校際選修

115-1 選課時程

進行中

  • 初選第一階段 6/15/2026
  • 初選第二階段 6/22/2026
  • 校際選修 8/24/2026
  • 初選第三階段 8/31/2026
  • 開學後加退選 9/7/2026
  • 逾期加退選 9/21/2026
選課資源

材料機械性質

Mechanical Behaviours of Materials

學期
111-1
學分
3 學分
當期課號
516326
永久課號
ENMS30031
開課單位
材料科學與工程學系
授課教師
鍾采甫、程海東
校區
光復
類別
選修
上課時間表
週二
週四
4
11:10–12:00
材料機械性質
EF207
材料機械性質
EF207
2 節連堂
N
12:20–13:10

* 根據陽明交大上課時間表所列

概述

This course provides a wide range of basic concepts of solid mechanics and mechanical behavior of materials, stress-strain relationships, stress transformation, elasticity, plasticity and fracture. Explores how the macroscale mechanical behavior of materials originates from fundamental, microscale mechanisms of elastic and inelastic deformation. Topics include: elasticity, strengthening, plasticity, creep, fracture, and fatigue. Both the macroscopic, continuum behavior, as well as the physical mechanisms controlling the behaviors will be described. Material design for improved mechanical behavior is discussed.

先修科目

Introduction of Materials Science & Engineering, Physical Metallurgy

教學方式

PPT files uploaded in e3; websites

評分方式

Quizzes + Attendance + Homework:10% + 2 Midterm Exams:50% + Final Exam: 40%

週次計畫
週次主題
第 1 週Tuesday 09/13 (二) Introduction of Class Thursday 09/15 (四) Elastic Deformation (I.1)
第 2 週Tuesday 09/20 (二) Elastic的補充 + Elastic and Plastic Deformation (I.2) Thursday 9/22 (四) 9/22 Elastic的補充 + Elastic and Plastic Deformation (I.2)
第 3 週Tuesday 09/27 (二) Plastic Deformation (I.3), Thursday 09/29 (四) Dislocations (II.1)
第 4 週Tuesday 10/04 (二) Dislocations (II.2) Tuesday 10/06 (四) Plastic Deformation (I.3)
第 5 週Tuesday 10/11 (二) Yielding criteria+Deformation Twinning (III.) Thursday 10/13 (四) 1st Midterm Exam Review
第 6 週Tuesday10/18 (二) 1st Midterm Exam (2 hours) Thursday 10/20 (四) Strengthening Mechanisms in Metals (IV.1)
第 7 週Tuesday 10/25(二) Strengthening Mechanisms in Metals (IV.2) Thursday 10/27(四) Strengthening Mechanisms in Metals (IV.3)
第 8 週Tuesday 11/01(二) General Behavior of Fracture (V.1) Thursday 11/03(四) General Behavior of Fracture (V.2)
第 9 週Tuesday 11/08(二) Fracture Mechanics (VI.1) Thursday 11/10(四) Fracture Mechanics (VI.2)
第 10 週Tuesday 11/15(二) Fatigue Processes (VIII.1) Thursday 11/17(四) Stress Concentration/Intensity & Calculations
第 11 週Tuesday 11/22(二) 2nd Midterm Exam Review Thursday 11/24(四) 2nd Midterm Exam (2 hours)
第 12 週Tuesday 11/29(二) Final schedule & Quantify Strengthening Thursday 12/01(四) Strengthening & Deformation stages for composites
第 13 週Tuesday 12/06(二) Fatigue crack propagation & overload effects Thursday 12/08(四) Crack size & Fatigue examples
第 14 週Tuesday 12/13(二) Fracture review & High-temperature behavior Thursday 12/15(四) Temperature Time Dependent
第 15 週Tuesday 12/20(二) Vacancy, Deformation map Thursday 12/22(四) High-temperature materials
第 16 週Tuesday12/27(二) Hardness Thursday 12/29(四) Review
第 17 週Tuesday 01/03 (二) Final Exam Thursday 01/05 (四) Final exam answers Online
第 18 週Tuesday 01/10 (二) Bhadeshia’s Mechanical properties of steel - 1. introduction Thursday 01/12 (四) Bhadeshia’s Mechanical properties of steel - 2. Elastic deformation
教科書

Required textbook: R. W. Hertzberg, “Deformation and Fracture Mechanics of Engineering Materials”, 4th edition, John Wiley, 1996. Reference Books: 1. D. Broek, “Elementary Engineering Fracture Mechanics” 2. George E. Dieter, “Mechanical Metallurgy” 3. M.A. Meyers and K.K. Chawla, “Mechanic Behavior of Materials” 4. J.P. Hirth and J. Lothe, “Theory of Dislocations”

Office Hours
地點
By appointment
時間
By appointment