„The testing chamber, and the staff's approach and willingness beyond requirements — I can only recommend them.“
In our materials laboratory we provide comprehensive analysis of welds – from sample preparation through hardness measurement to dimensional inspection and mechanical properties. We help reveal the quality, durability and accuracy of welds, which form the basis of structures, machines and critical components. With us you gain the certainty that your welds meet the highest technical requirements.
Welds can be evaluated in several ways depending on which properties we want to verify. The basic one is visual inspection, which serves to reveal surface defects. Mechanical tests are also used, such as tensile and bend tests, which verify the strength and ductility of the joint. Hardness tests help to determine changes in properties in the area of the weld and the heat-affected zone. Using optical methods, such as macroscopic and microscopic analysis of a section, the internal structure of the weld can be observed and its dimensions accurately measured at the same time. Together, these methods provide a comprehensive picture of the quality of the welded joint.
This includes cutting out and, if necessary, mounting the sample, followed by grinding and polishing the surface. A sample prepared in this way is suitable for microscopic analysis of the weld structure, the heat-affected zone and the base material, or for hardness evaluation.
It is carried out using the Vickers or Brinell method on a carefully prepared sample surface. Hardness is measured in various areas – in the weld metal, the heat-affected zone and the base material – so that it is possible to assess the changes caused by the welding process. This method enables fast and accurate evaluation of the mechanical properties of the weld, identification of changes in the material and comparison of different welding technologies.
Microscopic evaluation of a weld serves for a detailed assessment of the internal structure of the weld metal, the heat-affected zone and the base material. Observed, for example, are the size and shape of grains, uniformity of structure, the presence of phases or possible defects such as cracks or inclusions that are not visible to the naked eye.
This analysis may also include dimensional inspection of the weld, in which, for example, the height and width of the weld, the size of the penetration or the bevel angle are measured. This information helps to verify whether the weld was made according to requirements and whether it has the corresponding mechanical properties.
Mechanical tests of welds, specifically tensile and bend tests, serve to verify the strength and ductility of a welded joint. In the tensile test the sample is loaded in tension until rupture and the tensile strength, yield strength, elongation and location of fracture are evaluated. The bend test verifies the resistance of the weld to plastic deformation by bending the sample over a mandrel, while observing the formation of cracks or other defects. Both methods are essential for assessing weld quality in structural applications.
We'll be happy to advise you.
Ing. Radek Lovětínský
Head of the testing laboratory
We carry out comprehensive evaluation of welds, which includes hardness measurement in the area of the weld metal and heat-affected zone, optical inspection of sections with assessment of the internal structure and precise measurement of the weld dimensions, and also mechanical tests such as tensile and bend tests, which verify the strength, ductility and overall quality of the welded joint.
When testing welds, a whole range of technical standards is applied, which set out precise requirements for carrying out individual tests, sample preparation, measurement conditions and the method of evaluating the results. These standards cover both mechanical tests, such as tensile and bend tests, as well as hardness tests and optical analyses. They ensure uniformity and repeatability of results across different laboratories and manufacturers and are key to assessing the quality of welded joints in accordance with requirements for the safety and reliability of structures.
Tell us your testing requirements (e.g. via the inquiry form, email or phone).
We contact you and clarify the test specification and timeline.
You receive a structured price quotation from us.
After your order we reserve the date and capacity.
You deliver the samples to us in person or by courier.
We carry out the test on the reserved date.
After the test we send the test report electronically.
We'll gladly go through the test results with you.
This document contains key information about the tested sample and the course of the test. We provide the report in Czech or English according to your needs.
We issue both an accredited and a non-accredited test report according to customer requirements. The type of report is determined by the chosen testing standard.
Not sure how to test your sample? We'll help. We have years of experience and will recommend the most suitable procedure. And if you already know exactly what you want, we'll be your partner — without unnecessary questions.
Our equipment covers most requirements. If something is missing, thanks to our links with manufacturers of testing technology we can often arrange even specialised equipment outside our laboratory.
You can rely on both the equipment and our arrangements. We service and calibrate everything ourselves, so we can react quickly and adapt tests to get you results as soon as possible.
Every job is unique to us. We always try to understand your needs and tailor the service exactly to what you expect.
We'll be happy to advise you.
Ing. Radek Lovětínský
Head of the testing laboratory







Most often the tensile and bend tests are used, which verify the strength and ductility of the welded joint.
Hardness tests help to determine changes in properties in the area of the weld and the heat-affected zone, which is important for assessing the quality of the joint.
Most often the Vickers method is used, or Brinell, depending on the material and the required accuracy.
These are optical tests that evaluate the shape, penetration and internal structure of the weld using sections.
Standards ensure uniformity of procedures, accuracy of results and comparability between different laboratories and manufacturers.
Yes, mechanical and hardness tests are destructive, because the sample is damaged or destroyed during testing.