Land search and rescue suit facilitating air permeation and heat dissipation
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2026-08-11
Smart Images

Figure CN224611992U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of rescue clothing technology, and in particular to a land search and rescue clothing that is breathable and heat dissipation-friendly. Background Technology
[0002] Rescue suits are protective garments specifically designed for use at natural disaster rescue sites. In land search and rescue missions, the external terrain and environment are often harsh. To ensure the protection of firefighters during the rescue process, rescue suits are usually made of flame-retardant, rainproof, abrasion-resistant, lightweight, and tensile-strength materials. At the same time, tightening structures are set at the cuffs and trouser legs to prevent mud and sand from entering the rescue suit and causing injury to the firefighters.
[0003] While existing rescue suits offer necessary protection such as flame retardancy, abrasion resistance, heat resistance, and protection against mud and sand, their structural design limits their breathability. This can lead to overheating and increased discomfort for rescuers during high-intensity work. Especially during short breaks, the suits must be completely removed, and if emergency search and rescue operations are needed during rest periods, they must be put back on. Overall, these suits are inconvenient to use and require improvement. Utility Model Content
[0004] To address the problem that existing rescue suits lack breathability and require complete removal during rest periods, which is inconvenient, this application provides a land search and rescue suit that facilitates breathability and heat dissipation.
[0005] This application provides a land search and rescue suit that is breathable and heat-dissipating, employing the following technical solution: A breathable and heat-dissipating land search and rescue suit includes a jacket and trousers. The jacket has a first mesh fabric for ventilation under the armpits, and a first elastic fabric layer for covering the first mesh fabric is detachably provided under the armpits. The back of the jacket has a breathable mesh structure and a back breathable flap for concealing the breathable mesh structure. The trousers have slanted pockets on both sides for storing small items. The inside of the slanted pockets is made of a second mesh fabric for ventilation, and the outside of the slanted pockets is made of a protective fabric layer for covering the second mesh fabric. The opening of the slanted pockets is provided with a first zipper, and when the first zipper is opened, the inside and outside of the trousers are connected through the second mesh fabric.
[0006] By adopting the above technical solution, the design of the first elastic fabric layer, the breathable back flap, and the protective fabric layer ensures both the overall breathability and comfort of the jacket and trousers, as well as their protective function. When resting and cooling down are needed, simply open the first elastic fabric layer and the protective fabric layer to expose the first and second mesh fabrics, which greatly improves the heat dissipation and breathability of the jacket and trousers without having to remove the entire rescue suit. After resting, the first elastic fabric layer and the protective fabric layer can be closed again, making the overall use simpler and more convenient.
[0007] Preferably, the inner side of the garment is provided with a built-in mesh bag for storing ice packs and a fan loop for hanging an electric fan.
[0008] By adopting the above technical solution, when in use, ice packs are placed in the built-in mesh pockets and an electric fan is hung inside the jacket, thereby further improving the heat dissipation effect after the jacket is worn.
[0009] Preferably, the cuffs of the top are provided with an inner elastic rib for adjusting the tightness of the cuffs and adjustable tightening cuff loops, the hem of the top is provided with a drawstring, and the cuffs of the pants are provided with windproof leg openings.
[0010] By adopting the above technical solution, the inner elastic ribbed fabric, adjustable and tightening sleeve loops, and hem drawstrings are used to tighten the cuffs and hem openings of the upper garment, preventing mud and sand from entering the upper garment and causing injury to the user. The windproof cuffs tighten the openings of the trouser legs to prevent hot or cold air from entering, while also preventing mud and sand from entering, thus ensuring the protective performance of the rescue suit when worn.
[0011] Preferably, the shoulder area of the shirt, the elbow area of the shirt, the hip area of the pants, and the knee area of the pants are all provided with abrasion-resistant reinforcing layers.
[0012] By adopting the above technical solution, the wear-resistant reinforcement layer increases the wear resistance of the shoulders, elbows, hips, and knees of the shirt, making it more suitable for use.
[0013] Preferably, the inner back of the top is provided with a shock-absorbing cushioning pad, the elbows of the top are detachably provided with a first built-in soft pad, the knees of the pants are detachably provided with a second built-in soft pad, and the knees of the pants are provided with an adjustment structure for adjusting the position of the second built-in soft pad.
[0014] By adopting the above technical solution, the use of shock-absorbing pads, a first built-in soft pad, and a second built-in soft pad provides protection for the back, elbows, and knees during firefighter rescue operations, making it more convenient to use.
[0015] Preferably, the trousers have a single-layer loop for threading a belt and a double-layer loop for hanging small items at the waistband.
[0016] By adopting the above technical solution, when in use, the combination of single-layer and double-layer belt loops not only secures the waistband but also makes it easier for the user to hang small items, making it more convenient to use.
[0017] Preferably, the inner side of the garment is provided with an inner lining, and the two sides of the inner lining are detachably connected to the inside of the garment via detachable zippers. The inner lining is provided with a hanging cord near the collar, and the inner side of the garment is provided with an inner lining loop. One end of the hanging cord passes around the inner lining loop and is connected by a snap.
[0018] By adopting the above technical solution, the inner lining and the top can be detachably connected by the hanging rope and the detachable zipper, which increases the practicality of the top.
[0019] Preferably, the inner side of the collar of the garment is provided with a fleece-lined inner collar, and the fleece-lined inner collar and the inner side of the garment form a receiving cavity for accommodating the inner collar.
[0020] By adopting the above technical solution, the fleece-lined inner collar not only secures the inner collar but also improves the comfort of wearing the garment.
[0021] Preferably, the collar of the garment has an earphone fixing hole for securing the earphones.
[0022] By adopting the above technical solution, the headphone fixing hole makes it easier for firefighters to fix the headphones during strenuous movement in land search and rescue operations, making them more convenient to use.
[0023] Preferably, the top has Velcro markings on the arms and back.
[0024] By adopting the above technical solution, the setting of the Velcro marking position makes it easy for firefighters to attach and fix the warning signs, making it simple and convenient to use.
[0025] In summary, this application includes at least one of the following beneficial technical effects: 1. By using the first elastic fabric layer, the breathable flap at the back, and the protective fabric layer, the overall breathability and comfort of the jacket and pants are ensured, while also ensuring their protection. When resting and cooling down are needed, simply open the first elastic fabric layer and the protective fabric layer to expose the first and second mesh fabrics, which greatly improves the heat dissipation and breathability of the jacket and pants without having to take off the entire rescue suit. After resting, the first elastic fabric layer and the protective fabric layer can be closed again, making the overall use simpler and more convenient. Combined with the built-in ice pack and fan loop, the heat dissipation effect is further improved. 2. By incorporating a wear-resistant reinforcing layer, shock-absorbing cushioning pads, a first built-in soft pad, and a second built-in soft pad, the protective effect on the elbows, back, knees, and hips is enhanced, further improving the protective performance of the rescue suit; 3. The removable inner liner allows users to easily replace or remove it depending on the ambient temperature, improving the practicality of the rescue suit. Attached Figure Description
[0026] Figure 1 This is a schematic diagram illustrating the overall structure of the rescue suit in the embodiments of this application; Figure 2 This is a schematic diagram illustrating the main structure of the back of the garment in the embodiments of this application; Figure 3 This is a schematic diagram illustrating the inner structure of the top after it is unfolded, which is the main feature of this application embodiment; Figure 4 This is a cross-sectional view illustrating the first mounting structure of the first built-in soft pad in the embodiments of this application; Figure 5 yes Figure 3 The image mainly shows a magnified view of part A of the structure. Figure 6 This is a schematic diagram illustrating the fleece lining structure in the embodiments of this application; Figure 7 This is a schematic diagram illustrating the main structure of the down lining in the embodiments of this application; Figure 8 This is a schematic diagram illustrating the main structure of the back of the pants in the embodiments of this application; Figure 9 This is a schematic diagram illustrating the main structure of the middle layer pants in the embodiments of this application.
[0027] Figure labels: 1. Top; 2. Pants; 3. First elastic fabric layer; 4. Breathable mesh structure; 5. Breathable back flap; 6. Slanted pocket; 7. Protective fabric layer; 8. First zipper; 9. Internal mesh pocket; 10. Fan loop; 11. Inner elastic ribbed fabric; 12. Adjustable cuff loop; 13. Drawstring hem; 14. Windproof leg opening; 15. Abrasion-resistant reinforcing layer; 16. Shock-absorbing cushioning pad; 17. First internal soft pad; 18. Adjustable structure; 181. Knee pad elastic adjustment loop; 19. Single-layer trouser loop; 20. Double-layer trouser loop; 21. Liner; 22. Detachable zipper; 23. Lanyard; 24. Inner lining loop; 25. Fleece patchwork inner collar; 26. Earphone mounting hole; 27. Velcro label; 28. Fourth Velcro closure; 29. Underarm zipper; 30. First Velcro closure; 31. Third mesh fabric; 32. Second Velcro closure; 33. First lining fabric; 34. Second lining fabric; 35. First storage slot; 36. Second storage slot; 37. Third Velcro closure; 38. Elbow pad adjustable tightening loop; 39. Opening for strap; 40. Walkie-talkie loop; 41. Waterproof pocket; 42. Inner side pocket; 43. Mid-layer trousers; 44. Button; 45. Elastic cord. Detailed Implementation
[0028] The following is in conjunction with the appendix Figure 1 - Appendix Figure 9 This application will be described in further detail.
[0029] This application discloses a land search and rescue suit that is breathable and heat dissipation-friendly.
[0030] Reference Figure 1 A land search and rescue suit designed for breathability and heat dissipation includes a jacket 1 and trousers 2. Both jacket 1 and trousers 2 are primarily made of flame-retardant, rainproof, and breathable fabric. In this application, aramid-coated waterproof and breathable membrane fabric is preferred. The fabric is made of 98% aramid and 2% conductive fiber coated with PTFE membrane polyester mesh. By using aramid-coated waterproof and breathable membrane fabric, the rescue suit has inherent advantages such as flame retardancy, antistatic properties, abrasion resistance, tear resistance, waterproofness, and windproofness, enabling firefighters to cope with the changing weather and environment during outdoor rescue operations. At the same time, abrasion-resistant reinforcing layers 15 are added to the shoulders, elbows, hips, and knees of jacket 1 and trousers 2. In this embodiment, the abrasion-resistant reinforcing layers 15 are preferably made of abrasion-resistant fabric to increase the abrasion resistance of the corresponding areas.
[0031] Reference Figure 1 and Figure 2To improve the breathability and heat dissipation of the jacket 1, the underarm area of the jacket 1 is made of a first mesh fabric, and a breathable mesh structure 4 is provided on the back of the jacket 1. That is, through the setting of the first mesh fabric and the breathable mesh structure 4, the purpose of ventilation between the inside and outside of the jacket 1 is achieved. At the same time, in order to prevent external hot air or mud and sand from entering the inside of the jacket 1 and causing injury to firefighters during fire fighting and disaster relief, a first elastic fabric layer 3 is also provided at the corresponding underarm position of the jacket 1. The first elastic fabric layer 3 is connected to the underarm position of the jacket 1 through an underarm zipper 29. When the underarm zipper 29 is closed, the first elastic fabric layer 3 covers the first mesh fabric, thereby achieving protection for the underarm area of the jacket 1. When the underarm zipper 29 is opened, the first mesh fabric is exposed, thereby accelerating the breathability and heat dissipation effect. In this embodiment, the first elastic fabric layer 3 is preferably made of GORE elastic breathable fabric, thereby ensuring the comfort of the jacket 1 during wear.
[0032] Reference Figure 1 and Figure 2 , Figure 2 The middle b view is Figure 2 The diagram in view a shows the structure of the back breathable flap 5 partially open within the area highlighted by the dashed line. A back breathable flap 5 is located on the back of the garment 1, corresponding to the breathable mesh structure 4. The back breathable flap 5 covers the breathable mesh structure 4. Specifically, the upper, left, and right sides of the back breathable flap 5 are sewn to the back of the garment 1. A gap exists between the lower side of the back breathable flap 5 and the back of the garment 1, and this gap is closed using a fourth hook and loop fastener 28. Specifically, the side of the back breathable flap 5 facing the garment 1 has the barbed side of the fourth hook and loop fastener 28, while the back of the garment 1 has the looped side. The lower side of the back breathable flap 5 is closed through the adhesion of the barbed and looped sides of the fourth hook and loop fastener 28, thus concealing the breathable mesh structure 4 within the gap between the back breathable flap 5 and the back of the garment 1. This achieves protection for the breathable mesh structure 4 without affecting its breathability.
[0033] Reference Figure 1 and Figure 3The upper garment 1 has an inner elastic ribbed weave 11 and an adjustable tightening cuff loop 12 at the cuffs, which allows the user to tighten the cuffs and effectively prevent mud and sand from entering the inside of the upper garment 1. At the same time, the upper garment 1 also has a drawstring 13 at the hem, which can be tightened to ensure the overall protective effect of the upper garment 1. In addition, in order to further improve the heat dissipation effect of the upper garment 1, an internal mesh bag 9 and a fan hanging loop 10 are provided on the inside of the upper garment 1. The opening of the internal mesh bag 9 is set upward, and the opening of the internal mesh bag 9 can be closed by the first Velcro 30. In use, an ice pack is placed in the internal mesh bag 9 and an electric fan is suspended on the fan hanging loop 10 to cool the inside of the upper garment 1.
[0034] Reference Figure 3 To further improve the comfort of the top 1 and the protection of the back, a shock-absorbing pad 16 is provided on the inner back of the top 1. In this embodiment, the shock-absorbing pad 16 is made of EVA material, and a third mesh fabric 31 is provided on the outside of the shock-absorbing pad 16. The upper and lower ends of the third mesh fabric 31 are sewn and fixed to the inner side of the top 1, and the left and right sides of the third mesh fabric 31 are glued and fixed to the inner side of the top 1 by the second Velcro 32. The setting of the shock-absorbing pad 16 and the third mesh fabric 31 increases the protection of the back and also facilitates the breathability and heat dissipation of the back area.
[0035] Reference Figure 1 and Figure 4 To improve elbow joint protection, a first built-in soft pad 17 is detachably provided on the elbow area of the outer side of the upper garment 1. In this embodiment, the first built-in soft pad 17 is preferably made of D30 material. To improve the installation adaptability of the first built-in soft pad 17, there are two installation methods for the first built-in soft pad 17 in this application. One method is to provide a first covering cloth 33 and a second covering cloth 34 on the outer side of the elbow of the upper garment 1. The upper side and the left and right sides of the first covering cloth 33 are sewn together with the upper garment 1. There is a first storage groove 35 between the first covering cloth 33 and the upper garment 1. The lower side and the left and right sides of the second covering cloth 34 are sewn together with the upper garment 1. There is a second storage groove 36 between the second covering cloth 34 and the upper garment 1. The lower part of the first covering cloth 33 covers the second covering cloth 34. The first storage groove 35 and the second storage groove 36 are connected.
[0036] Reference Figure 1 and Figure 4In use, one end of the first built-in soft pad 17 is inserted into the first storage slot 35, and the other end of the first built-in soft pad 17 is inserted into the second storage slot 36, thereby placing the first built-in soft pad 17. At the same time, the first cover cloth 33 and the second cover cloth 34 can be glued and fixed by the third Velcro 37, thereby closing the opening of the first storage slot 35. In addition, in order to facilitate the user to adjust the placement position and stability of the first built-in soft pad 17, an elbow adjustment and tightening loop 38 is also provided at the elbow of the upper garment 1, thereby adjusting and tightening the placement position of the first built-in soft pad 17.
[0037] Reference Figure 1 and Figure 5 Specifically, the elbow adjustment and tightening loop 38 includes a first loop and a second loop. One end of the first loop is sewn to one side of the sleeve of the jacket 1, and the other end of the first loop has a Velcro surface. One end of the second loop is sewn to the other side of the sleeve of the jacket 1, and the other end of the second loop has a Velcro barbed surface. The length of the Velcro surface is longer than the length of the Velcro barbed surface. In other words, the tightness of the elbow adjustment and tightening loop 38 can be adjusted by adjusting the position of the Velcro barbed surface attached to the Velcro surface. It is simple and convenient to use. Another way to install the first built-in soft pad 17 is that an opening strap 39 is also provided on the sleeve of the jacket 1 for the soft pad with built-in strap to be inserted and bound.
[0038] Reference Figure 3 and Figure 6 An inner lining 21 can also be installed inside the garment 1. In this application, the two sides of the inner lining 21 are connected to the inside of the garment 1 via detachable zippers 22. An inner lining loop 24 is provided above the inside of the garment 1. A hanging cord 23 is provided near the collar of the inner lining 21. One end of the hanging cord 23 is sewn and fixed to the inner lining 21, and the other end can be wrapped around the inner lining loop 24 and connected to the other end of the hanging cord 23 via a hook, thereby achieving the connection above the inner lining 21. In addition, to ensure the comfort of wearing the garment 1, the upper... The inner collar of garment 1 is provided with a fleece-lined inner collar 25, and the upper and left and right sides of the fleece-lined inner collar 25 are sewn together with the upper garment 1, that is, a receiving cavity is formed between the fleece-lined inner collar 25 and the inner side of the upper garment 1, and the opening of the receiving cavity is set downward. When in use, after the inner lining 21 is connected to the inner side of the upper garment 1, the collar of the inner lining 21 can be inserted into the receiving cavity to limit the collar of the inner lining 21, thereby ensuring the wearing comfort of the upper garment 1 after the inner lining 21 is installed.
[0039] Reference Figure 6 and Figure 7In this embodiment, the inner liner 21 can be made of different materials as needed. In this application, the inner liner 21 is divided into two types: a fleece inner liner 21 and a down inner liner 21. The fleece inner liner 21 is mainly made of anti-static fleece fabric, and GORE elastic breathable fabric is spliced in the armpit area to increase the breathability and mobility of the inner liner 21. Figure 6 a and Figure 6 Figure b shows the front and back of the fleece lining 21; the down lining 21 is made of down-proof fabric and is filled with 600+ duck down particles to ensure its softness and comfort. Figure 7 a and Figure 7 Figure b shows the front and back of the down lining 21. With the design of the lining 21, combined with the inner elastic ribbed 11 of the jacket, the adjustable and tightening sleeve loops 12 and the drawstring at the hem 13, the rescue suit can be worn in multiple seasons, and has the effects of breathability and heat dissipation in summer and cold protection and warmth in winter.
[0040] Reference Figure 1 and Figure 3 In addition, to improve the practicality and functionality of the jacket 1, an earphone fixing hole 26 is provided at the collar of the jacket 1, through which the earphone cable can be fixed to ensure the position of the earphone during vigorous exercise; a walkie-talkie loop 40 is provided at the chest of the jacket 1, which can be used for the user to hang the walkie-talkie; waterproof pockets 41 are provided on both sides of the chest, both sides of the bottom of the jacket 1, and the inside of the jacket 1, and the pocket openings are closed by waterproof zippers; inner wall pockets 42 are provided on the left and right arms of the jacket 1, and the inner wall pockets 42 are also connected by waterproof zippers; at the same time, Velcro marking positions 27 are provided on the arms and back of the jacket 1, and corresponding marking stickers can be attached to the above two locations by Velcro to facilitate the rescue process of firefighters; a detachable hood is provided at the collar of the jacket 1, and the detachable hood is detachably connected to the jacket 1 by a zipper.
[0041] Reference Figure 1 and Figure 8 To ensure the heat dissipation and breathability of the trousers 2, slanted pockets 6 are provided on both sides of the trousers 2. The inner layer of the slanted pockets 6 is made of a second mesh fabric to achieve breathability and ventilation. The outer layer of the slanted pockets 6 is made of a protective fabric layer 7. In this embodiment, the protective fabric layer 7 is also made of aramid fabric with a waterproof and breathable membrane. The opening of the slanted pockets 6 is closed by a first zipper 8. When in use, the first zipper 8 is in the closed state. At this time, the second mesh fabric is covered by the protective fabric layer 7 to prevent mud, sand, hot air, etc. from entering the trousers 2 through the second mesh fabric, thus ensuring the protective effect of the trousers 2. When it is necessary to rest and dissipate heat, simply unzip the first zipper 8 to expose the second mesh fabric, thereby improving the breathability and heat dissipation effect of the trousers 2.
[0042] Reference Figure 1 and Figure 8 To further improve the comfort of wearing trousers 2, GORE elastic and breathable fabric is used to splice the upper part and crotch area of trousers 2 to ensure the comfort and breathability of trousers 2. Windproof leg openings 14 are provided at the cuffs of trousers 2 to prevent cold air from entering the trousers 2 from the leg openings, ensuring the windproof effect of trousers 2. Several single-layer trouser loops 19 are provided at the waist of trousers 2, which are spaced apart around the waist of trousers 2 to facilitate the user to wear a belt. In this embodiment, the single-layer trouser loops 19 should be able to accommodate a 5CM wide belt. In addition, several double-layer trouser loops 20 are also provided at the waist, which are all located on the front of trousers 2. In addition to accommodating the belt, it is also convenient for the user to hang some small items. In this embodiment, there are three double-layer trouser loops 20.
[0043] Reference Figure 8 To improve the abrasion resistance of the buttocks of the pants 2 and the protection of the knee joint, abrasion-resistant reinforcing layers 15 are also provided at the buttocks and knees of the pants 2. At the same time, a second built-in soft pad is also provided at the knee of the pants 2. The connection method of the second built-in soft pad is the same as that of the first built-in soft pad 17. An adjustment structure 18 is also provided at the knee of the pants 2. The adjustment structure 18 is used to adjust the position and tightness of the second built-in soft pad. In this application, the adjustment structure 18 includes two sets of knee tightness adjustment loops 181, which are respectively provided on the upper and lower sides of the second built-in soft pad.
[0044] Reference Figure 8 Specifically, each knee brace adjustment loop 181 includes a third loop and a fourth loop. One end of the third loop is sewn to one side of the knee of the pants 2, and the other end of the third loop has a Velcro surface. One end of the fourth loop is sewn to the other side of the knee of the pants 2, and the other end of the fourth loop has a Velcro bar. The length of the Velcro surface is longer than the length of the Velcro bar. In other words, the tightness of the knee brace adjustment loop 181 can be adjusted by adjusting the position of the Velcro bar on the Velcro surface. It is simple and convenient to use.
[0045] Reference Figure 9 In other embodiments, the rescue suit also includes a middle layer of trousers 43, such as... Figure 9 a is a front structural view of the middle layer trouser 43. Figure 9b is a reverse structural view of the mid-layer pants 43; the mid-layer pants 43 is made of the same material as the inner liner 21, and the crotch area of the mid-layer pants 43 is also made of GORE elastic breathable fabric to ensure the comfort and breathability of the mid-layer pants 43. The waist of the mid-layer pants 43 is tightened by the combination of buttons 44 and elastic cords 45; a wear-resistant reinforcing layer 15 is also provided at the knee of the mid-layer pants 43 to further improve the wear resistance of the knee area of the mid-layer pants 43.
[0046] The implementation principle of this application embodiment is as follows: When firefighters wear rescue suits to perform search and rescue missions, the rescue suits, which are made of aramid waterproof and breathable membrane fabric and GORE elastic breathable fabric, have good overall breathability and protection, making it easier for firefighters to cope with the changing weather and environment during outdoor rescues. At the same time, the wear-resistant reinforcement layers 15 set at the shoulders, back, elbows, buttocks, and knees of the jacket 1 increase the wear resistance of the corresponding parts. The first and second built-in soft pads ensure joint protection for the elbows and knees. When firefighters take a break, they can unzip the underarm zippers 29 and the first zippers 8 on both sides of the pants 2 to improve the heat dissipation of the jacket 1 and pants 2 through the first and second mesh fabrics. At the same time, the ice packs and electric fans set on the inside of the jacket 1 further improve the heat dissipation inside the rescue suit. The overall use is simple and convenient.
[0047] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A land search and rescue suit that is breathable and heat dissipation-friendly, comprising a top (1) and trousers (2), characterized in that: The upper garment (1) has a first mesh fabric for ventilation under the armpits, and a first elastic fabric layer (3) for covering the first mesh fabric is detachably provided under the armpits of the upper garment (1). The upper garment (1) has a breathable mesh structure (4) on the back and a breathable back flap (5) for hiding the breathable mesh structure (4). The pants (2) have slanted pockets (6) on both sides for storing small items. The inside of the slanted pockets (6) is provided with a second mesh fabric for ventilation, and the outside of the slanted pockets (6) is provided with a protective fabric layer (7) for covering the second mesh fabric. The opening of the slanted pockets (6) is provided with a first zipper (8). When the first zipper (8) is opened, the inside and outside of the pants (2) are connected through the second mesh fabric.
2. The land search and rescue suit that facilitates breathability and heat dissipation according to claim 1, characterized in that: The inner side of the garment (1) is provided with a built-in mesh bag (9) for storing ice packs and a fan loop (10) for hanging an electric fan.
3. The land search and rescue suit that facilitates breathability and heat dissipation according to claim 1, characterized in that: The upper garment (1) has an inner elastic rib (11) for adjusting the tightness of the cuffs and an adjustable tightening cuff loop (12) at the cuffs. The upper garment (1) has a drawstring (13) at the hem. The pants (2) have a windproof leg opening (14) at the leg opening.
4. The land search and rescue suit that facilitates breathability and heat dissipation according to claim 1, characterized in that: The upper garment (1) has a wear-resistant reinforcing layer (15) at the shoulder, elbow, hip, and knee of the pants (2).
5. A land search and rescue suit that facilitates breathability and heat dissipation according to claim 4, characterized in that: The back of the top (1) is provided with a shock-absorbing cushioning pad (16), the elbow of the top (1) is provided with a first built-in soft pad (17) which can be detached, the knee of the pants (2) is provided with a second built-in soft pad which can be detached, and the knee of the pants (2) is provided with an adjustment structure (18) for adjusting the position of the second built-in soft pad.
6. A land search and rescue suit that facilitates breathability and heat dissipation according to claim 1, characterized in that: The trousers (2) are provided with a single-layer trouser loop (19) for wearing a belt and a double-layer trouser loop (20) for hanging small items at the waist.
7. A land search and rescue suit that facilitates breathability and heat dissipation according to claim 1, characterized in that: The inner side of the top (1) is provided with an inner lining (21). The inner lining (21) is detachably connected to the inside of the top (1) by a detachable zipper (22) on both sides. The inner lining (21) is provided with a hanging cord (23) near the collar. The inner side of the top (1) is provided with an inner lining loop (24). One end of the hanging cord (23) passes around the inner lining loop (24) and is connected by a snap.
8. A land search and rescue suit that facilitates breathability and heat dissipation according to claim 1, characterized in that: The inner side of the collar of the upper garment (1) is provided with a fleece patch inner collar (25), and the fleece patch inner collar (25) and the inner side of the upper garment (1) form a receiving cavity for accommodating the collar of the inner lining (21).
9. A land search and rescue suit that facilitates breathability and heat dissipation according to claim 1, characterized in that: The collar of the top (1) is provided with an earphone fixing hole (26) for fixing the earphone.
10. A land search and rescue suit that facilitates breathability and heat dissipation according to claim 1, characterized in that: The top (1) has Velcro markings (27) on the arms and back.