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环境史视野下的近代中国火柴制造业 被引量:1
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作者 李志英 周滢滢 《晋阳学刊》 CSSCI 2012年第4期114-121,共8页
火柴的发明始于19世纪上半叶的欧洲。19世纪70年代起,中国火柴制造业出现,至20世纪30年代达到高峰。大量外资和华资火柴厂共同致力于在中国境内生产并销售火柴。火柴的制造带来了生态环境问题和生产、生活环境安全问题。火柴梗的制造消... 火柴的发明始于19世纪上半叶的欧洲。19世纪70年代起,中国火柴制造业出现,至20世纪30年代达到高峰。大量外资和华资火柴厂共同致力于在中国境内生产并销售火柴。火柴的制造带来了生态环境问题和生产、生活环境安全问题。火柴梗的制造消耗大量木材,日本、沙俄帝国主义依仗侵略特权,掠夺式、破坏式的大肆砍伐中国森林资源,严重破坏中国东北地区的森林资源,东北地区的生态环境呈恶化趋势。早期生产的黄磷火柴存在着严重的磷毒问题,污染生产环境,损害工人身体健康。生产中产生的有毒、有害气体还影响了周围居民聚居区的生活环境。随着技术的进步,黄磷火柴被弃用,磷毒的问题得到解决。但硫化磷火柴的生产依然存在严重的火灾隐患等安全问题。中国火柴制造业的发展史表明,环境问题的解决依赖技术的进步,但没有民族的独立和解放,工业发展中的环境问题无法尽快、彻底解决。 展开更多
关键词 火柴制造 火柴 火柴 森林资源消耗 磷毒
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一代富豪日本华侨麦少彭 被引量:1
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作者 罗晃潮 《华侨华人历史研究》 CSSCI 1994年第3期63-65,共3页
关键词 华侨社会 华侨教育 火柴工业 日本 华侨学校 股票市场 火柴制造 海外贸易 梁启超 慈善事业
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Numerical and experimental analysis of quenching process for cam manufacturing 被引量:2
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作者 唐倩 裴林清 肖寒松 《Journal of Central South University》 SCIE EI CAS 2010年第3期529-536,共8页
In order to obtain satisfactory mechanical properties for the cam used in high-power ship diesel engines, a new quenching technology was proposed by designing a two-stage quenching process with an alkaline bath as the... In order to obtain satisfactory mechanical properties for the cam used in high-power ship diesel engines, a new quenching technology was proposed by designing a two-stage quenching process with an alkaline bath as the quenching medium. To demonstrate the effectiveness of the proposed new quenching technology, both numerical analysis and experimental study were performed. The new quenching technology was analyzed using finite element method. The combined effects of the temperature, stress and microstructure fields were investigated considering nonlinear material properties. Finally, an experimental study was performed to verify the effectiveness of the proposed new quenching technology. The numerical results show that internal stress is affected by both thermal stress and transformation stress. In addition, the direction of the internal stress is changed several times due to thermal interaction and microstructure evolution during the quenching process. The experimental results show that the proposed new quenching technology significantly improves the mechanical properties and microstructures of the cam. The tensile strength, the impact resistance and the hardness value of the cam by the proposed new quenching technology are improved by 4.3%, 8.9% and 3.5% compared with those by the traditional quenching technology. Moreover, the residual stress and cam shape deformation are reduced by 40.0% and 48.9% respectively for the cam manufactured by the new quenching technology. 展开更多
关键词 quenching process cam manufacturing finite element method NUMERICAL simulation experimental study
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