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High-temperature endurable encapsulation material

机译:耐高温封装材料

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The accomplishment of fully functional high-pressure high-temperature (HPHT) well is possible only, when the packaging and interconnections in the well logging equipments can survive at higher temperatures. Currently, there are numerous choices for substrate materials and interconnection materials. However, there are hardly any encapsulation materials that can endure at 300°C. Thus, the limiting factor for the evaluation and monitoring of HPHT wells is; the availability of high-temperature endurable encapsulation material. In this paper, the endurability of three prospective candidates for high-temperature encapsulation have been characterized and reported. The three prospective candidates are benzocyclobutene (BCB), ceramic filled cyanate ester and quartz filled cyanate ester. The high-temperature endurability has been evaluated in this work by high-temperature storage at 300°C up to 500 hours. Adhesion strength of these prospective candidates with the alumina ceramic substrate and the Si die was verified by room shear testing and hot shear testing. It has been determined that the quartz filled cyanate ester could comply with the minimum indispensable requirement for this application, when sandwiched between alumina ceramic substrates, despite the loss of strength during long-term thermal aging at 300°C. The material degradation has been studied in this work, using thermo-gravimetric analysis.
机译:只有在测井设备中的包装和互连可以在更高的温度下存活时,才有可能完成全功能高压高温(HPHT)井。当前,衬底材料和互连材料有很多选择。但是,几乎没有任何封装材料可以在300°C下承受。因此,评估和监测HPHT井的限制因素是:耐高温封装材料的可用性。在本文中,已经表征和报道了三种预期的高温封装候选物的耐久性。三种可能的候选物质是苯并环丁烯(BCB),陶瓷填充的氰酸酯和石英填充的氰酸酯。在这项工作中,通过在300°C下最多保存500小时的高温存储来评估高温耐久性。通过室内剪切试验和热剪切试验验证了这些候选候选物与氧化铝陶瓷基体和硅芯片的粘合强度。已经确定,尽管在300°C的长期热老化过程中强度降低,但夹在氧化铝陶瓷基体之间时,石英填充的氰酸酯仍可满足该应用的最低必不可少的要求。在这项工作中,使用热重分析法研究了材料降解。

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