首页|熔压温度对光纤面板抗弯强度的影响

熔压温度对光纤面板抗弯强度的影响

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光纤面板在微光夜视、空间探测、核诊断、医学诊疗等领域有着广泛的应用,在使用过程中对强度有一定要求,目前缺少相关研究,本文研究了熔压温度对光纤面板x、y、z三个方向抗弯强度的影响,采用三点弯曲法测试光纤面板的抗弯强度.结果表明:熔压温度为660℃时,二次复丝之间熔合不充分,存在间隙,光纤面板抗弯强度较低,x、y、z方向抗弯强度分别为107、93、114 MPa;熔压温度为670℃时,二次复丝之间间隙消除,但依然存在界面,抗弯强度有所提升,x、y、z方向抗弯强度分别为110、109、125 MPa;熔压温度为680℃时,二次复丝充分熔合,此时光纤面板抗弯强度在x、z方向满足复合材料混合定律,分别为123、127 MPa,y方向芯玻璃作为增强相对皮玻璃起到增强作用,抗弯强度为113 MPa.本文研究对提高光纤面板强度以满足装管和使用需求具有重要意义.
Effect of Melt-Pressing Temperature on Bending Strength of Fiber Optic Plate
Fiber optic plate is widely used in fields such as low-light level night vision,space detection,nuclear diagnosis,medical diagnosis and treatment,and has certain requirements for strength in application.However,there is currently a lack of relevant research.In this paper,the effect of melt-pressing temperature on the bending strength of fiber optic plate in x,y,and z directions by three point bengding method was studied.When the melt-pressing temperature is 660 ℃,the secondary multi-fiber fusion is insufficient,leading to gaps.The bending strength of fiber optic plate is low,with values in x,y and z directions of 107,93 and 114 MPa,respectively.As the melt-pressing temperature increases,the gap between the secondary multi-fiber disappears at 670 ℃,but there is still an interface,and the bending strength is improved,with values in x,y and z directions of 110,109 and 125 MPa,respectively.At the melt-pressing temperature of 680 ℃,the secondary multi-fiber is fully fused,and the bending strength of fiber optic plate meets the rule of mixture of composite in x and z directions,which is 123 and 127 MPa,respectively.Meanwhile,the core glass in y direction plays a reinforcing role to the cladding glass,and the bending strength is 113 MPa.This study is of great significance in improving the strength of fiber optic plate to meet the requirements of installation and use.

fiber optic platemelt-pressing temperaturebending strengthrule of mixturesecondary multi-fiberinterface

孙勇、赵劲凯、黄永刚、王威、王彩丽、孔壮、宋普光、孟凡禹

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中国建筑材料科学研究总院,绿色建筑材料国家重点实验室,北京 100024

光纤面板 熔压温度 抗弯强度 混合定律 二次复丝 界面

2024

硅酸盐通报
中国硅酸盐学会 中材人工晶体研究院

硅酸盐通报

CSTPCD北大核心
影响因子:0.698
ISSN:1001-1625
年,卷(期):2024.43(2)
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