KR200427389Y1 - The apparatus for manufacturing and thread with edge luminescent layer - Google Patents

The apparatus for manufacturing and thread with edge luminescent layer Download PDF

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KR200427389Y1
KR200427389Y1 KR2020060019173U KR20060019173U KR200427389Y1 KR 200427389 Y1 KR200427389 Y1 KR 200427389Y1 KR 2020060019173 U KR2020060019173 U KR 2020060019173U KR 20060019173 U KR20060019173 U KR 20060019173U KR 200427389 Y1 KR200427389 Y1 KR 200427389Y1
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South Korea
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luminous
photoluminescent
nozzle
chemical fiber
melt
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KR2020060019173U
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Korean (ko)
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최병태
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최병태
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    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01DMECHANICAL METHODS OR APPARATUS IN THE MANUFACTURE OF ARTIFICIAL FILAMENTS, THREADS, FIBRES, BRISTLES OR RIBBONS
    • D01D11/00Other features of manufacture
    • D01D11/06Coating with spinning solutions or melts
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01DMECHANICAL METHODS OR APPARATUS IN THE MANUFACTURE OF ARTIFICIAL FILAMENTS, THREADS, FIBRES, BRISTLES OR RIBBONS
    • D01D4/00Spinnerette packs; Cleaning thereof
    • D01D4/06Distributing spinning solution or melt to spinning nozzles

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Textile Engineering (AREA)
  • Spinning Methods And Devices For Manufacturing Artificial Fibers (AREA)

Abstract

본 고안은 축광 혹은 야광기능을 가진 실에 관련되며, 구성에 특징을 살펴보면, 화학섬유원료(F1)를 용융한 상태로 주입시키는 제1압출기(E1)에 연결되어 화학섬유용융액(F2)을 방사하는 제1압출공(12)이 중앙에 형성되는 제1노즐(10); 축광 혹은 야광성발광원료(R1)를 용융한 상태로 주입시키는 제2압출기(E2)에 연결되고, 상기 제1노즐(10)을 수용한 상태로 이격되는 제2압출공(22)을 통하여 축광 혹은 야광성발광용융액(R2)이 방사되는 제2노즐(20);을 포함하여 이루어지는 것을 특징으로 한다.The present invention relates to a yarn having a photoluminescent or luminous function, and in terms of its configuration, it is connected to a first extruder (E1) for injecting a chemical fiber material (F1) in a molten state to radiate a chemical fiber melt (F2). A first nozzle 10 having a first extrusion hole 12 formed at the center thereof; The photoluminescent light is connected to a second extruder E2 for injecting the photoluminescent or luminous luminescent material R1 in a molten state, and the second photoluminescent light 22 is spaced apart from the first nozzle 10 in a state where the first nozzle 10 is accommodated. Or a second nozzle 20 through which the luminous luminescent solution R2 is radiated.

이에 따라, 이중 노즐을 이용하여 화학섬유원료를 압출함과 동시에 가장자리에 축광 혹은 야광 코팅층을 일체로 형성시킴에 따라 이분화된 제조공정을 복합적으로 수행하여 제조공정의 단순화로 생산성이 향상되고, 특히 축광 혹은 야광 코팅층이 일정한 두께로 얇게 코팅되어 발광성능이 전체적으로 균일하게 유지됨은 물론 정량의 재료사용으로 제조원가 절감을 도모하는, 효과가 있다.As a result, by simultaneously extruding the chemical fiber raw material using a double nozzle and simultaneously forming a photoluminescent or luminous coating layer on the edge, the production process is improved by simplifying the manufacturing process by performing a bisected manufacturing process. The photoluminescent or luminous coating layer is thinly coated to a certain thickness, so that the luminous performance is maintained uniformly as well as to reduce the manufacturing cost by using a quantitative material.

화학섬유원료, 축광 혹은 야광성발광원료, 용융액, 노즐, 압출기 Chemical fiber materials, photoluminescent or luminous materials, melts, nozzles, extruders

Description

가장자리에 축광 혹은 야광 코팅층이 형성된 실의 제조장치 및 그 실{The apparatus for manufacturing and thread with edge luminescent layer}The apparatus for manufacturing a thread having a photoluminescent or luminous coating layer formed on the edge and the thread

도 1은 본 고안에 따른 가장자리에 축광 혹은 야광 코팅층이 형성된 실의 제조장치를 간략하게 나타내는 개략도.1 is a schematic diagram schematically showing an apparatus for manufacturing a yarn in which a photoluminescent or luminous coating layer is formed at an edge according to the present invention;

도 2는 본 고안에 따른 가장자리에 축광 혹은 야광 코팅층이 형성된 실의 제조장치를 이용하여 제조된 실을 나타내는 구성도.Figure 2 is a block diagram showing a yarn manufactured using a device for manufacturing a yarn in which a photoluminescent or luminous coating layer is formed on the edge according to the present invention.

* 도면의 주요 부분에 대한 부호 설명 *Explanation of symbols on the main parts of the drawings

10 : 제1노즐 12: 제1압출공 20: 제2노즐10: first nozzle 12: first extrusion hole 20: second nozzle

22: 제2압출공 22: second extrusion hole

본 고안은 가장자리에 축광 혹은 야광 코팅층이 형성된 실의 제조장치 및 그 실에 관한 것으로서, 보다 상세하게는 이중 노즐을 이용하여 화학섬유원료를 압출함과 동시에 가장자리에 축광 혹은 야광 코팅층을 일체로 형성시킴에 따라 이분화된 제조공정을 복합적으로 수행하여 제조공정의 단순화로 생산성이 향상되고, 특히 축광 혹은 야광 코팅층이 일정한 두께로 얇게 코팅되어 발광성능이 전체적으로 균 일하게 유지됨은 물론 정량의 재료사용으로 제조원가 절감을 도모하는 가장자리에 축광 혹은 야광 코팅층이 형성된 실의 제조장치 및 그 실에 관한 것이다.The present invention relates to a device for manufacturing a yarn having a photoluminescent or luminous coating layer formed on the edge thereof, and more particularly, to extrude a chemical fiber material using a double nozzle and simultaneously form a photoluminescent or luminous coating layer on the edge. The production process is improved by simplifying the manufacturing process by combining the dividing manufacturing process according to the above. In particular, the photoluminescent or luminous coating layer is thinly coated with a constant thickness, so that the overall luminescence performance is maintained uniformly and manufacturing cost is due to the use of quantitative materials. The present invention relates to a yarn manufacturing apparatus and a yarn in which a photoluminescent or luminous coating layer is formed at an edge for saving.

통상적으로 축광 혹은 야광기능을 가진 실은 주간에 자연광이나 야간에 조명 빛을 흡수하여 축적하였다가 야간에 어두운 곳에서 발광하여 시각적인 효과를 극대화하는 특성을 가지므로 의류, 모자, 액세서리, 가방, 심지어 가발에까지 적용되어 개성을 중요시하는 패션계통에 다양하게 적용되고 있다.In general, a thread having a luminous or luminous function absorbs and accumulates natural light at night or light at night, and then emits light in a dark place at night to maximize the visual effect, so clothing, hats, accessories, bags, and even wigs It has been applied to various fashion systems that emphasize individuality.

이에 업계에서는 발광성능(예컨대, 발광 휘도(輝度), 발광지속시간 등)이 우수한 축광 혹은 야광기능을 가진 실을 끊임없이 연구개발하고 있는바, 일반적으로 축광 혹은 야광기능을 가진 실을 제조하는 과정을 간략하게 설명하면, 먼저 축광 혹은 야광성 발광체와 화학섬유 원료를 혼합기를 이용하여 일정한 비율로 혼합하는 제1 공정, 제1 공정에서 혼합된 축광 혹은 야광성 발광원료와 화학섬유원료를 압출기를 이용하여 용융방사하는 제2 공정, 제2 공정에서 얻어진 축광 혹은 야광섬유를 합사하는 제3 공정으로 이루어진다.Therefore, the industry constantly researches and develops a yarn having a luminous or luminous function that has excellent luminous performance (e.g., a luminous brightness, duration of light emission, etc.). Briefly, first, the first step of mixing the photoluminescent or luminous luminescent material and the chemical fiber raw material at a constant ratio using a mixer, the extruder is used to mix the photoluminescent or luminous luminescent raw material and the chemical fiber raw material in the first step It consists of a 2nd process of melt spinning, and the 3rd process of weaving the photoluminescent or luminous fiber obtained by the 2nd process.

즉, 제조공정 중 제1, 2공정을 통하여 축광 혹은 야광성 발광체와 화학섬유 원료가 혼합된 축광 혹은 야광섬유를 미리 용융방사하여 축광 혹은 야광섬유를 제조하고, 이후 제3 공정을 통하여 축광 혹은 야광섬유와 화학섬유를 합사하는 공정을 거쳐 축광 혹은 야광기능을 가진 실이 제조됨에 따라 제조공정의 다분화로 생산성이 저하되고, 특히 제3 공정에서 축광 혹은 야광섬유가 화학섬유와 합사되면서 꼬여져 축광 혹은 야광섬유가 부분적으로 노출되므로 발광 휘도(輝度)가 불균일한 실정이다.That is, during the manufacturing process, the photoluminescent or luminous fiber in which the photoluminescent or luminous luminescent material and the chemical fiber raw material are mixed is melt-discharged in advance to manufacture the photoluminescent or luminous fiber, and then the photoluminescent or luminous is performed through the third process. As the yarn with luminous or luminous function is manufactured through the process of weaving fibers and chemical fibers, productivity decreases due to the diversification of the manufacturing process. In particular, in the third process, the luminous or luminous fibers are twisted together with the chemical fibers and are thus luminous. Alternatively, the luminous brightness is partially exposed so that the luminance of light is not uniform.

뿐만 아니라, 상기 제조공정의 다분화로 인한 생산성 저하를 방지하기 위한 대책방안으로 축광 혹은 야광성 발광원료와 화학섬유원료를 일정 비율로 혼합한 다음 단일의 압출기를 이용하여 원하는 직경으로 용융방사하여 실을 제조하는 바, 이는 제조공정에 따른 단순화로 생산성이 향상되는 반면에, 발광 휘도를 균일하게 유지하기 위해서 축광 혹은 야광성 발광원료와 화학섬유원료의 혼합비를 1:1정도에 가깝도록 축광 혹은 야광성 발광원료를 과다하게 투입해야하므로 재료비의 과다소모는 물론 축광 혹은 야광성 발광원료의 과다함유로 인해 실의 품질이 저하되는 폐단이 따른다. In addition, as a countermeasure for preventing productivity degradation due to the diversification of the manufacturing process, the photoluminescent or luminous luminescent material and the chemical fiber material are mixed at a predetermined ratio, and then melt-spun into a desired diameter using a single extruder to seal the yarn. This is because the productivity is improved by the simplification according to the manufacturing process, while in order to maintain the luminescence brightness uniformly, the ratio of the luminous or luminous luminous material and the chemical fiber raw material is adjusted to about 1: 1. Since the photoluminescent raw material must be excessively input, excessive consumption of material costs is caused, and the quality of the yarn is deteriorated due to the excessive content of the luminous or luminous luminous material.

한편, 상기 전술하는 제조고정의 다분화 및 발광 휘도의 불균일에 따른 단점을 해소하기 위해 축광 혹은 야광성 발광체를 용해시켜 화학섬유의 표면에 도포하는 방법으로 축광 혹은 야광기능을 가진 실을 간편하게 제조하고 있지만, 이 또한 축광 혹은 야광성 발광체 용액이 화학섬유의 표면에 불균일한 두께로 코팅되거나 도포되는 중에 과다손실이 발생되어 재료비의 추가비용이 불필요하게 발생되므로 제품의 품질에 비해 제조단가가 상당히 고가인 폐단이 따른다.On the other hand, in order to solve the disadvantages caused by the above-mentioned diversification of the manufacturing fixing and non-uniformity of luminescence brightness, by simply dissolving the photoluminescent or luminous luminescent material and coating on the surface of the chemical fiber, the yarn having a luminous or luminous function is easily prepared. However, this also causes excessive loss while the phosphorescent or luminous luminescent solution is coated or coated on the surface of chemical fiber with non-uniform thickness, so that the additional cost of material cost is unnecessary. Followed by closure.

이에 따라 본 고안은 상기한 점에 착안하여 안출한 것으로서, 보다 상세하게는 이중 노즐을 이용하여 화학섬유원료를 압출함과 동시에 가장자리에 축광 혹은 야광 코팅층을 일체로 형성시킴에 따라 이분화된 제조공정을 복합적으로 수행하여 제조공정의 단순화로 생산성이 향상되고, 특히 축광 혹은 야광 코팅층이 일정한 두께로 얇게 코팅되어 발광성능이 전체적으로 균일하게 유지됨은 물론 정량의 재료사 용으로 제조원가 절감을 도모하는 가장자리에 축광 혹은 야광 코팅층이 형성된 실의 제조장치 및 그 실을 제공하는 것을 그 목적으로 한다.Accordingly, the present invention has been devised in view of the above points, and more specifically, the process of dividing the chemical fiber raw material by using a double nozzle and simultaneously forming a photoluminescent or luminous coating layer on the edge is divided into two parts. To improve productivity by simplifying the manufacturing process, especially the photoluminescent or luminous coating layer is thinly coated to a certain thickness, so that the luminous performance is kept uniform throughout and the manufacturing cost is reduced at the edge of the manufacturing cost. Another object is to provide an apparatus for producing a yarn having a luminous coating layer formed thereon and the yarn.

이러한 목적을 달성하기 위해 본 고안은 축광 혹은 야광기능을 가진 실의 제조장치에 있어서: 화학섬유원료(F1)를 용융한 상태로 주입시키는 제1압출기(E1)에 연결되어 화학섬유용융액(F2)을 방사하는 제1압출공(12)이 중앙에 형성되는 제1노즐(10); 축광 혹은 야광성발광원료(R1)를 용융한 상태로 주입시키는 제2압출기(E2)에 연결되고, 상기 제1노즐(10)을 수용한 상태로 이격되는 제2압출공(22)을 통하여 축광 혹은 야광성발광용융액(R2)이 방사되는 제2노즐(20);을 포함하여 이루어지는 것을 특징으로 한다.In order to achieve the above object, the present invention provides a device for manufacturing a yarn having a photoluminescent or luminous function: a chemical fiber melt (F2) connected to a first extruder (E1) for injecting a chemical fiber material (F1) in a molten state; A first nozzle 10 having a first extrusion hole 12 radiating the central portion; The photoluminescent light is connected to a second extruder E2 for injecting the photoluminescent or luminous luminescent material R1 in a molten state, and the second photoluminescent light 22 is spaced apart from the first nozzle 10 in a state where the first nozzle 10 is accommodated. Or a second nozzle 20 through which the luminous luminescent solution R2 is radiated.

그리고, 상기 제2노즐(20)을 통하여 방사되는 축광 혹은 야광성발광용융액(R2)이 제1노즐(10)을 통하여 방사되는 화학섬유용융액(F2)의 외주면에 일체로 코팅되어 축광 혹은 야광코팅층이 형성된 실에 본 고안의 다른 특징이 있다.In addition, the photoluminescent or luminous luminescent solution R2 radiated through the second nozzle 20 is integrally coated on the outer circumferential surface of the chemical fiber melt F2 radiated through the first nozzle 10 and the luminous or luminous coating layer This formed thread has other features of the present invention.

이하, 첨부된 도면을 참조하여 본 고안에 따른 바람직한 실시예를 상세하게 설명한다.Hereinafter, with reference to the accompanying drawings will be described in detail a preferred embodiment according to the present invention.

도 1은 본 고안에 따른 가장자리에 축광 혹은 야광 코팅층이 형성된 실의 제조장치를 간략하게 나타내는 개략도이고, 도 2는 본 고안에 따른 가장자리에 축광 혹은 야광 코팅층이 형성된 실의 제조장치를 이용하여 제조된 실을 나타내는 구성도이다.1 is a schematic diagram schematically showing a device for manufacturing a yarn having a photoluminescent or luminous coating layer formed on the edge of the present invention, and FIG. 2 is manufactured using an apparatus for manufacturing a yarn having a photoluminescent or luminous coating layer formed on the edge according to the present invention. It is a block diagram showing a thread.

본 고안은 가장자리에 축광 혹은 야광 코팅층이 형성된 실의 제조장치 및 그 실에 관련되며, 이때 축광 혹은 야광기능을 가진 실의 제조장치는 제1압출공(12)을 통하여 화학섬유용융액(F2)이 방사되는 제1노즐(10)과, 제1압출공(22)를 통하여 축광 혹은 야광성발광용융액(R2)이 방사되는 제2노즐(20)을 포함하여 구성되되, 여기서 제1노즐(10)은 제2노즐(20)의 제2압출공(22)에 수용되어 이격되도록 설치된다. 이에 제2노즐(20)을 통하여 방사되는 축광 혹은 야광성발광용융액(R2)이 제1노즐(10)을 통하여 방사되는 화학섬유용융액(F2)의 외주면에 일체로 코팅되어 축광 혹은 야광 코팅층이 형성된 실이 제조되는 것을 특징으로 한다.The present invention relates to a device for manufacturing a yarn having a photoluminescent or luminous coating layer formed on the edge thereof, and wherein the apparatus for manufacturing a yarn having a photoluminescent or luminous function has a chemical fiber melt (F2) through a first extrusion hole (12). And a second nozzle 20 through which the photoluminescent or luminous luminescent melt R2 is radiated through the first nozzle 10 to be radiated and the first extrusion hole 22, wherein the first nozzle 10 Is accommodated in the second extrusion hole 22 of the second nozzle 20 is installed to be spaced apart. The photoluminescent or luminous luminescent solution (R2) emitted through the second nozzle 20 is integrally coated on the outer circumferential surface of the chemical fiber melt (F2) emitted through the first nozzle 10 to form a photoluminescent or luminous coating layer. Characterized in that the yarn is made.

본 고안에 따른 제1노즐(10)은 화학섬유원료(F1)를 용융한 상태로 주입시키는 제1압출기(E1)에 연결되고, 화학섬유용융액(F2)을 방사하는 제1압출공(12)이 중앙에 형성된다. 제1노즐(10)은 전방으로 돌출된 상태로 끝단이 원뿔꼴로 경사지게 형성되고, 중앙에 제1압출공(12)이 관통된다. 제1압출공(12)은 화학섬유용융액(F2)이 주입되어 방사되는 유로로써, 후단이 제1압출기(E1)에 연결되어 화학섬유용융액이 공급된다. The first nozzle 10 according to the present invention is connected to the first extruder E1 for injecting the chemical fiber raw material F1 in a molten state, and the first extrusion hole 12 for spinning the chemical fiber melt F2. It is formed in the center. The end of the first nozzle 10 is formed to be inclined in a conical shape in a state of protruding forward, and the first extrusion hole 12 penetrates in the center thereof. The first extrusion hole 12 is a flow path through which the chemical fiber melt F2 is injected and radiated, and the rear end is connected to the first extruder E1 to supply the chemical fiber melt.

이때, 상기 제1압출기(E1)는 호퍼를 통하여 투입되는 화학섬유원료(F1)를 히팅하여 화학섬유용융액(F2)으로 용융시킨 다음 연속적으로 공급하는 장치로써, 제1노즐(10)의 제1압출공(12)과 인접한 위치에 설치되어 화학섬유용융액(F2)을 일정한 압력으로 주입한다.In this case, the first extruder (E1) is a device for heating the chemical fiber raw material (F1) introduced through the hopper to melt the chemical fiber melt (F2) and then continuously supply, the first nozzle of the first nozzle (10) It is installed in the position adjacent to the extrusion hole 12 and the chemical fiber melt (F2) is injected at a constant pressure.

또한, 본 고안에 따른 제2노즐(20)은 축광 혹은 야광성발광원료(R1)를 용융한 상태로 주입시키는 제2압출기(E2)에 연결되고, 상기 제1노즐(10)을 수용한 상태로 이격되는 제2압출공(22)을 통하여 축광 혹은 야광성발광용융액(R2)이 방사된다. 제2노즐(20)은 상기 제1노즐(10)을 수용하도록 중앙부에 제2압출공(22)이 형성되는 바, 이때 제2압출공(22)은 도 1과 같이 제1노즐(10)이 삽입된 상태로 소정의 간격으로 이격되도록 형성되고, 일단에 연결되는 제2압출기(E2)를 통하여 축광 혹은 야광성발광용액(R2)이 공급된다.In addition, the second nozzle 20 according to the present invention is connected to the second extruder E2 for injecting the photoluminescent or luminous luminescent material R1 in a molten state, and accommodates the first nozzle 10. The photoluminescent or luminous luminescent melt R2 is radiated through the second extrusion holes 22 spaced apart from each other. The second nozzle 20 has a second extrusion hole 22 is formed in the center portion to accommodate the first nozzle 10, wherein the second extrusion hole 22 is the first nozzle 10 as shown in FIG. It is formed to be spaced apart at predetermined intervals in the inserted state, and the photoluminescent or luminous luminescent solution R2 is supplied through the second extruder E2 connected to one end.

여기서, 상기 제2압출기(E2)는 상기 전술한 제1압출기(E1)와 동일하게 호퍼를 통하여 투입되는 축광 혹은 야광성발광원료(R1)를 히팅하여 축광 혹은 야광성발광용융액(R2)으로 용융시키면서 공급하는 장치로써, 제2노즐(20)의 제2압출공(22)과 인접한 위치에 설치되어 화학섬유용융액(F2)을 일정한 압력으로 주입한다.Here, the second extruder (E2) is melted by the photoluminescent or luminous luminescent melt (R2) by heating the photoluminescent or luminous luminescent material (R1) introduced through the hopper in the same manner as the first extruder (E1) described above As a device for supplying while supplying, the chemical fiber melt (F2) is injected at a constant pressure and installed at a position adjacent to the second extrusion hole 22 of the second nozzle 20.

한편, 상기 제1노즐(10)을 수용하는 제2압출공(22)의 선단부는 원뿔꼴로 경사지되, 여기서 제1노즐(10)의 선단부와 제2압출공(22)사이의 이격된 간격은 화학섬유용융액(F2)의 외주면에 코팅되는 축광 혹은 야광성발광용융액(R2)의 두께와 직결되므로 미리 축광 혹은 야광기능을 가진 실의 축광 혹은 야광코팅층 두께를 고려하여 이에 적합한 사이즈로 제1노즐(10)의 선단부와 제2압출공(22)사이의 간격을 이격시키는 것이 바람직하다. On the other hand, the tip end portion of the second extrusion hole 22 for accommodating the first nozzle 10 is inclined in a conical shape, where the spaced apart distance between the tip portion of the first nozzle 10 and the second extrusion hole 22 Directly connected to the thickness of the photoluminescent or luminous luminescent melt (R2) coated on the outer circumferential surface of the chemical fiber melt (F2) in consideration of the thickness of the luminous or luminous coating layer of the yarn having a luminous or luminous function in advance, the first nozzle ( It is preferable to space the interval between the tip portion of 10) and the second extrusion hole 22.

이때, 상기 제2노즐(20)을 통하여 방사되는 축광 혹은 야광성발광용융액(R2)이 제1노즐(10)을 통하여 방사되는 화학섬유용융액(F2)의 외주면에 일체로 코팅되어 축광 혹은 야광코팅층이 형성된다. 제1, 2압출기(E1)(E2)에서 용융된 화학섬유용융액(F2)과 축광 혹은 야광성발광용융액(R2)이 별도의 노즐 즉, 제1, 2노즐(10)(20)의 제1, 2압출공(12)(22)을 통하여 독립적으로 방사되되, 이때 제1노즐(10)이 제2노즐(20)의 제2압출공(22)내부에 수용된 상태로 설치되어 제1압출 공(12)을 통하여 중앙부에서 화학섬유용융액(F2)이 방사되면서 제2압출공(22)을 통하여 방사되는 축광 혹은 야광성발광용융액(R2)이 외주면에 코팅되어 축광 혹은 야광코팅층이 형성된다.At this time, the photoluminescent or luminous luminescent melt (R2) emitted through the second nozzle 20 is integrally coated on the outer circumferential surface of the chemical fiber melt (F2) radiated through the first nozzle (10) to the luminous or luminous coating layer Is formed. The chemical fiber melt (F2) melted in the first and second extruders (E1) (E2) and the photoluminescent or luminous luminescent melt (R2) are separate nozzles, that is, the first of the first and second nozzles (10) (20). Independently radiated through the second extrusion hole 12, 22, wherein the first nozzle 10 is installed in the state of being accommodated in the second extrusion hole 22 of the second nozzle 20, the first extrusion ball Chemical fiber melt (F2) is emitted from the central portion through the (12) while the photoluminescent or luminous luminescent melt (R2) is radiated through the second extrusion hole 22 is coated on the outer peripheral surface to form a luminous or luminous coating layer.

이처럼, 상기 화학섬유용융액(F2)과 축광 혹은 야광성발광용융액(R2)이 단일체로 형성된 제1, 2노즐(10)(20)을 통하여 방사됨에 따라 제조공정의 단순화로 생산성 및 제조단가가 절감됨은 물론 축광 혹은 야광성발광용융액(R2)이 제2압출공(22)을 통하여 균일한 두께로 축광 혹은 야광성발광용융액(R2)의 외주면에 코팅되어 발광성능이 전체적으로 균일하게 유지되는 이점이 있다.As such, the chemical fiber melt (F2) and the photoluminescent or luminous luminescent melt (R2) are radiated through the first and second nozzles (10, 20) formed as a single body, thereby reducing productivity and manufacturing cost by simplifying the manufacturing process. Of course, the photoluminescent or luminous luminescent melt (R2) is coated on the outer circumferential surface of the luminescent or luminous luminescent melt (R2) with a uniform thickness through the second extrusion hole 22, so that the luminous performance is maintained uniformly as a whole. .

이상의 구성 및 작용에 의하면, 본 고안은 이중 노즐을 이용하여 화학섬유원료를 압출함과 동시에 가장자리에 축광 혹은 야광 코팅층을 일체로 형성시킴에 따라 이분화된 제조공정을 복합적으로 수행하여 제조공정의 단순화로 생산성이 향상되고, 특히 축광 혹은 야광 코팅층이 일정한 두께로 얇게 코팅되어 발광성능이 전체적으로 균일하게 유지됨은 물론 정량의 재료사용으로 제조원가 절감을 도모하는, 유용한 효과가 있다.According to the above configuration and operation, the present invention simplifies the manufacturing process by performing a bipartite manufacturing process by extruding chemical fiber raw material using a double nozzle and simultaneously forming a photoluminescent or luminous coating layer on the edge. The productivity is improved, and in particular, the photoluminescent or luminous coating layer is thinly coated to a certain thickness, thereby maintaining the overall uniformity of the luminous performance and reducing the manufacturing cost by using a quantitative material.

Claims (2)

축광 혹은 야광기능을 가진 실의 제조장치에 있어서:In the apparatus for manufacturing yarns with luminous or luminous function: 화학섬유원료(F1)를 용융한 상태로 주입시키는 제1압출기(E1)에 연결되고, 화학섬유용융액(F2)을 방사하는 제1압출공(12)을 구비한 제1노즐(10);A first nozzle 10 connected to the first extruder E1 for injecting the chemical fiber raw material F1 in a molten state and having a first extrusion hole 12 for spinning the chemical fiber melt F2; 축광 혹은 야광성발광원료(R1)를 용융한 상태로 주입시키는 제2압출기(E2)에 연결되고, 제 2압출공(22)을 통해서 축광 혹은 야광성발광용융액(R2)을 방사하되, 제 2압출공(22)의 중심에 상기 제1노즐(10)의 제 1압출공(12) 종단이 위치되어 화학섬유용융액(F2)의 외주에 축광 혹은 야광성발광용융액(R2)을 방사하는 제2노즐(20);을 포함하여 이루어지는 것을 특징으로 하는 가장자리에 축광 혹은 야광 코팅층이 형성된 실의 제조장치.Is connected to the second extruder (E2) for injecting the photoluminescent or luminous luminescent material (R1) in a molten state, and emits the photoluminescent or luminous luminescent melt (R2) through the second extrusion hole 22, the second A second end of the first extrusion hole 12 of the first nozzle 10 is located at the center of the extrusion hole 22 to emit the photoluminescent or luminous luminescent melt (R2) to the outer circumference of the chemical fiber melt (F2) Nozzle 20; apparatus for manufacturing a yarn in which a photoluminescent or luminous coating layer is formed at the edge, characterized in that it comprises a. 제1항의 제조장치를 이용하여 제조되고,Manufactured using the manufacturing apparatus of claim 1, 상기 제2노즐(20)을 통하여 방사되는 축광 혹은 야광성발광용융액(R2)이 제1노즐(10)을 통하여 방사되는 화학섬유용융액(F2)의 외주면에 일체로 코팅되는 것을 특징으로 하는 가장자리에 축광 혹은 야광 코팅층이 형성된 실.The photoluminescent or luminous luminescent melt (R2) emitted through the second nozzle 20 is integrally coated on the outer circumferential surface of the chemical fiber melt (F2) emitted through the first nozzle (10) Seal with luminous or luminous coating layer
KR2020060019173U 2006-07-14 2006-07-14 The apparatus for manufacturing and thread with edge luminescent layer KR200427389Y1 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101119049B1 (en) * 2008-07-10 2012-02-21 윤미숙 A manufacturing process for noctilucence of thread
WO2012109242A2 (en) * 2011-02-07 2012-08-16 Fiberio Technology Corporation Devices and methods for the production of coaxial microfibers and nanofibers
WO2013039270A1 (en) * 2011-09-15 2013-03-21 Jeong Sin Sik High strength functional yarn and method of manufacturing same

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101119049B1 (en) * 2008-07-10 2012-02-21 윤미숙 A manufacturing process for noctilucence of thread
WO2012109242A2 (en) * 2011-02-07 2012-08-16 Fiberio Technology Corporation Devices and methods for the production of coaxial microfibers and nanofibers
WO2012109242A3 (en) * 2011-02-07 2012-12-06 Fiberio Technology Corporation Devices and methods for the production of coaxial microfibers and nanofibers
WO2013039270A1 (en) * 2011-09-15 2013-03-21 Jeong Sin Sik High strength functional yarn and method of manufacturing same

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