Clothing manufacturing device
By introducing a wetting mechanism and a two-layer ironing mechanism into the garment manufacturing device, the moisture conduction heat into the inside of the fabric is used to solve the problem that large-thickness fabrics are difficult to iron deeply, achieving efficient and stable ironing effect and improving production efficiency.
Patent Information
- Application Number
- CN202421803885.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-07-29
AI Technical Summary
Existing ironing devices are difficult to deep ironing of large thickness fabrics, resulting in surface ironing completion and internal unironing or internal unironing, affecting cutting and subsequent garment manufacturing.
A garment manufacturing device is designed, including a wetting mechanism and a two-layer ironing mechanism. Through the wetting mechanism, moisture enters the inside of the fabric, and conducts heat to the inside of the fabric by capillary effect. Combined with the two-layer ironing mechanism, the heat penetrates deep into the inside of the fabric and stretches the fibers.
It realizes efficient, continuous and stable ironing of thick fabrics, ensuring that the fabric meets processing requirements, improving production efficiency and reducing labor costs.
Smart Images

Figure CN223074430U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of clothing manufacturing, in particular to a clothing manufacturing device. Background Art
[0002] With the development of the clothing manufacturing industry, the requirements for fabric processing are gradually increasing, especially in the initial ironing of fabrics. For some thicker fabrics, multiple ironing procedures are required to achieve the flatness required for cutting. When ironing thicker fabrics, the heat is often only on the surface and it is difficult to penetrate into the interior, which will cause the surface fabric to melt or even carbonize, while the deeper fabrics are ironed, or the deeper fabrics are difficult to iron. The ironing of thicker fabrics is of vital importance for cutting and subsequent clothing manufacturing. However, the existing ironing devices still have some deficiencies in ironing thicker fabrics. For example, the patent with publication number CN208777033U discloses an ironing device for clothing processing, which has the following deficiencies in the ironing field: it is difficult to deeply iron thicker fabrics. Utility Model Content
[0003] 1. Technical issues to be resolved
[0004] In view of the deficiencies of the prior art, the utility model aims to provide a clothing manufacturing device that solves the problems existing in the prior art. Through a carefully designed wetting mechanism, water can be allowed to wet the inside of the thick cloth, and then through ironing by two layers of ironing mechanisms, heat is conducted to the inside of the cloth through the water, making the fibers inside the cloth more stretched, and achieving efficient, continuous and stable ironing of the thick cloth, ensuring that the cloth meets the next processing requirements.
[0005] (II) Technical solution
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a clothing manufacturing device, comprising a frame, a first conveying mechanism fixed inside the frame, a first transmission mechanism fixed on the side of the first conveying mechanism, a second conveying mechanism fixed inside the frame, a second transmission mechanism fixed on the side of the second conveying mechanism, a moistening mechanism fixed on the upper end of the frame, a first ironing mechanism fixed on the side of the moistening mechanism, and a second ironing mechanism fixed on the side of the first ironing mechanism;
[0007] The wetting mechanism comprises a first bearing seat fixed on the frame, a first bearing roller fixed on the inner side of the frame, a thorn roller fixed above the first bearing roller, a water spraying mechanism fixed on the left side of the thorn roller and a second bearing roller fixed below the water spraying mechanism.
[0008] Preferably, the water spraying mechanism includes a water spraying support fixed above the frame, a box body fixed on the left side of the water spraying support, and a spray head installed on the box body.
[0009] Preferably, the upper end of the box body is perpendicular to the ground, the lower end forms an angle of 45° with the ground, and both ends are fixed to both ends of the water spraying support.
[0010] Preferably, the thistle wheel drum is provided with thorns. The thorns are cones with a tip angle of 9° and a length of 1 mm, and the surface roughness of the thorns is Ra6.3.
[0011] Preferably, the second ironing mechanism includes a second bearing seat fixed on the side of the frame, a first heating drum fixed on the second bearing seat, a first variable bearing seat fixed on the side of the frame, and a second heating drum fixed on the first variable bearing seat.
[0012] Preferably, the first ironing mechanism includes an adjustable bearing seat fixed on the frame, a third heating drum fixed on the adjustable bearing seat, a second variable bearing seat fixed on the side of the frame, and a fourth heating drum fixed on the second variable bearing seat.
[0013] Preferably, the first variable bearing seat and the second variable bearing seat include a telescopic rod fixed on the frame, a bearing plate fixed at the other end of the telescopic rod, a spring fixed on the outside of the telescopic rod, and a third bearing seat fixed at the lower end of the bearing plate.
[0014] (III) Beneficial Effects
[0015] The purpose of the present utility model is to provide a clothing manufacturing device. This device can make the inside of thick fabric moist through capillary action, and then through the ironing of two layers of ironing mechanisms, the heat is conducted to the inside of the fabric through the moisture, making the fibers inside the fabric more stretched. It can achieve efficient, continuous, and stable ironing of thick fabric, ensure that the fabric meets the processing requirements of the next step, can operate continuously, improve production efficiency, and reduce labor costs. It is an innovative technology with broad application prospects. Brief Description of the Drawings
[0016] Figure 1 It is the overall schematic diagram of the present utility model.
[0017] Figure 2 It is the schematic diagram of the moistening mechanism in the present utility model.
[0018] Figure 3 It is the schematic diagram of the water spraying mechanism in the present utility model.
[0019] Figure 4 It is the schematic diagram of the thistle wheel drum in the present utility model.
[0020] Figure 5This is a schematic diagram of the ironing mechanism in the present utility model.
[0021] Figure 6 This is a schematic diagram of the variable bearing seat in the present utility model.
[0022] In the figure: 1 - frame, 2 - first conveying mechanism, 3 - first transmission mechanism, 4 - second conveying mechanism, 5 - second transmission mechanism, 6 - wetting mechanism, 601 - first bearing seat, 602 - first carrying roller, 603 - second carrying roller, 604 - thorn wheel roller, 6041 - spikes, 605 - water spraying mechanism, 6051 - water spraying bracket, 6052 - box body, 6053 - nozzle, 7 - second ironing mechanism, 701 - second bearing seat, 702 - first heating roller, 703 - first variable bearing seat, 7031 - spring, 7032 - bearing piece, 7033 - telescopic rod, 7034 - third bearing seat, 704 - second heating roller, 8 - first ironing mechanism, 801 - adjustable bearing seat, 802 - third heating roller, 803 - second variable bearing seat, 804 - fourth heating roller. Detailed implementation manners
[0023] Next, the technical solutions in the embodiments of the present utility model will be described clearly and completely in conjunction with the attached Figure 1-6 Drawings of the embodiments of the present utility model. It is obvious that the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0024] Such as Figure 1As shown in the figure, the present utility model provides a technical solution: a clothing manufacturing device, which is characterized by comprising a frame 1, a first conveying mechanism 2 fixed inside the frame 1, a first transmission mechanism 3 fixed on the side of the first conveying mechanism 2, a second conveying mechanism 4 fixed inside the frame 1, a second transmission mechanism 5 fixed on the side of the second conveying mechanism 4, a wetting mechanism 6 fixed at the upper end of the frame, a first ironing mechanism 8 fixed on the side of the wetting mechanism 6, and a second ironing mechanism 7 fixed on the side of the first ironing mechanism 8; there are three pairs of fixing ears at the upper end of the frame 1 for fixing the rollers above. The frame 1 is divided into two layers. The lower layer is used to fix the motors of the transmission mechanisms so that they do not occupy extra space, reducing the floor area of the device. The first conveying mechanism 2 is installed on the upper layer of the frame 1 and is used to convey the ironed fabric out. The conveyor belt material on this conveying device is alumina heat-conducting rubber, and this material has good heat-conducting performance. Below the first conveying device 2 passes through a heating roller, and good heat-conducting performance is required to ensure the normal progress of ironing. The first transmission mechanism 3 uses a chain to transfer the torque of the motor to the first conveying mechanism 2. The transmission of the chain can transfer a large torque and will not slip. The second conveying mechanism 4 is installed on the other side of the frame 1 and is used to convey the fabric to the wetting mechanism 6 for wetting. The second transmission mechanism 5 is connected to the second conveying mechanism 4 by a chain connection, and then connected to the carrying roller on the wetting mechanism 6 by a belt. For the second conveying mechanism 4, the fabric needs to be forcibly conveyed into the wetting mechanism 6, so a chain connection is adopted. There is no conveyor belt inside the wetting mechanism 6, and the rollers support the fabric. If the fabric gets stuck, it will cause damage to the motor, so a belt connection is adopted. The wetting mechanism 6 is used to send an appropriate amount of moisture into the deep layer of the fabric and also wet the surface of the fabric to facilitate the subsequent smooth ironing. The first ironing mechanism 8 is installed at the rear end of the wetting mechanism 6 and is used to heat the moisture on the surface and in the deep layer of the fabric, so that the fibers of the fabric are stretched. The second ironing mechanism 7, while taking into account the functions of the first ironing mechanism 8, mainly heats and evaporates the moisture in the fabric.
[0025] As Figure 2 shown, the wetting mechanism 6 includes a first bearing seat 601 fixed on the frame 1, a first carrying roller 602 fixed inside the frame 1, a thorn wheel roller 604 fixed above the first carrying roller 602, a water spraying mechanism 605 fixed on the left side of the thorn wheel roller 604, and a second carrying roller 603 fixed below the water spraying mechanism 605; the first bearing seats 601 are in groups of two, and there are three groups in total, jointly carrying the three rollers inside the wetting mechanism 6. The first carrying roller 602 is used to cooperate with the thorn wheel roller 604 to send moisture into the deep layer of the fabric. The thorn wheel roller 604 uses the thorns above it to generate a capillary effect, so that the water droplets sprayed by the water spraying mechanism 605 adhere to the thorns, and the moisture is sent into the deep layer of the fabric by piercing the thorns into the interior of the fabric. The second carrying roller 603 is used to send the wetted fabric out of the wetting mechanism 6 for the next step of ironing.
[0026] As shown Figure 3 in FIG. 1, the water spraying mechanism 605 includes a water spraying bracket 6051 fixed above the frame 1, a box body 6052 fixed on the left side of the water spraying bracket 6051, and a spray head 6053 mounted on the box body 6052; the water spraying bracket 6051 fixes the entire water spraying mechanism 605 on the frame 1, and the box body 6052 is used to temporarily store external moisture, pressurize it, and then spray it out through the spray head 6053, avoiding uneven water sizes sprayed by multiple spray heads 6053.
[0027] As shown Figure 3 in FIG. 2, the upper end of the box body 6052 is perpendicular to the ground, the lower end forms an angle of 45° with the ground, and both ends are fixed to both ends of the water spraying bracket 6051; the upper end is for fixing the spray head 6053 of the wetting spike roller 604, and the lower end is for fixing the spray head 6053 for spraying the surface of the fabric.
[0028] As shown Figure 4 in FIG. 3, the spike roller 604 is provided with spikes 6041. The spikes 6041 are cones with a tip angle of 9° and a length of 1 mm, and the surface roughness of the outside of the spikes 6041 is Ra6.3. The tip angle of the spikes 6041 is very small, and the length is slightly less than the thickness of the thick fabric, preventing the spikes 6041 from damaging the fabric when piercing into and pulling out of the fabric while sending moisture deep into the fabric. Moreover, the surface roughness of the spikes 6041 is relatively large, which can increase the capillary effect, enabling more moisture to accumulate on the spikes 6041.
[0029] As shown Figure 5 in FIG. 4, the second ironing mechanism 7 includes a second bearing seat 701 fixed on the side of the frame 1, a first heating roller 702 fixed on the second bearing seat 701, a first variable bearing seat 703 fixed on the side of the frame 1, and a second heating roller 704 fixed on the first variable bearing seat 703; there are a pair of second bearing seats 701 for carrying the first heating roller 702, and a pair of first variable bearing seats 703 for supporting the second heating roller 704. Moreover, the first variable bearing seat 703 can support the up and down movement of the second heating roller 704, capable of adapting to fabrics of different thicknesses passing through. The cooperation of the first heating roller 702 and the second heating roller 704 can basically evaporate the moisture in the fabric, enabling the fabric to be fully ironed.
[0030] As shown Figure 5As shown in the figure, the first ironing mechanism 8 includes an adjustable bearing block 801 fixed on the frame 1, a third heating roller 802 fixed on the adjustable bearing block 801, a second variable bearing block 803 fixed on the side of the frame 1, and a fourth heating roller 804 fixed on the second variable bearing block 803. The adjustable bearing blocks 801 are a pair used to support the third heating roller 802, enabling the front-back adjustment of the third heating roller 802, making the conveying of the whole device more smooth. The second variable bearing blocks 803 are a pair used to support the fourth heating roller 804, and the second variable bearing blocks 803 can support the up-and-down movement of the fourth heating roller 804, being able to adapt to fabrics of different thicknesses passing through. The third heating roller 802 and the fourth heating roller 804 cooperate with each other to perform preliminary ironing while transporting the fabric out of the wetting mechanism 6.
[0031] As Figure 6 shown in the figure, the first variable bearing block 703 and the second variable bearing block 803 include a telescopic rod 7033 fixed on the frame 1, a bearing plate 7032 fixed at the other end of the telescopic rod 7033, a spring 7301 fixed on the outer side of the telescopic rod 7033, and a third bearing block 7034 fixed at the lower end of the bearing plate 7032. The telescopic rod 7033 connects the frame 1 and the bearing plate, and can expand and contract according to the thickness of the fabric below. The bearing plate 7032 is used to fix the third bearing block 7034 below. The spring 7031 cooperates with the telescopic rod 7033, which can not only adjust the distance between the two heating rollers, but also fully press the fabric, enabling the fabric to be fully ironed. The third bearing block 7034 is used to carry the heating roller.
[0032] Working principle:
[0033] During the working process, first lay the fabric flat on the second conveying mechanism 4, and then start the motors of the first transmission mechanism 3 and the second transmission mechanism 5. At this time, the second conveying mechanism 4 drives the fabric to move forward. When it moves to the wetting mechanism 6, the spray head 6053 on the box body 6052 has wetted the thorn wheel roller 604. The thorn wheel roller 604 rotates to pierce the thorns 6041 into the fabric, and at the same time, water droplets are also sent into the fabric. The fabric enters the rear of the thorn wheel roller 604, and the spray head 6053 on the box body 6052 wets the surface of the fabric. After the surface of the fabric is wetted, through the heating and extrusion of the third and fourth heating rollers, the heat of the heating rollers enters the interior of the fabric through the conduction of water, enabling the fibers inside the fabric to stretch. Then, it is further ironed by the first and second heating rollers to evaporate the water in the fabric. Finally, the fabric is sent out by the first conveying mechanism 2 for the next step of production and manufacturing.
[0034] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. A clothing manufacturing device, characterized in that, It includes a frame (1), a first conveying mechanism (2) fixed inside the frame (1), a first transmission mechanism (3) fixed on the side of the first conveying mechanism (2), a second conveying mechanism (4) fixed inside the frame (1), a second transmission mechanism (5) fixed on the side of the second conveying mechanism (4), a wetting mechanism (6) fixed at the upper end of the frame, a first ironing mechanism (8) fixed on the side of the wetting mechanism (6), and a second ironing mechanism (7) fixed on the side of the first ironing mechanism (8). The wetting mechanism (6) includes a first bearing seat (601) fixed on the frame (1), a first carrier roller (602) fixed inside the frame (1), a spiked roller (604) fixed above the first carrier roller (602), a water spraying mechanism (605) fixed on the left side of the spiked roller (604), and a second carrier roller (603) fixed below the water spraying mechanism (605).
2. The garment manufacturing apparatus according to claim 1, characterized in that, The water spraying mechanism (605) includes a water spraying bracket (6051) fixed above the frame (1), a box body (6052) fixed on the left side of the water spraying bracket (6051), and a nozzle (6053) installed on the box body (6052).
3. A clothing manufacturing device according to claim 2, characterized in that, The upper end of the box body (6052) is perpendicular to the ground, the lower end forms an angle of 45° with the ground, and both ends are fixed to both ends of the water spraying bracket (6051).
4. A clothing manufacturing device according to claim 1, characterized in that, Spikes (6041) are arranged on the spiked roller (604). The spikes (6041) are cones with a terminal angle of 9° and a length of 1 mm, and the roughness of the outside of the spikes (6041) is Ra6.
3.
5. A clothing manufacturing device according to claim 1, characterized in that, The second ironing mechanism (7) includes a second bearing seat (701) fixed on the side of the frame (1), a first heating roller (702) fixed on the second bearing seat (701), a first variable bearing seat (703) fixed on the side of the frame (1), and a second heating roller (704) fixed on the first variable bearing seat (703).
6. A clothing manufacturing device according to claim 1, characterized in that, The first ironing mechanism (8) includes an adjustable bearing seat (801) fixed on the frame (1), a third heating roller (802) fixed on the adjustable bearing seat (801), a second variable bearing seat (803) fixed on the side of the frame (1), and a fourth heating roller (804) fixed on the second variable bearing seat (803).
7. An apparel manufacturing apparatus according to claim 5, characterized in that, The first variable bearing seat (703) and the second variable bearing seat (803) include a telescopic rod (7033) fixed on the frame (1), a bearing plate (7032) fixed at the other end of the telescopic rod (7033), a spring (7301) fixed on the outside of the telescopic rod (7033), and a third bearing seat (7034) fixed at the lower end of the bearing plate (7032).
Citation Information
Patent Citations
Ironing device for tailoring
CN208777033U