FORM+TEST develops and produces material testing machines and test systems of high quality. More than 60 years' experience, extensive know-how and an ultra-modern production are the basic of our activity.
Our production potential includes compression testing machines, bending and flexure testing machines, tensile testing machines for more or less all materials and test requirements.
We can offer you low-maintenance, durable, practical and user-friendly solutions. With our own service- and calibration laboratory we ensure the optimal utilization of your investments.
Innovation, precision, durability made in Germany by Form + Test
A good idea, further thought: The previous controller DIGIMAXX ® C 20 is replaced by the new digital measuring and control electronics DIGIMAXX® C-40. FORM+TEST thus offers a digital independent control system of the latest device platform. It is characterized by a high degree of accuracy and reproducibility of the test results. Even under adverse conditions (dust/dirt) easy to operate via a capacitive and robust touch display
With the UP 500, Form+Test supports material research of new materials at a renowned Russian university. The test machine was designed according to the customer's requirements in terms of machine frames and machine performance. Samples and even entire components can be tested at up to 10 Hz and 500 kN at up to 500°C. The climate chamber can be easily moved into and out of the rehearsal room. To ensure that the machine itself stays cool, the load strand is equipped with a separate cooling circuit. Simply a turn-key solution by FORM+TEST.
Enrique F. Estay Varas, General Manager of Llay Llay Ltda.: „The testing machine and the complete support and planning fully met our expectations“.
For sustainable building, wood is becoming increasingly important as a material for structural components. However, this requires that the material behaviour in the design is known and can be represented by suitable models. Due to the anisotropic structure, experimental investigations are necessary to create the model. However, due to the material characteristics, this can be a challenging task for testing technology. But the test systems from FORM + TEST will make an important contribution to this.
In response to the increasing degree of automation in testing technology, FORM+TEST Seidner&Co. GmbH offers a comprehensive solution for the rational testing of concrete specimens. This is offered in 2 automation levels by means of a measuring and weighing station. This gives the testing laboratory a solution for the future that scores points in terms of cost-effectiveness.
For FORM+TEST in 2018 it was the successful participation that made us to attend the Testing Expo Automotive in Shanghai again this year- Again together with the local sales partner Chaokun Testing. More than 400 exhibitors attending the exhibition in 2019 being able to inform more than 8,000 visitors.
The expansion of international business represents a central aspect of FORM+TEST's sales activities, especially in the area of customized solutions. Therefore, we are particularly pleased to become active in Singapore.
When it comes to the evaluation of components and components operated at high temperatures, comparable tests for identifying the material behavior and determination of appropriate material models must be carried out. Temperatures above 300 ° C are usually special requirements for experimental equipment and especially on measurement devices. However, Form + Test can offer solutions that allow experiments at highest temperatures, not only in static creep tests but also in dynamic fatigue tests.
FORM+TEST Seidner&Co. GmbH has developed 2 series of TORSIONSPRÜFZYLINDERN to extend the product range of system components for torsion loading. These drives are used for defined torsion loading of test specimens for static and dynamic material and component testing.
Werden hochbelastete Federelemente dynamisch beansprucht, muss die entsprechende Dauerfestigkeit des Materials für eine sichere Auslegung bekannt sein. Während des Verarbeitungsprozesses werden aus dem Vormaterial zunächst Draht und daraus im Anschluss die Federn hergestellt, welche u.a. in der Automobilindustrie eingesetzt werden. Die Schwierigkeit liegt nun in der Bewertung des Materialverhaltens bei der dadurch entstehenden Kaltverformung. Die Beurteilung der Qualität entlang des Fertigungsprozesses muss das Material auch in den Zwischenprodukten u.a. als Draht geprüft werden.
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