首页> 外国专利> METHOD, DEVICE AND MULTIPLE-LAYER NON-WOVEN FIBRE FOR BONDING NON-WOVEN FIBRE PRODUCED BY THE AIR-LAY METHOD

METHOD, DEVICE AND MULTIPLE-LAYER NON-WOVEN FIBRE FOR BONDING NON-WOVEN FIBRE PRODUCED BY THE AIR-LAY METHOD

机译:气流成网法粘合非织造纤维的方法,装置及多层非织造纤维

摘要

1. Method for strengthening a non-woven fabric, which has been produced according to the air-lay method, comprising two outer layers made of cut, thermally activatable fibres and one layer made of cellulose fibres, such as super-absorbent pulp, which is disposed between these outer layers, through continuous forming of initially the lower layer, then overlaying with the pulp layer and finally the top layer, characterised in that the two outer layers of the composite non-woven fabric are formed from fibres, which are from 8 to 10 mm maximum in length, and the three-layered non-woven fabric is subjected to a hydrodynamic needling process for the strengthening, that is to say also for the intimate bonding of the layers, which are laid solely according to the air-lay method. 2. Method according to claim 1, characterised in that in addition to the strengthening by means of the hydrodynamic needling process, the composite non-woven fabric, which is formed solely according to the air-lay method, is treated by means of a thermal strengthening process. 3. Method according to claim 2, characterised in that the term thermal strengthening includes the treatment of the non-woven fabric, which is formed solely according to the air-lay method, with every type of heat treatment, namely heat treatment, for example, with hot air, more especially through-ventilation, with infra-red, with calendering. 4. Method according to claim 2 or 3, characterised in that the composite non-woven fabric, which is formed solely according to the air-lay method, is thermally treated before and/or after the water needling process for strengthening. 5. Method according to one of the claims 2-4, characterised in that the thermal strengthening together with the drying of the non-woven fabric, which is formed solely according to the air-lay method, is executed after the water needling process. 6. Method according to one of claims 2-5, characterised in that at the end of the strengthening process, the composite non-woven fabric, which is formed solely according to the air-lay method, is calibrated again. 7. Method according to one of claims 1-6, characterised in that the hydrodynamic treatment is executed on both sides of the composite non-woven fabric, which is formed solely according to the air-lay method. 8. Device for executing the method in accordance with one of claims 1-7, comprising the following disposed one after the other in a line a) at least three moulding heads working according to the air-lay method, one for the first layer made of thermally activatable fibres with a fibre length from 8 to 10 mm maximum, one for the pulp and one for the top surface layer again for the thermally activatable fibres with a fibre length of from 8 to 10 mm maximum, and a b) non-woven fabric strengthening unit, which comprises a hydrodynamic needling device (6, 7) and a drier (8). 9. Device according to claim 8, characterised in that upstream of the device for the hydrodynamic needling of a composite non-woven fabric, which is formed solely according to the air-lay method, c) is disposed a device (5) for the thermal strengthening. 10. Device according to claim 8 or 9, characterised in that downstream of the device for the hydrodynamic needling of a composite non-woven fabric, which is formed solely according to the air-lay method, d) is disposed a device (8) for the thermal strengthening. 11. Device according to claim 10, characterised in that the device (8) for the thermal strengthening of a composite non-woven fabric, which is formed solely according to the air-lay method, is provided after the hydrodynamic needling initially for the drying of the non-woven fabric. 12. Device according to one of claims 8-11, characterised in that a calibrating device (9) is provided as the last unit for treating the composite non-woven fabric, which is formed solely according to the air-lay method. 13. Multi-layered composite non-woven fabric comprising two outer layers, which are formed in accordance with the air-lay method from fusion adhesive fibres, which are from 8 to 10 mm maximum in length, such as more especially double component fibres or and other fibres, such as high polymer fibres, between which layers is laid a further layer made of super-absorbent pulp, which is also produced according to the air-lay method, wherein this composite non-woven fabric, which is formed solely according to the air-lay method, is strengthened by means of the hydrodynamic needling.
机译:1.一种用于增强非织造织物的方法,所述非织造织物是根据气流成网法制造的,其包括由切割的,可热活化的纤维制成的两个外层和由纤维素纤维例如超吸收性纸浆制成的一层,通过连续形成最初的下层,然后与纸浆层,最后覆盖顶层,在这些外层之间设置纤维网,其特征在于,复合无纺布的两个外层由纤维形成,这些纤维是由最大长度为8到10毫米,并且对三层无纺布进行了流体动力针刺处理,以进行加固,也就是说,也要紧密粘结各层,这些层仅根据空气进行铺设。铺设方法。 2.根据权利要求1所述的方法,其特征在于,除了通过流体动力针刺法进行加固之外,还通过热处理来处理仅根据气流成网法形成的复合无纺布。强化过程。 3.根据权利要求2所述的方法,其特征在于,术语“热强化”包括对所述无纺布的处理,所述无纺布仅根据气流成网法形成,并采用每种类型的热处理,例如热处理。 ,用热空气,更特别是通过通风,用红外线,压延。 4.根据权利要求2或3所述的方法,其特征在于,仅根据气流成网法形成的复合无纺布在加强水刺处理之前和/或之后进行热处理。 5.根据权利要求2-4中的一项所述的方法,其特征在于,仅在通过气流成网法形成的无纺布的热增强以及干燥的同时,在水针刺处理之后进行。 6.根据权利要求2-5之一的方法,其特征在于,在加固过程结束时,再次校准仅根据气流成网法形成的复合无纺布。 7.根据权利要求1-6中任一项所述的方法,其特征在于,在仅根据气流成网法形成的复合无纺布的两侧进行流体动力处理。 8.一种用于执行根据权利要求1至7中任一项所述的方法的设备,包括以下设备:在管线a中一个接一个地布置以下设备:至少三个根据气流成网法工作的模制头,其中一个用于制造第一层纤维长度最大为8到10毫米的可热活化纤维,一种用于纸浆,另一种用于上表面层,用于最大长度为8到10毫米的可热活化纤维,并且ab)无纺布织物加固单元,包括水力针刺装置(6、7)和干燥机(8)。 9.根据权利要求8所述的装置,其特征在于,仅通过气流成网法形成的,用于复合无纺布的流体动力刺针的装置的上游设置有用于该装置的装置(5)。热强化。 10.根据权利要求8或9所述的装置,其特征在于,在仅通过气流成网方法d)形成的用于复合无纺布的流体动力针刺的装置的下游设置有装置(8)。用于热强化。 11.根据权利要求10所述的装置,其特征在于,在最初为了干燥而进行的流体动力针刺之后,提供了仅通过气流成网法形成的,用于对复合无纺布进行热强化的装置(8)。无纺布。 12.根据权利要求8-11中任一项所述的装置,其特征在于,提供校准装置(9)作为用于处理所述复合无纺布的最后单元,其仅根据气流成网法形成。 13.一种多层复合无纺布,其包含两个外层,所述两个外层是根据气流成网法由最大长度为8至10mm的熔融粘合纤维形成的,所述熔融粘合纤维例如为双组分纤维或和其他纤维,例如高聚物纤维,在其间放置一层由超吸收浆粕制成的另一层,该层也按照气流成网法生产,其中该复合无纺布仅根据气流成针法,通过水力针刺得到加强。

著录项

  • 公开/公告号EA003594B1

    专利类型

  • 公开/公告日2003-06-26

    原文格式PDF

  • 申请/专利权人 FLEISSNER GMBH &CO.MASCHINENFABRIK;

    申请/专利号EA20020000773

  • 发明设计人 FLEISSNER GEROLD;

    申请日2001-01-16

  • 分类号D04H13/00;D04H1/46;

  • 国家 EA

  • 入库时间 2022-08-22 00:03:10

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