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5篇 您的检索式:作者名="W.Hong"
    题名 作者 年代 出处 被引量
1Behavioral modeling of power amplifiers with dynamic fuzzy neural networks显示文摘J.Zhai J.Zhou L.Zhang W.Hong 0,,09:1
2Along-Track interferometric SAR imaging based on distributed compressed sensing显示文摘Y.G.Lin B.C.Zhang W.Hong 0,,:1
3利用抗降解剂提高轮胎耐屈挠疲劳和耐动态臭氧龟裂性能显示文摘轮胎制造商不断努力地试图取得良好的轮胎使用性能,使自己的产品在竞争中处于优势,生产寿命长且耐用的轮胎或重量轻的轮胎不仅可以降低轮胎成本,还可以降低滚动阻力。为了达到这一目的,抗降解剂是赋予轮胎卓越使用性能的必备因素。Sung W.Hong 周碧蓉 2001轮胎研究与开发2001,27,3:0
4卡车轮胎耐磨性的改善显示文摘轮胎工业尤其是卡车轮胎工业的主要目标是延长轮胎,特别是胎面的寿命以提高价格性能比,降低磨耗。因为轮胎的安全性很重要,所以橡胶化学品生产厂商不断致力于作用更加持久的抗降解剂、稳定的交联促进剂和硫化剂的开发,以延长胎体,包括帘布层和钢丝圈的寿命。Sung W.Hong 王韶晖 1998橡胶参考资料1998,28,6:0
5Investigation of magnetic inhibition effect on ion acceleration at high laser intensities显示文摘The irradiation of a target with high laser intensity can lead to self-generation of an intense magnetic field(B-field)on the target surface.It has therefore been suggested that the sheath-driven acceleration of high-energy protons would be significantly hampered by the magnetization effect of this self-generated B-field at high enough laser intensities.In this paper,particle-in-cell simulations are used to study this magnetization effect on sheath-driven proton acceleration.It is shown that the inhibitory effect of the B-field on ion acceleration is not as significant as previously thought.Moreover,it is shown that the magnetization effect plays a relatively limited role in high-energy proton acceleration,even at high laser intensities when the mutual coupling and competition between self-generated electric(E-)and B-fields are considered in a realistic sheath acceleration scenario.A theoretical model including the v 3 B force is presented and confirms that the rate of reduction in proton energy depends on the strength ratio between B-and E-fields rather than on the strength of the B-field alone,and that only a small percentage of the proton energy is affected by the self-generated B-field.Finally,it is shown that the degraded scaling of proton energy at high laser intensities can be explained by the decrease in acceleration time caused by the increased sheath fields at high laser intensities rather than by the magnetic inhibitory effect,because of the longer growth time scale of the latter.This understanding of the magnetization effect may pave the way to the generation of high-energy protons by sheath-driven acceleration at high laser intensities.H.Huang Z.M.Zhang B.Zhang W.Hong S.K.He L.B.Meng W.Qi B.Cui W.M.Zhoua 2021Matter and Radiation at Extremes2021,6,4:0
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