Self-adaptive pressure adjustment type corset belt

The adaptive pressure-adjustable waist belt, with its multiple elastic bands and woven structure, solves the problems of fit and limited movement caused by differences in waist shape, achieving better shaping effect and comfort.

CN224165745UActive Publication Date: 2026-04-28ZHEJIANG IREAN KNITTING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG IREAN KNITTING CO LTD
Filing Date
2025-05-26
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing shapewear belts suffer from poor fit due to differences in fat distribution and muscle morphology in different parts of the waist, affecting the shaping effect and wearing comfort, and restricting movement, especially when bending over and turning.

Method used

Design an adaptive pressure-adjustable waist belt with multiple elastic bands arranged in a middle that is shorter than the two sides. Combined with horizontal and weft knitting, it provides adaptive elastic support and is connected by Velcro and zippers to adapt to changes in waist shape.

Benefits of technology

It improves the fit and shaping effect at the waist, enhances wearing comfort, reduces the impact of restricted movement, and provides elastic support and flexibility to adapt to different movements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a self-adaptive pressure adjustment type corseting belt, which comprises a first connecting piece, a first belt body, a second connecting piece and a second belt body, the second connecting piece comprises a plurality of elastic bands which are arranged side by side at equal intervals from top to bottom, the lengths of the elastic bands are different, and the elastic bands are symmetrically arranged by taking the transverse center line of the belt body as a symmetric line. The length of the elastic band closer to the symmetric line is shorter; the first belt body comprises a first side edge belt and a first rear edge belt, the second belt body comprises a second side edge belt and a second rear edge belt, and the first side edge belt, the second side edge belt, the first rear edge belt and the second rear edge belt are all formed by weaving first weft plain stitches forming cross grains. Wherein the cross grains of the first side band and the second side band are perpendicular to the length direction of the waistband body, and the cross grains of the first rear band and the second rear band are parallel to the length direction of the waistband body. The waist fitting degree can be better met, the wearing comfort is improved, the shaping appearance effect is optimized, and the influence of movement limitation is weakened.
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Description

Technical Field

[0001] This utility model relates to the field of waist trainer technology, and more specifically to an adaptive pressure adjustment waist trainer. Background Technology

[0002] In modern society, people are paying increasing attention to health and body management, and body shaping has become a goal pursued by many. Currently, there are various body shaping methods and products on the market, such as waist trainers, which mainly use physical binding to fix excess loose fat in the waist, thereby achieving a certain shaping and appearance effect.

[0003] However, the elasticity of waist trainers on the market is consistent in both length and width. But people's waists are often characterized by excess fat in the middle and gradually shrinking towards the sides, while waist trainers often do the opposite.

[0004] Therefore, the existing elastic waistbands with uniform elasticity have the following defects when worn: (1) poor fit. The fat distribution and muscle shape of different parts of the human waist are different. The waistband with uniform elasticity is difficult to fit the curve and contour of the waist accurately. It may be too tight in some parts and too loose in others, affecting the shaping effect and the comfort of wearing.

[0005] (2) Limited movement: The overall elasticity of the shaping belt is uniform, but it cannot provide corresponding elastic support according to the changes in body movement when the user bends over or turns. When the body is bent, the belt may be too tight, restricting the range of motion and making people feel very restricted, which affects the convenience of daily activities. Utility Model Content

[0006] The purpose of this invention is to overcome the above-mentioned defects in the prior art and provide an adaptive pressure adjustment waist belt that can better meet the requirements of waist fit, improve wearing comfort, optimize the shaping effect, and reduce the impact of restricted movement.

[0007] To achieve the above objectives, this utility model is implemented through the following technical solution: an adaptive pressure adjustment waist belt, comprising a waist belt body, wherein the waist belt body is formed by sequentially connecting a first connector, a first belt body, a second connector, and a second belt body end to end, characterized in that the second connector comprises a plurality of elastic bands arranged side by side at equal intervals from top to bottom, the lengths of these elastic bands being different, with the horizontal center line of the waist belt body as the line of symmetry, the elastic bands closer to the line of symmetry being shorter, while the elastic bands located at symmetrical positions on the upper and lower sides are of the same length; the first belt body comprises a first side band and a first back band, the second belt body comprises a second side band and a second back band, the first side band, the second side band, the first back band, and the second back band are all woven from a first weft plain knit weave forming horizontal stripes, wherein the horizontal stripes of the first side band and the second side band are perpendicular to the length direction of the waist belt body, and the horizontal stripes of the first back band and the second back band are parallel to the length direction of the waist belt body.

[0008] This invention utilizes a second connecting component that primarily provides elasticity, arranged as multiple parallel elastic bands. The middle elastic band is shorter than the outer ones, resulting in greater elasticity in the middle and less on the sides. This caters to the natural shape of the human waist, where there is more fat in the middle and the waistline gradually tapers towards the sides. This improves waist fit, enhances wearing comfort, and optimizes the shaping effect. More importantly, the human body not only exhibits physiological differences in shape but also changes shape with different movements. Therefore, the separate and spaced elastic bands can be adjusted to different positions after the shape changes. This not only adapts to and provides elastic support in a timely manner but also reduces the impact of restricted movement.

[0009] The first and second side bands of this utility model correspond to the side waist position of the human body, where there are more longitudinal bending movements. The horizontal stripes (the weft plain knitting is made of continuous loops interlocked along the weft direction, presenting a clear and regular horizontal stripe effect, with lateral elasticity and extensibility) are arranged vertically to provide elastic support and extensibility in the bending direction, thereby reducing the impact of restricted movement.

[0010] The first and second back straps of this utility model correspond to the lower back of the human body, where there are many turning and twisting movements. The horizontal arrangement of the horizontal stripes (the weft plain knitting is made of continuous loops interlocked along the weft direction, presenting a clear and regular horizontal stripe effect, with lateral elasticity and extensibility) provides elastic support and extensibility in the direction of waist twisting, thereby reducing the impact of restricted movement.

[0011] Preferably, one end of each elastic band is fixedly connected to the second side band, and a hook and loop fastener is connected to the other free end of each elastic band. A first hook and loop fastener is laminated on the outer surface of the first side band.

[0012] This utility model features a detachable elastic band design. To achieve the desired overall elasticity, with greater elasticity in the middle and smaller elasticity on the sides, the Velcro is vertically aligned and pasted, ensuring the middle elastic band is shorter than the sides. Because the elastic band is detachable, its length can be adjusted to suit different body shapes, further allowing for adjustments to the elasticity level.

[0013] Preferably, a second hook and loop fastener is laminated on the outer surface of the second side strip.

[0014] This invention also adds a Velcro surface to the second side strap. Firstly, this allows for standardized accessory production, reducing diversity and lowering production costs. Secondly, for people with slimmer waists, they can simply wrap the elastic band around it and attach it, providing more options.

[0015] Preferably, an inner lining fabric is connected to the first side strip, extending freely to the opposite second side strip, and the length of the inner lining fabric is greater than the length of any elastic band.

[0016] This invention adds an inner lining to isolate the elastic band from direct contact with human skin, preventing allergic reactions in some people and reducing the occurrence of chafing marks. Since the elastic band's length and size can change at any time, the inner lining cannot be made into a fixed structure; that is, both ends cannot be connected to the first and second side straps simultaneously. Connecting only one end is sufficient. During use, people can pull and stretch it, allowing it to adapt to adjust its length.

[0017] Preferably, the first connector is a zipper, wherein half of the zipper with the zipper head is sewn onto the first back strap, and the other half of the zipper without the zipper head is sewn onto the second back strap.

[0018] Although the zipper of this utility model is a conventional choice of connector, the zipper also has its uses. Knitted fabrics have elasticity, but this often weakens their tensile strength. The zipper is a rigid connector that can effectively supplement the tensile strength of knitted fabrics.

[0019] Preferably, several spandex core-spun yarn weave strips are arranged side by side at equal intervals along the width direction on the surface of the first and second back side strips, that is, the spandex core-spun yarn weave strips are arranged parallel to the transverse stripes on the first and second back side strips.

[0020] This utility model relates to a spandex core-spun yarn weave, which uses spandex as the core and is wrapped with other fibers, giving the fabric high elasticity and good resilience, and enhancing the elasticity of local structures.

[0021] Preferably, a plurality of support strips are arranged side by side at equal intervals along the length direction on the surface of the first and second rear strips, and the support strips are shape memory alloy skeletons.

[0022] As the name suggests, the support strip serves a supporting function, running longitudinally (widthwise) of the belt to prevent it from bending or sagging during movements such as bending over. As for the placement of the support strip, it can be sewn onto the outside for restraint; if the belt has a double-layered structure, it can also be sewn directly inside.

[0023] Beneficial effects: This utility model uses multiple elastic bands arranged side-by-side as the second connecting component, which provides the main elasticity. The middle elastic band is shorter than the outer ones, resulting in greater elasticity in the middle and less on the sides. This matches the natural shape of the human waist, where there is more fat in the middle and the waistline gradually tapers towards the sides. This better ensures a snug fit, improves wearing comfort, and optimizes the shaping effect. More importantly, the human body not only has physiological differences in shape but also changes shape with different movements. Therefore, the separate and spaced elastic bands can be adjusted to different positions after the shape changes. This not only adapts to and provides elastic support in a timely manner but also reduces the impact of restricted movement.

[0024] The first and second side bands of this utility model correspond to the side waist position of the human body, where there are more longitudinal bending movements. The horizontal stripes (the weft plain knitting is made of continuous loops interlocked along the weft direction, presenting a clear and regular horizontal stripe effect, with lateral elasticity and extensibility) are arranged vertically to provide elastic support and extensibility in the bending direction, thereby reducing the impact of restricted movement.

[0025] The first and second back straps of this utility model correspond to the lower back of the human body, where there are many turning and twisting movements. The horizontal arrangement of the horizontal stripes (the weft plain knitting is made of continuous loops interlocked along the weft direction, presenting a clear and regular horizontal stripe effect, with lateral elasticity and extensibility) provides elastic support and extensibility in the direction of waist twisting, thereby reducing the impact of restricted movement. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the structure of this utility model;

[0027] Figure 2 This is a schematic diagram of the structure of the first belt body of this utility model;

[0028] Figure 3 This is a schematic diagram of the structure of the second belt of this utility model.

[0029] In the diagram: 1-First connector, 2-First belt body, 3-Second connector, 4-Second belt body, 5-Support strip, 6-Spandex core-spun yarn weave belt, 11-Zipper, 21-First side belt, 22-First back belt, 23-Inner lining, 211-First hook and loop fastener, 31-Elastic band, 32-Hook and loop fastener, 41-Second side belt, 42-Second back belt, 411-Second hook and loop fastener. Detailed Implementation

[0030] To make the technical means, creative features and objectives of this utility model easier to understand, the following describes this utility model in conjunction with specific embodiments.

[0031] Example: Figure 1 As shown, an adaptive pressure adjustment waist belt includes a waist belt body, which is formed by connecting a first connector 1, a first belt body 2, a second connector 3 and a second belt body 4 end to end.

[0032] like Figure 2 and Figure 3 As shown, the second connector 3 includes three elastic bands 31 arranged side by side at equal intervals from top to bottom. These elastic bands 31 have different lengths. With the horizontal center line of the waist belt body as the symmetry line, the elastic bands closer to the symmetry line are shorter, while the elastic bands located at symmetrical positions on the upper and lower sides have the same length. The first belt body 2 includes a first side band 21 and a first back band 22, and the second belt body 4 includes a second side band 41 and a second back band 42. The first side band 21, the second side band 41, the first back band 22, and the second back band 42 are all woven from a first weft plain knit weave that forms horizontal stripes. The horizontal stripes of the first side band 21 and the second side band 41 are perpendicular to the length direction of the waist belt body, and the horizontal stripes of the first back band 22 and the second back band 42 are parallel to the length direction of the waist belt body.

[0033] One end of each elastic band 31 is fixedly connected to the second side band 42, and a hook and loop fastener 32 is connected to the other free end of each elastic band 31. A first hook and loop fastener 211 is laminated on the outer surface of the first side band 21. A second hook and loop fastener 411 is laminated on the outer surface of the second side band 41.

[0034] A lining fabric 23 extending freely to the opposite side of the second side strip 41 is connected to the first side strip 21. The length of the lining fabric 23 is greater than the length of any elastic band 31.

[0035] Several spandex core-spun yarn weave strips 6 are arranged side-by-side at equal intervals along the width direction on the surface of the first rear side strip 22 and the second rear side strip 42, that is, the spandex core-spun yarn weave strips 6 are arranged parallel to the transverse stripes on the first rear side strip 22 and the second rear side strip 42. Several support strips 5 are arranged side-by-side at equal intervals along the length direction on the surface of the first rear side strip 22 and the second rear side strip 42, and the support strips 5 are made of shape memory alloy skeleton.

[0036] The first connector 1 is a zipper 11, wherein half of the zipper with the zipper head is sewn onto the first back strap 22, and the other half of the zipper without the zipper head is sewn onto the second back strap 42.

[0037] Usage: This utility model uses a second connecting component that primarily provides elasticity, arranged as multiple elastic bands side-by-side. The middle elastic band is shorter than the outer ones, resulting in greater elasticity in the middle and less on the sides. This matches the natural shape of the human waist, where there is more fat in the middle and the waistline gradually tapers towards the sides. This better ensures a snug fit, improves wearing comfort, and optimizes the shaping effect. More importantly, the human body not only has physiological differences in shape but also changes shape with different movements. Therefore, the separate and spaced elastic bands can be adjusted to different positions after the shape changes. This not only adapts to and provides elastic support in a timely manner but also reduces the impact of restricted movement.

[0038] The first and second side bands of this utility model correspond to the side waist position of the human body, where there are more longitudinal bending movements. The horizontal stripes (the weft plain knitting is made of continuous loops interlocked along the weft direction, presenting a clear and regular horizontal stripe effect, with lateral elasticity and extensibility) are arranged vertically to provide elastic support and extensibility in the bending direction, thereby reducing the impact of restricted movement.

[0039] The first and second back straps of this utility model correspond to the lower back of the human body, where there are many turning and twisting movements. The horizontal arrangement of the horizontal stripes (the weft plain knitting is made of continuous loops interlocked along the weft direction, presenting a clear and regular horizontal stripe effect, with lateral elasticity and extensibility) provides elastic support and extensibility in the direction of waist twisting, thereby reducing the impact of restricted movement.

Claims

1. An adaptive pressure-adjustable waist belt, comprising a waist belt body, wherein the waist belt body is formed by sequentially connecting a first connector, a first belt body, a second connector, and a second belt body end to end, characterized in that, The second connector includes several elastic bands arranged side by side at equal intervals from top to bottom. These elastic bands have different lengths and are symmetrical about the transverse center line of the belt body. The closer the elastic bands are to the symmetrical line, the shorter they are, while the elastic bands located at symmetrical positions on the upper and lower sides have the same length. The first belt body includes a first side band and a first back band, and the second belt body includes a second side band and a second back band. The first side band, the second side band, the first back band, and the second back band are all woven from a first weft plain knit weave that forms horizontal stripes. The horizontal stripes of the first side band and the second side band are perpendicular to the length direction of the belt body, and the horizontal stripes of the first back band and the second back band are parallel to the length direction of the belt body.

2. The adaptive pressure-adjustable waist belt according to claim 1, characterized in that, One end of each elastic band is fixedly connected to the second side band, and a hook and loop fastener is connected to the other free end of each elastic band. A first hook and loop fastener is laminated on the outer surface of the first side band.

3. The adaptive pressure-adjustable waist belt according to claim 2, characterized in that, A second hook and loop fastener is laminated to the outer surface of the second side strip.

4. The adaptive pressure-adjustable waist belt according to claim 1, 2, or 3, characterized in that, A lining fabric extending freely to the opposite second side strip is connected to the first side strip, and the length of the lining fabric is greater than the length of any elastic band.

5. The adaptive pressure-adjustable waist belt according to claim 1, characterized in that, The first connector is a zipper, wherein half of the zipper with the zipper head is sewn onto the first back strap, and the other half of the zipper without the zipper head is sewn onto the second back strap.

6. The adaptive pressure-adjustable waist belt according to claim 1, characterized in that, The first and second back sidebands have several spandex core-spun yarn weave strips arranged side by side at equal intervals along the width direction, that is, the spandex core-spun yarn weave strips are arranged parallel to the transverse stripes on the first and second back sidebands.

7. The adaptive pressure-adjustable waist belt according to claim 1 or 6, characterized in that, Several support strips are arranged side by side at equal intervals along the length direction on the surface of the first and second rear side strips, and the support strips are shape memory alloy skeletons.