机械论文参考文献三:
[1]MAO Lin, SHEN Li, CHEN Jia-hui, et al. A promising biodegradable magnesium alloy suitable for clinical vascular stent application[J]. Scientific reports, 2017, 7:463431-12.
[2]YAO Su-juan, ZHANG Ying, CHU Bing-wu, et al. Application of magnesium and magnesium alloys[J]. World nonferrous metals, 2005(1):26-30.
[3]ZHAO Hong-yang, BIAN Pei, JU Dong-ying, et al.Electrochemical performance of magnesium alloy and its application on the sea water battery[J]. Journal of environmental sciences, 2009, 21(S1):S88-S91.
[4]SONG Y W, SHAN D Y, HAN E H. Electrode position of hydroxyapatite coating on AZ91D magnesium alloy for biomaterial application[J]. Materials letters, 2008, 62(17-18):3276-3279.
[5] Chu L J.Physical limitations of omni-directional antennas.J Appl Phys,1948,19:1163-1175
[6] Harrington R F.Effect of antenna size on gain,bandwidth,and efficiency.J Res Nat Bur Stand,1960,64:1-12
[7] McLean J S.A re-examination of the fundamental limits on the radiation Q of electrically small antennas.IEEE Trans Antennas Propagat,1996,44:672-676
[8] Wheeler H.The radiansphere around a small antenna.Proc IRE,1959,47:1325-1331
[9] Ding H.DARPA's mechanical antenna program could revolutionize military communications(in Chinese)。Conmilit,2017,4:71-73
[10] Prasad M N S,Huang Y,Wang Y E.Going beyond Chu-Harrington limit:ULF radiation with a spinning magnet array.In:2017 32nd General Assembly and Scientific Symposium of the International Union of Radio Science.Montreal:IEEE,2017
[11] Kemp M A,Franzi M,Haase A,et al.A high Q piezoelectric resonator as a portable VLF transmitter.Nat Commun,2019,10:1715
[12] Bickford J A,Duwel A E,Weinberg M S,et al.Performance of electrically small conventional and mechanical antennas.IEEE Trans Antennas Propagat,2019,67:2209-2223
[13] Bickford J A,McNabb R S,Ward P A,et al.Low frequency mechanical antennas:Electrically short transmitters from mechanically-actuated dielectrics.In:2017 IEEE Symposium on Antennas and Propagation.San Diego:IEEE,2017.1475-1476
[14] Selvin S,Prasad M N S,Huang Y,et al.Spinning magnet antenna for VLF transmitting.In:2017 IEEE Symposium on Antennas and Propagation.San Diego:IEEE,2017.1477-1478
[15] Prasad M N S,Selvin S,Tok R U,et al.Directly modulated spinning magnet arrays for ULF communications.In:2018 IEEE Radion and Wireless Symposium.Anaheim:IEEE,2018.171-173
[16] Fawole O C,Tabib-Azar M.An electromechanically modulated permanent magnet antenna for wireless communication in harsh electromagnetic environments.IEEE Trans Antennas Propagat,2017,65:6927-6936
[17] Barani N,Sarabandi K.Mechanical antennas:Emerging solution for very-low frequency(VLF)communication.In:2018 IEEE International Symposium on Antennas and Propagation.Boston:IEEE,2018.95-96
[18] Go?kowski M,Park J,Bittle J,et al.Novel mechanical magnetic shutter antenna for ELF/VLF radiation.In:2018 IEEE International Symposium on Antennas and Propagation.Boston:IEEE,2018.65-66
[19] Zheng H,Zhao J B,Xiong Q P,et al.Parallel plate VLF mechanical antenna.In:2018 IEEE International Symposium on Antennas and Propagation.Boston:IEEE,2018.751-752
[20] Gong S,Liu Y,Liu Y.A Rotating-magnet based mechanical antenna(RMBMA)for ELF-ULF wireless communication.PIER M,2018,72:125-133
[21] Lin H,Ren Y.Research on radiation mechanism and application of low frequency mechanical antenna(in Chinese)。In:Proceedings of 2018Symposium on Submarine Communication Technology.Wuhan,2018.268-269
[22] Wang Z X,Yang F,Cao Z X.An ultra-small rotating charge antenna and an amplitude-frequency modulation method(in Chinese)。China Patent,201810351522.4
[23] Zhou Q,Shi W,Liu B,et al.A mechanical low frequency antenna based on rotating magnetic dipole(in Chinese)。In:Proceedings of 2018Symposium on Submarine Communication Technology.Wuhan,2018:231-235
[24] Griffiths D J.Introduction to electrodynamics.4th ed.Upper Saddle River:Prentice Hall,2013
[25] Xia Z F.Electrets(in Chinese)。Beijing:Science Press,2001.1-2
[26] Suzuki M,Wada T,Takahashi T,et al.Nano-porous SiO2electret with high surface potential and high thermal resistance.In:IEEE International Conference on Micro Electro Mechanical Systems.San Francisco:IEEE,2014.417-410
[27] Gross B.Static charges on dielectrics.Br J Appl Phys,1950,1:259-267
[28] Hu B P.Status and development of rare-earth permanent magnetic materials(in Chinese)。J Magn Mater Devices,2014,45:66-77,80
[29] Skomski R,Manchanda P,Kumar P K,et al.Predicting the future of permanent-magnet materials.IEEE Trans Magn,2013,49:3215-3220
[30] Zhou S Z,Dong Q F,Gao X X.Sintered NdFeB Rare Earth Permanent Magnetic Materials and Technology(in Chinese)。Beijing:Metallurgical Industry Press,2014.1-21
[31] Morita T.Miniature piezoelectric motors.Sens Actuat A-Phys,2003,103:291-300
[32] Tian Z J,Wu W F.Research status and application of piezoelectric vibratory feeder device(in Chinese)。Mach Design Manuf,2011,11:54-56
[33] Guo J,Morita S,Yamagata Y,et al.Magnetostrictive vibrator utilizing iron-cobalt alloy.Sens Actuat A-Phys,2013,200:101-106
[34] Wang Y B,Liu C S,Zhao B.The present research and its application developing trend of power ultrasonic technology(in Chinese)。Mech Res Appl,2006,19:41-43
[35] Gerada D,Mebarki A,Brown N L,et al.High-speed electrical machines:Technologies,trends,and developments.IEEE Trans Ind Electron,2014,61:2946-2959
机械论文参考文献四:
[36] Maeda A,Tomita H.Power and Speed Limitations in High Speed Electrical Machines.In:IPEC 95.Yokohama,1995.1321-1326
[37] Zhang F G,Du G H,Wang T Y,et al.Review on development and design of high speed machines(in Chinese)。Trans China Electrotech Soc,2016,31:1-18
[38] Rahman M A,Chiba A,Fukao T.Super high speed electrical machines summary.In:2004 IEEE Power Engineering Society General Meeting.Denver:IEEE,2004.1272-1275
[40] YAN K,PANG L,GAO H,et al.The Influence of Sedation Level Guided by Bispectral Index on Therapeutic Effects for Patients with Severe Traumatic Brain Injury[J].World Neurosurg,2018,110:e671-e683.
[41] DUCHATEAU F,SAUNIER M,LARROQUE B,et al.Use of bispectral index to monitor the depth of sedation in mechanically ventilated patients in the prehospital setting[J].Emerg Med J,2014,31(8):669-672.DOI:10.1136/emermed-2012-202238.
[42] MAHMOOD S,PARCHANI A,EL-MENYAR A,et al.Utility of bispectral index in the management of multiple trauma patients[J].Surg Neurol Int,2014,5(1):141.DOI:10.4103/2152-7806.141890.
[43]CHENG Yu-hang, WU Yi-ping, CHEN Jian-guo, et al. Study on the structure of diamond-like carbon films by FTIR spectroscopy[J]. Journal of the Chinese Ceramic Society,1998(4):508-512.
[44]ENDO K, TATSUMI T. Fluorinated amorphous carbon thin films grown by helicon plasma enhanced chemical vapor deposition for low dielectric constant interlayer dielectrics[J]. Applied physics letters, 1996, 68(20):2864-2866.
[45]ZHAO Hai-long, LIU Zheng-tang, TIAN Hao, et al. Investigation on diamond-like carbon films prepared by RF magnetron reactive sputtering[J]. Mechanical science and technology, 2007, 26(10):1277-1280.
[46]XIONG Li-wei, PENG Huan-yang, ZHANG Ying, et al.Tribological properties and application of diamond-like carbon film[J]. Surface technology, 2016, 45(1):80-88.
[47]RISTEIN J, STIEF R T, LEY L, et al. A comparative analysis of a-C:H by infrared spectroscopy and mass selected thermal effusion[J]. Journal of applied physics, 1998, 84(7):3836-3847.
[48] MARSHMAN L A G,HENNESSY M,DELLE BAITE L,et al.Utility of Retrograde Amnesia Assessment Alone,Compared with Anterograde Amnesia Assessment in Determining Recovery After Traumatic Brain Injury:Prospective Cohort Study[J].World Neurosurg,2018,110:e830-e834.DOI:10.1016/j.wneu.2017.11.131.
[49] HERZER G,MIRTH C,ILLIEVICH U M,et al.Analgosedation of adult patients with elevated intracranial pressure[J].Wiener klin Wochenschr,2018,130(1/2):45-53.DOI:10.1007/s00508-017-1228-5.
[50] HONEYBUL S,HO K M.Predicting long-term neurological outcomes after severe traumatic brain injury requiring decompressive craniectomy:A comparison of the CRASH and IMPACT prognostic models[J].Injury,2016,47(9):1886-1892.DOI:10.1016/j.injury.2016.04.017.
[51]WU Jin-long, ZHOU Hui, ZHENG Jun, et al. Effects of flow ratio of H2 and CH4 on structure and friction properties of hydrogen diamond-like carbon films[J]. China surface engineering, 2015, 28(1):42-48.
[52] YAN K,PANG L,GAO H,et al.The Influence of Sedation Level Guided by Bispectral Index on Therapeutic Effects for Patients with Severe Traumatic Brain Injury[J].World Neurosurg,2018,110:e671-e683.DOI:10.1016/j.wneu.2017.11.079.
[53] ZAOUTER C,HEMMERLING T M,MION S,et al.Feasibility of Automated Propofol Sedation for Transcatheter Aortic Valve Implantation[J].Anesth Analg,2017,125(5):1505-1512.DOI:10.1213/ANE.000000001737.
[54] BARBATO M,BARCLAY G,POTTER J,et al.Correlation Between Observational Scales of Sedation and Comfort and Bispectral Index Scores[J].J Pain Symptom Manage,2017,54(2):186-193.DOI:10.1016/j.jpainsymman.2016.12.335.
[55]ZHANG Min, CHENG Fa-liang, YAO Hai-jun. Properties,preparation and applications of diamond-like carbon films[J].Surface technology, 2006, 35(2):4-9.
[56]ROBERTSON J. Diamond-like amorphous carbon[J].Materials science and engineering review, 2002, 37:129-181.
[57]ROY M E, WHITESIDE L A, XU J, et al. Diamond-like carbon coatings enhance the hardness and resilience of bearing surfaces for use in joint arthroplasty[J]. Acta biomaterialia, 2010(6):1619-1624.
[58]DING Xu-li, LI Qing-shan, KONG Xiang-he. Optical and electrical properties evolution of diamond-like carbon thin films with deposition temperature[J]. Chinese physics letters, 2009(2):263-266.
[59]ROMAN E, KALIN M, VIZINTIN J. The effect of temperature on the tribological mechanisms and reactivity of hydrogenated amorphous diamond-like carbon coatings under oil-lubricated conditions[J]. Thin solid films, 2007,515(7):3644-3652.
[60]HUANG Lei, YUAN Jun-tang, WANG Zhen-hua, et al.Effect of the temperature on diamond-like carbon(DLC)thin film based on LIS[J]. Applied mechanics and materials,2013, 421:212-216.
[61]BHARGAVA S, BIST H D, NARLIKAR A V, et al. Effect of substrate temperature and heat treatment on the microstructure of diamond-like carbon films[J]. Journal of applied physics, 1996, 79(4):1917-1925.
[62]MEI Xian-xiu, MA Teng-cai. Effects of substrate temperature on the chemical structure of diamond-like carbon films deposited by high-intensity pulsed ion beam ablation[J].Chemical journal of Chinese universities, 2003, 24(7):1262-1265.
[63]JI Xi-wang, HAO Jun-wen, XU Zhen-hua, et al. Effect of deposition temperature on surface morphology and performance of diamond-like-carbon coatings[J]. Materials for mechanical engineering, 2014, 38(11):40-45.
[64]MOBNER C, GRANT P, TRAN H, et al. Characterization of diamond-like carbon by Raman spectroscopy, XPS and optical constants[J]. Thin solid films, 1998, 317(1-2):397-401.
[65]LIFSHITZ Y, LEMPERT G D, GROSSMAN E. Substantiation of subplantation model for diamond-like film growth by atomic force microscopy[J]. Physical review letters, 1994, 72(17):2753-2756.
[66]XUE Qun-ji, WANG Li-ping. Diamond-like carbon-based film material[M]. Beijing:Science Press, 2015:8-26.
[67]CASIRAGHI C, PIAZZA F, FERRARI A C, et al. Bonding in hydrogenated diamond-like carbon by Raman spectroscopy[J]. Diamond and related materials, 2005, 14(3-7):1098-1102.
[68]LIU Fan-xin, CAO Zhi-shen, TANG Chao-jun, et al. Ultrathin diamond-like carbon film coated silver nanoparticlesbased substrates for surface-enhanced Raman spectroscopy[J]. ACS nano, 2010, 4(5):2643-2648.
[69]ROBERTSON J. Amorphous carbon[J]. Current opinion in solid state and materials science, 1996, 1(4):557-561.
[70]SUN Jian-hua, LIU Jin-long, WANG Qing-liang, et al.Raman spectra and wettability analysis of DLC films deposited on 316L stainless steel[J]. Surface technology,2011, 40(2):55-61.