本田公司应用最新的动力总成技术"地球梦科技",开发了1款3.5 L V6汽油机。该发动机的总体设计目标是降低二氧化碳排放,并向客户提供驾驶乐趣。"地球梦科技"的理念旨在降低排放的同时改善燃油经济性。为达到这一目标...本田公司应用最新的动力总成技术"地球梦科技",开发了1款3.5 L V6汽油机。该发动机的总体设计目标是降低二氧化碳排放,并向客户提供驾驶乐趣。"地球梦科技"的理念旨在降低排放的同时改善燃油经济性。为达到这一目标,并为用户提供驾驶乐趣,采用了三级可变气门正时及升程电控技术和可变气缸管理系统。将这种配气机构技术与缸内直接喷射技术相结合,可提升3.3%的功率,并降低燃油耗20%。为满足中型豪华轿车对噪声及振动水平的要求,开发了新型发动机悬置系统,以改善3缸运行模式的发动机振动。阐述了带可变气缸管理系统及缸内直接喷射系统的三级可变气门正时及升程电控技术、减摩技术,以及新型发动机悬置系统的结构及优势。展开更多
We demonstrated stable midinfrared(MIR) optical frequency comb at the 3.0 μm region with difference frequency generation pumped by a high power, Er-doped, ultrashort pulse fiber laser system. A soliton mode-locked161...We demonstrated stable midinfrared(MIR) optical frequency comb at the 3.0 μm region with difference frequency generation pumped by a high power, Er-doped, ultrashort pulse fiber laser system. A soliton mode-locked161 MHz high repetition rate fiber laser using a single wall carbon nanotube was fabricated. The output pulse was amplified in an Er-doped single mode fiber amplifier, and a 1.1–2.2 μm wideband supercontinuum(SC) with an average power of 205 m W was generated in highly nonlinear fiber. The spectrogram of the generated SC was examined both experimentally and numerically. The generated SC was focused into a nonlinear crystal, and stable generation of MIR comb around the 3 μm wavelength region was realized.展开更多
文摘本田公司应用最新的动力总成技术"地球梦科技",开发了1款3.5 L V6汽油机。该发动机的总体设计目标是降低二氧化碳排放,并向客户提供驾驶乐趣。"地球梦科技"的理念旨在降低排放的同时改善燃油经济性。为达到这一目标,并为用户提供驾驶乐趣,采用了三级可变气门正时及升程电控技术和可变气缸管理系统。将这种配气机构技术与缸内直接喷射技术相结合,可提升3.3%的功率,并降低燃油耗20%。为满足中型豪华轿车对噪声及振动水平的要求,开发了新型发动机悬置系统,以改善3缸运行模式的发动机振动。阐述了带可变气缸管理系统及缸内直接喷射系统的三级可变气门正时及升程电控技术、减摩技术,以及新型发动机悬置系统的结构及优势。
基金Japan Science and Technology Agency(JST)Japan Agency for Medical Research and Development(AMED)
文摘We demonstrated stable midinfrared(MIR) optical frequency comb at the 3.0 μm region with difference frequency generation pumped by a high power, Er-doped, ultrashort pulse fiber laser system. A soliton mode-locked161 MHz high repetition rate fiber laser using a single wall carbon nanotube was fabricated. The output pulse was amplified in an Er-doped single mode fiber amplifier, and a 1.1–2.2 μm wideband supercontinuum(SC) with an average power of 205 m W was generated in highly nonlinear fiber. The spectrogram of the generated SC was examined both experimentally and numerically. The generated SC was focused into a nonlinear crystal, and stable generation of MIR comb around the 3 μm wavelength region was realized.