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Abrasion of Candidate Spacesuit Fabrics by Simulated Lunar Dust

机译:模拟月尘对候选太空服面料的磨损

摘要

A protocol has been developed that produced the type of lunar soil abrasion damage observed on Apollo spacesuits. This protocol was then applied to four materials (Kevlar (DuPont), Vectran (Kuraray Co., Ltd.), Orthofabric, and Tyvek (DuPont)) that are candidates for advanced spacesuits. Three of the four new candidate fabrics (all but Vectran) were effective at keeping the dust from penetrating to layers beneath. In the cases of Kevlar and Orthofabric this was accomplished by the addition of a silicone layer. In the case of Tyvek, the paper structure was dense enough to block dust transport. The least abrasive damage was suffered by the Tyvek. This was thought to be due in large part to its non-woven paper structure. The woven structures were all abraded where the top of the weave was struck by the abrasive. Of these, the Orthofabric suffered the least wear, with both Vectran and Kevlar suffering considerably more extensive filament breakage.
机译:已经开发出一种协议,该协议产生了在阿波罗太空服上观察到的月球土壤磨损类型。然后将该协议应用于高级航天服的四种材料(凯夫拉尔(杜邦),维克特兰(可乐丽有限公司),Orthofabric和特卫强(杜邦))。四种新的候选面料中的三种(除Vectran以外的所有面料)可有效防止灰尘渗透到下面的层中。对于Kevlar和Orthofabric,这是通过添加有机硅层来实现的。在特卫强的情况下,纸张结构致密到足以阻挡灰尘的传输。特卫强所遭受的磨损最少。认为这主要是由于其非织造纸结构。机织结构全部被磨料磨破的地方。其中,Orthofabric的磨损最少,而Vectran和Kevlar的细丝断裂都大得多。

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