现代清梳联的工艺优势及应用
2016-12-22 09:26:10   来源:   评论:0 点击:

为了提高纺纱质量、效率和品种适应性,从开松度调整、除杂效率、适纺性、能耗及智能化程度等方面详细介绍青岛宏大清梳联的工艺优势;根据市场原料及对成纱质量指标的要求,在纺纱难度
徐丰军,赵云波,倪敬达
(青岛宏大纺织机械有限责任公司,山东 青岛  266001)
 
摘要:为了提高纺纱质量、效率和品种适应性,从开松度调整、除杂效率、适纺性、能耗及智能化程度等方面详细介绍青岛宏大清梳联的工艺优势;根据市场原料及对成纱质量指标的要求,在纺纱难度较大的纺涤纶、差别化纤维和长绒棉三个品种上,通过清梳联机台配置优化、开发品种适应性更好的主机和辅机;用实例对比分析纺化纤、纤维素纤维和棉细号纱清梳联的工艺流程和技术措施。指出,青岛宏大清梳联能够适应棉、各种化纤、差别化纤维环锭纺、涡流纺、气流纺纺纱品种高产、高质的需要;在保证质量指标的前提下,通过清花和梳棉主机相关工艺配置的突破,进一步提高清梳联、梳棉机产量。
关键词:清梳联;清花单机;梳棉机;气流除杂;除杂效率;纤维损伤;棉结增长率;短绒增长率;智能化;能耗;稳定性
中图分类号:TS104.7      文献标志码:B      文章编号:1001-9634(2016)06-0028-05
 
收稿日期:2016-06-15
作者简介:徐丰军(1975—),男,山东青岛人,工程师,主要从事梳棉机设计开发、棉纺工艺及分梳器材方面的研究。
 
The Technological Advantages and Application of Modern Blow-card Combination
XU Fengjun,ZHAO Yunbo,NI Jingda
(Qingdao Hongda Textile Machinery Co.,Ltd.,Qingdao 266001,China)
 
Abstract:To improve spinning quality,efficiency and adaptability,starting with regulation of opening degree,blowing efficiency,spinability,energy consumption and intelligentization, introduction is made to Qingdao Hongda Textile Machinery Co.,Ltd. regarding the edge of the blow-card combination,considering the demand of market raw materials on yarn quality,main frames and auxiliaries with better adaptability are introduced through configuration of the blow-card combination in the difficult spinning processes of varieties of polyester,differential fiber and long stapled cotton.Contrastive analysis is done of processes and technical measures of spinning synthetic fiber,cellulose fiber and cotton fine yarn.It concludes that the blow-card combination made in Qingdao Hongda Textile Machinery Co.,Ltd.meets the needs of ring spinning,vortex spinning,air spinning of varieties of cotton fiber,synthetic fiber,differential fiber with high yield and high quality.Under the premise of quality insurance,improving process configuration breakthrough of processes in blowing and carding further improves the yield of blow-card combination.
Key Words:blow-card combination;single blow unit;card;air blowing;blowing efficiency;fiber damage;cotton linter growth;short fiber growth;intelligentization;energy consumption;stability
参考文献:
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