A garment neckline shaping device

The garment neckline shaping device, which uses internal and external molds, solves the problem of uneven ironing by utilizing steam and electric heating components. It achieves uniform heating and rapid shaping of the neckline, improving the shaping quality and crispness.

CN224451131UActive Publication Date: 2026-07-03ANHUI YINGYU FINE TEXTILE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI YINGYU FINE TEXTILE TECH CO LTD
Filing Date
2025-08-11
Publication Date
2026-07-03

AI Technical Summary

Technical Problem

Traditional clothing necklines rely on manual ironing for shaping, which results in uneven ironing and affects the quality of the neckline shaping.

Method used

The process employs an inner mold and an outer mold. The inner mold is equipped with an electric heating component, while the outer mold is equipped with a steam heating component. The fabric is moistened and heated by steam to soften it, and then shaped using the electric heating component, ensuring uniform heating and shaping.

Benefits of technology

It achieves uniform heating and rapid shaping of the neckline, improving the shaping quality and the crispness of the neckline.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224451131U_ABST
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Abstract

This utility model discloses a garment neckline shaping device, belonging to the field of garment processing technology, including: an inner mold and an outer mold; the inner mold is equipped with an electric heating component, and the outer mold is equipped with a steam heating component. The inner mold is supported from the inside of the folded neckline, and the outer mold is snapped onto the outside of the folded neckline. This utility model facilitates the shaping of the neckline by cooperating with the inner and outer molds. Subsequently, the steam heating component wets and heats the neckline fabric, softening it for easy reshaping. Then, with the assistance of the electric heating component, not only can the neckline fabric be heated to evaporate moisture, but the neckline is also quickly shaped under the constraint of the inner and outer molds. At the same time, the steam and heat can be evenly applied to all parts of the neckline, thereby ensuring the quality of the neckline shaping and facilitating the shaping process.
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Description

Technical Field

[0001] This utility model relates to the field of garment processing technology, specifically to a garment neckline shaping device. Background Technology

[0002] Neckline shaping is a key process in garment manufacturing that ensures the neckline is crisp and stable, enhancing the overall garment's texture and quality. Its effect directly impacts the garment's aesthetics and durability.

[0003] After some high-end garments are made, the neckline needs to be finished to prevent curling and wrinkles caused by the fabric and processing techniques. Traditionally, neckline shaping is done by ironing, which basically relies on the experience of the craftsman. However, inexperienced personnel are prone to uneven ironing, which affects the quality of the neckline shaping. Utility Model Content

[0004] The purpose of this invention is to provide a garment neckline shaping device. The neckline is clamped by an inner mold and an outer mold. Then, a steam heating component on the outer mold sprays high-temperature steam onto the neckline to wet and soften the fabric. Finally, an electric heating component inside the inner mold heats the neckline, allowing it to be quickly shaped while being clamped by the inner and outer molds. The steam and electric heating components ensure even ironing of the neckline, guaranteeing the quality of the neckline shaping and thus solving the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a garment neckline shaping device, comprising:

[0006] Inner mold and outer mold;

[0007] The inner mold is equipped with an electric heating component, and the outer mold is equipped with a steam heating component. The inner mold is supported from the inside of the folded neckline, and the outer mold is snapped onto the outside of the folded neckline.

[0008] A fixed connection component for positioning is also provided between the outer mold and the inner mold.

[0009] Preferably, the electric heating assembly includes a graphene heating flexible plate disposed inside the inner mold, one end of which is connected to a connecting wire, which extends outward through the inner mold and is connected to a controller.

[0010] Preferably, the steam heating assembly includes an external steam pipe, multiple sets of distribution boxes communicating with the inner cavity of the outer mold are fixed on the outer side of the outer mold, the steam pipe is connected to the distribution box in sequence, multiple sets of steam outlet slits are opened on the inner side of the outer mold, and a control valve is provided on the steam pipe.

[0011] Preferably, the fixed connection assembly includes a first magnet block embedded inside the inner mold and a second magnet block embedded inside the outer mold, wherein the magnetic poles of the first magnet block and the second magnet block are opposite at their opposite ends.

[0012] Preferably, a fixing ring is provided at the end of the inner mold, and a traction rope is inserted into the fixing ring. The tension of the traction rope at the opening of the inner mold is controlled by an adjuster.

[0013] Preferably, the inner mold has through holes at both ends, and a pin is provided on one side of the through hole. One side of the pin passes through the through hole and is fixedly connected to the inner side of the outer mold.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] This invention facilitates the shaping of the neckline through the cooperation of an inner and outer mold. Subsequently, a steam heating component wets and heats the neckline fabric, softening it for easy reshaping. Then, with the assistance of an electric heating component, not only is the neckline fabric heated to evaporate moisture, but the neckline is also quickly shaped under the constraints of the inner and outer molds. At the same time, steam and heat can be evenly applied to all parts of the neckline, ensuring the quality of the neckline shaping and facilitating the shaping process.

[0016] This invention, through the setting of a traction rope and an adjuster, facilitates the adjustment of the distance between the two ends of the inner mold, thereby adjusting the size of the inner mold. This allows for fine-tuning of the neckline using the inner mold, resulting in a more upright neckline after shaping. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0018] Figure 2 This is a three-dimensional structural diagram of the inner mold and electric heating assembly of this utility model;

[0019] Figure 3 This is a three-dimensional structural diagram of the outer mold of this utility model;

[0020] Figure 4 This is a cross-sectional three-dimensional structural diagram of the inner mold and outer mold of this utility model.

[0021] The diagram is labeled as follows: 1. Inner mold; 2. Outer mold; 3. Electric heating component; 31. Graphene heating plate; 32. Connecting wire; 33. Controller; 4. Steam heating component; 41. Steam pipe; 42. Diverter box; 43. Steam outlet; 44. Control valve; 5. Fixed connection component; 51. First magnet; 52. Second magnet; 6. Fixing ring; 7. Traction rope; 8. Regulator; 9. Pin; 10. Through hole. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] This utility model provides, for example Figures 1-4 The illustrated garment neckline shaping device includes:

[0024] Inner mold 1 and outer mold 2;

[0025] The inner mold 1 is equipped with an electric heating component 3, and the outer mold 2 is equipped with a steam heating component 4. The inner mold 1 is supported from the inside of the folded neckline, and the outer mold 2 is snapped onto the outside of the folded neckline.

[0026] A fixed connection component 5 for positioning is also provided between the outer mold 2 and the inner mold 1;

[0027] Both the inner mold 1 and the outer mold 2 are made of flexible materials and have memory function.

[0028] The inner mold 1 and the outer mold 2 work together to easily shape the neckline. Then, the steam heating component 4 wets and heats the neckline fabric, softening it for easy reshaping. With the help of the electric heating component 3, not only is the neckline fabric heated to evaporate moisture, but the inner mold 1 and the outer mold 2 also quickly shape the neckline. At the same time, the steam and heat can be evenly applied to all parts of the neckline, ensuring the quality of the neckline shaping and facilitating the shaping process.

[0029] Among them, such as Figure 2 As shown:

[0030] The electric heating component 3 includes a graphene heating plate 31 disposed inside the inner mold 1. One end of the graphene heating plate 31 is connected to a connecting wire 32. The connecting wire 32 extends outward through the inner mold 1 and is connected to a controller 33. The graphene heating plate 31 is powered by the connecting wire 32, and then the graphene heating plate 31 heats up, causing the heat to diffuse outward and heat the fabric at the neckline, which facilitates the shaping of the fabric.

[0031] Furthermore, such as Figure 2-3 As shown:

[0032] The steam heating component 4 includes an external steam pipe 41. Multiple distribution boxes 42 connected to the inner cavity of the outer mold 2 are fixed on the outside of the outer mold 2. The steam pipe 41 is connected to the distribution box 42 in sequence. Multiple steam outlet slits 43 are opened on the inner side of the outer mold 2. A control valve 44 is installed on the steam pipe 41. External steam is introduced into the inner cavity of the outer mold 2 through the distribution box 42 via the steam pipe 41. Then, the steam is evenly sprayed outward through the steam outlet slits 43 in the inner cavity of the outer mold 2. This not only wets the collar fabric, but also softens the wetted fabric with high temperature.

[0033] Preferred, such as Figure 4 As shown:

[0034] The fixed connection component 5 includes a first magnet block 51 embedded inside the inner mold 1 and a second magnet block 52 embedded inside the outer mold 2. The magnetic poles of the first magnet block 51 and the second magnet block 52 are opposite at their opposite ends. The cooperation of the first magnet block 51 and the second magnet block 52 facilitates the positioning and adsorption of the inner mold 1 and the outer mold 2, and is used to clamp and fix the collar.

[0035] It is worth noting that, such as Figure 2 As shown:

[0036] The inner mold 1 is provided with a fixing ring 6 at its end, and a traction rope 7 is inserted into the fixing ring 6. The tension of the traction rope 7 at the opening of the inner mold 1 is controlled by an adjuster 8. The traction rope 7 and the adjuster 8 make it easy to adjust the distance between the two ends of the inner mold 1, thereby adjusting the size of the inner mold 1. This makes it easy to use the inner mold 1 to fine-tune the neckline, making the neckline more upright after shaping.

[0037] In a further preferred embodiment, such as Figure 2-3 As shown:

[0038] The inner mold 1 has through holes 10 at both ends. A pin 9 is provided on one side of the through hole 10. One side of the pin 9 passes through the through hole 10 and is fixedly connected to the inner side of the outer mold 2. The pin 9 facilitates the hinge connection between the inner mold 1 and the outer mold 2. After the inner mold 1 is inserted from the outside of the neckline, the outer mold 2 is snapped onto the outside of the neckline and the inner mold 1 by folding.

[0039] In practical use, the neckline can be folded upright first, then the inner mold 1 can be placed on the outside of the neckline, and then the neckline can be folded over and attached to the inner mold 1. Then, the outer mold 2 can be rotated so that the outer mold 2 is snapped onto the outside of the neckline. At the same time, the inner mold 1 and the outer mold 2 are attracted by the first magnet 51 and the second magnet 52 to clamp the neckline. Then, the external steam is controlled by the control valve 44 to enter the distribution box 42 along the steam pipe 41 and then enter the inner cavity of the outer mold 2. It is sprayed onto the neckline from the steam outlet 43, which not only wets the neckline but also softens the fabric at high temperature, making it easier to shape. After the steam spraying has been for a period of time, the steam supply is stopped. Then, the graphene heating plate 31 is powered by the controller 33, so that the graphene heating plate 31 radiates heat outward, heating the fabric from the other side of the neckline. As the temperature rises, the neckline gradually dries. At the same time, under the clamping of the inner mold 1 and the outer mold 2, the neckline is reshaped.

[0040] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A garment neck shaping device, characterized by, include: Inner mold (1) and outer mold (2); The inner mold (1) is provided with an electric heating component (3), and the outer mold (2) is provided with a steam heating component (4). The inner mold (1) is supported from the inside of the folded neckline, and the outer mold (2) is snapped onto the outside of the folded neckline. A fixed connection component (5) for positioning is also provided between the outer mold (2) and the inner mold (1).

2. A garment neck shaping device according to claim 1, wherein: The electric heating assembly (3) includes a graphene heating plate (31) disposed inside the inner mold (1). One end of the graphene heating plate (31) is connected to a connecting line (32). The connecting line (32) extends outward through the inner mold (1) and is connected to a controller (33).

3. A garment neck shaping device according to claim 1, wherein: The steam heating assembly (4) includes an external steam pipe (41). Multiple sets of diversion boxes (42) connected to the inner cavity of the outer mold (2) are fixed on the outside of the outer mold (2). The steam pipe (41) is connected to the diversion box (42) in sequence. Multiple sets of steam outlet slits (43) are opened on the inner side of the outer mold (2). A control valve (44) is provided on the steam pipe (41).

4. A garment neck shaping device according to claim 1, wherein: The fixed connection assembly (5) includes a first magnet block (51) embedded inside the inner mold (1) and a second magnet block (52) embedded inside the outer mold (2). The magnetic poles of the first magnet block (51) and the second magnet block (52) are opposite at opposite ends.

5. A garment neck shaping device according to claim 1, wherein: The end of the inner mold (1) is provided with a fixing ring (6), and a traction rope (7) is inserted inside the fixing ring (6). The tension of the traction rope (7) at the opening of the inner mold (1) is controlled by an adjuster (8).

6. A garment neck shaping arrangement according to claim 1, characterised in that: The inner mold (1) has through holes (10) at both ends. A pin (9) is provided on one side of the through hole (10). One side of the pin (9) passes through the through hole (10) and is fixedly connected to the inner side of the outer mold (2).