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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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水泥复膜塑编袋老化性能研究
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作者 于忠东 《塑料包装》 CAS 2013年第1期23-26,31,共5页
本文研究了水泥复膜塑编袋的老化性能,通过对水泥复膜塑编袋经紫外线直接照射后的拉伸负荷和断裂强度伸长率进行了对比实验分析。结果表明,随着实验时间的不断增加,其中未填加防老化剂的水泥复膜塑编袋在夏季露天阳光直接照射30天后,断... 本文研究了水泥复膜塑编袋的老化性能,通过对水泥复膜塑编袋经紫外线直接照射后的拉伸负荷和断裂强度伸长率进行了对比实验分析。结果表明,随着实验时间的不断增加,其中未填加防老化剂的水泥复膜塑编袋在夏季露天阳光直接照射30天后,断裂强度保持率14%;填加防老化剂的水泥复膜塑编袋在加速老化实验12小时后,相当于室外32天,断裂强度保持率65%。说明添加一定数量的抗老化剂比不加抗老化剂的复膜塑编袋基布断裂强度保持率明显提高,使用寿命明显改善,可以满足冬季水泥包装的需要。 展开更多
关键词 水泥复膜塑编袋 老化 拉伸负荷 断裂强度伸长率
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In situ thermomechanical processing to avoid grain boundary precipitation and strength-ductility loss of age hardening alloys 被引量:1
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作者 Yong-hao ZHAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第5期1205-1216,共12页
To avoid grain boundary(GB) precipitation during aging, a new strategy of in situ thermomechanical processing for age hardening alloys was proposed. Specifically, high-density nanoscale precipitates were introduced in... To avoid grain boundary(GB) precipitation during aging, a new strategy of in situ thermomechanical processing for age hardening alloys was proposed. Specifically, high-density nanoscale precipitates were introduced into ultrafine grain(UFG) interiors of 7075 Al alloy by equal-channel-angular(ECAP) processing at 250 ℃ for 8 passes, thus avoiding GB precipitation. Tensile test results indicated that the UFG 7075 Al alloy exhibits superior mechanical properties(yield strength of 350 MPa, ultimate tensile strength of 500 MPa, uniform elongation of 18% and tensile ductility of 19%) compared with the UFG 1050 Al counterpart(yield strength of 170 MPa, ultimate tensile strength of 180 MPa, uniform elongation of 2.5% and tensile ductility of 7%). Fracture surface morphology studies revealed numerous homogeneous micro shear bands in necking shrinkage areas of both UFG 7075 Al and 1050 Al alloys, which are controlled by cooperative GB sliding. Moreover, the introduction of nanoscale precipitates in UFG 7075 Al matrix weakened the tendency of shear fracture, resulting in a higher tensile ductility and more homogeneous deformation. Different from the GB precipitation during postmortem aging, in situ thermomechanical treatment dynamically formed GBs after precipitation, thus avoiding precipitation on GBs. 展开更多
关键词 age hardening alloys STRENGTH fracture elongation grain boundary precipitation in situ thermomechanical processing
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