Specific energy consumption is an important indicatorfora better understanding of the machinability of materials.The present study aims to estimate the specific energy consumption for abrasive metal cutting with ultra...Specific energy consumption is an important indicatorfora better understanding of the machinability of materials.The present study aims to estimate the specific energy consumption for abrasive metal cutting with ultrathin discs at comparatively low and medium feed rates.Using an experimental technique,the cutting power was measured at four predefined feed rates for S235JR,intermetallic Fe-Al(40%),and C45K with different thermal treatments.The variation in the specific energy consumption with the material removal rate was analyzed through an empirical model,which enabled us to distinguish three phenomena of energy dissipation during material removal.The thermal treatment and mechanical properties of materials have a significant impact on the energy consumption pattern,its corresponding components,and cutting power.Ductile materials consume more specific cutting energy than brttle materials.The specific cutting energy is the minimum energy required to remove the material,and plowing energy is found to be the most significant phenomenon of energy dissipation.展开更多
文摘目的孤立性肺结节(solitary pulmonary nodule,SPN)的定性诊断十分困难,PET/CT是目前评价良、恶性病变最具优势的影像学手段之一。文中用Meta分析方法综合评价18F-脱氧葡萄糖(18Fluorodexglucose,FDG)PET/CT显像诊断恶性孤立性肺结节的价值。方法以孤立性肺结节、FDG、PET/CT等为检索词,检索1994年1月至2009年7月的Medline数据库、西文生物医学期刊文献服务系统、外文生物医学期刊全文数据库、中国学术期刊网全文数据库等相关中英文文献。对符合标准的研究进行质量评估,用MetaDisc1.4软件进行异质性检验,综合敏感性、特异性和诊断优势比,绘制汇总受试者工作特征(summary receiver operating characteristic,SROC)曲线和计算曲线下面积(the area under the curve,AUC),并进行敏感性分析。结果共检索相关文献29篇,其中11篇符合标准纳入分析,A级1篇,B级10篇,各研究之间存在异质性,按照随机效应模型合并敏感性、特异性、诊断优势比(diagnostic odds ratio,DOR)及其95%可信区间分别为91%(87%~93%)、83%(78%~87%)和51.04(23.33~111.66),AUC为0.9383,Q值为0.875 3,纳入文献稳定性较好。结论 18F-FDG PET/CT显像能灵敏、准确地诊断恶性孤立性肺结节,具有较高的临床应用价值。
文摘Specific energy consumption is an important indicatorfora better understanding of the machinability of materials.The present study aims to estimate the specific energy consumption for abrasive metal cutting with ultrathin discs at comparatively low and medium feed rates.Using an experimental technique,the cutting power was measured at four predefined feed rates for S235JR,intermetallic Fe-Al(40%),and C45K with different thermal treatments.The variation in the specific energy consumption with the material removal rate was analyzed through an empirical model,which enabled us to distinguish three phenomena of energy dissipation during material removal.The thermal treatment and mechanical properties of materials have a significant impact on the energy consumption pattern,its corresponding components,and cutting power.Ductile materials consume more specific cutting energy than brttle materials.The specific cutting energy is the minimum energy required to remove the material,and plowing energy is found to be the most significant phenomenon of energy dissipation.