国际纺织导报
國際紡織導報
국제방직도보
MELLIAND CHINA
2012年
4期
28-28,30;31
,共2页
R. L. Gotipamul%P. Dayama%M. S. Mohansundram%A. Mali%A. Sharma%毛莉姿(译)%李毓陵(校)
R. L. Gotipamul%P. Dayama%M. S. Mohansundram%A. Mali%A. Sharma%毛莉姿(譯)%李毓陵(校)
R. L. Gotipamul%P. Dayama%M. S. Mohansundram%A. Mali%A. Sharma%모리자(역)%리육릉(교)
织物%组织%拉伸强力%撕裂强力%冲击强力
織物%組織%拉伸彊力%撕裂彊力%遲擊彊力
직물%조직%랍신강력%시렬강력%충격강력
fabric%weave%tensile strength%tearing strength%ballistic strength
织物的组织结构通过组织因子和交织指数表达,这些因素之间的联系是r=0.98,R2=0.97。研究了这些参数对织物拉伸、撕裂和冲击强力的影响。织物的拉伸性能受其参数和结构的影响。因此,这项工作可以帮助理解织物相关强度的决定因素。试验研究织物中纱线相互交织或交错模式对拉伸、撕裂和冲击强力的影响。以12种具有代表性的不同交织方式织成的织物作为研究的对象。本试验工作表明:在这些不同的组织结构中,平纹的组织因子和交织指数是12种组织中最高的,花式组织最低,表明织造类型影响织物的强度性能。利用方差分析帮助进行结果分析。
織物的組織結構通過組織因子和交織指數錶達,這些因素之間的聯繫是r=0.98,R2=0.97。研究瞭這些參數對織物拉伸、撕裂和遲擊彊力的影響。織物的拉伸性能受其參數和結構的影響。因此,這項工作可以幫助理解織物相關彊度的決定因素。試驗研究織物中紗線相互交織或交錯模式對拉伸、撕裂和遲擊彊力的影響。以12種具有代錶性的不同交織方式織成的織物作為研究的對象。本試驗工作錶明:在這些不同的組織結構中,平紋的組織因子和交織指數是12種組織中最高的,花式組織最低,錶明織造類型影響織物的彊度性能。利用方差分析幫助進行結果分析。
직물적조직결구통과조직인자화교직지수표체,저사인소지간적련계시r=0.98,R2=0.97。연구료저사삼수대직물랍신、시렬화충격강력적영향。직물적랍신성능수기삼수화결구적영향。인차,저항공작가이방조리해직물상관강도적결정인소。시험연구직물중사선상호교직혹교착모식대랍신、시렬화충격강력적영향。이12충구유대표성적불동교직방식직성적직물작위연구적대상。본시험공작표명:재저사불동적조직결구중,평문적조직인자화교직지수시12충조직중최고적,화식조직최저,표명직조류형영향직물적강도성능。이용방차분석방조진행결과분석。
Fabric weave is expressed by weave factor and index of interlacement. The association between these factors was found to be r = 0. 98, R2 = 0. 97. The effect of these parameters on tensile, tearing and ballistic strength is also investigated. The tensile behavior of woven fabrics is known to be affected by its sett and construction. Hence, this work understands the dependence of the fabric weave and behavior of woven fabrics with reference to its strength. Experiments were conducted to study the effect of interlacing yarns, and their interlacement pattern on the tensile, tearing and ballistic strength of fabric. A significant influence of the distribution of interlacement was also observed for all twelve weaves. This experiment work showed that of these different weaves, plain weave has recorded the highest weave factor and index of interlacement of the order of I in both the cases and the figuring structure indicated the lowest, proving that the type of weave affects the strength properties of the woven fabrics. The results are analyzed with the help of analysis of variance (Anova).