B0130200
3 Practicum of Mechanics of Materials
Knowledge of material dynamics and appropriate modeling of the structure are necessary when design of the mechanical structures
and investigating the cause. In order to develop the such ability, it is necessary to solve various problems of mechanics
of material.
In this class, students solve exercises on mechanics of materials in the first half, and deepen theoretical understanding.
In the second half, students separate into each teacher and conducts creative experiment exercises to cultivate problem solving
skills and creativity.
The purpose of this lecture is to solve the problems of mechanics of materials and to develop the ability to solve problems
for issues occurring in actual mechanical structures.
- To calculate displacements of structures members which is receiving loads.
- To calculate stresses in structure members which is receiving loads.
- To comprehensively understand the strength and stiffness of mechanical structures, and to create structures with new functions.
|
Class schedule |
HW assignments (Including preparation and review of the class.) |
Amount of Time Required |
1. |
Guidance Deformation of a bar which received tension and compression and displacement on the truss structures
|
Carry out a review of tension-compression problems |
190minutes |
2. |
Shear stress and polar moment of inertia of area of a bar which is receiving twisting torque |
Solve problems which were dealt out last time |
90minutes |
Study twisting problems |
100minutes |
3. |
Deformations of a bar which is receiving bending moment |
Solve problems which were dealt out last time. |
90minutes |
Study bending problems |
100minutes |
4. |
Castilian of theorem and strain energy method Examination
|
Solve problems which were dealt out last time. |
90minutes |
Study Castilian of theorem |
100minutes |
Preparation for exam |
200minutes |
5. |
Creative manufacturing 1 (Ex. Concept of highly accurate scale capable of measuring predetermined weight) |
Review of exam |
90minutes |
Preparation of Creative manufacturing 1 |
100minutes |
6. |
Creative manufacturing 2 (Ex. Design and Manufacturing of highly accurate scale capable of measuring predetermined weight) |
Preparation of Creative manufacturing 2 |
190minutes |
7. |
7. Creative manufacturing 3 (Ex. Estimation of highly accurate scale capable of measuring predetermined weight) |
Preparation of Creative manufacturing 3 |
190minutes |
8. |
- |
- |
0minutes |
9. |
- |
- |
0minutes |
10. |
- |
- |
0minutes |
11. |
- |
- |
0minutes |
12. |
- |
- |
0minutes |
13. |
- |
- |
0minutes |
14. |
- |
- |
0minutes |
Total. |
- |
- |
1530minutes |
Relationship between 'Goals and Objectives' and 'Course Outcomes'
|
Examination |
Preparation of Creative manufacturing |
Total. |
1. |
20% |
10% |
30% |
2. |
20% |
10% |
30% |
3. |
|
40% |
40% |
Total. |
40% |
60% |
- |
Evaluation method and criteria
Examination: 40%
Report and integrity of Creative manufacturing: 60%
Passing grade: 60 %.
Textbooks and reference materials
Text of Mechanics of Materials
Prints
prefer to learn Mechanics of Materials 1 and Mechanics of Materials 2
Office hours and How to contact professors for questions
Relation to the environment
Non-environment-related course
Non-regionally-oriented course
Development of social and professional independence
- Course that cultivates a basic self-management skills
About half of the classes are interactive
Course by professor with work experience
Work experience |
Work experience and relevance to the course content if applicatable |
N/A |
該当しない |
Last modified : Thu Mar 21 14:10:22 JST 2019