期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
GB 15083—2019国家标准及认证实施要求解读 被引量:2
1
作者 闫娜 张红曼 +2 位作者 芦海旭 张磊 莽鹤鹏 《机械工业标准化与质量》 2021年第2期20-25,共6页
本文介绍了GB 15083—2019 《汽车座椅、座椅固定装置及头枕强度要求和试验方法》新标准修订的主要技术内容,对比分析了新旧标准在标准要求、试验项目和试验方法方面的差异,并介绍了标准换版的认证实施要求。
关键词 GB 15083—2019 汽车座椅 动态碰撞测试 认证实施要求
在线阅读 下载PDF
欧盟ECE R17-10新规与GB 15083—2019相关差异解读 被引量:1
2
作者 黄杰 朱航凯 +1 位作者 胡路遥 刘春宇 《汽车维修技师》 2024年第22期113-114,共2页
ECER17于2021年6月更新到了第10版,与第9版相比,要求和测试方法上有很大的改动。新标准加入了鞭打试验、头枕高度保持试验、头枕非使用位置要求等,同时对头枕高度要求和测试方法也进行了新的定义。总体来说,新标准要求更加丰富和严苛,... ECER17于2021年6月更新到了第10版,与第9版相比,要求和测试方法上有很大的改动。新标准加入了鞭打试验、头枕高度保持试验、头枕非使用位置要求等,同时对头枕高度要求和测试方法也进行了新的定义。总体来说,新标准要求更加丰富和严苛,按照以往的惯例,我国国标GB 15083会考虑根据ECE R17进行修订。本文着重介绍ECE R17-10与GB 15083—2019的差异,为汽车座椅企业在产品研发和测评时提供参考。 展开更多
关键词 ECE R17 GB 15083 标准 头枕
原文传递
Microstructure and wear performance of Al5083/CeO_2/SiC mono and hybrid surface composites fabricated by friction stir processing
3
作者 M.AMRA Khalil RANJBAR S.A.HOSSEINI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第5期866-878,共13页
Friction stir processing(FSP) was utilized to produce surface composites by incorporating nano-sized cerium oxide(CeO2) and silicon carbide(SiC) particles individually and in combined form into the Al5083 alloy ... Friction stir processing(FSP) was utilized to produce surface composites by incorporating nano-sized cerium oxide(CeO2) and silicon carbide(SiC) particles individually and in combined form into the Al5083 alloy matrix. The study signified the role of these reinforcements on microstructure and wear behavior of the resultant surface composite layers. The wear characteristics of the resultant mono and hybrid surface composite layers were investigated using a pin-on-disc wear tester at room temperature. The microstructural observations of FSPed regions and the worn out surfaces were performed by optical and scanning electron microscopy. Considerable grain refinement and uniform distribution of reinforcement particles were achieved inside the nugget zone. All the composite samples showed higher hardness and wear resistance compared to the base metal. Among the composite samples, the hybrid composite(Al5083/CeO2/SiC) revealed the highest wear resistance and the lowest friction coefficient, whereas the Al5083/SiC composite exhibited the highest hardness, i.e., 1.5 times as hard as that of the Al5083 base metal. The enhancement in wear behavior of the hybrid composites was attributed to the solid lubrication effect provided by CeO2 particles. The predominant wear mechanism was identified as severe adhesive in non-composite samples, which changed to abrasive wear and delamination in the presence of reinforcing particles. 展开更多
关键词 A15083 alloy friction stir processing CEO2 SIC surface composites wear mechanism
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部