame is further provided on the outer side of the fan. The containing frame is a hollow structure, and a low-temperature medium can be placed inside the frame.

[0020] As a further improvement, the connection part of the fan and the accommodating frame adopts a circular structure, the outer ring surface of the fan facing the air inlet is provided with an external thread, and the inner ring surface of the accommodating frame is provided with an internal thread. A low-temperature medium is placed inside the accommodating frame and is installed on the side of the fan air inlet through a threaded connection.

[0021] As a further improvement, the fan is provided with a plurality of groups of protrusions protruding outwardly toward the air inlet side, and the protrusions abut against the low-temperature medium to expand the air inlet space of the fan.

[0022] Beneficial effects

[0023] The utility model forms an air cavity inside the main body of the garment, and the airflow generated by the fan can circulate over a large area of ​​the body surface, quickly taking away heat and significantly improving the cooling effect.

[0024] The stowable cap and removable fan make the suit easy to carry and comfortable to wear. The efficient use of airflow from bottom to top reduces reliance on high-power fans, extending battery life and enabling users to enjoy continuous cooling during extended outdoor activities. This efficient use of airflow from bottom to top delivers rapid and significant cooling, improving the user experience in high-temperature environments and resolving the slow cooling rate associated with traditional cooling suits. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.

[0026] Figure 1 The utility model is a schematic diagram of the front structure of an adjustable air-cooling and air-conditioning cooling clothing.

[0027] Figure 2 The utility model is a schematic diagram of the back structure of an adjustable air-cooling and air-conditioning cooling clothing.

[0028] Figure 3 The utility model is a schematic diagram of a storage structure of the back of the collar.

[0029] Figure 4 It is a schematic diagram of the semi-expanded structure of the back of a collar portion of the present invention.

[0030] Figure 5 The utility model is a schematic diagram of an adjustable air-cooling and air-conditioning cooling clothing with the back baffle half-lifted.

[0031] Figure 6 The utility model is a schematic diagram of an adjustable air-cooling and air-conditioning cooling clothing with the back baffle opened.

[0032] Figure 7 The utility model is a schematic diagram of the unfolded structure of an adjustable air-cooling and air-conditioning cooling clothing.

[0033] Figure 8 The utility model is a schematic diagram of module connection of an adjustable air-cooling and air-conditioning cooling clothing.

[0034] Figure 9 This is a schematic diagram of the inner structure of a cap body of the present invention.

[0035] Figure 10 This is a schematic diagram of a accommodating frame structure of the utility model.

[0036] 1. Main body; 11. Zipper; 12. Air cavity; 13. Baffle; 14. Buckle; 15. First fastener; 16. Second fastener; 2. Cap; 21. Connecting channel; 22. Chamber; 23. Air outlet; 3. Fan assembly; 31. Fan; 32. Container frame; 321. Raised portion; 33. Power supply assembly; 34. Temperature sensor; 35. Temperature control module; 36. Switch module; 37. Gear module; 38. Gear shift button; 17. Collar; 18. Interlayer space; 171. Outer layer; 172. Inner layer; 173. Extension; 174. First Velcro; 175. Second Velcro; 19. Reflective sheet; 191. Exhaust hole; 101. Spliced ​​reflective strip; 102. Mesh. DETAILED DESCRIPTION

[0037] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention. Therefore, the following detailed description of the embodiments of the present invention provided in the drawings is not intended to limit the scope of the utility model for which protection is sought, but merely represents the selected embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0038] In the description of this utility model, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Therefore, a feature specified as "first" or "second" may explicitly or implicitly include one or more of such features. In the description of this utility model, "plurality" means two or more, unless otherwise specifically specified.

[0039] In order to ensure portability and battery life, existing cooling suits usually have low-power built-in fans or cooling devices, which limits the cooling efficiency and slows the cooling speed. They cannot effectively reduce body temperature in a short period of time, affecting the user's cooling experience.

[0040] Reference Figure 1-10 As shown, an adjustable air-cooling and air-conditioning cooling suit comprises:

[0041] A main garment body 1 is provided with a zipper 11 on the front of the main garment body 1 and a tightening belt is provided below the main garment body 1. Pulling and closing the zipper 11 cooperates with the tightening belt to form an air cavity 12 inside the main garment body 1;

[0042] a retractable cap body 2 disposed above the main garment body 1;

[0043] The fan assembly 3 is provided on the back of the main garment body 1, and the fan assembly 3 includes:

[0044] A fan 31 detachably mounted on the back of the main garment body 1 , with the output port of the fan 31 facing the interior of the main garment body 1 and communicating with the air cavity 12 ;

[0045] A control switch and a power supply assembly 33 are sewn onto the front of the main garment body 1 , and the control switch is electrically connected to the fan 31 and the power supply assembly 33 ;

[0046] The fan 31 is started / shut down by the control switch, and the air flow is converted into wind flow by the fan 31 and enters the air cavity 12 , and the wind flow is discharged from the top of the main garment body 1 .

[0047] The cooling garment improves cooling efficiency by creating an air cavity 12 within the main garment body 1. The user closes the zipper 11 on the main garment body 1 and tightens the straps, creating a sealed air cavity 12. The user then activates the fan 31 mounted on the back. The airflow generated by the fan 31 enters the air cavity 12, circulates over the user's body, and is discharged from above, removing heat, thereby rapidly lowering body temperature and providing a significant cooling effect.

[0048] By forming an air cavity 12 inside the main garment body 1, the airflow generated by the fan 31 can circulate over a large area of ​​the body surface, quickly taking away heat and significantly improving the cooling effect.

[0049] The stowable cap 2 and detachable fan 31 make the cooling suit easy to carry and comfortable to wear. The efficient bottom-up airflow reduces reliance on the high-power fan 31, extending battery life and enabling users to enjoy continuous cooling during extended outdoor activities. This efficient bottom-up airflow delivers a rapid and significant cooling effect, improving the user experience in high-temperature environments and resolving the slow cooling rate of traditional cooling suits.

[0050] To achieve automatic adjustment, the main garment body 1 further includes a temperature sensor 34 sewn into the main garment body 1 and a temperature control module 35 for controlling the temperature sensor 34 to cooperate with a control switch. The temperature control module 35 is connected to the fan assembly 3 and the power supply assembly 33 via the control switch. The temperature sensor 34 detects the internal temperature of the main garment body 1, and the control switch connects the fan assembly 3 and the power supply assembly 33 to turn on the fan 31.

[0051] The working principle of this new cooling suit combines the coordinated work of the temperature sensor 34, the temperature control module 35, the fan assembly 3 and the power supply assembly 33 to achieve efficient cooling through intelligent control.

[0052] A temperature sensor 34 embedded within the main garment body 1 continuously monitors the temperature inside the garment, acquiring real-time temperature data. The temperature sensor 34 transmits the detected temperature information to the temperature control module 35. Upon receiving the temperature data, the temperature control module 35 analyzes and determines the temperature. If the monitored temperature exceeds the preset comfortable temperature range, the temperature control module 35 initiates cooling. Based on the instructions from the temperature control module 35, a control switch connects the power supply assembly 33 and the fan assembly 3, activating the fan 31 and generating airflow. The airflow generated by the fan 31 flows through the internal air cavity 12 of the main garment body 1, creating air circulation over the body surface, removing excess heat and lowering the internal temperature. When the temperature sensor 34 detects that the internal temperature has fallen within the preset comfortable temperature range, the temperature control module 35 instructs the fan 31 to remain on to maintain that temperature. The temperature control module 35 optimizes the timing of fan 31's on and off to avoid unnecessary activation, extending the battery life and providing a longer-lasting cooling effect.

[0053] Because the human body is highly sensitive to temperature fluctuations, temperature sensor 34 monitors the internal temperature of the cooling suit in real time, allowing for more precise adjustment of fan 31 to ensure the user remains within a comfortable temperature range. Automatically adjusting fan 31's start / stop and air volume ensures effective cooling while saving power and extending the device's battery life. This eliminates the need for frequent manual adjustments to fan 31, which can be dynamically adjusted based on ambient temperature fluctuations, significantly improving user convenience and user experience.

[0054] Real-time monitoring and adjustment ensure the cooling suit always operates optimally, providing stable and efficient cooling. Through intelligent control, Fan 31 operates only when necessary, reducing unnecessary power consumption, extending battery life, and enhancing practicality during extended outdoor activities. Dynamic adjustment prevents discomfort caused by temperature fluctuations, keeping users within a comfortable temperature range and improving the wearing experience. Users no longer need to frequently manually adjust Fan 31, reducing operational complexity and making use simpler and more intuitive.

[0055] The control switch includes a switch module 36 and a gear module 37 . The switch module 36 is electrically connected to the gear module 37 . The gear module 37 is provided with a plurality of gears from low to high according to power.

[0056] Generally speaking, when the ambient temperature is below 30°C, most people feel comfortable and do not experience significant heat stress, so a lower cooling force is required to maintain comfort. This range is mainly for relatively cool ambient conditions.

[0057] In the temperature range of 30°C to 34°C, the human body begins to feel warm and may experience thermal discomfort if not properly cooled. In this range, the fan 31 needs to run at a medium speed to provide a moderate cooling effect to ensure that the user remains comfortable within this temperature range.

[0058] At temperatures of 35°C and above, the human body will noticeably experience stress and discomfort, which may even have negative health effects. In such situations, the most efficient cooling device must operate at full speed to quickly reduce the perceived temperature and ensure user comfort and health.

[0059] Dynamically adjusting the power of the fan 31 according to the temperature difference can effectively balance the cooling demand and battery consumption, thereby extending the battery life of the device.

[0060] By adjusting the working gear of the fan 31 within different temperature ranges, it is possible to avoid wasting electricity when high power output is not required, thereby improving energy utilization efficiency and extending battery life.

[0061] The wear and tear and consumption of the fan 31 and the battery are different under different power operating states. By properly allocating the workload of the device, the excessive use of the fan 31 and the battery is reduced, and the service life of the entire device can be extended.

[0062] When operating at low and medium gears, the fan 31 generates less noise and vibration, which improves the user's comfort and provides a quieter use environment without affecting the cooling effect.

[0063] Experiments and studies have shown that the human body does not usually feel overheated or too cold when the temperature is below 30℃; between 30℃ and 34℃, the human body begins to feel warm and requires moderate heat dissipation; at 35℃ and above, the human body will feel significant discomfort and heat stress, and strong cooling measures are needed to maintain comfort and health.

[0064] In this embodiment, the control switch is set to three gears from low to high according to power, specifically low, medium and high.

[0065] The main garment body 1 also includes a gear adjustment button 38 sewn on the inside thereof, the gear adjustment button 38 being electrically connected to the gear module 37 and located at the upper third of the overall height of the main garment body 1. Being located at the upper third allows for easy manual adjustment by the user.

[0066] After the power supply of each module component is turned on through the switch module 36, the temperature sensor 34 monitors the body surface temperature. If it reaches 35°, the fan 31 is turned on through the control module and the gear module 37, and the third gear high-power operation is continued for a period of time. When the temperature drops, the gear module 37 can automatically switch or manually switch the various gear modes.

[0067] When the temperature sensor 34 detects a temperature equal to or higher than 35°, the high gear of the control switch is turned on. When the temperature sensor 34 detects a temperature range of 30°-34°, the mid-gear of the control switch is turned on. When the temperature sensor 34 detects a temperature lower than 30°, the low gear of the control switch is turned on.

[0068] In order to achieve rapid cooling, a connecting channel 21 is provided at the connection position between the cap body 2 and the main body 1. A chamber 22 is provided inside the cap body 2. Several air outlets 23 are provided on the inside of the cap body 2. The air outlets 23 are connected to the chamber 22, and the chamber 22 is connected to the air cavity 12 through the connecting channel 21.

[0069] The design of connecting channel 21 and chamber 22 enables rapid cooling. When the outside temperature is high or the user is engaging in vigorous exercise, fan assembly 3 is activated, and cooling airflow, carrying body heat, is quickly expelled through these channels. The provision of chamber 22 and air outlet 23 increases air flow inside the hat, preventing stuffiness and providing a more comfortable wearing experience.

[0070] The effective cooling and ventilation design allows users to stay comfortable in hot weather or when exercising without feeling stuffy due to the presence of the hat. At the same time, the hat can block the sun.

[0071] The air outlets 23 are respectively arranged in the middle and edge of the inner side of the cap body 2. The wind can blow the back of the head, the top of the head, the face and other areas through the air outlets 23. Combined with the wind output upward from the neck area by the air cavity, all-round rapid cooling can be achieved, and the sun protection can be further provided by the shielding of the cap body 2.

[0072] In order to block the fan 31 when not in use and improve the aesthetics, a baffle 13 is also provided on the back of the main body 1. The baffle 13 is located on the outside of the fan 31 and is conveniently fixed to the main body 1 by seaming. A buckle 14 is fixedly provided on the inner side below the baffle 13. A first fastener 15 is provided on the back of the main body 1 corresponding to the buckle 14. Through the cooperation of the buckle 14 and the first fastener 15, the baffle 13 covers the fan 31.

[0073] A second fastener 16 is fixedly provided on the outer side above the baffle 13. The second fastener 16 has the same structure as the first fastener 15 and matches the buckle 14. The baffle 13 is flipped upward, and the fan 31 is exposed through the cooperation between the buckle 14 and the second fastener 16.

[0074] A shielding piece 13 is provided on the back of the main garment body 1, positioned outside the fan 31. The shielding piece 13 is secured to the main garment body 1 by sewing at its top, and has gussets 14 positioned on its inner and outer sides. A first fastener 15 is provided at a corresponding position on the back of the main garment body 1. The gusset 14 engages with the first fastener 15 to allow the shielding piece 13 to cover the fan 31.

[0075] A second fastener 16 is fixedly provided on the outer side of the upper portion of the baffle 13. The structure is the same as the first fastener 15 and matches the baffle 14. After the baffle 13 is flipped upward, the fan 31 can be exposed by the cooperation between the baffle 14 and the second fastener 16.

[0076] In this embodiment, the first fastener 15 and the second fastener 16 have the same structure, and commercially available common fastening buttons are used between the two sets of fasteners 14 on the front and back sides of the blocking piece 13 and the fasteners, so they are not described in detail here.

[0077] When the fan 31 is not in use, the shield 13 effectively shields the fan 31, maintaining a neat and aesthetically pleasing appearance and preventing the exposed fan 31 from detracting from the overall appearance. The shield 13 provides additional protection when the fan 31 is not in use, preventing dust and other matter from entering the fan 31 and thus improving its lifespan and performance. The design of the buckle 14, in conjunction with the fastener, allows the user to conveniently display or conceal the fan 31 as needed, enhancing flexibility and convenience.

[0078] The provision of the baffle 13 ensures the aesthetics of the clothing when the fan 31 is not in use, while not affecting the functionality of the fan 31. The user can quickly switch the status of the baffle 13 when needed, which is both aesthetically pleasing and practical. Through the simple matching design of the buckle 14 and the fastener, the user can easily operate the baffle 13 to quickly achieve the function of shielding or displaying the fan 31, which is very convenient to use. The baffle 13 can effectively protect the fan 31, prevent damage to the fan 31 by external factors, and extend the service life of the fan 31. The versatility of the clothing is enhanced, so that it not only has the function of hiding hats and quickly cooling, but also remains neat and beautiful when not in use, suitable for more occasions.

[0079] In order to further achieve rapid cooling, a detachable receiving frame 32 is further provided on the outer side of the fan 31. The receiving frame 32 is a hollow structure, and a low-temperature medium can be placed inside the frame.

[0080] In this embodiment, the low-temperature medium is ice.

[0081] The fan 31 is further provided with a connecting ring 322 having a plurality of connecting holes 323 arranged in a ring shape. The connecting ring 322 is fixed to the back of the main garment body 1 by sewing through the connecting holes 323. An internal thread is provided on the inner side of the connecting ring 322, which matches the external thread on the outer ring surface of the fan 31, so that the fan 31 can be installed on the back of the main garment body 1 by means of a threaded connection.

[0082] The connection part between the fan 31 and the accommodating frame 32 adopts a circular structure. The outer ring surface of the fan 31 facing the air inlet is provided with an external thread, and the inner ring surface of the accommodating frame 32 is provided with an internal thread. A low-temperature medium is placed inside the accommodating frame 32 and is installed on the air inlet side of the fan 31 through a threaded connection.

[0083] The fan 31 is provided with a plurality of groups of protrusions 321 protruding outwardly toward the air inlet. The protrusions 321 abut against the low-temperature medium to expand the air inlet space of the fan 31 .

[0084] A low-temperature medium (such as ice) is placed inside the container 32, and the fan 31 draws the low-temperature air into the clothing, significantly improving the cooling effect. The detachable container 32 design allows users to easily replace or add low-temperature medium without having to replace the entire fan assembly 3, increasing flexibility and convenience.

[0085] The use of internal and external threaded connections ensures the stability of the connection between the frame 32 and the fan 31, preventing them from falling off or loosening during use. The raised portion 321 of the fan facing the air inlet further expands the air inlet space, allowing cold air to enter the clothes more quickly and evenly, improving the cooling effect.

[0086] The low-temperature medium placed in the housing frame 32 generates cool air under the action of the fan 31, significantly improving the overall cooling effect and making it suitable for use in high-temperature environments. The detachable design allows users to easily replace the low-temperature medium to adapt to different usage needs, increasing the flexibility and convenience of the system. The threaded connection ensures a secure connection between the housing frame 32 and the fan 31, preventing loosening or falling off during use, and improving the safety and reliability of the overall user experience.

[0087] The raised portion 321 of fan 31 increases air intake space while preventing direct contact with the low-temperature medium. This design does not negatively impact the normal operation of fan 31 and ensures more uniform and rapid cold air delivery. This not only improves rapid cooling capabilities but also maintains the system's modular design, making it more versatile and adaptable.

[0088] A mesh 102 is sewn and fixed to the inside of the main garment body 1. This mesh 102 is positioned outside the air outlet 23 of the fan 31. The mesh 102 sewn and fixed to the inside of the main garment body 1 helps evenly distribute the air blown by the fan 31 throughout the garment, preventing localized overheating and overcooling, improving wearer comfort, and enhancing the overall cooling effect.

[0089] The mesh 102 acts as a barrier to prevent lint, dust or other impurities inside the clothes from entering the fan 31. This extends the life of the fan 31, ensures the normal operation and cleanliness of the fan 31, and reduces the risk of clogging or damage to the fan 31.

[0090] Increased wearing comfort and reduced friction or irritation provide a better user experience. Mesh 102 provides protection, preventing direct contact with the fan 31 blades or other moving parts. This reduces the risk of accidental injury during use, especially around the rapidly rotating fan 31, and enhances the safety of the overall design.

[0091] The open hole design of the mesh 102 ensures good air permeability and does not hinder the air flow from the fan 31. It helps to maintain air circulation inside the clothing, making it easier for cool air to fill the whole body and further optimize the heat dissipation effect.

[0092] In order to store the cap body 2, a collar portion 17 is provided above the main body 1. An opening is provided on the back of the collar portion 17. A sandwich space 18 is formed in the collar portion 17 through the opening. The bottom of the cap body 2 is sewn and fixed to the inner side of the collar portion 17. The cap body 2 is extended and extends out from the sandwich space 18 through the opening.

[0093] The cap body 2 can be folded and placed into the interlayer space 18 through the opening.

[0094] By designing the interlayer space 18 in the collar 17, the cap body 2 can be conveniently stored in the clothing, avoiding the trouble of carrying a cap separately. The user does not need to carry a cap separately, which simplifies the equipment and enhances the practicality and convenience of the clothing.

[0095] The cap body 2 is stored in the interlayer space 18, which can protect the cap body 2 from damage by the external environment, avoid the cap body 2 from being squeezed, soiled or damaged when not in use, and extend the service life of the cap body 2.

[0096] The cap body 2 is stored in the interlayer, making the appearance of the clothes neat and tidy. There is no need to worry about the cap body 2 being exposed and affecting the appearance. The overall appearance of the clothes is kept simple and beautiful, which improves the image and temperament of the wearer.

[0097] The cap body 2 can be easily removed from the interlayer or stored. When not in use, it can be easily folded away without adding to the burden of carrying. It can also be quickly unfolded when in use, providing flexible use in different weather conditions. When needed for sun protection or rain protection, the cap body 2 can be quickly unfolded; when not needed, it can be stored in the interlayer.

[0098] The collar 17 and the interlayer space 18 are utilized to effectively utilize the structure of the clothing without adding extra storage space, and the design is compact and reasonable. The cap body 2 is stored in the interlayer to prevent it from being contaminated or damaged by the outside world, keeping the cap body 2 clean and intact.

[0099] In order to enhance the storage stability of the stored cap body 2, the collar 17 includes an outer layer 171 and an inner layer 172. The opening is opened on the outer layer 171. The inner layer 172 is sewn and fixed to the main body 1. The outer layer 171 is sewn and fixed to the inner layer 172.

[0100] The outer layer 171 extends downward from the opening to form an extension portion 173, and a first Velcro 174 is sewn on the inner side of the extension portion 173. A second Velcro 175 is fixedly provided on the outer side of the main garment body 1 at a position corresponding to the first Velcro 174, and the opening is closed by the cooperation of the first Velcro 174 and the second Velcro 175.

[0101] By providing a matching Velcro on the extended portion of the outer layer 171 of the collar 17 and the outer side of the main body 1, the opening can be firmly fixed when closed. Even in cases of strenuous exercise or wind, the cap body 2 will not slip out of the interlayer, maintaining stability and safety.

[0102] The Velcro design makes the opening and closing of the opening simple and quick. The user can quickly take out or store the cap body 2 when needed, which improves the convenience and efficiency of use.

[0103] The Velcro can completely close the opening to prevent foreign objects from entering and the cap body 2 from slipping. It protects the cap body 2 from external factors such as dust and rain, and keeps the cap body 2 clean and dry.

[0104] The coordinated use of the first Velcro 174 and the second Velcro 175 makes the cap body 2 more stable when stored and is not easy to slip off even during strenuous exercise, thereby providing higher safety and reliability.

[0105] The Velcro fastener is very convenient to open and close, allowing users to quickly remove or store the cap body 2, significantly improving the user experience and saving time and energy during outdoor activities. The Velcro fastener seals the opening, maintaining a neat and aesthetically pleasing appearance without the clutter of an open opening. The Velcro fastener effectively prevents dust, rain, and other substances from entering the interlayer, protecting the cap body 2 and extending its service life.

[0106] In other embodiments, buttons or zippers 11 may be used to replace the Velcro, but Velcro is used in this embodiment because it simplifies the manufacturing process and reduces the cost.

[0107] A reflective sheet 19 is sewn onto the upper back of the main garment body 1 , and an exhaust hole 191 is provided on the reflective sheet 19 . A spliced ​​reflective strip 101 is provided below the reflective sheet 19 , and the spliced ​​reflective strip 101 is fixed to the back of the main garment body 1 by sewing.

[0108] The provision of the reflective sheet 19 and the reflective strips can significantly improve the wearer's visibility in low light conditions (such as at night or in a dark environment), thereby improving the wearer's safety when walking, riding or doing other activities at night and reducing the occurrence of accidents.

[0109] The vent holes 191 are provided on the reflective sheet 19 to enhance the breathability of the clothing and prevent the back from getting stuffy, thereby improving wearing comfort, especially keeping the back dry during exercise or in a hot environment.

[0110] The design of the spliced ​​reflective strips 101 increases the layering and aesthetics of the clothing, making it more fashionable and enhancing the overall image of the wearer, making the clothing not only functional but also fashionable.

[0111] The reflective sheeting 19 and reflective strips effectively reflect light in low-light conditions, making the wearer more visible and enhancing safety, making them particularly suitable for nighttime outdoor activities. The vents 191 on the reflective sheeting 19 facilitate air circulation, reducing back sweating and stuffiness, and improving overall comfort, making them suitable for extended wear.

[0112] It should be noted that the device structure and drawings of the present invention mainly describe the principle of the present invention. In terms of the technology of the design principle, the settings of the device's power mechanism, power supply system, and control system are not fully described. However, those skilled in the art can clearly understand the details of its power mechanism, power supply system, and control system on the premise that they understand the principle of the above-mentioned utility model. The control method of the application document is automatic control through a controller, and the control circuit of the controller can be implemented by simple programming by those skilled in the art.

[0113] The standard parts used can be purchased from the market and can be customized according to the description in the specification and drawings. The specific connection methods of each part adopt conventional means such as mature bolts, rivets, welding, etc. in the existing technology. The machinery, parts and equipment all adopt conventional models in the existing technology, and the components known to technical personnel in this field, their structures and principles can be known to these technical personnel through technical manuals or through conventional experimental methods.

[0114] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. An adjustable air-cooling and cooling clothing, characterized in that: include: A main garment body (1), wherein a zipper (11) is provided on the front of the main garment body (1), and a tightening belt is provided below the main garment body (1); when the zipper (11) is closed, it cooperates with the tightening belt to form an air cavity (12) inside the main garment body (1); A fan assembly (3) is provided on the back of the main garment body (1), and the fan assembly (3) comprises: a fan (31) detachably mounted on the back of the main garment body (1), wherein the output port of the fan (31) faces the interior of the main garment body (1) and is in communication with the air cavity (12); A control switch and a power supply assembly (33) are sewn onto the front surface of the main garment body (1), wherein the control switch is electrically connected to the fan (31) and the power supply assembly (33); The fan (31) is started / turned off by the control switch, and the air flow is converted into wind flow by the fan (31) and enters the wind cavity (12), and the wind flow is discharged from the top of the main garment body (1); The outer side of the fan (31) is also provided with a detachable accommodating frame (32), and the accommodating frame (32) is a hollow structure, and a low-temperature medium can be placed inside the frame; The connection portion between the fan (31) and the accommodating frame (32) adopts a circular structure. The outer ring surface of the fan (31) facing the air inlet is provided with an external thread, and the inner ring surface of the accommodating frame (32) is provided with an internal thread. A low-temperature medium is placed inside the accommodating frame (32) and is installed on the air inlet side of the fan (31) through a threaded connection. The fan (31) is provided with a plurality of groups of raised portions (321) protruding outwards toward the air inlet side, and the raised portions (321) abut against the low-temperature medium to expand the air inlet space of the fan (31); The utility model further comprises a temperature sensor (34) sewn inside the main garment body (1), and a temperature control module (35) for controlling the temperature sensor (34) to cooperate with a control switch. The temperature control module (35) is connected to the fan (31) assembly and the power supply assembly (33) via the control switch. The temperature sensor (34) detects the internal temperature of the main garment body (1), and the control switch connects the fan assembly (3) and the power supply assembly (33) to turn on the fan (31). The control switch has three gears from low to high according to the power, specifically low, medium and high; When the temperature sensor (34) detects a temperature equal to or higher than 35°, the high gear of the control switch is turned on; when the temperature sensor (34) detects a temperature range of 30°-34°, the middle gear of the control switch is turned on; and when the temperature sensor (34) detects a temperature lower than 30°, the low gear of the control switch is turned on.

2. The adjustable air-cooling and air-conditioning cooling clothing according to claim 1, characterized in that: The control switch comprises a switch module (36) and a gear module (37), wherein the switch module (36) is electrically connected to the gear module (37), and the gear module (37) is provided with a plurality of gears from low to high according to power.

3. The adjustable air-cooling and air-conditioning cooling clothing according to claim 2, characterized in that: The invention also includes a gear shift button (38) sewn on the inner side of the main garment body (1), the gear shift button (38) being electrically connected to the gear module (37), and the gear shift button (38) being located in the upper third of the overall height of the main garment body (1).

4. The adjustable air-cooling and air-conditioning cooling clothing according to claim 1, characterized in that: The utility model further comprises a baffle (13) arranged on the back of the main garment body (1), the baffle (13) being located outside the fan (31), the baffle (13) being conveniently fixed to the main garment body (1) by seaming, a buckle (14) being fixedly arranged on the inner side below the baffle (13), a first fastener (15) being arranged on the back of the main garment body (1) corresponding to the buckle (14), and the baffle (13) covering the fan (31) by the cooperation between the buckle (14) and the first fastener (15); A second fastener (16) is fixedly provided on the outer side above the baffle (13); the second fastener (16) has the same structure as the first fastener (15) and matches the fastener (14); the baffle (13) is flipped upward, and the fan (31) is exposed through the cooperation between the fastener (14) and the second fastener (16).

Citation Information

Cited By

  • Air-cooled cooling clothes

    CN118576011A