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新型井下固化下沉式缝高控制剂的研制
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作者 张猛 范晓东 +3 位作者 田威 穆承广 王彦利 吕晓燕 《中国胶粘剂》 CAS 北大核心 2009年第12期17-21,共5页
以有机硅、松香树脂、石英粉和陶粒等为原料,研制出一种新型双组分井下固化下沉式缝高控制剂。其中A组分为固体颗粒,B组分为液态固化剂;施工时将双组分混合均匀后,随携砂液注入井中,然后在井温条件下沉降固化。重点讨论了体系的初凝时... 以有机硅、松香树脂、石英粉和陶粒等为原料,研制出一种新型双组分井下固化下沉式缝高控制剂。其中A组分为固体颗粒,B组分为液态固化剂;施工时将双组分混合均匀后,随携砂液注入井中,然后在井温条件下沉降固化。重点讨论了体系的初凝时间与温度的关系,以及B组分含量、井温和反应时间等因素对最终隔层强度的影响;利用显微镜技术观察了体系固化前后的微观结构变化,采用热重分析(TGA)法计算了液态B组分固化剂的利用率。结果表明:该缝高控制体系适用于井温为50~70℃的油井,得到的隔层可增加地层应力5~7 MPa,B组分的利用率为71.78%;该产品控缝效果良好,是一种应用前景较好的石油开采用缝高控制剂。 展开更多
关键词 转向剂 井下固化 缝高控制 下沉式 隔层强度 利用率
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Effect of plastic deformation on diffusion-rolling bonding of steel sandwich plates 被引量:1
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作者 Hong Li Jingtao Han 《Journal of University of Science and Technology Beijing》 CSCD 2006年第6期532-537,共6页
Diffusion bonding is one of the most important techniques for composite materials, while bonding temperature, holding time,and rolling reduction are the key parameters that affect the bonding strength of sandwich plat... Diffusion bonding is one of the most important techniques for composite materials, while bonding temperature, holding time,and rolling reduction are the key parameters that affect the bonding strength of sandwich plates. To study the effect of plastic deformation on the bonding strength, laboratory experiments were carried on a Gleeble Thermal Simulator to imitate the diffusion-rolling bonding under different reductions for steel sandwich plates. The bonding strength and interlayer film thickness were measured, and the element diffusion was analyzed using line scanning. The relationship between the bonding strength and “diffused interlayer” thickness was investigated. It has been found that the bonding strength increases with reduction, whereas the interlayer film thickness decreases gradually as the reduction increases. The diffusion under plastic deformation is obviously enhanced in comparison with that of nil reduction. The mechanism of plastic deformation effect on the diffusion bonding and related models have been discussed. 展开更多
关键词 steel sandwich plate diffusion-bonding plastic deformation bonding strength interlayer film thickness diffusion mechanism models
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