A pet no-wash glove wet wipe with floating hair cleaning and smooth hair combing functions
Patent Information
- Application Number
- CN202522263455.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-25
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-25
AI Technical Summary
然而,这类湿巾通常受限于其材质结构与表面设计,清洁能力普遍较弱
[0020]本申请通过双面复合结构设计,利用珍珠纹水刺布实现浮毛的抓取与锚定,结合滴塑单元的差异化功能实现污垢破碎与顺毛梳理,有效解决了浮毛清除不彻底和毛发缠结问题。
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Figure CN224791400U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pet wipes technology, specifically to a pet wipeless glove with functions of cleaning loose hair and smoothing fur. Background Technology
[0002] Pet grooming is an important part of daily pet care. Currently, common pet grooming products on the market mainly include traditional water-based shampoos, spray cleaners, and regular cleaning wipes.
[0003] Traditional water-based bathing methods, such as using shampoo or shower gel for tub baths or showers, are usually cumbersome, time-consuming, and labor-intensive, and professional pet grooming services are relatively expensive. More importantly, many pets experience strong stress reactions to water or hair dryers, making the cleaning process difficult and even negatively impacting their mental health.
[0004] While spray-type cleaners simplify operation to some extent, in practice, the dosage is difficult to control precisely, easily leading to uneven spraying. Some pets are sensitive to the sound and touch of the spray, and may try to avoid it. Furthermore, there is a risk of pets inhaling the atomized liquid into their respiratory tract, potentially causing discomfort or even health problems, thus affecting the product's safety and user experience.
[0005] Regular wet wipes, as another convenient cleaning option, are favored by some pet owners due to their disposable nature and ease of use. However, these wipes are generally limited in their cleaning ability due to their material structure and surface design. Regular wet wipes are ineffective at removing loose, lint from a pet's skin. Furthermore, their limited grooming function can lead to incomplete cleaning during the wiping process.
[0006] Therefore, there is a need for a pet hand wipe with functions of removing loose hair and smoothing fur to overcome the above problems. Utility Model Content
[0007] To address the aforementioned problems, this utility model provides a pet hand wipe with functions of removing loose hair and smoothing fur, thus achieving the goal of solving the problems mentioned in the background art.
[0008] To achieve the above objectives, this utility model embodiment adopts the following technical solution: a pet mitten wipe with functions of cleaning loose hair and smoothing fur, comprising a glove-shaped substrate, wherein the glove-shaped substrate has a double-sided composite structure and is a symmetrical, ambidextrous style; one side of the glove-shaped substrate is a pearl-patterned spunlace fabric with a three-dimensional concave-convex structure; the other side of the glove-shaped substrate is a plain weave spunlace fabric, wherein drip molding units are laminated on the plain weave spunlace fabric.
[0009] As a further improvement to the above technical solution:
[0010] The pearl-like textured protrusions on the surface of the pearl-textured spunlace fabric grasp and guide the loose hair on the pet's body into the textured recessed area, and anchor and remove the loose hair through bending, wrapping and repeated insertion.
[0011] The plain weave spunlace fabric is made of polyethylene terephthalate.
[0012] The drip molding unit includes crescent-shaped drip molding and circular drip molding.
[0013] The crescent-shaped drip molding has a structure with a concave center and convex edges, which is used to generate concentrated force on dirt and tangles to achieve breakage and separation. The concave area in the middle is used to collect and transfer the detached material.
[0014] The circular droplet protrudes from the crescent-shaped droplet, used for gentle combing in the direction of hair growth.
[0015] The density of the drip molding units in the finger area of the glove-shaped substrate is greater than that in the palm area.
[0016] The drop density of the finger region of the glove-shaped substrate is twice that of the drop density of the palm region of the glove-shaped substrate.
[0017] The drip molding unit is composited onto the plain weave spunlace fabric through a drip molding process, and the overall diameter of the drip molding unit is 13mm.
[0018] The fiber length of the plain weave spunlace fabric is 38 mm.
[0019] The beneficial effects of this utility model embodiment are as follows:
[0020] This application utilizes a double-sided composite structure design and pearl-textured spunlace fabric to grasp and anchor loose hair. Combined with the differentiated functions of the drip molding unit, it achieves dirt breaking and hair combing, effectively solving the problems of incomplete removal of loose hair and hair tangling. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of the pearl-patterned spunlace fabric of this utility model;
[0022] Figure 2 This is a schematic diagram of the structure of the plain weave hydroentangled fabric of this utility model.
[0023] In the figure: 1. Glove-shaped substrate; 2. Pearl-textured spunlace fabric; 3. Plain spunlace fabric; 4. Drip molding unit; 41. Crescent-shaped drip molding; 42. Circular drip molding. Detailed Implementation
[0024] Preferred embodiments of the present invention will now be described with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are merely illustrative of the technical principles of the present invention and are not intended to limit the scope of protection of the present invention.
[0025] See Figures 1 to 2 This utility model discloses a pet mitten wipe with functions of cleaning loose hair and smoothing hair, including a glove-shaped base 1. The glove-shaped base 1 has a double-sided composite structure and is a symmetrical style that can be used on both left and right hands. One side of the glove-shaped base 1 is a pearl-patterned spunlace fabric 2 with a three-dimensional concave-convex structure. The other side of the glove-shaped base 1 is a plain weave spunlace fabric 3, on which drip molding units 4 are laminated.
[0026] The three-dimensional textured structure of pearl-textured spunlace fabric 2 can be formed in various ways, such as through molding processes to create the desired texture on the material surface. The main function of this structure is to provide physical gripping ability for handling loose material adhering to a pet's skin.
[0027] The specific shape and distribution density of the drip molding unit 4 can be optimized according to the actual use scenario. For example, it can be set as a strip, rhombus or other irregular shape, and the functional differentiation of different areas can be achieved through partitioned arrangement.
[0028] By employing a glove-like design with a double-sided composite structure, the product integrates the functions of loose hair removal and grooming, solving the problems of traditional pet cleaning products being single-function and cumbersome to operate. Specifically, the three-dimensional concave-convex structure of the pearl-textured spunlace fabric 2 provides the ability to actively grasp and remove loose hair, while the plain-weave spunlace fabric 3, combined with the drip-forming unit 4, achieves the dual effects of breaking down dirt and grooming hair. Therefore, this design not only improves the efficiency of pet cleaning but also enhances the user experience, while avoiding the shortcomings of traditional water washing processes, the difficulty in controlling the dosage of spray cleaning, and the insufficient cleaning power of ordinary wet wipes.
[0029] This application achieves multifunctional integration through a double-sided composite structure design of a glove-shaped substrate 1. The glove-shaped substrate 1 is a symmetrical, ambidextrous design, allowing users to operate it with one hand without needing to distinguish between left and right, significantly improving ease of use. Furthermore, one side of the glove-shaped substrate 1 is a pearl-textured spunlace fabric 2 with a three-dimensional textured surface. The pearl-like textured protrusions on its surface actively capture loose fur from the pet's body and guide it into the textured recessed areas. Through a mechanism of bending, wrapping, and repeated insertion, the loose fur is anchored and removed, effectively solving the problem of ordinary wet wipes' inability to handle loose fur.
[0030] On the other hand, the other side of the glove-shaped substrate 1 is a plain-weave spunlace fabric 3, on which drip-forming units 4 are laminated. The plain-weave spunlace fabric 3 provides a smooth base surface, while the drip-forming units 4 form specific action points for applying gentle force. Specifically, the drip-forming units 4, combined with the characteristics of the plain-weave spunlace fabric 3, can break down dirt and comb hair in the direction of hair growth, thereby achieving a dual cleaning effect. Thus, this application, through the design of a double-sided composite structure, allows one side to be dedicated to cleaning loose hair and the other side to combing hair in the direction of hair growth, avoiding the problem of incomplete cleaning caused by the single function of traditional wet wipes, while overcoming the defects of traditional water washing processes, such as cumbersome processes and difficulty in controlling the dosage of spray cleaning.
[0031] By employing a glove-like design with a double-sided composite structure, the product integrates the functions of loose hair removal and grooming, solving the problems of traditional pet cleaning products being single-function and cumbersome to operate. Specifically, the three-dimensional concave-convex structure of the pearl-textured spunlace fabric 2 provides the ability to actively grasp and remove loose hair, while the plain-weave spunlace fabric 3, combined with the drip-forming unit 4, achieves the dual effects of breaking down dirt and grooming hair. Therefore, this design not only improves the efficiency of pet cleaning but also enhances the user experience, while avoiding the shortcomings of traditional water washing processes, the difficulty in controlling the dosage of spray cleaning, and the insufficient cleaning power of ordinary wet wipes.
[0032] This application further proposes that the pearl-like textured protrusions on the surface of the pearl-textured spunlace fabric 2 grasp and guide the loose hair on the pet's body surface into the textured recessed area, and achieve anchoring and removal of loose hair through bending, wrapping and multiple insertions.
[0033] The pearl-like textured raised portions refer to three-dimensional raised structures with regular or irregular geometric shapes, which can be implemented using hemispherical, conical, or other similar shapes. The purpose of this feature is to actively capture loose hairs through the raised structure, preventing them from scattering upon initial contact due to external forces. The textured recessed areas refer to low-lying regions formed by multiple raised structures. Their ability to accommodate loose hairs can be optimized by adjusting the distance and depth between the raised structures, aiming to provide a stable storage space for the hairs.
[0034] The pearl-textured raised sections actively capture loose hair from the pet's surface using their geometric shape and guide it precisely into recessed areas through a directional design. This process ensures controlled transfer of loose hair from the pet's surface to the recessed areas, significantly different from the flat structure of ordinary wet wipes. Within the recessed areas, the loose hair dynamically interacts with the texture gaps through bending, wrapping, and multiple interlacing, increasing the contact points and frictional resistance between the hair and the fabric. This mechanism effectively prevents the loose hair from slipping off during wiping, ultimately achieving secure anchoring and one-time removal of the hair.
[0035] This application further proposes that the plain weave spunlace fabric 3 is made of polyethylene terephthalate. This application further proposes that the drip molding unit 4 is laminated onto the plain weave spunlace fabric 3 via a drip molding process, and the overall diameter of the drip molding unit 4 is 13 mm. This application further proposes that the fiber length of the plain weave spunlace fabric 3 is 38 mm.
[0036] Plain spunlace fabric 3 refers to a flat fabric made through a hydroentangling process, which can be achieved using polyethylene terephthalate (PET) fiber as the base material. PET is known for its high mechanical strength and excellent abrasion resistance, and its purpose is to ensure that the fabric is not easily deformed or damaged during frequent use, thus providing a stable adhesion substrate for the drip molding unit 4. The drip molding unit 4 is made of polyvinyl chloride (PVC).
[0037] The plain weave spunlace fabric 3 is made of polyethylene terephthalate (PET), with a melting point range of 230-260℃, which is higher than the melting point range of polyvinyl chloride (PVC) soft drip molding (140-180℃). This ensures that during the drip molding process, the liquid drip molding can fully wet and penetrate into the fiber without causing the substrate to melt and deform, achieving a strong bond with the fiber and preventing it from falling off. The fiber length of the plain weave spunlace fabric 3 is 38mm, which is larger than the overall diameter of the drip molding unit 4 (13mm). Furthermore, the friction direction of the drip molding unit 4 is perpendicular to the fiber alignment direction, resulting in a stronger interface anchoring effect under frictional stress. This significantly improves the interfacial bonding strength and mechanical compatibility between the substrate and the drip molding, ensuring the stability and elastic recovery of the composite structure under repeated stretching and friction.
[0038] This application further proposes that the drip molding unit 4 includes a crescent-shaped drip molding 41 and a circular drip molding 42.
[0039] Crescent-shaped hairspray 41 refers to a geometric structure with a concave center and convex edges, designed to create a localized high-pressure area through the convex edges to concentrate force and treat stubborn dirt and tangles. Circular hairspray 42 refers to a structure with a smooth, evenly convex surface, designed to gently comb in the direction of hair growth, reducing friction and avoiding pulling on the pet's skin.
[0040] This application further proposes a crescent-shaped dripping device 41 with a concave center and convex edges, designed to concentrate force on dirt and tangles for breaking down and separating them. The concave center is used to collect and transfer loose material. This unique structure of the crescent-shaped dripping device 41 effectively treats stubborn stains on pets' skin. In practice, when pressure is applied, the convex edges precisely focus the force on the contact points of dirt and tangles, generating sufficient shear force for rapid breaking down and separation. Simultaneously, the concave center and convex edges work together to form a natural collection cavity, ensuring stable collection of broken material for easy subsequent transfer. This structural design not only enhances cleaning power but also prevents secondary contamination.
[0041] This application further proposes a circular dropper 42 protruding from the crescent-shaped dropper 41 for gentle combing in the direction of hair growth. The circular dropper 42, through its protruding height design, can act on the hair first when the glove-shaped base 1 contacts the pet's skin. This preferential action allows it to naturally conform to the hair growth direction during movement, completing gentle combing without the need for additional forced movements. Simultaneously, the protruding design of the circular dropper 42 complements the concave structure of the crescent-shaped dropper 41; the former focuses on guiding and combing surface loose hair, while the latter is responsible for breaking down and separating dirt and tangles. This design not only achieves effective cleaning of pet hair but also significantly improves the comfort of the combing process.
[0042] This application further proposes that the arrangement density of the dripping unit 4 in the finger region of the glove-shaped substrate 1 is greater than that in the palm region.
[0043] By adjusting the distribution density of the drip-molding units 4 in different areas of the glove-shaped substrate 1, the problems of insufficient hair-grabbing ability in the finger area and material waste and discomfort in the palm area were specifically addressed. As the core area for fine-tuning, the increased density of the drip-molding units 4 in the finger area allows the raised structures to make denser contact with pet hair, thereby enhancing the anchoring ability for loose hair and the breaking up of tangles. The palm area, on the other hand, focuses on large-area cleaning; its lower density avoids material redundancy due to overly dense structures, ensuring both comfort and efficiency in the cleaning process.
[0044] This application further proposes that the dripping density in the finger area of the glove-shaped substrate 1 is twice that in the palm area of the glove-shaped substrate 1. The dripping density refers to the number of dripping units 4 distributed per unit area, which can be achieved by adjusting the spacing of the dripping units 4 on the glove-shaped substrate 1 or the size of a single dripping unit 4.
[0045] This technical solution achieves precise optimization of the distribution of the four dripping units by setting the dripping density in the finger area to twice that in the palm area. During pet grooming, the finger area undertakes more frequent and delicate wiping movements, and the higher dripping density effectively breaks up tangles, gathers loose hair, and guides loose hair into the textured depressions. At the same time, the lower density design in the palm area avoids unnecessary material waste.
[0046] It should be noted that in the description of this utility model, terms such as "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," which indicate direction or positional relationships, are based on the direction or positional relationships shown in the accompanying drawings. These are used merely for ease of description and do not indicate or imply that the device or element must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0047] Furthermore, it should be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0048] The term "comprising" or any other similar term is intended to cover non-exclusive inclusion, such that a process, article, or apparatus / device that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to those processes, articles, or apparatus / devices.
[0049] The technical solution of this utility model has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the protection scope of this utility model is obviously not limited to these specific embodiments. Without departing from the principle of this utility model, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of this utility model.
Claims
1. A pet-safe, washable wipe with functions for removing loose fur and smoothing fur, characterized in that, Includes a glove-shaped substrate (1), wherein the glove-shaped substrate (1) has a double-sided composite structure and is a symmetrical style suitable for both left and right hands; One side of the glove-shaped substrate (1) is a pearl-textured spunlace fabric (2) with a three-dimensional concave-convex structure; The other side of the glove-shaped substrate (1) is a plain weave spunlace fabric (3), on which drip molding units (4) are laminated.
2. The pet-safe hand wipes with loose hair removal and grooming functions as described in claim 1, characterized in that, The pearl-like texture protrusions on the surface of the pearl-textured spunlace fabric (2) grasp and guide the pet's body hair into the texture depression area, and achieve anchoring and removal of the hair through bending, wrapping and multiple insertions.
3. The pet-safe hand wipes with loose hair removal and grooming functions as described in claim 1, characterized in that, The plain weave spunlace fabric (3) is made of polyethylene terephthalate.
4. The pet-safe hand wipes with loose hair removal and grooming functions as described in claim 1, characterized in that, The drip molding unit (4) includes crescent-shaped drip molding (41) and circular drip molding (42).
5. The pet-safe hand wipes with loose hair removal and grooming functions according to claim 4, characterized in that, The crescent-shaped drip molding (41) has a structure with a concave center and convex edges, which is used to generate concentrated force on dirt and tangles to achieve breakage and separation. The concave area in the middle is used to collect and transfer the detached material.
6. The pet-safe hand wipes with loose hair removal and grooming functions according to claim 4, characterized in that, The circular droplet (42) protrudes from the crescent-shaped droplet (41) and is used to gently comb the hair in the direction of hair growth.
7. The pet-safe hand wipes with loose hair removal and grooming functions according to claim 4, characterized in that, The density of the drip molding unit (4) in the finger area of the glove-shaped substrate (1) is greater than that in the palm area.
8. The pet-safe hand wipes with loose hair removal and grooming functions according to claim 7, characterized in that, The drop density of the finger area of the glove-shaped substrate (1) is twice that of the drop density of the palm area of the glove-shaped substrate (1).
9. The pet-safe hand wipes with loose hair removal and grooming functions according to any one of claims 4-7, characterized in that, The drip molding unit (4) is composited onto the plain weave spunlace fabric (3) through a drip molding process, and the overall diameter of the drip molding unit (4) is 13mm.
10. The pet-safe hand wipes with loose hair removal and grooming functions according to claim 1, characterized in that, The fiber length of the plain weave spunlace fabric (3) is 38 mm.