JPH1112844A - Spinneret device for spinning core-sheath conjugated hollow fiber - Google Patents

Spinneret device for spinning core-sheath conjugated hollow fiber

Info

Publication number
JPH1112844A
JPH1112844A JP16149797A JP16149797A JPH1112844A JP H1112844 A JPH1112844 A JP H1112844A JP 16149797 A JP16149797 A JP 16149797A JP 16149797 A JP16149797 A JP 16149797A JP H1112844 A JPH1112844 A JP H1112844A
Authority
JP
Japan
Prior art keywords
core
slit
sheath
hollow fiber
plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP16149797A
Other languages
Japanese (ja)
Inventor
Kouji Kanno
幸治 菅埜
Noboru Takahashi
登 高橋
Michinori Higuchi
徹憲 樋口
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Toray Industries Inc
Original Assignee
Toray Industries Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Toray Industries Inc filed Critical Toray Industries Inc
Priority to JP16149797A priority Critical patent/JPH1112844A/en
Publication of JPH1112844A publication Critical patent/JPH1112844A/en
Pending legal-status Critical Current

Links

Abstract

PROBLEM TO BE SOLVED: To provide a spinneret device for spinning a core-sheath conjugated hollow fiber without causing hollow breaking even when the melt viscosity of a core component polymer is higher than that of a sheath component polymer or a difference in polymer melt viscosity between a core and a sheath components is large. SOLUTION: This spinneret device for spinning a core-sheath conjugated hollow fiber comprises an independent polymer flow passage in any of introduction plates and is obtained by installing a discharge hole composed of three or more slits annularly arranged in a spinneret plate, forming the slits by combining circular arcs and locating the central point Q3 of the inner circular arc of the slits on the center line of the outer circular arc different from the central point Q2 of the outer circular arc in the spinneret device integrally composed in the upper and lower parts in the order of the upper introduction plate, the lower introduction plate and the spinneret plate.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、芯鞘中空複合繊維
紡糸用口金装置に関し、詳しくは、例えば低溶融粘度の
芯成分ポリマと高溶融粘度の鞘成分ポリマなど溶融粘度
の異なるポリマを用い芯鞘複合中空繊維とした場合に中
空割れの発生しない芯鞘複合中空繊維を操業性よく得る
ことができる芯鞘複合中空繊維用口金装置に関するもの
である。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a spinneret for spinning a core-sheath hollow composite fiber, and more particularly, to a core using polymers having different melt viscosities such as a low melt viscosity core component polymer and a high melt viscosity sheath component polymer. The present invention relates to a core-sheath composite hollow fiber spinneret capable of obtaining a core-sheath composite hollow fiber that does not cause hollow cracks when formed into a sheath composite hollow fiber with good operability.

【0002】[0002]

【従来の技術】従来より芯鞘複合中空繊維を製造する口
金装置は種々提案されており、例えば芯鞘多孔中空複合
繊維用紡糸口金においては、特開平7−292515号
公報にスリット型オリフィスを有する紡糸口金板におい
て、オリフィスを2つ以上の不連続部を介して環状に配
置された複数の外周スリットと各外周スリットの内縁長
の中心からオリフィスの中心側に突出する連結スリット
及び各連結スリットと連通する中心部スリットから構成
される芯鞘複合多孔中空繊維用口金板の提案がなされて
いる。この口金板は外周スリットと中心孔に連通する連
結スリットを有しているため、外周スリットと中心孔の
間の不連続部の支持が外周スリットの不連続部1カ所の
みの片支持となり高粘度ポリマによる圧力や繰り返し疲
労などで容易に口金板がひずみ易いなどの問題があり満
足のいく芯鞘複合中空繊維の操業性が達成されていな
い。
2. Description of the Related Art Conventionally, various spinnerets for producing core-sheath composite hollow fibers have been proposed. For example, a spinneret for core-sheath porous hollow composite fibers has a slit-type orifice as disclosed in JP-A-7-292515. In the spinneret plate, a plurality of outer circumferential slits arranged in a ring shape through two or more discontinuous portions and a connecting slit and each connecting slit projecting from the center of the inner edge length of each outer circumferential slit to the center side of the orifice; There has been proposed a base plate for a core-sheath composite porous hollow fiber composed of communicating central slits. Since this die plate has a connecting slit communicating with the outer peripheral slit and the center hole, the discontinuous portion between the outer peripheral slit and the center hole is supported only at one discontinuous portion of the outer peripheral slit, and high viscosity is achieved. There is a problem that the die plate is easily distorted due to pressure and repeated fatigue caused by the polymer, and satisfactory operability of the core-sheath composite hollow fiber has not been achieved.

【0003】また、特開平4−65507号公報には、
3層に積層された複合繊維の中心部に中空部を設けた繊
維を得るための紡糸口金装置の提案がなされている。こ
の紡糸口金装置では、各成分は、個々の導入孔より供給
され、口金板の原液入り口で2つの側部成分が中部成分
と合流された後、複合ポリマとして、複数の円弧スリッ
トからなる紡糸孔より吐出される。この場合、3成分の
ポリマが複合された状態で円弧スリットより吐出される
と同時に、円弧スリット外周方向へ屈折する現象(ニー
リング現象)を起こすため、近接する他の円弧スリット
より吐出されたポリマと接合することが難しくなり、中
空割れが発生するという問題があった。
[0003] Also, JP-A-4-65507 discloses that
There has been proposed a spinneret device for obtaining a fiber having a hollow portion at the center of a composite fiber laminated in three layers. In this spinneret, each component is supplied from an individual inlet, and two side components are merged with the middle component at the inlet of the undiluted solution of the spinneret, and then a spinning hole composed of a plurality of arc slits is formed as a composite polymer. It is discharged from. In this case, the polymer discharged from the arc slit at the same time as being discharged from the arc slit in a state in which the three component polymers are compounded causes a phenomenon (kneeling phenomenon) in which the polymer is refracted toward the outer periphery of the arc slit. There is a problem that joining becomes difficult and hollow cracks occur.

【0004】また、特開昭57−56512号公報にお
いても、低溶融粘度の芯成分と高溶融粘度の鞘成分ポリ
マを芯鞘複合流として吐出孔に導入した場合、円弧スリ
ットに芯成分ポリマが入り込み円弧スリットで前記同様
にニーリング現象が発生し中空割れの発生した繊維とな
り、操業性も低下するという問題があった。
Japanese Patent Application Laid-Open No. 57-56512 also discloses that when a core component having a low melt viscosity and a sheath component polymer having a high melt viscosity are introduced into a discharge hole as a core-sheath composite flow, the core component polymer is inserted into the arc slit. In the same manner as described above, a kneading phenomenon occurs in the encircling arc slit, resulting in a fiber having a hollow crack, and there is a problem that the operability is reduced.

【0005】[0005]

【発明が解決しようとする課題】本発明の目的は、従来
の芯鞘複合中空繊維用口金装置では成しえなかった芯鞘
複合中空繊維を製造することであり、詳しくは、芯成分
ポリマの溶融粘度が鞘成分ポリマの溶融粘度より低い場
合や芯成分と鞘成分のポリマの溶融粘度差が大きい場合
であっても中空割れを起こさない芯鞘複合中空繊維を操
業性よく製造するための芯鞘複合中空繊維用口金装置を
提供するものである。
SUMMARY OF THE INVENTION An object of the present invention is to produce a core-sheath composite hollow fiber which cannot be achieved by a conventional core-sheath composite hollow fiber spinneret. A core for producing a core-sheath composite hollow fiber which does not cause hollow cracking with good operability even when the melt viscosity is lower than the melt viscosity of the sheath component polymer or when the melt viscosity difference between the core component and the sheath component polymer is large. An object of the present invention is to provide a die device for a sheath composite hollow fiber.

【0006】[0006]

【課題を解決するための手段】本発明の目的は、上部導
入板、下部導入板、口金板の順序で上下に一体に構成さ
れた口金装置において、導入板のいずれにも独立したポ
リマ流路を有し、口金板において環状に配置された3個
以上のスリットからなる吐出孔を配置し、該スリットが
円弧を組み合わせてなるスリットであり、該スリットの
内円弧の中心点Q3が外円弧の中心線上にありかつ外円
弧の中心点Q2とは異なる中心点を持つことを特徴とし
た芯鞘複合中空繊維用口金装置(以下口金装置という)
により達成できる。
SUMMARY OF THE INVENTION It is an object of the present invention to provide a cap device having an upper plate, a lower plate, and a base plate, which are integrally formed vertically in this order. And a discharge plate comprising three or more slits arranged in an annular shape in the base plate. The slit is a slit formed by combining circular arcs, and the center point Q3 of the inner circular arc of the slit is the outer circular arc. A core-sheath composite hollow fiber cap device (hereinafter referred to as a cap device) having a center point on the center line and different from the center point Q2 of the outer arc.
Can be achieved by

【0007】[0007]

【発明の実施の形態】以下本発明を詳細に説明する。図
1は本発明の口金装置の一例を示す縦断面図である。図
2(a)、(b)、(c)、(d)は口金板に穿設され
た円弧を組み合わせてなるスリットからなる吐出孔の形
状の例を示す口金板の下面図である。図3は図2(b)
の吐出孔を形成する円弧を組み合わせてなるスリットの
形状および配置を説明するための口金板の模式図であ
る。
DESCRIPTION OF THE PREFERRED EMBODIMENTS The present invention will be described below in detail. FIG. 1 is a longitudinal sectional view showing an example of the die device of the present invention. FIGS. 2A, 2B, 2C, and 2D are bottom views of the base plate showing an example of the shape of a discharge hole formed of a slit formed by combining circular arcs formed in the base plate. FIG. 3 is FIG.
FIG. 4 is a schematic view of a base plate for explaining the shape and arrangement of slits formed by combining arcs forming discharge holes of FIG.

【0008】図1〜3において1は上部導入板、2は下
部導入板、3は口金板である。4は口金板3に穿設され
た円弧を組み合わせてなるスリット5からなる吐出孔で
ある。芯成分のポリマAは上部導入板1の供給孔6から
供給されて下部導入板2の供給孔8から口金板3に導入
され、鞘成分のポリマBは、上部導入板2の供給口7か
ら供給されて下部導入板2の供給孔9から供給されて口
金板3の背面で芯鞘複合流となり、円弧を組み合わせて
なるスリット5からなる吐出孔4から吐出される。この
ように、本発明の口金装置は、はじめに2種類のポリマ
を別々に供給してから下部導入板2の出口、つまり口金
板3の導入口で合体合流させ芯鞘複合流とし、さらに該
芯鞘複合流を口金板3の吐出孔5で複数のスリットに分
解して吐出させ、口金板直下で空気を取り込みながらポ
リマを接合させて中空複合繊維を形成する。以上、前記
したように芯鞘中空複合繊維を形成させるために上部導
入板1、下部導入板2、口金板3の順序で上下に一体に
構成した口金装置とする必要がある。
1 to 3, reference numeral 1 denotes an upper introduction plate, 2 denotes a lower introduction plate, and 3 denotes a base plate. Reference numeral 4 denotes a discharge hole formed of a slit 5 formed by combining circular arcs formed in the base plate 3. The core component polymer A is supplied from the supply hole 6 of the upper introduction plate 1 and introduced into the base plate 3 through the supply hole 8 of the lower introduction plate 2, and the polymer B of the sheath component is supplied from the supply port 7 of the upper introduction plate 2. It is supplied and supplied from the supply hole 9 of the lower introduction plate 2 to form a core-sheath composite flow on the back surface of the base plate 3, and is discharged from the discharge hole 4 composed of the slit 5 formed by combining arcs. As described above, the spinneret of the present invention first supplies two types of polymers separately, then merges at the outlet of the lower inlet plate 2, that is, at the inlet of the spinneret plate 3 to form a core-sheath composite flow. The sheath composite flow is decomposed into a plurality of slits at the discharge hole 5 of the base plate 3 and discharged, and the polymer is bonded while taking in air immediately below the base plate to form hollow composite fibers. As described above, in order to form the core-sheath hollow conjugate fiber, it is necessary to provide a base device which is integrally formed vertically in the order of the upper introduction plate 1, the lower introduction plate 2, and the base plate 3.

【0009】上部導入板1、下部導入板2、は一般的な
芯鞘複合口金装置で用いられる導入板を使用することが
出来るが芯成分ポリマ、鞘成分ポリマの流路が独立して
いることが必要である。
The upper introduction plate 1 and the lower introduction plate 2 can use the introduction plates used in a general core-sheath composite spinneret, but the flow paths of the core component polymer and the sheath component polymer are independent. is necessary.

【0010】下部導入板2には、芯成分供給孔8とその
周りに衛星孔である鞘成分供給孔9が穿設されているこ
とが好ましい。芯成分ポリマ供給孔8は異形孔でも丸孔
でもかまわないが好ましくは丸孔である。また、芯成分
ポリマ供給孔8の周りに配置された鞘成分ポリマ供給孔
9は安定した断面を得るため3個以上であることが好ま
しく、さらに好ましくは6個以上である。また、配置さ
れた複数の鞘成分供給孔9は複合横断面の中心部に芯成
分を位置させるために1孔当たりの吐出量を同じにする
ことが好ましく、そのため孔直径および孔深度が同一で
ある丸孔を点対称状、つまり同一軌道上に穿設すること
が好ましい。
It is preferable that the lower introduction plate 2 is provided with a core component supply hole 8 and a sheath component supply hole 9 which is a satellite hole around the core component supply hole 8. The core component polymer supply hole 8 may be a modified hole or a round hole, but is preferably a round hole. Further, the number of the sheath component polymer supply holes 9 arranged around the core component polymer supply hole 8 is preferably three or more, more preferably six or more, for obtaining a stable cross section. In addition, it is preferable that the plurality of sheath component supply holes 9 arranged have the same discharge amount per hole in order to locate the core component in the center of the composite cross section, so that the hole diameter and the hole depth are the same. It is preferable that a certain round hole is formed in a point symmetric shape, that is, on the same track.

【0011】つぎに、最終的に吐出する口金板の吐出孔
の形状を、円弧を組み合わせてなるスリット4つから構
成される吐出孔の例を示す図3で説明する。
Next, the shape of the discharge hole of the die plate to be finally discharged will be described with reference to FIG. 3 showing an example of a discharge hole composed of four slits formed by combining arcs.

【0012】図3において、外接円10は中心点Q1、
半径r1、円弧を組み合わせてなるスリットの外円弧は
中心点Q2、半径r2、内円弧は中心点Q3、半径r3
をそれぞれ持つ。
In FIG. 3, a circumscribed circle 10 has a center point Q1,
The outer arc of the slit formed by combining the radius r1 and the arc is the center point Q2, the radius r2, and the inner arc is the center point Q3, the radius r3.
With each.

【0013】吐出孔を構成するスリットの形状は円弧を
組み合わせてなるスリットであり、該スリットの内円弧
の中心点Q3が外円弧の中心線上にありかつ外円弧の中
心点Q2とは異なる位置にあることが必要である。これ
は、スリットの内円弧の中心点Q3を外円弧の中心線上
で外円弧の中心点Q2とは異なる位置とすることにより
スリット幅を連続的に変化させ、スリット吐出孔より吐
出される複合ポリマ流の貼り合わせ形状を規定させるた
めである。 このことについて本発明者等はスリット形
状が繊維断面の芯鞘構造に与える影響について実験・検
討した結果、スリット幅を連続的に変化させることによ
りスリット端部での複合形状を変化させることができ、
中空複合繊維を形成したときに芯成分ポリマが繊維表面
に露出することを防ぐことが出来ることがわかった。
The shape of the slit constituting the discharge hole is a slit formed by combining arcs, and the center point Q3 of the inner arc of the slit is located on the center line of the outer arc and different from the center point Q2 of the outer arc. It is necessary to be. This is because the slit width is continuously changed by setting the center point Q3 of the inner arc of the slit at a position different from the center point Q2 of the outer arc on the center line of the outer arc, so that the composite polymer discharged from the slit discharge hole is changed. This is for defining the flow bonding shape. As a result of the present inventors' experiments and studies on the effect of the slit shape on the core-sheath structure of the fiber cross section, it was possible to change the composite shape at the slit end by continuously changing the slit width. ,
It was found that the core component polymer could be prevented from being exposed on the fiber surface when the hollow composite fiber was formed.

【0014】さらに、スリットの形状を該スリットの曲
率半径で規定すると、図3のようにスリットの外円弧曲
率半径r2は吐出孔外接円中心点Q1から吐出孔外接円
半径r1の0.8倍以下が好ましい。さらに好ましくは
0.8〜0.4倍である。これは、スリットの外円弧曲
率半径r2を吐出孔外接円の半径r1より小さくするこ
とによりスリット外周長を長くでき、ポリマが複合され
た状態で円弧スリットより吐出されると同時に、円弧ス
リット外周方向へ屈折するニーリング現象を利用して高
中空化が達成できる。
Further, when the shape of the slit is defined by the radius of curvature of the slit, the outer radius of curvature r2 of the slit is 0.8 times the radius r1 of the circumcircle of the discharge hole from the center point Q1 of the circumcircle of the discharge hole as shown in FIG. The following is preferred. More preferably, it is 0.8 to 0.4 times. This is because the outer peripheral length of the slit can be made longer by making the outer arc curvature radius r2 of the slit smaller than the radius r1 of the circumcircle of the discharge hole. High hollowing can be achieved using the kneeling phenomenon of refraction.

【0015】口金板の吐出孔を構成するスリット数は3
個以上であることが必要であり、さらに好ましくは3〜
6個である。3個未満であると口金板直下で合流すると
きに合流の力で繊維がつぶれ易く高中空の繊維が得られ
ない。また、スリット数が6個を越えると曲率半径を変
化させて得られる効果が少なくなる。
The number of slits forming the discharge holes of the base plate is three.
It is necessary that the number is not less than 3, more preferably 3 to
There are six. If the number is less than 3, the fibers tend to be crushed by the merging force when they are merged immediately below the base plate, so that highly hollow fibers cannot be obtained. If the number of slits exceeds 6, the effect obtained by changing the radius of curvature is reduced.

【0016】また、円弧を組み合わせてなるスリットの
外円弧の曲率半径r2に対する内円弧の曲率半径r3の
比r3/r2は1未満であることが好ましい。さらに好
ましくは0.9〜0.5である。これは、スリット端部
の幅をスリット中央部の幅よりも広くすることにより吐
出量が多くなり接合が容易となり中空割れや接合面から
の芯成分の露出を防ぐことが出来る。
The ratio r3 / r2 of the radius of curvature r3 of the inner arc to the radius of curvature r2 of the outer arc of the slit formed by combining the arcs is preferably less than 1. More preferably, it is 0.9 to 0.5. This is because, by making the width of the slit end portion wider than the width of the slit central portion, the discharge amount increases, the joining becomes easy, and the hollow cracks and the exposure of the core component from the joining surface can be prevented.

【0017】本発明の芯鞘複合繊維紡糸用口金板に適用
されるポリマは特に限定されるものではないが、一例と
してポリエチレン、ポリプロピレン等のポリオレフィ
ン、ナイロン6、ナイロン66等のポリアミド、ポリエ
チレンテレフタレート、ポリブチレンテレフタレート
等、すべての熱可塑性ポリマや共重合体等が上げられ
る。また、該ポリマに第3成分を混合することや、粒子
を添加して使用することもできる。さらに芯成分、鞘成
分に用いるポリマは前記ポリマから自由に組み合わせ使
用することができる。
The polymer applied to the spinneret for spinning the core-sheath composite fiber of the present invention is not particularly limited. Examples thereof include polyolefins such as polyethylene and polypropylene, polyamides such as nylon 6 and nylon 66, polyethylene terephthalate, and the like. All thermoplastic polymers and copolymers, such as polybutylene terephthalate, are included. Further, a third component may be mixed with the polymer, or particles may be added for use. Further, the polymers used for the core component and the sheath component can be freely combined and used from the above-mentioned polymers.

【0018】以上、前記した芯鞘複合繊維紡糸用口金板
を用いることによって、得られた繊維の横断面の形状を
図4に示す。図4は紡糸・延伸後の芯鞘複合繊維の断面
の例を示す横断面図であり、11は芯部、12は鞘部、
13は中空部である。
FIG. 4 shows the cross-sectional shape of the fiber obtained by using the spinneret for spinning the core-sheath composite fiber. FIG. 4 is a cross-sectional view showing an example of a cross section of the core-sheath composite fiber after spinning and drawing, in which 11 is a core portion, 12 is a sheath portion,
13 is a hollow part.

【0019】以上、記述した本発明の口金装置によっ
て、低溶融粘度の芯成分ポリマと高溶融粘度の鞘成分ポ
リマなど溶融粘度の異なるポリマを用い芯鞘複合中空繊
維とした場合に中空割れの発生しない芯鞘複合中空繊維
を操業性よく得ることができる。
With the above-described die apparatus of the present invention, the occurrence of hollow cracks when a core-sheath composite hollow fiber is formed using polymers having different melt viscosities, such as a core component polymer having a low melt viscosity and a sheath component polymer having a high melt viscosity. It is possible to obtain a core-sheath composite hollow fiber that does not have good operability.

【0020】[0020]

【実施例】以下実施例により本発明をより詳細に説明す
る。なお実施例中の各特性値は次の方法で求めた。
The present invention will be described in more detail with reference to the following examples. Each characteristic value in the examples was obtained by the following method.

【0021】A.極限粘度[η] オルソクロロフェノール(以下OCPという)10ml
に対し試料0.10gを溶解し、温度25℃においてオ
ストワルド粘度計を用いて測定した。
A. Intrinsic viscosity [η] orthochlorophenol (hereinafter referred to as OCP) 10 ml
Was dissolved in 0.10 g of the sample, and the temperature was measured at 25 ° C. using an Ostwald viscometer.

【0022】実施例1 鞘成分として極限粘度[η]が0.64のポリエチレン
テレフタレートを、芯成分として極限粘度[η]が0.
45で5−ソジュームスルホイソフタル酸成分を2.5
モル%共重合した変成ポリエステルを用い、通常の複合
紡糸機により紡糸温度290℃で図3に示す吐出孔形状
で吐出孔外接円半径r1が0.5mm、円弧を組み合わ
せてなるスリットが、吐出孔外接円中心点Q1から0.
1mm離れた位置に曲率の中心点をもち曲率半径r2が
0.4mm(r1の0.8倍)の外円弧と外円弧の中心
線上に外円弧の中心点Q2から0.15mm離れた位置
に曲率の中心点Q3を持つ曲率半径r3が0.25mm
(r3/r2=0.625)の内円弧から構成される4
スリットの吐出孔図2(b)からなる口金板を組み合わ
せた図1の口金装置を用いて、芯鞘複合比が20:80
で吐出し、1350m/分の紡糸速度で未延伸糸を巻き
取った。鞘成分、芯成分の各々の単独ポリマの溶融粘度
は3000poise、1500poiseであった。
さらに該未延伸糸を通常のホットロール・ホットプレー
ト延伸機を用いて延伸比2.7倍で延伸して延伸糸を得
た。このときの操業性は糸切れもなく良好なものであっ
た。
Example 1 A polyethylene terephthalate having an intrinsic viscosity [η] of 0.64 was used as a sheath component, and an intrinsic viscosity [η] of 0.1 was used as a core component.
At 45, the 5-sodium sulfoisophthalic acid component is added to 2.5
Using a modified polyester obtained by mol% copolymerization, a slit formed by combining a circular arc with a discharge hole circumcircle radius r1 of 0.5 mm and a discharge hole at a spinning temperature of 290 ° C. by a general composite spinning machine at a spinning temperature of 290 ° C. From the circumscribed circle center point Q1 to 0.
An outer arc having a center point of curvature at a position 1 mm away and a radius of curvature r2 of 0.4 mm (0.8 times r1) and a center line of the outer arc at a position 0.15 mm away from the center point Q2 of the outer arc. A curvature radius r3 having a center point Q3 of curvature is 0.25 mm.
4 composed of an inner arc of (r3 / r2 = 0.625)
Slit discharge hole The core-in-sheath composite ratio is 20:80 using the die device of FIG. 1 in which the die plate composed of FIG. 2B is combined.
And the undrawn yarn was wound up at a spinning speed of 1350 m / min. The melt viscosity of each of the single polymers of the sheath component and the core component was 3000 poise and 1500 poise.
Further, the undrawn yarn was drawn at a draw ratio of 2.7 times using a usual hot roll / hot plate drawing machine to obtain a drawn yarn. The operability at this time was good without breakage.

【0023】この延伸糸は、図4に示す芯鞘界面に中空
部を有する所望の断面形状であった。
This drawn yarn had a desired cross-sectional shape having a hollow portion at the core-sheath interface shown in FIG.

【0024】比較例1 口金板として図5に示す吐出孔外接円半径が0.5m
m、スリット幅0.08mmのスリットからなるスリッ
ト吐出孔からなる最終吐出孔を有するものを用いた以外
は実施例1と同様の条件で紡糸、延伸を行い延伸糸を得
た。この糸は、紡糸工程でスリット吐出孔でのニーリン
グ現象が発生し紡糸、延伸工程で糸切れが多く、また、
図7に示すように断面形状を観察すると中空割れを起こ
しており、中空率も低いものであった。
COMPARATIVE EXAMPLE 1 The diameter of the circumscribed circle of the discharge hole shown in FIG.
Spinning and stretching were carried out under the same conditions as in Example 1 except that a material having a final discharge hole comprising a slit having a slit width of 0.08 mm was used to obtain a drawn yarn. In this yarn, a kneading phenomenon occurs at a slit discharge hole in a spinning process, and there are many yarn breaks in a spinning and stretching process.
Observation of the cross-sectional shape as shown in FIG. 7 revealed hollow cracks and a low hollow ratio.

【0025】[0025]

【発明の効果】本発明の芯鞘複合中空繊維紡糸用口金板
は、吐出孔を構成する円弧を組み合わせてなるスリット
の形状をスリットの内円弧の中心点Q3を外円弧の中心
線上で外円弧の中心点Q2とは異なる位置とすることに
よりスリット幅を連続的に変化させ、スリット吐出孔よ
り吐出される複合ポリマ流の貼り合わせ形状を規定させ
芯成分ポリマが繊維表面に露出することを防ぐことが出
来る。さらに円弧を組み合わせてなるスリットの外円弧
の曲率半径r2に対する内円弧の曲率半径r3の比r3
/r2を1未満とすることにより、スリット端部の幅が
スリット中央部の幅よりも広くなりことにより吐出量が
多くなりポリマ同士の接合が容易で中空割れや接合面か
らの芯成分の露出を防ぐことが出来る。このことによ
り、芯成分ポリマの溶融粘度が鞘成分ポリマの溶融粘度
より低い場合や芯成分と鞘成分のポリマの溶融粘度差が
大きい場合であっても中空割れを起こさない芯鞘複合中
空繊維を操業性よく製造することができる。
According to the core-sheath composite hollow fiber spinneret of the present invention, the shape of the slit formed by combining the arcs constituting the discharge hole is determined by setting the center point Q3 of the inner arc of the slit on the center line of the outer arc. The slit width is continuously changed by setting it to a position different from the center point Q2, thereby defining the bonding shape of the composite polymer flow discharged from the slit discharge hole and preventing the core component polymer from being exposed on the fiber surface. I can do it. Further, the ratio r3 of the radius of curvature r3 of the inner arc to the radius of curvature r2 of the outer arc of the slit formed by combining the arcs.
By setting / r2 to less than 1, the width of the slit end becomes wider than the width of the center of the slit, thereby increasing the discharge amount, making it easy to join the polymers, and exposing the core component from hollow cracks and the joining surface. Can be prevented. Thus, even when the melt viscosity of the core component polymer is lower than the melt viscosity of the sheath component polymer or when the melt viscosity difference between the core component and the sheath component polymer is large, a core-sheath composite hollow fiber that does not cause hollow cracks is produced. It can be manufactured with good operability.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の口金装置の一例を示す縦断面図であ
る。
FIG. 1 is a longitudinal sectional view showing an example of a base device of the present invention.

【図2】口金板に穿設された円弧を組み合わせてなるス
リットからなる吐出孔の形状の例を示す口金板の下面図
である。
FIG. 2 is a bottom view of the base plate showing an example of a shape of a discharge hole formed of a slit formed by combining circular arcs formed in the base plate;

【図3】図2(b)の吐出孔を形成する円弧を組み合わ
せてなるスリットの形状および配置を説明するための口
金板の模式図である。
FIG. 3 is a schematic diagram of a base plate for explaining the shape and arrangement of slits formed by combining arcs forming discharge holes in FIG. 2 (b).

【図4】本発明の口金装置を用いて得られた芯鞘複合中
空繊維の断面の一例を示す横断面図である。
FIG. 4 is a cross-sectional view showing an example of a cross section of a core-sheath composite hollow fiber obtained using the die device of the present invention.

【図5】従来の口金板の吐出孔の例を示す横断面図であ
る。
FIG. 5 is a cross-sectional view showing an example of a discharge hole of a conventional die plate.

【図6】図5の口金板によって得られた繊維の横断面図
である。
FIG. 6 is a cross-sectional view of a fiber obtained by the die plate of FIG. 5;

【符号の説明】[Explanation of symbols]

1:上部導入板 2:下部導入板 3:口金板 4:吐出孔 5:円弧を組み合わせてなるスリット 6:上部導入板芯成分ポリマ供給孔 7:上部導入板鞘成分ポリマ供給孔 8:下部導入板芯成分ポリマ供給孔 9:下部導入板鞘成分ポリマ供給孔 10:吐出孔外接円 11:芯部孔 12:鞘部 13:中空部 1: upper introduction plate 2: lower introduction plate 3: base plate 4: discharge hole 5: slit formed by combining circular arcs 6: upper introduction plate core component polymer supply hole 7: upper introduction plate sheath component polymer supply hole 8: lower introduction Plate core component polymer supply hole 9: Lower introduction plate / sheath component polymer supply hole 10: Discharge hole circumcircle 11: Core hole 12: Sheath 13: Hollow

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】上部導入板1、下部導入板2、口金板3の
順序で一体に構成された口金装置において、導入板のい
ずれにも独立したポリマ流路を有し、口金板において環
状に配置された3個以上のスリットからなる吐出孔を配
置し、該スリットが円弧を組み合わせてなるスリットで
あり、該スリットの内円弧の中心点Q3が外円弧の中心
線上にありかつ外円弧の中心点Q2とは異なる中心点を
持つことを特徴とした芯鞘複合中空繊維用口金装置。
1. A base device integrally formed in the order of an upper introduction plate 1, a lower introduction plate 2, and a base plate 3, wherein each of the introduction plates has an independent polymer flow path, and the base plate has an annular shape. Discharge holes formed of three or more slits are arranged, and the slits are slits formed by combining arcs, and the center point Q3 of the inner arc of the slit is on the center line of the outer arc and the center of the outer arc. A core-sheath composite hollow fiber base device having a center point different from the point Q2.
【請求項2】円弧を組み合わせてなるスリットの外円弧
曲率半径r2が該スリットから構成される吐出孔の外接
円の半径r1の0.8倍以下であることを特徴とする請
求項1記載の芯鞘複合中空繊維用口金装置
2. The method according to claim 1, wherein the outer radius of curvature r2 of the slit formed by combining the arcs is not more than 0.8 times the radius r1 of the circumcircle of the discharge hole formed by the slit. Cap device for core-sheath composite hollow fiber
【請求項3】円弧を組み合わせてなるスリットの外円弧
に対する内円弧の曲率半径の比r3/r2が1未満であ
ることを特徴とする請求項1記載の芯鞘複合中空繊維用
口金装置。
3. The core-sheath composite hollow fiber spinneret according to claim 1, wherein the ratio r3 / r2 of the radius of curvature of the inner arc to the outer arc of the slit formed by combining the arcs is less than 1.
JP16149797A 1997-06-18 1997-06-18 Spinneret device for spinning core-sheath conjugated hollow fiber Pending JPH1112844A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP16149797A JPH1112844A (en) 1997-06-18 1997-06-18 Spinneret device for spinning core-sheath conjugated hollow fiber

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP16149797A JPH1112844A (en) 1997-06-18 1997-06-18 Spinneret device for spinning core-sheath conjugated hollow fiber

Publications (1)

Publication Number Publication Date
JPH1112844A true JPH1112844A (en) 1999-01-19

Family

ID=15736201

Family Applications (1)

Application Number Title Priority Date Filing Date
JP16149797A Pending JPH1112844A (en) 1997-06-18 1997-06-18 Spinneret device for spinning core-sheath conjugated hollow fiber

Country Status (1)

Country Link
JP (1) JPH1112844A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6147731A (en) * 1998-03-20 2000-11-14 Nec Corporation Liquid crystal display panel and liquid crystal display device
JP2010168681A (en) * 2009-01-21 2010-08-05 Teijin Fibers Ltd Spinneret for hollow fiber
CN104674358A (en) * 2014-06-17 2015-06-03 福建百宏聚纤科技实业有限公司 Specially-shaped spinneret plate
CN112760825A (en) * 2020-12-31 2021-05-07 常州锦欣达纤维新材料有限公司 Single-layer melt-blown fabric production system with low resistance and high filtering effect and production method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6147731A (en) * 1998-03-20 2000-11-14 Nec Corporation Liquid crystal display panel and liquid crystal display device
JP2010168681A (en) * 2009-01-21 2010-08-05 Teijin Fibers Ltd Spinneret for hollow fiber
CN104674358A (en) * 2014-06-17 2015-06-03 福建百宏聚纤科技实业有限公司 Specially-shaped spinneret plate
CN112760825A (en) * 2020-12-31 2021-05-07 常州锦欣达纤维新材料有限公司 Single-layer melt-blown fabric production system with low resistance and high filtering effect and production method

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