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石钟韶的“加法原理”
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作者 余醒 《中国电子商务》 2004年第5期72-73,共2页
4月18日,杭州。来自各界的专家学者、企业领袖代表聚首香格里拉饭店,共同研讨民营企业如何做强。新中大软件股份有限公司总裁石钟韶,在这个由杭州市信息化办公室、长江商学院、浙江省工商联主办的“先进管理,提升区域经济竞争力”的高... 4月18日,杭州。来自各界的专家学者、企业领袖代表聚首香格里拉饭店,共同研讨民营企业如何做强。新中大软件股份有限公司总裁石钟韶,在这个由杭州市信息化办公室、长江商学院、浙江省工商联主办的“先进管理,提升区域经济竞争力”的高峰论坛中,作了题为《三大魔戒管理》的演讲。石钟韶在演讲中说:“世界乃至宇宙都是对立统一的整体,但这种微妙的对立关系不易察觉。如果站在对立统一的高度去领悟企业管理,可以得到不少的启发。”经过这样的思考,石钟韶提出:管理=哲学+数学、技术=技能+艺术、竞争力=能力+执行力。他说,这是企业管理的三条魔幻戒律,可以帮助我们更深刻地理解一些优秀的文化、管理方式和技术,真正做好管理工作。 展开更多
关键词 石钟韶 新中大软件股份有限公司 “加法原理” 企业管理 管理方式 竞争力 技术
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Investigation on the cleaning of KDP ultra-precision surface polished with micro water dissolution machining principle 被引量:2
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作者 CHEN YuChuan GAO Hang +2 位作者 WANG Xu GUO DongMing TENG XiaoJi 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第1期27-35,共9页
A potassium dihydrogen phosphate(KDP) optical crystal was machined to an ultra-precision surface with water-in-oil(W/O) micro emulsion polishing fluid. The micro water dissolution principle utilized in the machining p... A potassium dihydrogen phosphate(KDP) optical crystal was machined to an ultra-precision surface with water-in-oil(W/O) micro emulsion polishing fluid. The micro water dissolution principle utilized in the machining process is discussed, its planarization mechanism is illustrated, and an ultra-precision polished surface with 2.205 nm RMS roughness is obtained. However, a substantial quantity of residual contamination remained on the polished surface after machining. This can seriously impact the optical performance of the crystal, and so it must be removed. Fourier transform infrared(FTIR) spectroscopy was used to conduct an investigation into the composition of the surface residue, and the results showed that the residue was comprised of organic chemicals with hydrocarbon chains and aromatic ether, i.e., mostly the polishing fluid. The cleaning method and the principle on which the KDP ultra precision surface investigation is based are discussed in detail, and the cleaning experiments with selected KDP-compatible organic solvents were then performed. FTIR transmittance spectra measurement and microscopic observations were employed to assess the effects of the cleaning process on the surface of the KDP crystal. The results showed that toluene cleaning achieved the most desirable results. This cleaning method produced a surface roughness of 1.826 nm RMS, which allows the KDP crystal to be applied to subsequent engineering applications. 展开更多
关键词 KDP optical crystal micro water dissolution machining micro emulsion fluid ultra-precision surface FTIR spectra surface residue CLEANING
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