A cooling protective clothing inner and outer interface fitting structure
By improving the internal and external interface structure of protective clothing, and using the design of inner and outer lining components and folding components, the poor fitting and comfort reduction caused by shaking of the air guide duct are solved, and stable heat dissipation effect and comfort level are achieved.
Patent Information
- Application Number
- CN202211284225.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-20
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2042-10-20
AI Technical Summary
The internal and external interfaces of existing cooling protective clothing are affected by the height of the air guide duct, which leads to poor fitting properties, shaking during use and reducing comfort, affecting the heat dissipation effect.
Protective clothing lining assembly and front and rear folding assembly are adopted, including a built-in chest attachment layer, a built-in back attachment layer, a shoulder side cloth cover layer and a wrinkle connection layer. By adjusting the position of the buckle seat and the buckle head, it increases the fit and breathability, and combines the adhesive bonding layer and the adhesive reinforcement cavity to ensure pipeline stability and comfort.
It improves the fit and comfort of protective clothing, maintains the stability of the air guide duct, and ensures the stability of the heat dissipation effect and the user's comfort.
Smart Images

Figure CN116058563B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field, and in particular to a fitting structure for inner and outer interfaces of a cooling protective suit. Background Art
[0002] To ensure effective cooling dispersion during use, air-conditioning protective clothing requires the air ducts to be placed within the lining. Once these ducts are placed within the lining and worn on the inside of the suit, the internal and external interfaces, restricted by the height of the ducts, do not adhere well to the suit and the wearer's skin. This can easily cause the suit to shake when moved. This poor fit can lead to a loose feel and reduced comfort. Furthermore, changes in position due to poor fit can make the heat dissipation and air ducting surface unstable, resulting in less-than-ideal performance. To address this issue, we propose a structure for the internal and external interfaces of cooling protective clothing. Summary of the Invention
[0003] The main purpose of the present invention is to provide a cooling protective clothing inner and outer interface fitting structure.
[0004] To achieve the above-mentioned purpose, the technical solution adopted by the present invention is: a cooling protective clothing inner and outer interface fitting structure, including a protective clothing lining component and a front and back folding component, the protective clothing lining component consists of a built-in chest attachment layer and a built-in back attachment layer, the front and back folding component is arranged between the built-in chest attachment layer and the built-in back attachment layer, the front and back folding component consists of a shoulder cloth cover layer and a wrinkle connecting layer, the shoulder cloth cover layer is fixedly connected between the built-in chest attachment layer and the built-in back attachment layer, the wrinkle connecting layer is fixedly connected to the inner side of the shoulder cloth cover layer, the built-in chest attachment layer and the built-in back attachment layer are both provided with a mesh breathable mesh layer for increasing the air permeability after fitting, the surface wall of the built-in chest attachment layer is fixedly connected to an adhesive bonding layer for enhancing the local positioning effect, the inner position of the built-in chest attachment layer is fixedly connected to a front mesh layer, and the surface of the front mesh layer is fixedly connected to a plurality of anti-slip granular stickers for increasing contact friction.
[0005] A further improvement of the present invention is that the built-in chest attachment layer and the built-in back attachment layer are both provided with a neck penetration cavity for wearing around the neck, and the inner side of the neck penetration cavity is fixedly connected with a leather surface clip edging, which is used for anti-wear and cushioning when the user's neck skin contacts the built-in chest attachment layer and the built-in back attachment layer.
[0006] A further improvement of the present invention is that a pipeline insertion cavity for providing an installation space for the air guide pipe is provided on the inner side of the built-in rear attachment layer, and the outer side of the pipeline insertion cavity is fixedly connected with a pipeline wrapping interlayer for blocking the rear surface of the air guide pipe.
[0007] A further improvement of the present invention is that the outer peripheral sides of the built-in chest attachment layer and the built-in back attachment layer are fixedly connected with a connecting edging distributed in a ring shape, thereby increasing the edge thickness of the built-in chest attachment layer, and the bottom of the built-in back attachment layer is fixedly connected with an air duct restraint pad for limiting the rear end of the air guide duct after it is embedded.
[0008] A further improvement of the present invention is that the shoulder side cloth cover layer is fixedly connected with an embedded buckle head and a plurality of buckle seats distributed at equal intervals in the longitudinal direction. The buckle seats are snap-connected with the embedded buckle head to adapt to the shoulder thickness and adjust the length spacing of the wrinkle connection layer when worn.
[0009] A further improvement of the present invention is that the surface of the built-in back attachment layer is fixedly connected with a plurality of attachment strengthening adhesive cavities, and double-sided adhesive is placed inside the attachment strengthening adhesive cavities to strengthen the adhesion of the built-in back attachment layer to the user's back.
[0010] A further improvement of the present invention is that the built-in chest attachment layer is fixedly connected to a lower hem weight plate for increasing the weight of the hem and thereby reducing the gap caused by wearing.
[0011] The invention can also be used to adjust the length of the front and back attachment layers so that the front and back attachment layers can be more closely fitted to the user's body shape. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a diagram showing the composition of the internal and external interface structure of a cooling protective suit according to the present invention.
[0013] Figure 2 This is a schematic diagram of the state of the cooling protective clothing after the internal and external interface fitting structure of the protective clothing is placed into the protective clothing.
[0014] In the figure: 1. Protective clothing lining assembly; 11. Built-in chest attachment layer; 111. Connecting edging; 12. Built-in back attachment layer; 121. Air duct strap pad; 122. Attached reinforced rubber cavity; 13. Mesh breathable mesh layer; 14. Adhesive bonding layer; 15. Neck penetration cavity; 151. Leather surface clip edging; 2. Front and back folding assembly; 21. Shoulder fabric layer; 22. Pleated connecting layer; 23. Buckle seat; 24. Insert buckle head; 3. Front mesh layer; 31. Anti-slip granular patch; 4. Pipeline insertion cavity; 41. Pipeline wrapping interlayer; 5. Next week weight plate. DETAILED DESCRIPTION
[0015] The present invention is further described below in conjunction with specific embodiments. The accompanying drawings are only used for illustrative purposes and represent only schematic diagrams rather than actual drawings. They should not be understood as limiting this patent. In order to better illustrate the specific embodiments of the present invention, some parts of the drawings may be omitted, enlarged or reduced, and do not represent the size of the actual product. For those skilled in the art, it is understandable that some well-known structures and their descriptions in the drawings may be omitted. Based on the specific embodiments of the present invention, all other specific embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention. Example
[0016] See also Figure 1-Figure 2 A cooling protective clothing internal and external interface structure includes a protective clothing lining component 1 and a front and back folding component 2. The protective clothing lining component 1 is composed of a built-in chest attachment layer 11 and a built-in back attachment layer 12. The front and back folding component 2 is arranged between the built-in chest attachment layer 11 and the built-in back attachment layer 12. The front and back folding component 2 is composed of a shoulder cloth layer 21 and a wrinkle connection layer 22. The shoulder cloth layer 21 is fixedly connected between the built-in chest attachment layer 11 and the built-in back attachment layer 12. The wrinkle connection layer 22 is fixedly connected to the built-in chest attachment layer 11 and the built-in back attachment layer 12. The connecting layer 22 is fixedly connected to the inner side of the shoulder cloth cover layer 21. The built-in chest attachment layer 11 and the built-in back attachment layer 12 are both provided with a mesh breathable mesh layer 13 for increasing the breathability after wearing. The surface wall of the built-in chest attachment layer 11 is fixedly connected with an adhesive bonding layer 14 for enhancing the local positioning effect. The inner side of the built-in chest attachment layer 11 is fixedly connected with a front mesh layer 3. The surface of the front mesh layer 3 is fixedly connected with a number of anti-slip granular stickers 31 for increasing contact friction.
[0017] In this embodiment, when the user wears the garment, the mutual fastening position of the fastening seat 23 and the inserted buckle head 24 can be changed by the longitudinal distribution state of multiple fastening seats 23, and then the shoulder side cloth layer 21 and the wrinkled connecting layer 22 can be partially folded according to the thickness of the user's shoulders, so that the wearing distance between the built-in chest attachment layer 11 and the built-in back attachment layer 12 can better fit the user's body shape, and the length fit of the built-in chest attachment layer 11 and the built-in back attachment layer 12 after being placed on the front and back sides of the user is maintained, so as to avoid the loose length affecting the circulation effect of the air duct during heat dissipation after the user wears the garment. After adjusting the wearing distance between the built-in chest attachment layer 11 and the built-in back attachment layer 12, the user's head passes through the cavity 15 through the neck, and at this time, the adhesion between the adhesive layer 14 (PET material adhesive) and the adhesive of the additional reinforced adhesive cavity 122 and the front and back sides of the user's clothing are maintained to maintain the fit with the skin surface when worn. The back of the back lining 12 is provided with a plurality of mesh layers 13 on the inner side of the front lining 11 and the outer side of the back lining 12 so that the front lining 11 and the inner side of the back lining 12 can be kept in a state of being worn.
[0018] Among them, the built-in chest attachment layer 11 and the built-in back attachment layer 12 are both provided with a neck penetration cavity 15 for wearing through the neck, and the inner side of the neck penetration cavity 15 is fixedly connected with a leather surface clip edging 151, which is used for wear-proof cushioning when the user's neck skin contacts the built-in chest attachment layer 11 and the built-in back attachment layer 12; the neck penetration cavity 15 is used for the user's neck to be inserted to realize the wearing of the built-in chest attachment layer 11 and the built-in back attachment layer 12, and at the same time, the edging design of the leather surface clip edging 151 can maintain the contact cushioning effect between the neck penetration cavity 15 and the patient's neck during the user's movement, while maintaining the contact and compliance with the skin surface, avoiding the built-in chest attachment layer 11 and the built-in back attachment layer 12 from direct contact with the skin surface and causing wear.
[0019] Among them, a pipeline insertion cavity 4 for providing an installation space for the air-guiding duct is provided on the inner side of the built-in back attachment layer 12, and a pipeline wrapping interlayer 41 is fixedly connected to the outer side of the pipeline insertion cavity 4 for blocking the rear surface of the air-guiding duct after it is embedded; the pipeline insertion cavity 4 is arranged at the position of the built-in back attachment layer 12 for the insertion and installation of the air-conditioning air-guiding duct, and at the same time, after the pipeline is inserted into the inner side of the pipeline insertion cavity 4 set in the built-in back attachment layer 12, the pipeline wrapping interlayer 41 is sewn to the built-in back attachment layer 12 located on the outer part of the pipeline insertion cavity 4 by sewing, and then the pipeline is restrained by the pipeline wrapping interlayer 41 to avoid the non-integration of the pipeline and the built-in back attachment layer 12 during wearing, which affects the fit during mobile use.
[0020] Among them, the outer peripheral sides of the built-in chest attachment layer 11 and the built-in back attachment layer 12 are fixedly connected with a ring-shaped connecting edge 111, which is used to increase the edge thickness of the built-in chest attachment layer 11, and the bottom of the built-in back attachment layer 12 is fixedly connected with an air duct restraint pad 121 for limiting the closing of the air guide duct after it is embedded; the connecting edge 111 is used to strengthen the outer peripheral side strength of the built-in chest attachment layer 11 and the built-in back attachment layer 12. At the same time, after increasing the edge thickness of the built-in chest attachment layer 11 and the built-in back attachment layer 12, the middle part of the built-in chest attachment layer 11 and the built-in back attachment layer 12 can be kept naturally drooping due to the weight of the edge thickness, thereby reducing the impact on the cold air circulation caused by the expansion of the fold range. At the same time, the air duct restraint pad 121 is made of silicone material, which plays a role in wrapping and protecting the pipe joint part, avoiding direct contact with the user to avoid a sense of bumping, thereby maintaining comfort.
[0021] Among them, the shoulder cloth cover layer 21 is fixedly connected with an embedded buckle 24 and a number of buckle seats 23 distributed at equal intervals in the longitudinal direction. The buckle seats 23 are engaged with the embedded buckle 24 to adapt to the adjustment of the shoulder thickness and the length spacing of the wrinkle connection layer 22 when worn; the buckle seats 23 are arranged in multiple longitudinal directions, and the shoulder cloth cover layer 21 and the wrinkle connection layer 22 can be partially folded according to the shoulder thickness of the user, so that the wearing distance between the built-in chest attachment layer 11 and the built-in back attachment layer 12 can be flexibly adjusted according to the user's own body shape.
[0022] Among them, the surface of the built-in back attachment layer 12 is fixedly connected with a plurality of attachment strengthening glue cavities 122, and the inner side of the attachment strengthening glue cavity 122 is used to strengthen the adhesion between the built-in back attachment layer 12 and the back of the user; after the double-sided adhesive is inserted into the attachment strengthening glue cavity 122, it is fixed to the position of the user's back clothing by bonding. In the process where the user needs to move for a long time during work, in order to maintain the adhesion between the built-in back attachment layer 12 and the back during use, the above operation is used to fix the built-in back attachment layer 12 to the patient's back, so that the built-in back attachment layer 12 will not move, thereby ensuring comfort during use.
[0023] Among them, the built-in chest attachment layer 11 is fixedly connected to the lower weight plate 5 for increasing the weight of the hem and thus reducing the wearing gap; due to the setting of the lower weight plate 5, the weight of the hem of the built-in chest attachment layer 11 is increased compared with other parts, which avoids the built-in chest attachment layer 11 being in an unnatural drooping state when the user bends the waist, resulting in multiple wrinkles and affecting the ventilation effect.
[0024] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.
Claims
1. A cooling protective clothing internal and external interface fitting structure, comprising a protective clothing lining component (1) and a front and rear folding component (2), characterized in that: The protective clothing lining component (1) is composed of a built-in chest attachment layer (11) and a built-in back attachment layer (12); the front and back folding component (2) is arranged between the built-in chest attachment layer (11) and the built-in back attachment layer (12); the front and back folding component (2) is composed of a shoulder cloth layer (21) and a wrinkle connection layer (22); the shoulder cloth layer (21) is fixedly connected between the built-in chest attachment layer (11) and the built-in back attachment layer (12); the wrinkle connection layer (22) is fixedly connected to the shoulder cloth layer (21); On the inner side of the shoulder cloth cover layer (21), the built-in chest attachment layer (11) and the built-in back attachment layer (12) are both provided with a mesh breathable mesh layer (13) for increasing breathability after application; the surface wall of the built-in chest attachment layer (11) is fixedly connected to an adhesive bonding layer (14) for enhancing a local positioning effect; the inner side of the built-in chest attachment layer (11) is fixedly connected to a front mesh layer (3); the surface of the front mesh layer (3) is fixedly connected to a plurality of anti-skid granular stickers (31) for increasing contact friction; The shoulder side cloth cover layer (21) is fixedly connected with an embedded buckle head (24) and a plurality of buckle seats (23) distributed at equal intervals in the longitudinal direction, and the buckle seats (23) are engaged with the embedded buckle head (24) to adjust the length spacing of the wrinkle connection layer (22) when worn according to the thickness of the shoulder; The built-in chest attachment layer (11) is provided with a neck insertion cavity (15) for wearing the neck, and the inner side of the neck insertion cavity (15) is fixedly connected with a leather surface clip edge (151) for preventing wear and buffering when the neck skin of the user contacts the built-in chest attachment layer (11); The built-in chest attachment layer (11) is fixedly connected to a lower hem weight plate (5) for increasing the weight of the hem and thereby reducing the gap generated by wearing.
2. The cooling protective clothing internal and external interface fitting structure according to claim 1, characterized in that: A pipeline insertion cavity (4) for providing an installation space for embedding an air guide pipeline is provided on the inner side of the built-in rear attachment layer (12), and a pipeline wrapping interlayer (41) for blocking the rear surface of the embedded air guide pipeline is fixedly connected to the outer side of the pipeline insertion cavity (4).
3. The cooling protective clothing internal and external interface fitting structure according to claim 1, characterized in that: The outer peripheral sides of the built-in chest attachment layer (11) and the built-in back attachment layer (12) are fixedly connected with a connecting edge (111) distributed in an annular manner, thereby increasing the edge thickness of the built-in chest attachment layer (11), and the bottom of the built-in back attachment layer (12) is fixedly connected with an air duct restraint pad (121) for limiting the rear end of the air duct after the air duct is embedded.
4. The cooling protective clothing internal and external interface fitting structure according to claim 1, characterized in that: The surface of the built-in back attachment layer (12) is fixedly connected with a plurality of attachment strengthening adhesive cavities (122), and double-sided adhesive is placed inside the attachment strengthening adhesive cavities (122) to strengthen the adhesion between the built-in back attachment layer (12) and the back of the user.
Citation Information
Patent Citations
Internal and external interface fitting structure of cooling protective clothing
CN219206031U