CN106637997B - 武器装备专用高性能织物及其制备方法 - Google Patents
武器装备专用高性能织物及其制备方法 Download PDFInfo
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Abstract
本发明涉及一种武器装备专用高性能织物及其制备方法,属于纺织面料技术领域。该织物制备方法如下:将功能性纱线进行织造,得坯布,将坯布进行漂白处理,得漂白坯布;将坯布进行漂白处理,得漂白坯布;将漂白坯布进行一次水洗,得一次水洗坯布;将一次水洗坯布进行抗菌处理,得抗菌坯布;将抗菌坯布进行二次水洗,得二次水洗坯布;将所得二次水洗坯布进行抗静电处理,得抗静电坯布;将所得抗静电坯布进行三次水洗,得三次水洗坯布;将所得三次水洗坯布依次经亲水亲油处理、染色、四次水洗、定型烘干,即得所述武器装备专用高性能织物。该织物安全环保,不掉毛絮,具有优异的弹性和柔软性,具有抗菌防霉性,且可快速高效吸附水分和油污。
Description
技术领域
本发明属于纺织面料技术领域,具体涉及一种武器装备专用高性能织物及其制备方法。
背景技术
军用武器装备、军用舰船及军用精尖端仪器等军用装备,由于结构复杂,大大增加了其维护、修理及使用管理的复杂性,尤其在军用装备的服役期内,一旦对其使用维护不当,就会导致事故发生,不仅会造成我方人员伤亡,还会贻误战机。军用装备专用织物面料和军用装备专用油脂是军用装备使用、维护和执行战斗任务的重要物资,可以保持军用装备良好的技术状态,并有效防止军用装备锈蚀生锈,从而降低军用装备的磨损,延长其寿命和保障其可靠战斗力。武器装备专用高性能织物面料的主要任务之一就是在军用装备维护、修理、保养和执行战斗任务过程中能够帮助武器装备保持良好的性能,尤其是对军用装备内外机件、结构积聚的水分、油渍、污垢具有高效吸附清除的作用,其高效必须体现在吸附速度快、吸附量大,才有助于提高武器装备在执行任务过程中现场维护作业的效率,满足武器装备执行任务的高效要求,使武器装备可以快速反应并再次投入战斗。同时,还要满足不能在军用装备表面或内部结构上残留细小毛絮的苛刻条件,综上,军用装备专用织物面料必须具备极高的品质,才能被广泛应用于军用装备的维护中。
而现有的军用装备专用织物面料,其对吸水吸油率较低,吸附速率较慢,易脱毛,且其功能较为单一,不能满足上述要求,此外,织物的柔软性、弹性等性能也有待改善,因此,对武器装备专用织物进行研究时十分必要的。
发明内容
本发明的目的是克服现有技术的不足而提供一种武器装备专用高性能织物及其制备方法,该织物安全环保,不掉毛絮,具有优异的弹性和柔软性,具有抗菌防霉功能特性,且可快速高效吸附水分和油渍污垢。
本发明采用如下技术方案:
武器装备专用高性能织物的制备方法,包括如下步骤:
步骤一:将功能性纱线进行织造,得坯布,将坯布进行漂白处理,得漂白坯布,所述功能性纤维为长绒棉纤维、大豆纤维或玉米纤维,所述织造为针织,针织坯布为针织平纹或毛圈结构;
步骤二:将步骤一所得漂白坯布进行一次水洗,得一次水洗坯布;
步骤三:将步骤二所得一次水洗坯布进行抗菌处理,得抗菌坯布;
步骤四:将步骤三所得抗菌坯布进行二次水洗,得二次水洗坯布;
步骤五:将步骤四所得二次水洗坯布进行抗静电处理,得抗静电坯布;
步骤六:将步骤五所得抗静电坯布进行三次水洗,得三次水洗坯布;
步骤七:将步骤六所得三次水洗坯布进行亲水亲油处理,得亲水亲油坯布,,其中所述亲水亲油处理具体为:将三次水洗坯布置于亲水亲油处理液中,一浸二轧,轧余率80%,所述亲水亲油处理液的制备方法为:按照水量计,将有机硅整理剂Goon802 20-25g/L,乙二胺油酸酯2-3g/L、月桂醇磷酸酯1-1.3g/L和磺基琥珀酸二辛酯钠0.5-1.0g/L依次加入水中,于40-45℃下混合搅拌均匀,即得;
步骤八:将步骤七所得亲水亲油坯布进行染色,染缸内注满水,升温至50-55℃,按照水量计,加入10-12g/L匀染剂,以20-30m/min的车速浸染20-30min,再加入20-30g/L染料,调节pH至5-6,以70-80m/min的车速浸染50-60min,对色后进行四次水洗,出缸,经定型烘干,即得所述武器装备专用高性能织物。
更进一步地,步骤一中所述漂白处理具体为:按照水量计,将过氧化尿素10-13g/L,双氧水18-20mL/L,碳酸钠0.8-1.2g/L,脂肪醇聚氧乙烯醚1.2-1.5mL/L、十二烷基磺酸钠1.5-1.7g/L依次加入水中,搅拌均匀,调节溶液pH至9-10,升温至60-65℃,将坯布置于其中漂白50-60min;
更进一步地,步骤三中所述抗菌处理具体为:将一次水洗坯布置于抗菌处理液中,一浸一轧,轧余率80%,所述抗菌处理液的制备方法为:按照水量计,将银离子抗菌整理剂Sanitized T 25-25(购自上海享金化工有限公司)12-15g/L、银离子抗菌整理剂RUCO-BACAGP 3-6g/L(购自吴江市金泰克化工助剂有限公司)、羧甲基壳聚糖1-2g/L加入水中,搅拌均匀,即得。
更进一步地,步骤五中所述抗静电处理具体为:按照水量计,将二次水洗坯布置于抗静电处理液中,一浸一轧,轧余率70%,所述抗静电处理液的制备方法为:将抗静电剂8-10g/L、碳酸氢钠1-2g/L加入水中,升温至40-50℃,搅拌均匀,即得。
更进一步地,所述一次水洗、二次水洗、三次水洗、四次水洗时的温度为50-60℃。
更进一步地,步骤八中烘干时的温度为160-170℃,车速为30-40m/min。
本发明还提供由所述武器装备专用高性能织物的制备方法制得的武器装备专用高性能织物。
本发明与现有技术相比,具有以下有益效果:
本发明通过将吸湿功能性纱线针织成具有平纹(平针)组织结构或毛圈组织结构的坯布,并对坯布进行漂白处理、一次水洗、抗菌处理、二次水洗、抗静电处理、三次水洗、亲水亲油处理、染色、四次水洗及定型烘干,制得具有优异性能的武器装备专用高性能织物,该织物具有优异的弹性和柔软性,其顶破强力较佳,抗静电性和抗菌性较好,对水分和油渍污垢的吸附效果好,且不会产生细小毛絮,对武器装备具有良好的维护保障效果。
更重要的是,在研究过程中,本发明得到了具有显著抗菌效果的抗菌处理液,及可赋予织物较高亲水亲油性的亲水亲油处理液,其对长绒棉纤维织物、大豆纤维织物及玉米纤维织物均具有优异的处理效果,可赋予其良好的抗菌性和较高的亲水亲油性,通过对坯布进行亲水亲油处理,不仅使亲水亲油助剂牢固吸附在纱线表面及纱线之间的间隔处,有效增加了织物与液体的接触面积,还不影响织物纤维孔对水和油渍污垢的吸附,从而有效增加了织物的吸附量和吸附速率。通过使用本发明织物对武器装备进行高效有力的维护、修理和保养,使武器装备在执行战斗任务过程中保持优良的性能,特别是对军用武器装备内外机件、结构积聚的水分、油渍、污垢具有高效吸附清除的作用,其具有的快速高效吸附功能和去污能力,大大提高了武器装备在执行任务过程中现场维护作业的效率,满足武器装备执行任务的高效要求,使武器装备可以快速反应并再次投入战斗。同时本发明得到织物具有可降解性,安全环保,在废弃后可于自然环境下降解。
具体实施方式
下面通过具体实施方式对本发明作进一步详细说明,但本领域技术人员将会理解,下列实施例仅用于说明本发明,而不应视为限定本发明的范围。
实施例1
武器装备专用高性能织物的制备方法,具体包括如下步骤:
步骤一:将吸湿功能性纱线进行织造,得坯布,将坯布进行漂白处理,得漂白坯布;所述功能性纤维为长绒棉纤维、大豆纤维或玉米纤维,所述织造为针织,针织坯布为针织平纹或毛圈结构;所述漂白处理具体为:按照水量计,将过氧化尿素12g/L,双氧水19mL/L,碳酸钠1.0g/L,脂肪醇聚氧乙烯醚1.3mL/L、十二烷基磺酸钠1.6g/L依次加入水中,搅拌均匀,调节溶液pH至9-10,升温至60℃,将步骤一所得坯布置于其中漂白60min;得漂白坯布;
步骤二:将步骤一所得漂白坯布于55℃下进行一次水洗,得一次水洗坯布;
步骤三:将步骤二所得一次水洗坯布进行抗菌处理,具体为:将一次水洗坯布置于抗菌处理液中,一浸一轧,轧余率80%,得抗菌坯布;所述抗菌处理液的制备方法为:按照水量计,将银离子抗菌整理剂Sanitized T 25-25 13g/L、银离子抗菌整理剂RUCO-BACAGP5g/L、羧甲基壳聚糖1.5g/L加入水中,搅拌均匀,即得。
步骤四:将步骤三所得抗菌坯布于55℃下进行二次水洗,得二次水洗坯布;
步骤五:将步骤四所得二次水洗坯布进行抗静电处理,具体为:按照水量计,将二次水洗坯布置于抗静电处理液中,一浸一轧,轧余率70%,得抗静电坯布;所述抗静电处理液的制备方法为:将抗静电剂9g/L、碳酸氢钠1.5g/L加入水中,升温至45℃,搅拌均匀,即得。
步骤六:将步骤五所得抗静电坯布于55℃下进行三次水洗,得三次水洗坯布;
步骤七:将步骤六所得三次水洗坯布进行亲水亲油处理,得亲水亲油坯布,其中所述亲水亲油处理具体为:将三次水洗坯布置于亲水亲油处理液中,一浸二轧,轧余率80%,所述亲水亲油处理液的制备方法为:按照水量计,将有机硅整理剂Goon802 22g/L,乙二胺油酸酯2.5g/L、月桂醇磷酸酯1.2g/L和磺基琥珀酸二辛酯钠0.8g/L依次加入水中,于45℃下混合搅拌均匀,即得;
步骤八:将步骤七所得亲水亲油坯布进行染色,染缸内注满水,升温至50℃,按照水量计,加入11g/L匀染剂,以25m/min的车速浸染25min,再加入25g/L染料,调节pH至5-6,以75m/min的车速浸染55min,对色后进行四次水洗,出缸,经定型烘干,烘干时的温度为165℃,车速为35m/min,即得所述武器装备专用高性能织物。
实施例2
武器装备专用高性能织物的制备方法,具体包括如下步骤:
步骤一:将吸湿功能性纱线进行织造,得坯布,将坯布进行漂白处理,得漂白坯布;所述功能性纤维为长绒棉纤维、大豆纤维或玉米纤维,所述织造为针织,针织坯布为针织平纹或毛圈结构;所述漂白处理具体为:按照水量计,将过氧化尿素10g/L,双氧水18mL/L,碳酸钠0.8g/L,脂肪醇聚氧乙烯醚1.2mL/L、十二烷基磺酸钠1.5g/L依次加入水中,搅拌均匀,调节溶液pH至9-10,升温至60℃,将步骤一所得坯布置于其中漂白60min;得漂白坯布;
步骤二:将步骤一所得漂白坯布于50℃下进行一次水洗,得一次水洗坯布;
步骤三:将步骤二所得一次水洗坯布进行抗菌处理,具体为:将一次水洗坯布置于抗菌处理液中,一浸一轧,轧余率80%,得抗菌坯布;所述抗菌处理液的制备方法为:按照水量计,将银离子抗菌整理剂Sanitized T 25-25 12g/L、银离子抗菌整理剂RUCO-BACAGP3g/L、羧甲基壳聚糖1g/L加入水中,搅拌均匀,即得。
步骤四:将步骤三所得抗菌坯布于50℃下进行二次水洗,得二次水洗坯布;
步骤五:将步骤四所得二次水洗坯布进行抗静电处理,具体为:按照水量计,将二次水洗坯布置于抗静电处理液中,一浸一轧,轧余率70%,得抗静电坯布;所述抗静电处理液的制备方法为:将抗静电剂8g/L、碳酸氢钠1g/L加入水中,升温至40℃,搅拌均匀,即得。
步骤六:将步骤五所得抗静电坯布于50℃下进行三次水洗,得三次水洗坯布;
步骤七:将步骤六所得三次水洗坯布进行亲水亲油处理,得亲水亲油坯布,其中所述亲水亲油处理具体为:将三次水洗坯布置于亲水亲油处理液中,一浸二轧,轧余率80%,所述亲水亲油处理液的制备方法为:按照水量计,将有机硅整理剂Goon802 20g/L,乙二胺油酸酯2g/L、月桂醇磷酸酯1g/L和磺基琥珀酸二辛酯钠0.5g/L依次加入水中,于40℃下混合搅拌均匀,即得;
步骤八:将步骤七所得亲水亲油坯布进行染色,染缸内注满水,升温至50℃,按照水量计,加入10g/L匀染剂,以20m/min的车速浸染30min,再加入20g/L染料,调节pH至5-6,以70m/min的车速浸染60min,对色后进行四次水洗,出缸,经定型烘干,烘干时的温度为160℃,车速为40m/min,即得所述武器装备专用高性能织物。
实施例3
武器装备专用高性能织物的制备方法,具体包括如下步骤:
步骤一:步骤一:将吸湿功能性纱线进行织造,得坯布,将坯布进行漂白处理,得漂白坯布;所述功能性纤维为长绒棉纤维、大豆纤维或玉米纤维,所述织造为针织,针织坯布为针织平纹或毛圈结构;所述漂白处理具体为:按照水量计,将过氧化尿素13g/L,双氧水20mL/L,碳酸钠1.2g/L,脂肪醇聚氧乙烯醚1.5mL/L、十二烷基磺酸钠1.7g/L依次加入水中,搅拌均匀,调节溶液pH至9-10,升温至65℃,将步骤一所得坯布置于其中漂白50min;得漂白坯布;
步骤二:将步骤一所得漂白坯布于60℃下进行一次水洗,得一次水洗坯布;
步骤三:将步骤二所得一次水洗坯布进行抗菌处理,具体为:将一次水洗坯布置于抗菌处理液中,一浸一轧,轧余率80%,得抗菌坯布;所述抗菌处理液的制备方法为:按照水量计,将银离子抗菌整理剂Sanitized T 25-25 15g/L、银离子抗菌整理剂RUCO-BACAGP6g/L、羧甲基壳聚糖2g/L加入水中,搅拌均匀,即得。
步骤四:将步骤三所得抗菌坯布于60℃下进行二次水洗,得二次水洗坯布;
步骤五:将步骤四所得二次水洗坯布进行抗静电处理,具体为:按照水量计,将二次水洗坯布置于抗静电处理液中,一浸一轧,轧余率70%,得抗静电坯布;所述抗静电处理液的制备方法为:将抗静电剂10g/L、碳酸氢钠2g/L加入水中,升温至50℃,搅拌均匀,即得。
步骤六:将步骤五所得抗静电坯布于60℃下进行三次水洗,得三次水洗坯布;
步骤七:将步骤六所得三次水洗坯布进行亲水亲油处理,得亲水亲油坯布,其中所述亲水亲油处理具体为:将三次水洗坯布置于亲水亲油处理液中,一浸二轧,轧余率80%,所述亲水亲油处理液的制备方法为:按照水量计,将有机硅整理剂Goon802 25g/L,乙二胺油酸酯3g/L、月桂醇磷酸酯1.3g/L和磺基琥珀酸二辛酯钠1.0g/L依次加入水中,于45℃下混合搅拌均匀,即得;
步骤八:将步骤七所得亲水亲油坯布进行染色,染缸内注满水,升温至55℃,按照水量计,加入12g/L匀染剂,以30m/min的车速浸染20min,再加入30g/L染料,调节pH至5-6,以80m/min的车速浸染50min,对色后进行四次水洗,出缸,经定型烘干,烘干时的温度为170℃,车速为30m/min,即得所述武器装备专用高性能织物。
对照例1
该对照例与实施例1的区别在于:步骤七中使用的亲水亲油处理液中未添加乙二胺油酸酯和月桂醇磷酸酯。
对照例2
该对照例与实施例1的区别在于:步骤七中使用的亲水亲油处理液中仅添加乙二胺油酸酯和月桂醇磷酸酯。
将实施例1至3所得武器装备专用高性能织物进行性能测试,并以现有高品质织物为对照例3,其中吸水测试具体为:试验条件:室温,标准尺寸的面料样品用电子天平称重;试验水位高度不小于5cm,试验方法:将面料样品水平放置于水面,当样品完全浸湿,终止计时,称其重量并计算吸水率。吸水率=吸水后面料重量/吸水前面料重量,取5个平行试验的平均值。吸油测试具体为:试验条件:室温,标准尺寸的面料样品用电子天平称重;机油位高度不小于10CM;试验方法:将面料样品水平放置于水面,当样品完全浸湿,称其重量,并计算吸油率。吸油率=吸油后面料重量/吸油前面料重量,取5个平行试验的平均值,其中湿态时的吸水吸油测试是指将完全吸水吸油后的面料拧至无水滴、无油滴滴落,再按照前述方法测试其吸水吸油性能;脱毛率=使用300次后织物重量/使用前织物重量;结果如下表1所示:
表1性能检测数据
由上表可见,本发明制得的织物的性能较佳,同时,其还具有优异的亲水亲油性,对水分和油渍污垢的吸附性较佳,织物的摩擦带电电压较低,有优异的抗静电性能,可称之为耐久性抗静电织物。
Claims (8)
1.武器装备专用高性能织物的制备方法,其特征在于,包括如下步骤:
步骤一:将吸湿功能性纱线进行织造,得坯布,将坯布进行漂白处理,得漂白坯布;
步骤二:将步骤一所得漂白坯布进行一次水洗,得一次水洗坯布;
步骤三:将步骤二所得一次水洗坯布进行抗菌处理,得抗菌坯布;
步骤四:将步骤三所得抗菌坯布进行二次水洗,得二次水洗坯布;
步骤五:将步骤四所得二次水洗坯布进行抗静电处理,得抗静电坯布;
步骤六:将步骤五所得抗静电坯布进行三次水洗,得三次水洗坯布;
步骤七:将步骤六所得三次水洗坯布进行亲水亲油处理,得亲水亲油坯布,其中所述亲水亲油处理具体为:将三次水洗坯布置于亲水亲油处理液中,一浸二轧,轧余率80%,所述亲水亲油处理液的制备方法为:按照水量计,将有机硅整理剂Goon802 20-25g/L,乙二胺油酸酯2-3g/L、月桂醇磷酸酯1-1.3g/L和磺基琥珀酸二辛酯钠0.5-1.0g/L依次加入水中,于40-45℃下混合搅拌均匀,即得;
步骤八:将步骤七所得亲水亲油坯布进行染色,染缸内注满水,升温至50-55℃,按照水量计,加入10-12g/L匀染剂,以20-30m/min的车速浸染20-30min,再加入20-30g/L染料,调节pH至5-6,以70-80m/min的车速浸染50-60min,对色后进行四次水洗,出缸,经定型烘干,即得所述武器装备专用高性能织物。
2.根据权利要求1所述的武器装备专用高性能织物的制备方法,其特征在于,功能性纤维为长绒棉纤维、大豆纤维或玉米纤维,所述织造为针织。
3.根据权利要求1所述的武器装备专用高性能织物的制备方法,其特征在于,步骤一中所述漂白处理具体为:按照水量计,将过氧化尿素10-13g/L,双氧水18-20mL/L,碳酸钠0.8-1.2g/L,脂肪醇聚氧乙烯醚1.2-1.5mL/L、十二烷基磺酸钠1.5-1.7g/L依次加入水中,搅拌均匀,调节溶液pH至9-10,升温至60-65℃,将坯布置于其中漂白50-60min。
4.根据权利要求1所述的武器装备专用高性能织物的制备方法,其特征在于,步骤三中所述抗菌处理具体为:将一次水洗坯布置于抗菌处理液中,一浸一轧,轧余率80%,所述抗菌处理液的制备方法为:按照水量计,将银离子抗菌整理剂Sanitized T25-25 12-15g/L、银离子抗菌整理剂RUCO-BAC AGP3-6g/L、羧甲基壳聚糖1-2g/L加入水中,搅拌均匀,即得。
5.根据权利要求1所述的武器装备专用高性能织物的制备方法,其特征在于,步骤五中所述抗静电处理具体为:按照水量计,将二次水洗坯布置于抗静电处理液中,一浸一轧,轧余率70%,所述抗静电处理液的制备方法为:将抗静电剂8-10g/L、碳酸氢钠1-2g/L加入水中,升温至40-50℃,搅拌均匀,即得。
6.根据权利要求1所述的武器装备专用高性能织物的制备方法,其特征在于,所述一次水洗、二次水洗、三次水洗、四次水洗时的温度为50-60℃。
7.根据权利要求1所述的武器装备专用高性能织物的制备方法,其特征在于,步骤八中所述烘干时的温度为160-170℃,车速为30-40m/min。
8.由权利要求1至7任一项所述的武器装备专用高性能织物的制备方法制得的武器装备专用高性能织物。
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