Siirry suoraan sisältöön

Mittaus- ja laatutekniikka (3 cr)

Code: TKKP0100-3003

General information


Enrollment

02.08.2021 - 05.09.2021

Timing

01.08.2021 - 31.12.2021

Number of ECTS credits allocated

3 op

Mode of delivery

Face-to-face

Unit

Teknologiayksikkö

Campus

Pääkampus

Teaching languages

  • Finnish

Seats

0 - 90

Degree programmes

  • Konetekniikka (AMK)

Teachers

  • Kalevi Jaaranen
  • Juha Tuikkanen

Teacher in charge

Kalevi Jaaranen

Scheduling groups

  • Laboratorioryhmä 1 (Paikkoja: 15. Open UAS: 0.)
  • Laboratorioryhmä 2 (Paikkoja: 15. Open UAS: 0.)
  • Laboratorioryhmä 3 (Paikkoja: 15. Open UAS: 0.)
  • Laboratorioryhmä 4 (Paikkoja: 15. Open UAS: 0.)
  • Laboratorioryhmä 5 (Paikkoja: 15. Open UAS: 0.)

Groups

  • ZJA21STPPKO
    Avoin amk, tekniikka, Konetekniikka, päivä
  • TKN21S1
    Konetekniikka

Small groups

  • Laboratorioryhmä 1
  • Laboratorioryhmä 2
  • Laboratorioryhmä 3
  • Laboratorioryhmä 4
  • Laboratorioryhmä 5

Objective

Measurement and quality management are an essential parts of work-shop manufacturing. You will learn the basic knowledge and skills of measurement and be able to use the most common workshop measuring instruments in a way that takes into account the factors that cause measurement uncertainty. Your competence will grow in understanding quality management as part of normal work. Additionally, you will understand how quality thinking with measurements supports sustainable development.

Knowledge and understanding
You are familiar with the basic measurements in the workshop: you are able to use the most common measuring instruments in a way that takes into account the most significant factors causing measurement uncertainty. You understand the basic thinking of quality management and sustainable development: the main quality definitions, continuous improvement, and the idea of the ISO 9000 series.

Investigations and information retrieval:
You can select and use suitable measuring equipment to solve measuring problems.

Engineering practice:
You can calculate the most common measuring errors from your own measuring which you have make in the laboratory. You can analyze the results and make conclusions.

Content

Calculation of the most common measurement errors, measurement uncertainty, and their reduction, selection of measuring instruments, and quality management. Quality thinking and sustainable development as part of it.

Oppimateriaali ja suositeltava kirjallisuus

Lecture material.
Andersson-Tikka, Mittaus- ja laatutekniikka.

Teaching methods

Lectures, information retrieval and applied learning assigments. Assignments in groups are based on Problem-based learning. In the middle of the course you give anonymous feedback.

Exam schedules

Exam and two resists based on degree regulations.

Student workload

Lectures 21 h, laboratory work 18 h, learning assignments 16 h and independent work 26 h. Total 81 h learning work.

Further information

On the learning assignments there is continuous developing feedback.

Evaluation scale

0-5

Arviointikriteerit, tyydyttävä (1-2)

Assessment consists of exam 80% and learning assignments 20%.

Sufficient (1): You understand the basics and terminology, but you have significant shortcomings in interpreting key concepts. You can solve simple measurement problems satisfactorily and identify quality principles adequately.

Satisfactory (2): You understand the basics and terminology, but you have limitations in applying key concepts. You can solve measurement problems that deviate from the norm satisfactorily and identify quality principles and their relevance to sustainable development.

Arviointikriteerit, hyvä (3-4)

Good (3): You master the key aspects of the course, which include under-standing basic workshop measurement methods and making informed choices among them holistically. Additionally, you can use the most common workshop measuring instruments in a way that mostly considers factors causing measurement uncertainty. You are familiar with the significant factors causing measurement uncertainty and can determine combined measurement errors in complex situations. You can assess and analyze measurement results from the perspective of measurement uncertainty. You understand the basic thinking of quality management and its relationship to sustainable development.

Very good (4): You master the necessary key aspects and can apply them critically and innovatively in solving moderately demanding measurement problems and in analyzing and evaluating results, such as in laboratory work and the practical application of quality principles

Assessment criteria, excellent (5)

Excellent (5): You have a command of the key concepts and can apply them critically and innovatively in solving demanding and complex measurement problems, such as in laboratory work, and in applying more advanced quality principles. You are capable of generating new solutions critically while evaluating their impact on sustainable development.

Assessment criteria, approved/failed

Accepted:
You understand the basics and terminology, but you have shortcomings in interpreting key concepts. You can solve simple measurement problems satisfactorily and identify quality principles adequately.

Qualifications

Handling exponents and square roots, simplifying expressions, applying trigonometry to right-angled and oblique triangles, solving linear equations and root equations, as well as systems of equations. SI unit system, unit conversion, and calculation of quantities.