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研究生: 邱繼賢
Chiu, Chi-Hsien
論文名稱: 一種急跳度精微電解技術應用於高溫耐蝕合金之微孔型結構製造研究
Study on a micro-ECM technology with jerk movement for machining micro holed-structures on high-temperature corrosion-resistant alloy steel.
指導教授: 陳順同
Chen, Shun-Tong
口試委員: 宋震國
Sung, Cheng-Kuo
趙崇禮
Chao, Choung-Lii
張天立
Chang, Tien-Li
蔡俊毅
Tsai, Chun-Yi
蔣欣翰
Chiang, Hsin-Han
陳順同
Chen, Shun-Tong
口試日期: 2023/07/17
學位類別: 碩士
Master
系所名稱: 機電工程學系
Department of Mechatronic Engineering
論文出版年: 2023
畢業學年度: 111
語文別: 中文
論文頁數: 135
中文關鍵詞: 精微電解急跳度運動微孔型結構內擴內縮
英文關鍵詞: micro-ECM, jerk movement, micro holed-structures, inward expansion, inward shrink
研究方法: 實驗設計法次級資料分析調查研究主題分析
DOI URL: http://doi.org/10.6345/NTNU202301544
論文種類: 學術論文
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  • 摘要 i Abstract ii 致謝 iii 目錄 iv 表目錄 vii 圖目錄 viii 符號說明 xi 第一章 緒論 1 1.1前言 1 1.2文獻回顧 3 1.2.1現今產業之微結構應用文獻 3 1.2.2微結構加工之相關文獻探討 9 1.2.3精微電化學技術發展及應用 14 1.3研究動機 15 1.4研究目的 16 1.5研究方法 17 第二章 實驗原理及應用 20 2.1電化學原理 20 2.2急跳度 22 2.3法拉第定理 23 2.4 Parylene薄膜真空CVD沉積製程原理 25 第三章 實驗設備 26 3.1實驗與加工設備 26 3.1.1 CNC線切割機 26 3.1.2 CNC數值控制綜合加工機 26 3.1.3平面磨床 27 3.1.4波形產生器 28 3.1.5電壓放大器 29 3.1.6高速鑽削旋轉主軸 29 3.2實驗量測設備 31 3.2.1光學顯微鏡 31 3.2.2掃描式電子顯微鏡 31 3.2.3雷射共軛焦顯微鏡 32 3.3實驗材料 33 3.3.1鎳鉻鉬鋼(Ni-Cr-Mo alloy steel)試片 33 3.3.2碳化鎢鑽頭與電極 34 3.3.3硝酸鈉(NaNO3)電解液 35 第四章 實驗探討 36 4.1周面絕緣之螺旋電極製作 36 4.1.1 C型Parylene之絕緣層鍍膜 36 4.1.2電解電極之端面研磨 38 4.2特殊微孔製造流程 39 4.2.1精微同軸電解機台開發 39 4.2.2深孔啄鑽 42 4.2.3特殊微孔電解 43 4.3電解電極之加工位移路徑程式設計 45 4.3.1加速度電解路徑程式設計 45 4.3.2急跳度電解路徑程式設計 46 4.4剖切特殊微結構 48 第五章 微孔電解加工實驗 50 5.1三種波形比較 50 5.2不同頻率比較 57 5.3不同電壓比較 65 5.4不同急跳度比較 73 第六章 特殊異形微孔製作驗證 83 6.1倒錐微孔型結構 84 6.2正錐微孔型結構 87 6.3沙漏型內縮微流通道結構 90 6.4鼓脹型內擴微流通道結構 93 6.5速度與電解關係 96 第七章:結論、貢獻與展望 103 7.1研究結論 103 7.2研究成果 104 7.3研究貢獻 106 7.4未來展望 107 參考論文 109 附錄 122 1. J 0.00001 mm/s3程式路徑 122 2. J 0.00002 mm/s3程式路徑 124 3. J 0.00004 mm/s3程式路徑 126 4. J 0.00008 mm/s3程式路徑 128 5. J - 0.00002 mm/s3程式路徑 130 6. J ±0.00002 mm/s3程式路徑 132 7. J ∓0.00002 mm/s3程式路徑 134

    1.Alhadef, L.L., Curtis, D.T., Marshall, M.B., Slatter, T., 2018. The Application of Wire Electrical Discharge Machining (WEDM) in the Prototyping of Miniature Brass Gears, ScienceDirect, Procedia CIRP 77(18), 642–645.

    2.Bangui, H., Buhnova, B., Kusnirakova, D., Halasz, D., 2023, Trust management in social Internet of Things across domains, Internet of Things, Volume 23, 100833.

    3.Serena, B., 2019, The Future of MEMS, SEMI.

    4.Zhou, Y., Wang, S., Chen, H., Zou, J., Ma, L., Yin, G., 2023, Study on surface quality and subsurface damage mechanism of nickel-based single-crystal superalloy in precision turning, Volume 99, 230-242.

    5.Wu, X., Chen, Z., Ke, W., Jiang, F., Zhao, M., Li, L., Shen, J., Zhu, L., 2023, Investigation on surface quality in micro milling of additive manufactured Ti6Al4V titanium alloy, Volume 101, 446-457.

    6.Chen, Z., Yu, Q., Shimada, K., Liu, P., He, Y., Hu, Y., Wang, X., Zhou, T., Mizutani, M., 2022, High-precision and high-efficiency fabrication of blazed grating by ultrasonic-assisted ultraprecision planning, Volume 311, 117802.

    7.Takumi, S., Yasuhiro, K., Masahiko, F., Katsutoshi, T., 2018. Influence of servo characteristics on crack generation in ultra-precision grinding of optical glass lenses, Procedia CIRP 77, 130-133.

    8.Sun, Z., Geng, D., Meng, F., Zhou, L., Jiang, X., Zhang, D., 2023, High performance drilling of T800 CFRP composites by combining ultrasonic vibration and optimized drill structure, Volume 134, 107097.

    9.Li, G., Natsu, W., Yang, J., Yu, Z., 2022, Bubble flushing effect in micro EDM drilling and its relation with debris, Journal of Materials Processing Technology 305.

    10.Shangguan, S., Zhang, J., Wang, W., Shi, W., Li, Z., Liu, D., Qi, D., Zheng, H., 2023, Study on the periodic structure of polycrystalline GeSn prepared by femtosecond pulse laser direct writing, Volume 167, 109606.

    11.Galati, M., Defanti, S., Vincenzi, N., Marchiandi, G., Gatto, A., Iuliano, L., 2023, A preliminary account of electro-chemical machining of Ti-48Al-2Nb-2Cr produced by electron beam melting, Volume 112, 322-327.

    12.Li, T., Shen, C., Zhu, Z., Li, A., Xue, Z., 2023, Electroforming of submillimeter scale array structures with a jet-flush mixed flow field, Volume 96, 99-109.

    13.Li, R., Yang, L., Song, L., Zhou, C., Zhou, J., Chen, T., Wu., Zeng, Y., Ma, K., Yue, H., A thin LiGa alloy layer from in-situ electroreduction to suppress anode dendrite formation in lithium-sulfur pouch cell, 2023, A thin LiGa alloy layer from in-situ electroreduction to suppress anode dendrite formation in lithium-sulfur pouch cell, Volume 455, 140707.

    14.Guo, Y., Xu, Z., Curto, A., Zeng, Y.J., Van, D., 2023, Plasmonic semiconductors: materials, tunability and applications, Volume 138, 101158.

    15.Khakbaz, M.M., 2023, Numerical investigations of 2-D optical free-form couplers for surface connections of photonic integrated circuits, Volume 10, 100351.

    16.Li, X., Ming, P., Ao, S., Wang, W., 2022, Review of additive electrochemical micro-manufacturing technology, Volume 173, 103848.

    17.Park, K.E., Wu, C.J., Chehab, B., 2023, One-year Outcomes of XIENCE Skypoint 48-mm Drug-Eluting Stents in Long Coronary Lesions: The SPIRIT 48 Trial, Available online 18, 101001.

    18.Aya, T.G., Ziv, Y., Mittelman, L., Barzilai, A., Shiloh, Y., 2013, Volume 134, Issue 10, 496-505.

    19.Jaime, M.S., Lucena, R., Cárdenas, S., 2023, Nylon 6-cellulose composite hosted in a hypodermic needle: Biofluid extraction and analysis by ambient mass spectrometry in a single device, Available online 29.

    20.Abari, J., Heuninck, E., Mohammad, A.S., Topsakal, V., 2023, True keyhole cochlear implant surgery, Volume 44, Issue 4, 103926.

    21.Mathur, S., Singh, D., Ranjan, R., 2023, Genetic circuits in microbial biosensors for heavy metal detection in soil and water, Volume 652, Pages 131-137.

    22.Yuan, Q., Cheng, Z., Li, X., 2023, Dynamics of periodic solution to a electrostatic Micro-Electro-Mechanical system, Volume 116, 106828.

    23.Shaheen, B., Kocsis, A., Németh, I., 2023, Data-driven failure prediction and RUL estimation of mechanical components using accumulative artificial neural networks, Engineering Applications of Artificial Intelligence, Volume 119, 105749.

    24.Baek, H., Khan, A.M., Kim, Y., 2023, A bidirectional rotating actuator by using a single shape memory alloy wire in a double bend shape, Sensors and Actuators A: Physical, Available online, 114526.

    25.Ammar, A.H., Lu, T., Bai, J., Adiraju, A., 2023, Versatile sensing capabilities of layer-by-layer deposited polyaniline-reduced graphene oxide composite-based sensors, Sensors and Actuators B: Chemical, Volume 390, 133988.

    26.Faraji, H., Yıldız, Ç., Arshad, A., 2023, Passive thermal management strategy for cooling multiple portable lectronic components: Hybrid nanoparticles enhanced phase change materials as an innovative solution, Journal of Energy Storage, Volume 70, 108087.

    27.Wang, X.M., Chai, Y., Wang, Z.P., Yu, J., 2023, A linear and large-range pressure sensor based on hierarchical structural SnO2@carbon nanotubes/polyurethane sponge, Ceramics International, Available online.

    28.Pournia, M., Kolahdouz, M., Fathipour, M., Zadegan, H.Z., 2023, Empirical model for substrate resistivity influence on MEMS capacitive accelerometer performance, Sensors and Actuators A: Physical, Volume 358, 114422.

    29.Jia, Z., Dang, S., Yu, D., Fan, W., 2023, Cantilever vibration sensor based on Fiber Bragg Grating temperature compensation, Optical Fiber Technology, Volume 75, 103183.

    30.Zheng, Z., Huang, K., Lin, C., Huang, W., 2023, Analytical modeling of subsurface damage and material removal energy in elliptical vibration cutting of micro-structures on brittle materials, Journal of Materials Research and Technology, Available online.

    31.Amin, M., Singh, M., Ravi, K.R., 2023, Fabrication of superhydrophobic PLA surfaces by tailoring FDM 3D printing and chemical etching process, Applied Surface Science, Volume 626, 157217.

    32.Shi, M., Song, X., Su, W., Wei, J., Lv, P., Yang, J., Yu, G., 2023, Effect of the nozzle structure on the flame stability and OH* chemiluminescence of CH4/O2 inverse diffusion impinging flame, Fuel, Volume 352, 129153.

    33.Jiang, J., Tang, C., Li, Y., Lin, Z., 2023, Cell pellet from fixative medium of transbronchial lung biopsy sample improves lung cancer ancillary test, Lung Cancer, Volume 175, 9-16.

    34.Silva, K.D., Arif, K., 2023, High-speed 3D printing for microfluidics: Opportunities and challenges, Available online 10.

    35.Saadat, S.M., Sharma, M., Agarwal, M., Tiwari, M., Incorporation of fuel cell in oil refinery a step to achieve net zero-carbon emission goal, Available online 12.

    36.Lim, I.S., Lee, Y.H., Lee, Y., Kang, B., Young, J., 2023, In-plane design strategy of gas diffusion layer and optimization to improve performance and current distribution uniformity in polymer electrolyte membrane fuel cell, Renewable Energy, Volume 215, 118865.

    37.Marin, G.E., Osipov, B.M., Titov, A.V., Akhmetshin, A.R., 2023, Simulation of the operation of a gas turbine installation of a thermal power plant with a hydrogen fuel production system, International Journal of Hydrogen Energy, Volume 48, Issue 12, 4543-4550.

    38.Folorunso, O., Olukanmi, P., Thokozani, S., 2023, Conductive polymers’ electronic structure modification for multifunctional applications, Volume 35, 106308.

    39.Sun, Z., Backović, G., Thielemans, W., 2023, Effect of sulfated/carboxylated cellulose nanocrystals with different degrees of substitution on the morphology and electrochemical performance of polypyrrole electrodes, Journal of Power Sources, Volume 580, 233351.

    40.Chuang, H.C., Chang, T.S., Sanchez, J., 2019, Fabrication of high aspect ratio NiP nanowires from blind-hole AAO templates by sc-CO2 electroless plating, Materials Letters, Volume 236, 657-660.

    41.Yohana, E., Tauviqirrahman, M., Ismail, R., The effect of cylinder wall cooling and vortex finder (tapered in-out) geometry on temperature, heat rate, and flow field to increase cyclone performance using CFD, Case Studies in Chemical and Environmental Engineering, Volume 7, 100311.

    42.Zardoya, A.R., Loroño, I.K., Bengoetxea, I.O., 2023, Research on the new combustion chamber design to operate with low methane number fuels in an internal combustion engine with pre-chamber, Energy, Volume 275, 127458.

    43.Zhu, X., Li, G., Mo, J., Ding, D., 2023, Electrical discharge machining of semiconductor materials: A review, Journal of Materials Research and Technology, Volume 25, 4354-4379.

    44.Prakash, S.O., Jeyakumar, M., Sanjay Gandhi, B., 2022, Parametric optimization on electro chemical machining process using PSO algorithm, Volume 62, Part 4, 2332-2338.

    45.Ghavidel, A.K., Zadshakoyan, M., 2023, Innovative approach using ultrasonic-assisted laser beam machining for the fabrication of ultrasensitive carbon nanotubes-based strain gauges, Optics and Lasers in Engineering, Volume 161, 107325.

    46.Wang, Q., Yao, P., Li, P., 2023, Inverted pyramid structure on monocrystalline silicon processed by wet etching after femtosecond laser machining in air and deionized water, Optics & Laser Technology, Volume 157, 108647.

    47.Khadtare, A.N., Pawade, R.S., Joshi, S., 2020, Surface integrity studies for straight and inclined hole in micro-drilling of thermal barrier coated Inconel 718: A turbine blade application, Precision Engineering, Volume 66, Pages 166-179.

    48.Yang, H., Deng, L., Guo, W., 2013, Long-range ordered straight holes manufacturing in polyimide for proton exchange membrane fuel cells, Optics & Laser Technology, Volume 54, 413-418.

    49.Zhu, Y.J., Zhang, X.X., Sun, L.Y., Wang, Y., Zhao, Y.J., 2023, Engineering Human Brain Assembloids by Microfluidics. Advanced Materials 35(14), 2210083.

    50.Yeon, J.H., Na, D.K., Park, J.K., 2010. Hepatotoxicity assay using human hepatocytes trapped in microholes of a microfluidic device. ELECTROPHORESIS 31(18), 3167-3174.

    51.Sylvain, B., François B., 2006. Experimental Investigation of Film Cooling Flow Induced by Shaped Holes on a Turbine Blade, Annals of the New York Academy of Sciences, 934, 313-320.

    52.Qian, X., Yan, P., 2023, Effect of thermal barrier coatings and integrated cooling on the conjugate heat transfer and thermal stress distribution of nickel-based superalloy turbine vanes, Energy, Volume 277, 127774.

    53.Chen, D., Du, Q., Film cooling and aerodynamic loss performance of turbine vanes with fan-shaped and wave-trenched holes, 2023, Applied Thermal Engineering, Volume 230, Part A, 120643.

    54.Manigandan, S., Praveenkumar, T.R., 2023, Role of hydrogen on aviation sector: A review on hydrogen storage, fuel flexibility, flame stability, and emissions reduction on gas turbines engines, Fuel, Volume 352, 129064.

    55.陳琮瑜,2008,低壓噴油嘴設計與微機電製程研發,國立清華大學動力機械工程學系博士論文,臺灣博碩士論文知識加值系統。

    56.Li, F., Feng, G., Yang, X., Li, X., Ma, G., Lu, C., 2020, Research on microhole processing technology based on the femtosecond-laser spiral trepanning method, Applied Sciences 10, 7508.

    57.Santosh, K.Y., Abhishek S., Kishore D., 2022. Experimental study of hole overcut and taper during electrochemical discharge machining (ECDM) of CFRP composite, Materials Today 59, 1054-1058.

    58.Elhami, S., Razfar, M.R., 2017, Analytical and experimental study on the integration of ultrasonically vibrated tool into the micro electro-chemical discharge drilling, Precision Engineering 47, 424-433.

    59.郭巾萍,2021,電鑄鑽石輪刀之線上旋轉電解銳化研究,國立臺灣師範大學機電工程學系碩士論文,臺灣博碩士論文知識加值系統。

    60.Chen, S.T., Lai, Y.C., 2012, Development of micro co-axial diamond wheel-tool array using a hybrid process of electrochemical co-deposition and RWEDM technique, Journal of Materials Processing Technology 212, 2305-2314.

    61.Chang, Y., Yao, X., Chen, Y.Y., Li H., Zou, D., 2023, Review on ceramic-based composite phase change materials: Preparation, characterization and application, Composites Part B: Engineering, Volume 254, 110584.

    62.Turkmen, A.C., Mayken, E.A., Celik, C., Sunden, B., Soyhan, H.S., 2023, Impact of the temperature variation on the thermal conductivity of gas diffusion layers for polymer electrolyte fuel cells, Fuel Volume 345, 128097.

    63.Li, F., Zhao, W., Wang, Y.S., Li, D.G., Song, D.D., Li, Q.L., Wen, W.L., 2023, Large dispersion-managed broadband high-energy fiber femtosecond laser system with sub 300 fs pulses and high beam quality output, Optics & Laser Technology, Volume 157, 108653.

    64.Chen, M.L., Guo, B.S., Jiang, L., Liu, Z., 2023, Analysis and optimization of the heat affected zone of CFRP by femtosecond laser processing, Optics & Laser Technology, Volume 167, 109756.

    65.Shen, J., Saito, K., Tokitani, M., Muroga, T., 2023, Effects of annealing temperature on microstructure and hardness of cold rolled high-purity V-4Cr-xTi alloys, Fusion Engineering and Design, Volume 194, 113905.

    66.Kumar, A., Singh, A., Suhane, A., Singh, A.K., Verma, P.K., 2023, Wear and corrosion behavior of high entropy alloys, Available online 16 June.

    67.Rowan-Robinson, R.R., Leong, Z., Morley, N.A., 2023, CoFeMn0.5Al0.25: A high magnetisation CoFe based soft alloy with reduced Co content, Materials Chemistry and Physics, Volume 299, 127518.

    68.Liu, H., Yang, T., Tian, X.Q., Chen, S., Dong, F.F., Jiang, H., 2022, Iterative method for obtaining nonuniform grinding-induced residual stress distribution of silicon wafers based on global deformation, Materials Science in Semiconductor Processing, Volume 150, 106971.

    69.Uckol, H.I., Ilhan, S., 2023, Characterization of DC corona discharge current pulses using high-frequency measurement techniques, Measurement, Volume 218, 113154.

    70.Karimi, A.H., Alahdadi, S., Ghayour, M., 2021, Dynamic analysis of a rectangular plate subjected to a mass moving with variable velocity on a predefined path or an arbitrary one, Thin-Walled Structures, Volume 160, 107340.

    71.Guo, L.G., Fahs, M.W., Koohbor, B., Hoteit, H., Younes, A., Gao, R., 2023, Coupling mixed hybrid and extended finite element methods for the simulation of hydro-mechanical processes in fractured porous media, Computers and Geotechnics, Volume 161, 105575.

    72.Jain, A.K., Pandey, P.M., 2016, Study of Peck drilling of borosilicate glass with μRUM process for MEMS, Journal of Manufacturing Processes, Volume 22, 134-150.

    73.Tan, G., Li, H., Wang, W.S., Kong, Q.W., Jiang, L., Zhang, S.F., Wei, X.L., 2023, A rapid evaluation method based on natural frequency for post-earthquake traffic capacity of small and medium span bridges, Engineering Structures, Volume 280, 115681.

    74.Yang, K.M., Wang, J.P, Wu, L., 2023, Controllable growth α-In2Se3 flakes by chemical vapor deposition, Results in Physics, Volume 51, 106643.

    75.Chmelikova, L., Fecko, P., Chmelik, J., Skacel, J., Otahal, A., Fohlerova, Z., 2023, Demolded hollow high aspect-ratio parylene-C micropillars for real-time mechanosensing applications, Applied materialstoday, Volume 31, 101736.

    76.Li, J.X., Ye, J.W., 2023, Enhanced oxidation resistance of single crystal tungsten powder by forming tungsten carbide on the surface, International Journal of Refractory Metals and Hard Materials, Available online 30, 106215.

    77.Xu, L., Wang, K.Z., Xie, C.L., Shi, L., 2023, Improved spatial acceleration and jerk distributions for grinding force smoothness and energy-saving in reciprocating machining, Journal of Manufacturing Processes, Volume 98, 186-195.

    78.Laureys, A., Wallaert, E., Claeys, L., Pinson, M., Depover, T., Verbeken, K., 2022, Corrosion of austenitic stainless steels and nickel-based alloys in concentrated phosphoric acid at elevated temperatures, Procedia Structural Integrity, Volume 42, 1458-1466.

    79.Nakamura, M., Kunieda, M., 2019, Study of precision ECM in stationary electrolyte using stamp flushing method, CIRP Annals, Volume 68, Issue 1, 173-176.

    80.Cheng, J., Kang, R., Dong, Z., Gao, S., 2023, A new polishing method for complex structural parts: Moist particle electrolyte electrochemical mechanical polishing (MPE-ECMP), Electrochemistry Communications, Volume 150, 107475.

    81.Gokulanathan, L., Jegan, A., 2022, Optimization of Pulsed Current Electrochemical Micro Machining of MONEL 400 Alloy in NaNO3 Electrolyte, International Journal of Electrochemical Science, Volume 17, Issue 8, 220846.

    82.Saxena, K.K, Qian, J., Reynaerts, D., 2018, A review on process capabilities of electrochemical micromachining and its hybrid variants, International Journal of Machine Tools and Manufacture, Volume 127, 28-56.

    83.邱韋傑,2020,一種線上加速度精密電解法於倒錐微孔噴嘴成形研究,國立臺灣師範大學機電工程學系碩士論文,臺灣博碩士論文知識加值系統。

    84.Fan, Z., Wang, T., 2004, The mechanism of improving machining accuracy of ECM by magnetic field, Journal of Materials Processing Technology, Volume 149, Issues 1-3, 409-413.

    85.Bergs, T., Heidemanns, L., Klink, A., 2020, Simulation Assisted Cathode Design for the Manufacturing of Complex Geometries by Electrochemical Machining (ECM), Procedia CIRP, Volume 95, 688-693.

    86.Jung, Y.O., Kim, M.S., Park, J., Yang, G., Lee, D.W., Kim, S.W., 2023, Achieving fine fully lamellar microstructure of casting TiAl alloy by simple heat treatment, Materials Characterization, Volume 200, 112881.

    87.Chiu, S.K., Li, W.C., Chien, Y.H., 2023, Shifting ultraviolet to visible light of photocatalytic enhancements via Au-nanoparticle decoration of TiO2/WO3 binary coatings, Vacuum, Volume 212, 112035.

    88.Sihelník, S., Krumpolec, R., Tučeková, Z.K., Kelar, J., 2023, Atmospheric-pressure air plasma sources for cleaning and activation of float soda-lime glass: Effects and comparison, Surfaces and Interfaces, Volume 40, 103080.

    89.陳琮岳,2022,鎳鉻鉬鋼及鉻鉬鋼在不同應變速率下的機械性質特性分析,國立高雄科技大學機械工程系碩士論文,臺灣博碩士論文知識加值系統。

    90.Machado, T.F., Serra, M.E.S., Murtinho, D., 2023, Diazo-coupled porous organic polymers as efficient catalysts for metal-free Henry and Knoevenagel reactions, Microporous and Mesoporous Materials, Volume 355, 11561.

    91.Li, H., Yuan, N., Wang, C., Yan, X., Qian, J., 2023, New insights into the CuFe2O4/PMS process: The roles of surface Cu (III) species and free radicals, Chemical Engineering Journal Advances, Volume 15, 100506.

    92.Tao, M., Lavoie, S., Suo, Z., Cameron, M.K., 2023, The effect of scatter of polymer chain length on strength, Extreme Mechanics Letters, Volume 61, 102024.

    93.Yuan, S., Deng, W.X., Liang, X.L., Yao, J.Y., 2023, Nonlinear robust adaptive precision motion control of motor servo systems with unknown actuator backlash compensation, ISA Transactions, Volume 137, 349-357.

    94.Kim, D.W., Lee, Y.S., Park, M.S., 2009, Tool life improvement by peck drilling and thrust force monitoring during deep-micro-hole drilling of steel, International Journal of Machine Tools and Manufacture, Volume 49, Issues 3-4, 246-255.

    95.Samra, P.S., Kumar, A., 2023, Study the effect of EDM parameters on surface roughness of cryogenically treated AISI 304 steel, Available online 23 June.

    96.Heinzl, H., Mittlböck, M., 2003, Pseudo R-squared measures for Poisson regression models with over- or underdispersion, Computational Statistics & Data Analysis, Volume 44, Issues 1–2, 253-271.

    97.Joswig, F., Kuberski, S., Kuhlmann, J.T., Neuendorf, J., 2023, pyerrors: A python framework for error analysis of Monte Carlo data, Computer Physics Communications, Volume 288, 108750.

    98.Narendranath, G., Prakash, J.U., 2023, Effect of wire EDM process parameters on material removal rate of duplex stainless steel (S31803), Available online 8 June.

    99.Verschatse, O., Paepegem, W.V., Clerck, K.D., 2023, Development of a versatile speckle pattern of nano-sized polymer particles for high-resolution SEM-DIC, Polymer Testing, Volume 125, 108134.

    100.Vasilev, E., Wang, J., 2022, A structure metric for quantitative assessment of fracture surfaces in 3D conceived based on confocal laser scanning microscopy data, Materials Characterization, Volume 194, 112369.

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