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填料改性环氧树脂粘钢胶的制备及性能研究 被引量:4
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作者 曹国静 谭蕾 +5 位作者 李翠芹 郭百威 周燕霖 喻明宇 陆永美 涂龙斗 《广东化工》 CAS 2020年第4期25-26,共2页
采用十六烷基三甲基溴化氨(CTAB)对膨润土进行改性,制备改性环氧树脂粘钢胶,考察了改性膨润土对环氧树脂粘钢胶的拉伸性能和剪切性能的影想。结果表明,与商业改性膨润土相比,CTAB改性膨润土制备的环氧树脂粘钢胶具有更加优异的拉伸性能,... 采用十六烷基三甲基溴化氨(CTAB)对膨润土进行改性,制备改性环氧树脂粘钢胶,考察了改性膨润土对环氧树脂粘钢胶的拉伸性能和剪切性能的影想。结果表明,与商业改性膨润土相比,CTAB改性膨润土制备的环氧树脂粘钢胶具有更加优异的拉伸性能,但CTAB改性膨润土制备的环氧树脂粘钢胶剪切性能有所下降。 展开更多
关键词 填料改性 环氧树脂 拉伸强度 剪切强度
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改性环氧灌浆料在水电站地下厂房渗水修补中的应用研究
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作者 王胜山 陈忠 +1 位作者 薛未 赵强 《粘接》 CAS 2024年第5期57-60,共4页
水电站地下厂房是其关键性的建筑物,若是在施工或者设计环节出现问题导致渗漏,就会对水电站厂房的使用年限、功能产生影响。地下厂房渗漏水主要为厂房周围墙、底板地基出现渗漏,前者还包括孔洞、砼蜂窝渗漏。环氧树脂灌浆材料则是对从... 水电站地下厂房是其关键性的建筑物,若是在施工或者设计环节出现问题导致渗漏,就会对水电站厂房的使用年限、功能产生影响。地下厂房渗漏水主要为厂房周围墙、底板地基出现渗漏,前者还包括孔洞、砼蜂窝渗漏。环氧树脂灌浆材料则是对从基础防渗强化、砼裂缝应用颇为广泛的灌浆材料,相较于溶剂型环氧灌浆材料而言,水性环氧灌浆材料优点更为突出,呈现出可以用水进行清洗,运用具有安全性,气体较少,挥发性颇低等。按照环保要求,该水化材料的应用前景更为广阔。 展开更多
关键词 水电站 地下厂房 渗水处理 环氧树脂粘胶 灌封堵工艺
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内置薄壁H钢木组合梁连接界面受力性能试验研究 被引量:4
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作者 刘德贵 陈科材 +1 位作者 王宁 李建春 《建筑结构》 CSCD 北大核心 2021年第12期109-116,共8页
为明确内置薄壁H钢木组合梁所采用的抗剪螺钉+环氧树脂粘胶复合连接界面的组合受力机理和受力性能,进行了单纯抗剪螺钉连接、单纯环氧树脂粘胶连接和抗剪螺钉+环氧树脂粘胶复合连接界面的推出试验,以研究三种组合连接界面的破坏模式,获... 为明确内置薄壁H钢木组合梁所采用的抗剪螺钉+环氧树脂粘胶复合连接界面的组合受力机理和受力性能,进行了单纯抗剪螺钉连接、单纯环氧树脂粘胶连接和抗剪螺钉+环氧树脂粘胶复合连接界面的推出试验,以研究三种组合连接界面的破坏模式,获取三种组合连接界面的荷载-位移关系曲线、开裂荷载、极限荷载和有效抗滑移刚度等。分析结果表明,抗剪螺钉+环氧树脂粘胶复合连接综合了单纯抗剪螺钉连接和单纯环氧树脂粘胶连接的各自受力特性,避免了单纯抗剪螺钉连接和单纯环氧树脂粘胶连接的脆性破坏特征,相对于单纯抗剪螺钉连接和单纯环氧树脂粘胶连接表现出更高的连接界面抗剪承载力,并具有很好的延性和界面残余抗剪承载力。提出了连接界面抗剪承载力计算公式,该公式可用于计算单纯抗剪螺钉连接、单纯环氧树脂粘胶连接和抗剪螺钉+环氧树脂粘胶复合连接界面抗剪承载力,计算结果与试验结果吻合较好。 展开更多
关键词 内置薄壁H钢木组合梁 连接界面 抗剪螺钉连接 环氧树脂粘胶连接 界面抗剪承载力
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Modification on epoxy-based adhesive 被引量:5
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作者 郑孝霞 钱春香 《Journal of Southeast University(English Edition)》 EI CAS 2003年第2期155-159,共5页
This research adopted four methods to toughen epoxy adhesives. They were liquid hydroxyl group terminated polybutadiene (HTPB) rubber modification, silicon rubber modification, polyacrylate multiplicity elastomer par... This research adopted four methods to toughen epoxy adhesives. They were liquid hydroxyl group terminated polybutadiene (HTPB) rubber modification, silicon rubber modification, polyacrylate multiplicity elastomer particulates emulsion modification and chemical grafting modification. After modification, the shearing strength and the rupture elongation were tested. The interface and the chemical reaction between the modifiers and the epoxy were analyzed by scanning electron microscope (SEM) and infrared optical spectrum. The results show that the elastomer particulates modification and the chemical grafting modification can reach the better toughening effects. 展开更多
关键词 epoxy adhesive shearing strength rupture elongation MODIFIERS
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Experimental Design on Laminated Veneer Lumber Fiber Reinforced Composite: Processing Parameters and Its Durability
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作者 Utai Meekum Yumatom Mingmongkol( 《Journal of Civil Engineering and Architecture》 2012年第8期1029-1038,共10页
The investigating of the hot press process parameters on the flexural properties of LVL (Laminated Veneer Lumber) reinforced composites derived from rubber wood veneer reinforced with fiber glass woven and epoxy adh... The investigating of the hot press process parameters on the flexural properties of LVL (Laminated Veneer Lumber) reinforced composites derived from rubber wood veneer reinforced with fiber glass woven and epoxy adhesive were performed via the DOE (design of experimental) approach. It was discovered that pressure was the most significantly and negatively effect on the product properties. Enhancing in the mechanical properties was related to decrease the processing pressure. Beside, press time was also significantly and positively effect. Although time was not clearly reflect from the mechanical results, but it was detected from the ANOVA (analysis of variance)results. The mechanical properties were increased with increasing compression time. From the results, the optimal condition to maximize mechanical properties was assumed at low pressure, 15 bars, low temperature, 70℃, and long time, 60 mins. The durability testing including screw nail withdrawal strength, water absorption, and termite resistance of LVL reinforced composite were also studied. The results are shown that the LVL wood has superior properties when compare with solid woods. It was found the withdrawal strength of LVL reinforce composite was higher than the solid woods. As expected that solid woods, except eucalyptus, had low water absorption resistance as it more hygroscopic corresponded to LVL reinforced wood. Also solid woods, except teal(, had low resistance to termite attack. Therefore, LVL reinforced was the best candidate by mean of durability properties compared to solid wood. 展开更多
关键词 DOE LVL reinforced wood processing parameters durability testing.
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