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Strength of MaterialsLaajuus (3 cr)

Code: TKAK003

Credits

3 op

Responsible person

  • Jari Kurtelius

Objective

Students will understand the link between structural loads and stress levels in a structure and be able to calculate strain in a completed structure in different basic cases and assess the importance of the result.

Content

Introduction
Deformation
Types of strain
Different strain cases
Stability
Fatigue endurance limit

Qualifications

Mechanics and Mechanisms
Structural Materials

Arviointikriteerit, kiitettävä (5)

The students are able to use calculation methods for analysing the tension of statically defined structures with expertise and can apply their acquired knowledge to solve complex problems. They can use calculation tools with routine and understand the main factors affecting dynamic certainty.

Assessment criteria, good (3)

The students are able to solve tension problems associated with statically defined structures as required. They are able to present their calculations clearly and systematically.

Arviointikriteerit, tyydyttävä (1)

The students are able to strength calculation methods for simple tension and deformation analyses concerning statically defined structures.

Further information

1 RDI point

en
Enrollment

21.09.2024 - 20.10.2024

Timing

01.01.2025 - 15.03.2025

Number of ECTS credits allocated

3 op

Mode of delivery

Contact teaching

Unit

Teknologia

Teaching languages
  • Finnish
Degree programmes
  • Bachelor’s Degree in Mechanical Engineering
Teachers
  • Petteri Laitinen
Groups
  • KKM23S
    KKM23S

Objective

Students will understand the link between structural loads and stress levels in a structure and be able to calculate strain in a completed structure in different basic cases and assess the importance of the result.

Content

Introduction
Deformation
Types of strain
Different strain cases
Stability
Fatigue endurance limit

Evaluation scale

0 - 5

Arviointikriteerit, kiitettävä (5)

The students are able to use calculation methods for analysing the tension of statically defined structures with expertise and can apply their acquired knowledge to solve complex problems. They can use calculation tools with routine and understand the main factors affecting dynamic certainty.

Assessment criteria, good (3)

The students are able to solve tension problems associated with statically defined structures as required. They are able to present their calculations clearly and systematically.

Arviointikriteerit, tyydyttävä (1)

The students are able to strength calculation methods for simple tension and deformation analyses concerning statically defined structures.

Qualifications

Mechanics and Mechanisms
Structural Materials

Further information

1 RDI point

en
Enrollment

21.09.2024 - 20.11.2024

Timing

21.10.2024 - 02.03.2025

Number of ECTS credits allocated

3 op

Mode of delivery

Contact teaching

Unit

Teknologia

Teaching languages
  • Finnish
Degree programmes
  • Bachelor’s Degree in Mechanical Engineering
Teachers
  • Petteri Laitinen
Groups
  • KKT23S
    KKT23S

Objective

Students will understand the link between structural loads and stress levels in a structure and be able to calculate strain in a completed structure in different basic cases and assess the importance of the result.

Content

Introduction
Deformation
Types of strain
Different strain cases
Stability
Fatigue endurance limit

Evaluation scale

0 - 5

Arviointikriteerit, kiitettävä (5)

The students are able to use calculation methods for analysing the tension of statically defined structures with expertise and can apply their acquired knowledge to solve complex problems. They can use calculation tools with routine and understand the main factors affecting dynamic certainty.

Assessment criteria, good (3)

The students are able to solve tension problems associated with statically defined structures as required. They are able to present their calculations clearly and systematically.

Arviointikriteerit, tyydyttävä (1)

The students are able to strength calculation methods for simple tension and deformation analyses concerning statically defined structures.

Qualifications

Mechanics and Mechanisms
Structural Materials

Further information

1 RDI point

en
Enrollment

01.08.2023 - 09.10.2023

Timing

23.10.2023 - 04.02.2024

Number of ECTS credits allocated

3 op

Mode of delivery

Contact teaching

Unit

Teknologia

Teaching languages
  • Finnish
Degree programmes
  • Bachelor’s Degree in Mechanical Engineering
Teachers
  • Petteri Laitinen
Groups
  • KKT22S
    KKT22S

Objective

Students will understand the link between structural loads and stress levels in a structure and be able to calculate strain in a completed structure in different basic cases and assess the importance of the result.

Content

Introduction
Deformation
Types of strain
Different strain cases
Stability
Fatigue endurance limit

Evaluation scale

0 - 5

Arviointikriteerit, kiitettävä (5)

The students are able to use calculation methods for analysing the tension of statically defined structures with expertise and can apply their acquired knowledge to solve complex problems. They can use calculation tools with routine and understand the main factors affecting dynamic certainty.

Assessment criteria, good (3)

The students are able to solve tension problems associated with statically defined structures as required. They are able to present their calculations clearly and systematically.

Arviointikriteerit, tyydyttävä (1)

The students are able to strength calculation methods for simple tension and deformation analyses concerning statically defined structures.

Qualifications

Mechanics and Mechanisms
Structural Materials

Further information

1 RDI point

en
Enrollment

01.08.2023 - 30.09.2023

Timing

09.10.2023 - 04.02.2024

Number of ECTS credits allocated

3 op

Mode of delivery

Contact teaching

Unit

Teknologia

Teaching languages
  • Finnish
Degree programmes
  • Bachelor’s Degree in Mechanical Engineering
Teachers
  • Petteri Laitinen
Groups
  • KKT22SRaahe
    KKT22SRaahe

Objective

Students will understand the link between structural loads and stress levels in a structure and be able to calculate strain in a completed structure in different basic cases and assess the importance of the result.

Content

Introduction
Deformation
Types of strain
Different strain cases
Stability
Fatigue endurance limit

Evaluation scale

0 - 5

Arviointikriteerit, kiitettävä (5)

The students are able to use calculation methods for analysing the tension of statically defined structures with expertise and can apply their acquired knowledge to solve complex problems. They can use calculation tools with routine and understand the main factors affecting dynamic certainty.

Assessment criteria, good (3)

The students are able to solve tension problems associated with statically defined structures as required. They are able to present their calculations clearly and systematically.

Arviointikriteerit, tyydyttävä (1)

The students are able to strength calculation methods for simple tension and deformation analyses concerning statically defined structures.

Qualifications

Mechanics and Mechanisms
Structural Materials

Further information

1 RDI point

en
Enrollment

02.07.2022 - 16.12.2022

Timing

01.08.2022 - 16.12.2022

Number of ECTS credits allocated

3 op

Mode of delivery

Contact teaching

Unit

Teknologia

Teaching languages
  • Finnish
Degree programmes
  • Bachelor’s Degree in Mechanical Engineering
Teachers
  • Jari Kurtelius
Groups
  • KKM21S
    KKM21S

Objective

Students will understand the link between structural loads and stress levels in a structure and be able to calculate strain in a completed structure in different basic cases and assess the importance of the result.

Content

Introduction
Deformation
Types of strain
Different strain cases
Stability
Fatigue endurance limit

Evaluation scale

0 - 5

Arviointikriteerit, kiitettävä (5)

The students are able to use calculation methods for analysing the tension of statically defined structures with expertise and can apply their acquired knowledge to solve complex problems. They can use calculation tools with routine and understand the main factors affecting dynamic certainty.

Assessment criteria, good (3)

The students are able to solve tension problems associated with statically defined structures as required. They are able to present their calculations clearly and systematically.

Arviointikriteerit, tyydyttävä (1)

The students are able to strength calculation methods for simple tension and deformation analyses concerning statically defined structures.

Qualifications

Mechanics and Mechanisms
Structural Materials

Further information

1 RDI point

en
Enrollment

01.07.2022 - 16.12.2022

Timing

31.07.2022 - 16.12.2022

Number of ECTS credits allocated

3 op

Mode of delivery

Contact teaching

Unit

Teknologia

Teaching languages
  • Finnish
Degree programmes
  • Bachelor’s Degree in Mechanical Engineering
Teachers
  • Jari Kurtelius
Groups
  • KKT21S
    KKT21S

Objective

Students will understand the link between structural loads and stress levels in a structure and be able to calculate strain in a completed structure in different basic cases and assess the importance of the result.

Content

Introduction
Deformation
Types of strain
Different strain cases
Stability
Fatigue endurance limit

Evaluation scale

0 - 5

Arviointikriteerit, kiitettävä (5)

The students are able to use calculation methods for analysing the tension of statically defined structures with expertise and can apply their acquired knowledge to solve complex problems. They can use calculation tools with routine and understand the main factors affecting dynamic certainty.

Assessment criteria, good (3)

The students are able to solve tension problems associated with statically defined structures as required. They are able to present their calculations clearly and systematically.

Arviointikriteerit, tyydyttävä (1)

The students are able to strength calculation methods for simple tension and deformation analyses concerning statically defined structures.

Qualifications

Mechanics and Mechanisms
Structural Materials

Further information

1 RDI point