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Workability and Strength of Ceramsite Self-Compacting Concrete with Steel Slag Sand
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作者 Suiwei Pan Anqi Ren +4 位作者 yongli peng Min Wu Wanguo Dong Chunlin Liu Depeng Chen 《Journal of Renewable Materials》 SCIE EI 2023年第2期881-904,共24页
This study focuses on the workability and compressive strength of ceramsite self-compacting concrete with fine aggregate partially substituted by steel slag sand(CSLSCC)to prevent the pollution of steel slag in the en... This study focuses on the workability and compressive strength of ceramsite self-compacting concrete with fine aggregate partially substituted by steel slag sand(CSLSCC)to prevent the pollution of steel slag in the environment.The SF,J-ring,visual stability index,and sieve analysis tests are primarily employed in this research to investigate the workability of freshly mixed self-compacting concrete containing steel slag at various steel slag sand replacement rates.The experiment results indicate that CSLSCC with the 20%volume percentage of steel slag(VPS)performs better workability,higher strength,and higher specific strength.The 7-day compressive strength of CSLSCC with the 0.4 of the water-binder ratio(W/B),decreases with the increase of steel slag content,while the 28-day compressive strength increases significantly.The ceramsite self-compacting concrete with good comprehensive performance can be obtained when the substitution rate of steel slag sand for fine aggregate is less than 20%(volume percentage). 展开更多
关键词 Steel slag CERAMSITE self-compacting concrete WORKABILITY compressive strength
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螺环磷-氮协同反应型阻燃剂的合成及在环氧树脂中的应用 被引量:3
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作者 曹宇 彭永利 梁祎 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2020年第11期64-68,共5页
以三丙酮二胺、季戊四醇和三氯氧磷为原料,通过一锅法制备出一种新型环氧树脂反应型阻燃固化剂SPDPT,通过傅里叶变换红外光谱、核磁共振氢谱和磷谱,证明SPDPT制备成功。以4’,4-二氨基二苯砜(DDS)为共固化剂,共同固化环氧树脂制备了本... 以三丙酮二胺、季戊四醇和三氯氧磷为原料,通过一锅法制备出一种新型环氧树脂反应型阻燃固化剂SPDPT,通过傅里叶变换红外光谱、核磁共振氢谱和磷谱,证明SPDPT制备成功。以4’,4-二氨基二苯砜(DDS)为共固化剂,共同固化环氧树脂制备了本征型阻燃环氧固化物(EP/DDS/SPDPT)。热重分析结果表明,SPDPT的加入能提高EP热固性材料燃烧后的残炭量。当磷质量分数为1.0%时,EP/DDS/SPDPT-4样品的LOI值为26.4%,UL94达到V-0级。在环氧固化物中,其拉伸强度最高达到了37.2 MPa,弯曲强度最高达到了63.8 MPa,冲击强度最高达到了21.6 kJ/m^2。 展开更多
关键词 环氧树脂 阻燃 固化剂 残炭量 复合材料
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