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温度脉冲进口条件对单相介质一维非傅立叶导热问题的影响
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作者 范庆梅 卢文强 《中国科学院研究生院学报》 CAS CSCD 2004年第3期315-321,共7页
针对不同温度脉冲进口条件对非傅立叶导热问题的影响进行了模拟 ,数值预示了不同脉冲形式 ,以及不同脉冲频率产生的不同的非傅立叶导热特征 ;同时也数值预示了同一种脉冲作用下 ,热波导热。
关键词 非傅立叶导热 DPL模型 温度脉冲 热积聚 耗散效应
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基于CMOS迁移率与阈值电压特性的温度传感器 被引量:3
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作者 李蕾 毛陆虹 +2 位作者 黄晓综 谢生 张世林 《传感器与微系统》 CSCD 北大核心 2010年第5期102-104,108,共4页
针对射频识别(RFID)标签应用,采用SMIC.18 RF CMOS工艺设计了一种温度传感器。利用MOS管迁移率和阈值电压与温度的关系设计了延迟时间与温度相关的延迟单元,进而产生与温度相关的脉冲信号,并通过后续电路对脉冲采样计数,将温度信息转换... 针对射频识别(RFID)标签应用,采用SMIC.18 RF CMOS工艺设计了一种温度传感器。利用MOS管迁移率和阈值电压与温度的关系设计了延迟时间与温度相关的延迟单元,进而产生与温度相关的脉冲信号,并通过后续电路对脉冲采样计数,将温度信息转换成数字信号供RFID标签数字模块使用。仿真测试结果表明:当温度为-20~80℃时,温度传感器精度为1℃。标签模拟电路的总功耗电流为6μA。 展开更多
关键词 射频识别标签 温度传感器 温度脉冲转换 振荡器
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脉冲温控射频治疗晚期胰腺癌顽固性疼痛的疗效观察 被引量:4
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作者 戴睿武 汤礼军 +4 位作者 汪涛 闫勇 张丙印 庞勇 田伏洲 《中国疼痛医学杂志》 CAS CSCD 2009年第4期210-213,共4页
目的:探讨脉冲温控射频治疗晚期胰腺癌顽固性疼痛的疗效。方法:对46例伴有顽固性疼痛的晚期胰腺癌病人给予脉冲温控射频治疗,观察疼痛缓解、KPS评分以及并发症情况。结果:所有病人治疗后疼痛减轻,VAS评分明显减少(P<0.05)。精神、睡... 目的:探讨脉冲温控射频治疗晚期胰腺癌顽固性疼痛的疗效。方法:对46例伴有顽固性疼痛的晚期胰腺癌病人给予脉冲温控射频治疗,观察疼痛缓解、KPS评分以及并发症情况。结果:所有病人治疗后疼痛减轻,VAS评分明显减少(P<0.05)。精神、睡眠、营养状况等显著改善,KPS评分较术前明显增高(P<0.05)。少数病人(8.7%)出现轻度消化道并发症,经对症治疗后治愈。结论:脉冲温控射频是一种有效、安全的治疗晚期胰腺癌顽固性疼痛的手段,并能有效地改善病人生存质量。 展开更多
关键词 胰腺癌 脉冲温度控制射频 疼痛
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Synthesis and spark plasma sintering of Al-Mg-Zr alloys 被引量:2
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作者 N.Saheb A.S.Hakeem +2 位作者 A.Khalil N.Al-Aqeeli T.Laoui 《Journal of Central South University》 SCIE EI CAS 2013年第1期7-14,共8页
Although casting is commonly used to process aluminum alloys, powder metallurgy remains a promising technique to develop aluminum based materials for structural and functional applications. The possibility to synthesi... Although casting is commonly used to process aluminum alloys, powder metallurgy remains a promising technique to develop aluminum based materials for structural and functional applications. The possibility to synthesize Al-Mg-Zr alloys through mechanical alloying and spark plasma sintering techniques was explored. Al-10Mg-5Zr and Al-5Mg-1Zr alloyed powders were synthesized through wet ball milling the appropriate amount of elemental powders. The dried milled powders were spark plasma sintered through passing constant pulsed electric current with fixed pulse duration at a pressure of 35 MPa. The samples were vacuum sintered at 450, 500, 550, 600 and 620 ℃ for 10, 15 and 20 min. The Al-10Mg-5Zr alloy displays poor densification at lower sintering temperatures of 450, 500, 550 and 600 ℃. Its sinterability is improved at a temperature of 620 ℃ whereas sintering temperatures higher than 620 ℃ leads to partial melting of the alloy. It is possible to sinter the Al-5Mg-1Zr alloy at 450, 500 and 550 ℃. The increase of sintering temperature improves its densification and increases its hardness. The Al-5Mg-IZr alloy displays better densification and hardness compared to Al-10Mg-5Zr alloys. 展开更多
关键词 aluminum alloys mechanical alloying spark plasma sintering powder metallurgy
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Pulse modulated microwave and infrared thermography for superficial hyperthermia
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作者 马国军 江国泰 陈志宏 《Journal of Central South University》 SCIE EI CAS 2012年第7期1927-1931,共5页
A 3D temperature field distribution of biological tissue for superficial hyperthermia using a pulse modulated microwave (PMMW) was presented. A 3D sliced homogeneous phantom was radiated by the PMMW and an infrared ... A 3D temperature field distribution of biological tissue for superficial hyperthermia using a pulse modulated microwave (PMMW) was presented. A 3D sliced homogeneous phantom was radiated by the PMMW and an infrared thermal imager was applied to image temperature distribution throughout the phantom. The period of the PMMW is 3 s and the output power is 35 W. The temperature rises by at least 3 ℃ in the phantom when the duty cycle varies from 1/3, 1/2, 2/3 to 1 (denoted by scenarios 1-4). Both the accumulative temperature-volume histogram and the relative depth-area ratio histogram show that the maximum temperature rise (MTR) is 6.6 and 8 ℃ in scenarios 2 and 3, and they are superior to scenarios 1 and 4. Furthermore, the PMMW can control temperature field distribution of biological tissue. It provides both preliminary basis for thermal volume control and new technology for temperature control and monitor in superficial hyperthermia. 展开更多
关键词 3D temperature field distribution pulse modulated microwave (PMMW) infrared thermography superficialhyperthermia
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