That is, for materials such as rubber, plastic, or metal, when we pull or push on them, we want to know how they respond. Suppose you have a rubber band in your hand. You can pull on it and it stretches. But if you tug too much, it might break or deform. This matters because we have to understand how much force we can apply to various substances before they fail.
And by measuring stress as well as strain, we can determine how stretchy (or elastic) a material is. For instance, if you apply a slight force on a material, which then deforms greatly, that material is very elastic. Much less if it hardly deforms at all, it is not very elastic.
Now let’s consider strength. We also want to know the strength of a material by conducting modulus of elasticity test. The first thing we need to know, and which is used to determine the Young's Modulus, is the amount of stress we apply to the material in order to obtain a sample. Then we see how much it changes shape. This deformation is known as strain.
For example, we can press a metal piece so that it bends a little bit, and measure the bend. We call a material very strong if it can withstand a great deal of stress without changing its shape significantly. The above is very helpful since it provides us an idea which type of materials are best for which purpose.
Now you may be wondering why we need to know this at all. The reason, however, is quite simple: selecting appropriate materials for a project is of utmost importance. For instance, when constructing a bridge, engineers need to determine how much load the bridge can support without falling. For example, if the bridge is built of weak materials, that could be dangerous.
Engineers can discover the ideal materials for their designs through Динамичен тестер на еластичния модул. This testing ensures that our buildings and bridges are safe for all to use. It can mean the difference literally between a safe structure and an unsafe one.”
Accuracy is very critical when we are testing for materials. Incorrect testing would then lead us to make the wrong decisions about the materials we use. Fortunately, the modulus of elasticity testing has come a long way over the years. Nowadays, new techniques and tools are really precise and accurate.
The main products of the company are heating furnaces for high and medium temperatures and sample modulus of elasticity testing high-temperature heating equipment furnace linings as well as computer controlled systems laboratory chemical reagents as well as other chemical reagents
Our top-quality products are because we not only have experienced engineers in the field in addition to modulus of elasticity testing that pay close attention to details and operational. With rich high-temperature testing experience we can supply custom test instruments for individual projects. We can also provide users with high-temperature testing technologies Consulting and testing of samples; as well as comprehensive and complete laboratory solutions.
Our products are used widely in the ceramics and metallurgy industries, as well as building chemicals, materials, modulus of elasticity testing and other composite material industry. The main universities of the company National Quality Inspection Agencies as well as scientific research centers, refractory materials and other production enterprises and steel units, through international transportation, exported to regions and countries in Asia, Europe, the Middle East and Africa. Methods of transportation: We can support air transportation, sea transport express delivery, and rail transportation.
With a continuous RD investments, technological advancement and improvement in product quality, the company has successively been awarded ISO9001, CE, modulus of elasticity testing and other certifications. It also has CMC national production license for measuring instruments in the refractory business, as well as independent intellectual property rights as well as more than 50 national invention patents and utility model patents.