Novel drying cap
The new drying hat designed with a single-layer textile breathable fabric and inclined air duct solves the problems of the existing drying hat complex structure and scalp burns, achieves efficient and comfortable drying effects, and expands the application range to pets and clothing.
Patent Information
- Application Number
- CN202422448900.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-11
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-11
AI Technical Summary
The existing drying hat has complex structure and poor air circulation, which leads to low drying efficiency and is prone to scalp and makes it uncomfortable to use.
The cap body is designed with a single-layer textile breathable fabric. The cap body is spliced into a hollow structure from the front sheet body, the rear sheet body and the strip splicing body. The air guide duct is inclined, the air outlet is upward, the bottom of the cap body is in a bundle-shaped mouth, and an accelerated exhaust belt is provided, with high breathability, and the air flow is tilted to the upper part of the cap body to avoid blowing directly on the scalp.
Improves drying efficiency, avoids scalp burns, is comfortable to use, and is easy to carry and store, suitable for drying hair or small clothes for people and pets.
Smart Images

Figure CN223169218U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of drying caps, in particular to a novel drying cap. Background Art
[0002] Most of the existing drying caps adopt a double-layer structure design, and the materials of the drying caps are all materials that are not easy to breathe. Ventilation holes are provided on the inner layer of the drying cap to realize the air circulation between the interlayer and the inside of the drying cap. Ventilation holes are also provided on the outer layer of the drying cap to realize the air circulation between the inside of the drying cap and the outside. The overall structure is relatively complex.
[0003] The air flow diverted by the conduit will enter the interlayer of the drying cap and then enter the inside of the drying cap to dry the wet hair. The water vapor discharged from the wet hair needs to pass through the interlayer first and then through the outer layer of the drying cap to realize the air circulation with the external air. The overall air circulation is poor, resulting in the inability to discharge the moisture inside the drying cap, and the overall drying efficiency is poor.
[0004] Moreover, the connection between the conduit and the cap body of the existing drying cap is a vertical connection, so the air flow diverted by the conduit will directly blow on the user's scalp. Even with the inner layer of the drying cap in between, during use, the direct air flow will still scald the user's scalp. Due to the existence of the interlayer, when the air flow diverted by the conduit enters the inside of the drying cap through the interlayer of the drying cap, the gas expands, causing the inner layer of the drying cap to closely adhere to the scalp, and it will also cause the inner layer of the drying cap to stick to the hair, resulting in poor air circulation inside the drying cap. The high-temperature hot air inside the drying cap cannot be discharged and accumulates continuously, resulting in the phenomenon of steaming the scalp. Moreover, when drying the hair, the anti-wind rope is prone to strangling the neck. Not only is the overall use uncomfortable, but the drying efficiency is also low. Summary of the Invention
[0005] In order to solve the problems of poor drying efficiency and uncomfortable use of the existing drying caps, the utility model provides a novel drying cap with a simple overall structure, which can avoid scalding the user's scalp and can improve the drying efficiency and use comfort.
[0006] To achieve the above object, the technical solution adopted by the utility model is:
[0007] A new type of drying cap, comprising a cap body and a duct. The cap body is a hollow structure with an open bottom formed by splicing a front sheet body, a rear sheet body and a strip-shaped splicing body. The front sheet body and the rear sheet body are respectively located on both sides of the strip-shaped splicing body. The front sheet body, the rear sheet body and the strip-shaped splicing body are all made of single-layer textile breathable fabric. At least one channel is provided on the front sheet body or the rear sheet body, or at least one channel is provided on both the front sheet body and the rear sheet body. An accelerated exhaust belt is provided at each channel. The duct is arranged on the cap body and communicates with the interior of the cap body. The air inlet of the duct is inclined downward and the air outlet is inclined upward. The bottom opening of the cap body is a drawstring structure.
[0008] Further, the front sheet body and the rear sheet body have the same shape and size, and the top edges are both arc-shaped.
[0009] Further, the air outlet of the duct is opened on the strip-shaped splicing body.
[0010] Further, the accelerated exhaust belt is arranged along the circumference of the cap body. When there is one accelerated exhaust belt, it is located between the bottom of the cap body and the air outlet of the duct. When there are multiple accelerated exhaust belts, the multiple accelerated exhaust belts are arranged in sequence along the height direction of the cap body. The lowermost accelerated exhaust belt is close to the bottom of the cap body, and the uppermost accelerated exhaust belt is lower than the upper edge of the air outlet of the duct.
[0011] Further, the air permeability H1 of the front sheet body and the rear sheet body is the same; the air permeability H2 of the strip-shaped splicing body and the accelerated exhaust belt is the same and greater than the air permeability H1 of the front sheet body.
[0012] Further, the air permeability H2 of the strip-shaped splicing body and the accelerated exhaust belt is 70 - 100 mm / s, and the air permeability H1 of the front sheet body and the rear sheet body is 45 mm / s ≤ H1 < 70 mm / s.
[0013] Further, the upper and lower sides of the duct are parallel, and the included angle α between the tangent line at the intersection of the bottom edge of the cap body and the duct and the bottom edge of the duct 5 is an acute angle.
[0014] Further, the length of the longest part of the duct is less than the height of the cap body, and the air inlet of the duct is provided with an elastic structure composed of a first elastic band.
[0015] Further, a second elastic band for fixing a hair dryer is provided on one side of the elastic structure.
[0016] Further, the drawstring-like structure is formed by connecting an elastomer to the bottom of the cap body or is a drawstring adjustment structure formed by a drawstring threaded through the bottom of the cap body and an adjustment buckle on the drawstring; when the drawstring-like structure is formed by connecting an elastomer to the bottom of the cap body, a lacing cord is provided on one side of the cap body.
[0017] Further, when at least one channel is provided on both the front sheet and the rear sheet, a zipper assembly is provided on one side of the cap body. When the zipper assembly is provided on the strip-shaped splicing body and the air outlet of the air duct is opened on the strip-shaped splicing body, the zipper assembly extends along the length direction of the strip-shaped splicing body and is located on both sides of the air duct with respect to the cap body.
[0018] Through the above technical solutions, the beneficial effects of the present utility model are as follows:
[0019] 1. The cap body of the present utility model is made of a single-layer textile breathable fabric, with a simple overall structure and easy processing. When not in use, the cap body and the air duct can be flattened into a sheet, which is convenient for folding and has a small volume, making it easy to carry and store. When in use, the air flow inside the cap body can quickly flow out through the strip-shaped splicing body and the air-accelerating exhaust belt, so that the whole cap body not only has good heat accumulation performance but also has good moisture discharge and breathability. It can not only improve the drying efficiency but also prevent the phenomenon of burning the scalp due to overheating.
[0020] 2. In the present utility model, the air duct is inclinedly arranged on the cap body, and the air flow diverted by the air duct can be inclinedly blown to the upper part inside the cap body. This not only avoids the discomfort caused by the direct blowing of the air flow on the user's head but also enables the overall drying degree to be consistent and speeds up the drying speed.
[0021] 3. The drying cap of the present utility model can be used not only for drying hair but also for drying small-sized clothes and the hair of pets, etc. It has strong overall practicability. For pet drying, a zipper assembly is added, so that the head of the pet can extend out of the cap body through the zipper assembly, ensuring the comfort and safety of the pet. By setting the zipper assembly at a specific position, it can also avoid the skin burns of the pet caused by the direct blowing of hot air. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 is one of the rear views of the present utility model;
[0023] Figure 2 is one of the front views of the present utility model in the use state;
[0024] Figure 3 is one of the left views of the present utility model in the use state;
[0025] Figure 4 is the second rear view of the present utility model;
[0026] Figure 5 This is the third front view of the utility model.
[0027] The reference numerals in the drawings are: 1. Cap body, 11. Front sheet body, 12. Rear sheet body, 13. Strip-shaped splicing body, 14. Accelerated air exhaust belt, 2. Drawstring channel, 3. Drawstring, 4. Adjusting buckle, 5. Air duct, 6. Tightening structure, 7. Second elastic band, 8. Zipper assembly, 9. Elastic body, 10. Tie rope. Specific embodiments
[0028] As Figures 1 to 5 shown, the present utility model will be further described below in conjunction with the drawings and specific embodiments:
[0029] Embodiment 1:
[0030] As Figures 1 to 4 shown, a new type of drying cap includes a cap body 1 and an air duct 5. The cap body 1 is used to cover the user's head, and the air duct 5 is used to guide external air flow into the interior of the cap body 1. The cap body 1 is a hollow structure with an open bottom formed by splicing a front sheet body 11, a rear sheet body 12 and a strip-shaped splicing body 13. The front sheet body 11 and the rear sheet body 12 are respectively located on both sides of the strip-shaped splicing body 13. The front sheet body 11, the rear sheet body 12 and the strip-shaped splicing body 13 are all made of single-layer textile breathable fabrics, such as fabrics made of cotton, linen, silk, polyester materials, or can also be non-woven fabrics, so that while the cap body 1 has heat accumulation, it also has good air permeability to facilitate air flow, thereby quickly drying the hair; at least one channel is provided on the front sheet body 11 or the rear sheet body 12, or at least one channel is provided on both the front sheet body 11 and the rear sheet body 12, and an accelerated air exhaust belt 14 is provided at each channel. The air inlet of the air duct 5 is inclined downward and the air outlet is inclined upward and is arranged on the cap body 1. The air outlet of the air duct 5 is opened on the strip-shaped splicing body 13 or the front sheet body 11 and the rear sheet body 12; in this embodiment, the air outlet of the air duct 5 is opened on the strip-shaped splicing body 13 and is communicated with the interior of the cap body 1, so that the air flow diverted by the air duct can be blown obliquely towards the upper part inside the cap, avoiding discomfort caused by the air flow directly blowing on the user's head. In this example, the channel is only provided on the rear sheet body 12, and the air duct 5 is placed on the left side of the cap body 1 ( Figure 2 from the perspective), for convenient right-handed operation; the bottom opening of the cap body 1 is a drawstring structure for adjusting the tightness of the bottom of the cap body 1 to suit people with different head circumferences.
[0031] The front sheet body 11 and the rear sheet body 12 have the same shape and size, and the top edges are both arc-shaped, and the arc is an inverted U shape or a semicircle.
[0032] The accelerating exhaust belt 14 is arranged along the circumferential direction of the cap body 1. When there is one accelerating exhaust belt 14, it is located between the bottom of the cap body 1 and the air outlet of the air duct 5; when there are multiple accelerating exhaust belts 14, the multiple accelerating exhaust belts 14 are arranged in sequence along the height direction of the cap body 1. The lowermost accelerating exhaust belt 14 is close to the bottom of the cap body 1, and the uppermost accelerating exhaust belt 14 is lower than the upper edge of the air outlet of the air duct 5. In this embodiment, two accelerating exhaust belts 14 are provided.
[0033] The air permeability H1 of the front sheet 11 and the rear sheet 12 is the same, and the air permeability H2 of the strip splicing body 13 and the accelerating exhaust belt 14 is the same and greater than the air permeability H1 of the front sheet 11. The air permeability H2 of the strip splicing body 13 and the accelerating exhaust belt 14 is 70 - 100 mm / s, and the air permeability H1 of the front sheet 11 and the rear sheet 12 is 45 mm / s ≤ H1 < 70 mm / s. In this embodiment, the air permeability of the front sheet 11 and the rear sheet 12 is 45 mm / s, 60 mm / s, and 69 mm / s respectively, and the air permeability of the strip splicing body 13 and the accelerating exhaust belt 14 is 70 mm / s, 80 mm / s, 90 mm / s, and 100 mm / s respectively. Since the air permeability of the accelerating exhaust belt 14 is greater than that of the front sheet 11 and the rear sheet 12, the position of the channel is not higher than the position of the connection between the upper edge of the air duct 5 and the cap body 1, preventing the airflow guided by the air duct 5 from being discharged out of the cap body 1 through the accelerating exhaust belt before passing through the user's hair.
[0034] When not in use, the cap body 1 and the air duct 5 are in a flat structure, so that the drying cap can be folded or stored flat after use, which is convenient for carrying and storing. Moreover, the air duct 5 can be folded together with the cap body 1 without causing additional protrusions and occupying space.
[0035] The upper and lower sides of the air duct 5 are parallel, and the included angle α between the tangent line at the intersection of the lower side of the cap body 1 and the air duct 5 and the lower side of the air duct 5 is an acute angle. As shown in the appendix Figure 1 The tangent line is shown as a dotted line, which can ensure that the air duct is inclined downward relative to the cap body 1, so that the airflow guided into the cap body 1 by the air duct 5 does not directly blow on the user's head, but can enter the inner top of the cap body 1. Thus, a uniform hot air gathering area is formed in the space between the inner top of the cap body 1 and the user's head top, which not only avoids the hot air directly blowing on the user's head and causing scalp burns, but also improves the drying efficiency.
[0036] The longest length of the air duct is smaller than the height of the cap body 1. The air inlet of the air duct 5 is provided with an elastic structure 6 composed of a first elastic band. A second elastic band 7 for fixing the hair dryer is provided on one side of the elastic structure 6. The elastic structure 6 is used to make the air duct 5 fit tightly with an external drying device such as a hair dryer. The second elastic band 7 is used to fix the air duct 5 on the hair dryer, thereby ensuring that the air duct 5 will not move or fall off during use, and the material and air permeability of the air duct 5 are consistent with those of the front sheet body 11.
[0037] The drawstring structure is formed by an elastic body (such as an elastic band) connected to the bottom of the cap body 1 or a drawstring adjustment structure composed of a drawstring 3 installed at the bottom of the cap body 1 and an adjustment buckle 4 on the drawstring 3; when the drawstring structure is formed by an elastic body 9 connected to the bottom of the cap body 1, a tie rope 10 (such as a tie rope 10) is provided on one side of the cap body 1. Figure 4 The cap body 1 is provided with a drawstring adjustment structure, which includes a drawstring channel 2, a drawstring 3 and an adjusting buckle 4. The drawstring channel 2 is arranged at the bottom of the cap body 1, and one side of the drawstring channel 2 is provided with two drawstring holes. The bottom end of the cap body 1 is bent upward and connected to the cap body part above the bottom end to form a drawstring channel 2, and the drawstring hole is also located on the left side of the cap body 1, which is convenient for adjustment with the right hand. One end of the drawstring 3 passes through the drawstring channel 2 through one of the drawstring holes and then passes through the other drawstring hole; an adjusting buckle 4 is commonly provided on both ends of the drawstring 3 located outside the drawstring channel 2, and both ends of the drawstring 3 pass through the two holes of the adjusting buckle 4. The user can tighten or loosen the cap body 1 by pulling the drawstring 3 outside the cap body 1 and sliding the adjusting buckle 4. The adjusting buckle 4 can be selected from ordinary drawstring buckles. In this embodiment, a plastic pig nose buckle is used, which is light in overall weight and convenient for users with different head circumferences to fix.
[0038] When in use, the cap body 1 is opened and put on the user's head, and the hair is completely wrapped in the cap body 1, so that the rear sheet 12 with the accelerated exhaust belt 14 is located at the back of the user's head. After adjusting to the appropriate position, pull the drawstring 3 on the outside of the cap body 1 and slide the adjustment buckle 4 to tighten the cap body 1 on the user's head, and extend the blowing port of the hair dryer into the air duct 5. At this time, the elastic structure 6 is tightly fitted with the outer wall of the hair dryer's outlet.
[0039] When the hair dryer is turned on, the cap body 1 bulges due to the air flow inside, and the air duct 5 becomes a round tube. At this time, the tangent angle between the central axis of the air duct 5 and the intersection of the cap body 1 is an acute angle, and since the air duct 5 is tilted downward on the left side of the cap body 1, the hot air flow guided by the air duct 5 into the cap body 1 will blow toward the inner upper part of the cap body 1, and then diffuse to the surroundings, which can make the air flow evenly distributed inside the cap body 1, thereby improving the drying efficiency.
[0040] Moreover, since the front sheet 11 and the rear sheet 12 in the present utility model are made of single-layer textile breathable fabric, which has certain breathability itself, and the strip splicing body 13 and the accelerated exhaust belt 14 have better breathability. The strip splicing body 13 is relatively close to the user's head top to ensure air circulation at the top, and the accelerated exhaust belt 14 corresponds to the place where the user's hair accumulates to ensure air circulation at the head circumference and the back of the head. Therefore, the cap body 1 in the present utility model has both good heat accumulation property and good moisture discharge and breathability, and the air flow speed is fast, so that the hair can be dried quickly.
[0041] Before drying the hair, a curling iron can be used to clip the wet hair first, and then this application can be used to dry the hair. The dried hair will become curly.
[0042] In addition, the drying cap of the present utility model can also be used as a drying sleeve for drying small-sized clothes. When in use, the clothes are put into the drying cap, the drawstring 3 outside the cap body 1 is pulled and the sliding adjustment buckle 4 is adjusted to realize the tightening and closing of the bottom opening of the cap body 1, and the air outlet of the hair dryer is inserted into the air guide pipe 5 to dry the clothes, which can quickly dry the clothes without damaging the clothes.
[0043] Embodiment 2:
[0044] The technical solution in this embodiment is basically the same as that in Embodiment 1, and the differences are as follows:
[0045] The drying cap in the present utility model can also be used to dry the hair of pets such as cats and dogs. To facilitate the drying of pet hair, the following technical features are added. In this embodiment, the hair of a little dog is taken as an example.
[0046] As Figure 5 shown, when at least one channel is provided on each of the front sheet 11 and the rear sheet 12. In this embodiment, two channels are provided on each of the front sheet 11 and the rear sheet 12. A zipper assembly 8 is arranged on one side of the cap body 1. The head of the little dog can extend out of the cap body 1 through the zipper assembly 8. When the zipper assembly 8 is arranged on the strip splicing body 13 and the air outlet of the air guide pipe 5 is opened on the strip splicing body 13, the zipper assembly 8 extends along the length direction of the strip splicing body 13 and is located on both sides of the cap body 1 respectively with the air guide pipe 5.
[0047] The highest position of the zipper assembly 8 on the cap body 1 is lower than or equal to the height position of the intersection point of the extended lower edge of the air guide pipe 5 and the cap body 1, so that when the hair dryer blows air into the cap body 1 through the air guide pipe 5, the hot air does not blow vertically towards the body of the little dog but flows upwards along the back or the belly, thus preventing scalding the skin of the little dog.
[0048] When in use, unzip the zipper assembly, put the drying cap on the pet, with the head extending out of the zipper assembly. Zip up the zipper to the appropriate position, and pull the drawstring 3 on the outside of the cap body 1 and slide the adjustment buckle 4 to tighten and close the bottom opening of the cap body 1, wrapping the pet's body in the drying cap. The hair dryer blows air upward into the cap body 1 through the air duct 5 to dry the puppy's hair.
[0049] The embodiments described above are only descriptions of the preferred modes of the present invention, and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various deformations and improvements made by those of ordinary skill in the art to the technical solutions of the present invention shall fall within the protection scope determined by the claims of the present invention.
Claims
1. A new type of drying cap, comprising a cap body (1) and an air duct (5), characterized in that, The cap body (1) is a hollow structure with an open bottom formed by splicing a front sheet body (11), a rear sheet body (12) and a strip-shaped splicing body (13). The front sheet body (11) and the rear sheet body (12) are respectively located on both sides of the strip-shaped splicing body (13). The front sheet body (11), the rear sheet body (12) and the strip-shaped splicing body (13) are all made of single-layer textile breathable fabric. At least one channel is provided on the front sheet body (11) or the rear sheet body (12), or at least one channel is provided on both the front sheet body (11) and the rear sheet body (12). An accelerated exhaust belt (14) is provided at each channel. The air duct (5) is arranged on the cap body (1) and is communicated with the inside of the cap body (1). The air inlet of the air duct (5) is inclined downward and the air outlet is inclined upward. The bottom opening of the cap body (1) is a drawstring structure.
2. The novel drying cap according to claim 1, wherein, The front sheet body (11) and the rear sheet body (12) have the same shape and size, and the top edges are both arc-shaped.
3. A novel drying cap according to claim 1, characterized in that, The air outlet of the air duct (5) is opened on the strip-shaped splicing body (13).
4. A novel drying cap according to claim 1, characterized in that, The accelerated exhaust belt (14) is arranged along the circumference of the cap body (1). When the accelerated exhaust belt (14) is one, the accelerated exhaust belt (14) is located between the bottom of the cap body (1) and the air outlet of the air duct (5); when there are multiple accelerated exhaust belts (14), the multiple accelerated exhaust belts (14) are arranged in sequence along the height direction of the cap body (1). The lowermost accelerated exhaust belt (14) is close to the bottom of the cap body (1), and the uppermost accelerated exhaust belt (14) is lower than the upper edge of the air outlet of the air duct (5).
5. A novel drying cap according to claim 1, characterized in that, The air permeability rates H1 of the front sheet body (11) and the rear sheet body (12) are the same; the air permeability rates H2 of the strip-shaped splicing body (13) and the accelerated exhaust belt (14) are the same and are greater than the air permeability rate H1 of the front sheet body (11).
6. The novel drying cap according to claim 5, characterized in that, The air permeability rates H2 of the strip-shaped splicing body (13) and the accelerated exhaust belt (14) are both 70 - 100 mm / s, and the air permeability rates H1 of the front sheet body (11) and the rear sheet body (12) are both 45 mm / s ≤ H1 < 70 mm / s.
7. A novel drying cap according to claim 3, characterized in that, The upper and lower sides of the air duct (5) are parallel, and the included angle α between the tangent line at the intersection of the lower side of the cap body (1) and the air duct (5) and the lower side of the air duct (5) is an acute angle.
8. A novel drying cap according to claim 1, characterized in that, The length of the longest part of the air duct (5) is less than the height of the cap body (1). An elastic structure (6) composed of a first elastic band is arranged at the air inlet of the air duct (5), and a second elastic band (7) for fixing a hair dryer is arranged on one side of the elastic structure (6).
9. The novel drying cap according to claim 1, wherein, The drawstring structure is composed of an elastomer (9) connected to the bottom of the cap body (1) or a drawstring adjustment structure composed of a drawstring (3) threaded through the bottom of the cap body (1) and an adjustment buckle (4) on the drawstring (3); when the drawstring structure is composed of an elastomer (9) connected to the bottom of the cap body (1), a lacing (10) is arranged on one side of the cap body (1).
10. A novel drying cap according to any one of claims 3 to 9, characterized in that, When at least one channel is provided on both the front sheet body (11) and the rear sheet body (12), a zipper assembly (8) is provided on one side of the cap body (1). When the zipper assembly (8) is provided on the strip-shaped splicing body (13) and the air outlet of the air duct (5) is opened on the strip-shaped splicing body (13), the zipper assembly (8) extends along the length direction of the strip-shaped splicing body (13) and is located on both sides of the air duct (5) and the cap body (1) respectively.