The effects of inclined water jets on bicomponent hydroentangled fabrics were investigated. The PET/COPET and PA6/PET hydroentangled fabrics were made by using designed inclined water jet apparatus. Effects of basis w...The effects of inclined water jets on bicomponent hydroentangled fabrics were investigated. The PET/COPET and PA6/PET hydroentangled fabrics were made by using designed inclined water jet apparatus. Effects of basis weight, water jets inclination angle and water jet pressure were discussed. The comparison was made on the average tensile strength of fabrics made by perpendicular water jets (0^o inclination angle) and inclined water jets of 20^o with pressure levels of 3 bars and 7 bars. It was found that increases of water jet pressure, the fabrics tensile strength were increased. Furthermore, increases of water jets inclination angle, fabric tensile strength of 60 g/m^2 fabrics decreased while for 100 g/m^2 fabrics tensile strength increased.展开更多
制备了锆钛酸铅(PZT)悬浮液,采用电射流沉积(EJD)技术,在硅衬底上沉积了PZT厚膜。研究了电射流沉积高度、流量及悬浮液混合条件对厚膜致密性的影响。结果表明:降低电射流沉积高度和流量有助于提高沉积PZT厚膜致密性;采用球磨方法充分混...制备了锆钛酸铅(PZT)悬浮液,采用电射流沉积(EJD)技术,在硅衬底上沉积了PZT厚膜。研究了电射流沉积高度、流量及悬浮液混合条件对厚膜致密性的影响。结果表明:降低电射流沉积高度和流量有助于提高沉积PZT厚膜致密性;采用球磨方法充分混合PZT悬浮液,沉积的PZT厚膜致密性明显提高。采用优化的电射流沉积参数和球磨20 h的PZT悬浮液,制备了10μm无裂纹PZT厚膜,其压电常数d33为67 p C·N-1,相对介电常数εr为255。展开更多
文摘The effects of inclined water jets on bicomponent hydroentangled fabrics were investigated. The PET/COPET and PA6/PET hydroentangled fabrics were made by using designed inclined water jet apparatus. Effects of basis weight, water jets inclination angle and water jet pressure were discussed. The comparison was made on the average tensile strength of fabrics made by perpendicular water jets (0^o inclination angle) and inclined water jets of 20^o with pressure levels of 3 bars and 7 bars. It was found that increases of water jet pressure, the fabrics tensile strength were increased. Furthermore, increases of water jets inclination angle, fabric tensile strength of 60 g/m^2 fabrics decreased while for 100 g/m^2 fabrics tensile strength increased.
文摘制备了锆钛酸铅(PZT)悬浮液,采用电射流沉积(EJD)技术,在硅衬底上沉积了PZT厚膜。研究了电射流沉积高度、流量及悬浮液混合条件对厚膜致密性的影响。结果表明:降低电射流沉积高度和流量有助于提高沉积PZT厚膜致密性;采用球磨方法充分混合PZT悬浮液,沉积的PZT厚膜致密性明显提高。采用优化的电射流沉积参数和球磨20 h的PZT悬浮液,制备了10μm无裂纹PZT厚膜,其压电常数d33为67 p C·N-1,相对介电常数εr为255。