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硬质类石膏在古陶瓷补配修复时的性能研究
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作者 陈洪梅 李其江 +1 位作者 袁枫 王宪旅 《中国国家博物馆馆刊》 北大核心 2023年第12期138-146,共9页
普通石膏是古陶瓷修复常用的修复材料,硬石膏、高强模型石膏、特硬石膏、钻石硬石膏等硬质类石膏,因强度性能好,频繁被修复工作者使用,但硬度较大难以打磨是其不利因素,本研究发现普通石膏和硬质类石膏混合使用,能够达到取长补短的较好... 普通石膏是古陶瓷修复常用的修复材料,硬石膏、高强模型石膏、特硬石膏、钻石硬石膏等硬质类石膏,因强度性能好,频繁被修复工作者使用,但硬度较大难以打磨是其不利因素,本研究发现普通石膏和硬质类石膏混合使用,能够达到取长补短的较好效果,遂选取了市面上常见的硬质石膏作为实验样品,从石膏的抗折强度、粘结强度,表面硬度等对其进行研究,其研究结果不仅有利于深入了解硬质类石膏与普通石膏的不同性能,也有利于改善硬质类石膏在古陶瓷上的修复性能。 展开更多
关键词 普通石膏 硬质石膏 抗折度
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Strength Experiment and Mechanism Analysis of Cement Mortar with Sticky Rice Pulp
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作者 ZHANG Huzhi XIONG Xincai +6 位作者 LI Xiaobao ZHOU Luyun LI Li WU Shengfeng LI Yuqi FENG Shuai ZHOU Xiaofeng 《Wuhan University Journal of Natural Sciences》 CAS 2024年第4期383-390,共8页
Cement mortar with sticky rice pulp is an innovative composite material.Investigating its mechanical properties and strength mechanism is essential for the future engineering application.Taking the pulp concentration ... Cement mortar with sticky rice pulp is an innovative composite material.Investigating its mechanical properties and strength mechanism is essential for the future engineering application.Taking the pulp concentration and the mortar ages as the variables,we tested five groups of blocks for the compressive strength and flexural strength,and observed their microstructures with a scanning electronic microscope.The results indicated that the microstructure got dense if the added pulp had a concentration of about 0.3%,and thereby its flexural strength would significantly improve,while the hydration products agglomerated and the microstructure got loose if the added pulp had a concentration of more than 1.0%,which caused a substantial decline in flexural strength.Besides,the hydration reaction was hindered at the early stage due to the addition of the pulp;hence the early strength of the mortar is on the low side.According to the strength mechanism analysis,all the results are mainly attributed to the effects:"water-reduction",agglomeration and retarding,caused by the addition of the pulp. 展开更多
关键词 sticky rice pulp cement mortar compressive strength flexural strength age microstructure strength mechanism
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