Whole-piece type three-dimensional finger stall with adjustable inner diameter

The body finger cover is formed by the self-buckle of the whole piece of soft and thin material. The length of the pointed conical projection through the cut is adjusted to adjust the inner diameter, which solves the problem of the difficulty of making existing finger covers and the need for additional accessories to adjust the inner diameter, achieving the effect of simple production, comfortable wearing and not easy to fall off.

CN222917057UActive Publication Date: 2025-05-30孟海同
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Patent Information

Application Number
CN202421467083.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-25
Publication Date
2025-05-30
Estimated Expiration
2034-06-25

AI Technical Summary

Technical Problem

The existing finger covers are difficult to make, and adjusting the inner diameter requires additional accessories and are easy to fall off.

Method used

The whole piece of soft and thin material is used to form a body finger sleeve through its own buckle, and the inner diameter is adjusted using the length of the pointed conical projection through the incision.

Benefits of technology

It achieves the effect of simple production process, no additional accessories, adjustable inner diameter, comfortable wearing and not easy to fall off.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a whole-piece type three-dimensional finger stall with an adjustable inner diameter, which comprises a whole-piece type stall body, and is characterized in that the whole-piece type stall body is made of a soft thin material, the main body of the whole-piece type stall body is a sheet-shaped quadrangle, one end of one edge of the whole-piece type stall body is provided with a strip-shaped bulge, the middle part of the edge is provided with a cross-shaped bulge, and the middle part of the bulge is provided with three linear notches; two linear notches are arranged close to the edge of the edge, a T-shaped protrusion and a pointed-cone-shaped protrusion with a linear notch in the middle are arranged on the edge of the edge adjacent to the long-strip-shaped protrusion on the edge, and three long linear notches and two short linear notches are arranged towards the other edge parallel and opposite to the edge. The edges with the T-shaped protrusions and the pointed-cone-shaped protrusions are curled towards the reverse side, the two protrusions penetrate into the corresponding linear notches respectively, the long-strip-shaped protrusions at one end penetrate into the linear notches in the opposite cross-shaped protrusions respectively, the two ends of the cross-shaped protrusions penetrate into the linear notches in the adjacent edges respectively, and the whole body is in a barrel shape with an opening in one end.
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Description

Technical Field

[0001] The utility model belongs to the technical field of finger cots with simple production and adjustable inner diameter, and particularly relates to an integral three-dimensional finger cot with adjustable inner diameter. Background Art

[0002] Most of the existing finger cots are made by multi-piece stitching and splicing processes or shaping, which require technical workers to operate professional processing equipment for production. The processing cost accounts for a relatively high proportion of the total cost. For adjusting the inner diameter, rubber bands or elastic bands are mostly used, which will cause a sense of compression or are easy to fall off when worn.

[0003] The utility model is made by cutting a piece of soft material and self-fastening, without the need for complex professional processing equipment. The manufacturing process is simple and there are no additional accessories. It can fix the inner diameter at a certain size, and it is a three-dimensional structure that fits the finger, being comfortable to wear and not easy to fall off. Summary of the Invention

[0004] The utility model aims at the deficiencies of the existing finger cots, such as high manufacturing difficulty, the need for additional accessories for adjusting the inner diameter and being easy to fall off, and provides an integral three-dimensional finger cot with adjustable inner diameter.

[0005] The purpose of the utility model is achieved through the following solutions

[0006] 1. The utility model includes an integral sleeve body.

[0007] 2. The integral sleeve body of the utility model is made of a soft thin material. Its main body is a sheet-shaped quadrilateral. One end of one edge has a long strip-shaped protrusion, and in the middle part of this edge, there is a cross-shaped protrusion. In the middle part of the cross-shaped protrusion, there are three linear incisions. Near the edge of the side with the cross-shaped protrusion, there are two linear incisions parallel to this side. On the edge of the side adjacent to the long strip-shaped protrusion on the side with the cross-shaped protrusion, there is a T-shaped protrusion and a tapered protrusion with a linear incision in the middle. There are three longer and two shorter linear incisions that are all parallel to this side, biased towards the other side parallel to this side.

[0008] 3. The side with the T-shaped and tapered protrusions curls towards the reverse side, and the two protrusions respectively penetrate into the corresponding linear incisions. At this time, the whole becomes tubular. The long strip-shaped protrusions at one end respectively penetrate into the linear incisions on the opposite cross-shaped protrusions, and the two ends of the cross-shaped protrusions respectively penetrate into the linear incisions on the adjacent sides, and the whole becomes a tubular shape with one end open.

[0009] 4. When using the utility model, put the utility model on the finger to be protected. By adjusting the length of the tapered protrusion passing through the incision, the inner diameter of the opening is changed, and the overall inner diameter will be naturally adjusted according to the inner diameter of the opening and the thickness of the finger.

[0010] Compared with the prior art, the effective effects of the present utility model are as follows:

[0011] (1) The manufacturing process is simple.

[0012] (2) The three-dimensional structure fits the finger.

[0013] (3) No additional accessories are required.

[0014] (4) The inner diameter can be adjusted. Description of the Drawings

[0015] Figure 1 It is a schematic diagram of the integral sleeve body of the present utility model.

[0016] Figure 2 It is a front three-dimensional view of the present utility model.

[0017] Figure 3 It is a back three-dimensional view of the present utility model.

[0018] Figure 4 It is a top three-dimensional view of the present utility model.

[0019] Figure 5 It is the usage state of the present utility model Figure 1 .

[0020] Figure 6 It is the usage state of the present utility model Figure 2 . Detailed Description of the Invention

[0021] An integral three-dimensional finger sleeve with adjustable inner diameter, comprising the following steps:

[0022] 1. The present utility model includes an integral sleeve body.

[0023] 2. The integral sleeve body of the present utility model is made of a soft and thin material. Its main body is a sheet-shaped quadrilateral. One end of one edge has a long strip-shaped protrusion, and in the middle part of this edge, there is a cross-shaped protrusion. In the middle part of the cross-shaped protrusion, there are three linear incisions. Near the edge of the side with the cross-shaped protrusion, there are two linear incisions parallel to this side. On the edge of the side adjacent to the long strip-shaped protrusion on the side with the cross-shaped protrusion, there is a T-shaped protrusion and a tapered protrusion with a linear incision in the middle. There are three longer and two shorter linear incisions parallel to this side, leaning towards the other side parallel to this side.

[0024] 3. The side with a T-shaped and a tapered protrusion curls towards the reverse side, and the two protrusions respectively penetrate into the corresponding linear incisions. At this time, the whole becomes tubular. The long strip protrusions at one end respectively penetrate into the linear incisions on the opposite cross-shaped protrusions, and the two ends of the cross-shaped protrusions respectively penetrate into the linear incisions on the adjacent sides, and the whole becomes a tubular shape with one end open.

[0025] 4. When using the present utility model, put the present utility model on the finger to be protected, and change the inner diameter of the opening by adjusting the length of the tapered protrusion passing through the incision. The overall inner diameter will be naturally adjusted according to the inner diameter of the opening and the thickness of the finger.

[0026] The present utility model will be described in detail according to the embodiments below, and the purpose and effect of the present utility model will become more obvious. Embodiment 1:

[0027] When using a hand sewing needle with a thimble, most of the existing thimbles are shaped metal, plastic rings or tubular shapes with one side open, or rings or bags spliced with soft thin materials. The ring-shaped thimbles provide partial protection. For the tubular and bag-shaped thimbles, if the size is short, the protection area is insufficient; if the size is long, it is uncomfortable to wear and inconvenient to use, and the thickness of the finger affects the wearing effect, there is a sense of compression or it is easy to fall off, and the workmanship is difficult. At this time, using the present utility model, the whole is a three-dimensional tubular shape with adjustable inner diameter, large protection area, adjusted to a suitable inner diameter, comfortable to wear, not easy to fall off, and the workmanship is simple.

[0028] Embodiment 2:

[0029] Most of the existing finger protectors made of genuine leather for heat insulation, heat prevention, abrasion prevention, and puncture prevention are sewn by splicing multiple pieces, which requires technical workers to operate professional processing equipment for production, and the processing cost accounts for a relatively high proportion of the total cost. The inner diameter adjustment is mostly with rubber bands or elastic bands, and there will be a sense of compression when wearing, and the problem of insecure splicing and sewing is likely to occur during use. At this time, using the present utility model, the whole is cut from a single piece of genuine leather and made by self-fastening, without additional accessories, and can be adjusted into a three-dimensional structure that fits the finger, comfortable to wear, and there will be no problem of insecure splicing and sewing.

[0030] The present utility model is mainly made by cutting soft thin materials and self-fastening, with simple manufacturing process, no additional accessories required, adjustable inner diameter size, and a three-dimensional structure that fits the finger, comfortable to wear and not easy to fall off.

[0031] The above examples are used to explain the present utility model, rather than limiting the present utility model. Any modification and change made to the present utility model within the spirit and scope of the claims of the present utility model fall within the protection scope of the present utility model.

Claims

1. A one-piece three-dimensional finger cot with adjustable inner diameter, comprising an one-piece cot body, characterized in that: The main body is a sheet-like quadrilateral, with a long strip protrusion at one end of one edge, a cross-shaped protrusion in the middle of this edge, three straight line cuts in the middle of the cross-shaped protrusion, two straight line cuts parallel to the edge of the side close to the cross-shaped protrusion, a T-shaped protrusion and a conical protrusion with a straight line cut in the middle on the edge of the side adjacent to the long strip protrusion on the side with the cross-shaped protrusion, three longer and two shorter straight line cuts parallel to the side on the other side parallel to this side, one side with the T-shaped and conical protrusions is curled toward the opposite side, and the two protrusions are respectively inserted into the corresponding straight line cuts, forming a tubular shape as a whole, the long strip protrusions at one end are respectively inserted into the straight line cuts on the opposite cross-shaped protrusion, and the two ends of the cross-shaped protrusion are respectively inserted into the straight line cuts of the adjacent sides, forming a cylindrical shape with one end open as a whole.

2. According to claim 1, a one-piece three-dimensional finger cot with adjustable inner diameter, characterized in that: The whole piece casing is made of soft and thin material.