새로운 아크릴 단섬유의 제조 방법
    1.
    发明授权
    새로운 아크릴 단섬유의 제조 방법 失效
    制造新型丙烯酸短纤维的方法

    公开(公告)号:KR1019970010734B1

    公开(公告)日:1997-06-30

    申请号:KR1019940023592

    申请日:1994-09-16

    Abstract: Obtaining a PAN/H2O mixture of gel crystal, it is extruded simply through a die, an extrusion which has a collection of tiny fibers in its inner structure is produced, and this extrusion is opened and a new 3rd generation acrylic short fiber is obtained. In this process, a gel crystal is formed, which has the characteristics of spontaneous molecular orientation. So, without spinning nor drawing process, a fiber containing far better molecular orientation than the previous high drawn fiber is produced.

    Abstract translation: 获得凝胶晶体的PAN / H 2 O混合物,其通过模头被简单地挤出,产生在其内部结构中具有微小纤维集合的挤出物,并且该挤出物被打开,并获得新的第三代丙烯酸短纤维。 在该方法中,形成具有自发分子取向特性的凝胶晶体。 因此,不纺丝和拉伸过程,产生比以前的高拉伸纤维更好的分子取向的纤维。

    무방사 아크릴 스테플 섬유
    8.
    发明授权
    무방사 아크릴 스테플 섬유 失效
    无螺旋丙烯纤维

    公开(公告)号:KR1019940010313B1

    公开(公告)日:1994-10-22

    申请号:KR1019920018009

    申请日:1992-10-01

    CPC classification number: D04H1/43 D01D5/26 D01F6/18 D04H1/56 D04H1/70 D04H13/00

    Abstract: Spinless acryl staple fiber is prepd. by gel crystal that can directly make fiber from raw material and voluntarily form high molecular orientation and fiber structure. The obtd. fiber has the orientation ratio of 80-97 % by XRD and the length distribution of 5-500 mm and the thickness of 5-500 m and the thickness ratio to length of 100-10,000 and the tensile strength of 10-70 kg/mm2 and the modulus of 300-1500 kg/mm2 and the elongation of 5-20 %.

    Abstract translation: 无纺丙烯基短纤维是预制的。 通过凝胶晶体可以直接从原料制造纤维,并自主形成高​​分子取向和纤维结构。 有限公司 纤维的XRD取向比为80-97%,长度分布为5-500mm,厚度为5-500μm,厚度比为100-10,000,拉伸强度为10-70kg / mm2 模量为300-1500kg / mm2,伸长率为5-20%。

    전방향족 폴리아미드 중합체, 그의 제조방법 및 이 중합체로부터 제조된 필름

    公开(公告)号:KR1019940002184B1

    公开(公告)日:1994-03-18

    申请号:KR1019900010394

    申请日:1990-07-10

    CPC classification number: C08G69/265 C08G69/32

    Abstract: The method for the production of a whole aromatic polyamide polymer of formula (III) (x = 0.05 - 0.5; y = 0-0.5) is characterized by polycondensing an aromatic diamine with an aromatic dibasic acid chloride in the polymerization solvent obtd. by dissolving an alkali metal salt into a tertiary amide solvent, and adding an aromatic tertiary amine as a reaction accelerator into the mixed solvent. The aromatic diame is pref. 3,5-diaminobenzophenone of formula (I) or a mixt. of (I) and methaphenylene diamine. The dibasic acid chloride is pref. isophthaloyl chloride, the alkali metal salt is lithium chloride or calcium chloride, and the tertiary amine is pref. pyridine, picoline or quinoline. The polyamide polymer is used in the mfr. of a heat-resistant transparent film for a circuit board, an insulating plate and a transparent protecting plate.

    Abstract translation: 制备式(III)的整个芳族聚酰胺聚合物(x = 0.05-0.5; y = 0-0.5)的方法的特征在于在聚合溶剂中使芳族二胺与芳族二元酰氯缩聚。 通过将碱金属盐溶解在叔酰胺溶剂中,并将芳族叔胺作为反应促进剂加入混合溶剂中。 芳香di is。。 式(I)的3,5-二氨基二苯甲酮或混合物。 的(I)和甲基亚苯基二胺。 二元酰氯是优选的。 间苯二酰氯,碱金属盐是氯化锂或氯化钙,叔胺是优选的。 吡啶,甲基吡啶或喹啉。 聚酰胺聚合物以制造商使用。 用于电路板的耐热透明膜,绝缘板和透明保护板。

    새로운 퀴놀린이미드 고분자
    10.
    发明公开
    새로운 퀴놀린이미드 고분자 失效
    新的喹啉酰亚胺聚合物

    公开(公告)号:KR1019940002288A

    公开(公告)日:1994-02-17

    申请号:KR1019920012857

    申请日:1992-07-18

    Abstract: 본 발명은 내열성 및 가공 특성이 우수한 새로운 퀴놀린 이미드 고분자에 관한 것이다. 즉 대표적인 내열성 고분자인 폴리이미드를 기본으로 하여 이에 퀴놀린 단위를 도입시켜서 제조된, 기존의 폴리이미드 보다 그 특성이 향상된 폴리퀴놀린이미드에 관한 것이다.

    여기에서 R은 방향족 4가 유기라디칼로서 다음과 같은 구조를 포함한다.

Patent Agency Ranking