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AEQUIDUR - Type M for Steels: Perfect Hardness Adjustment for Excellent Material Samples
AEQUIDUR - Type M for Steels: Perfect Hardness Adjustment for Excellent Material Samples AEQUIDUR - Type M offers a multitude of crucial advantages for materialographic work, especially in the embedding of steel samples. The tailored hardness adjustment for steel samples is one of the main benefits of this product. This allows for precise adaptation of the embedding compound to the specific hardness of steel samples, which is crucial for achieving reliable results. Steel samples pose specific requirements for embedding as they are susceptible to relief formations due to their hardness and composition. Relief formations, also known as embedding relief or hardness relief, are reliably minimized with AEQUIDUR. Such irregularities on the surface of the steel sample can occur with improper hardness adjustment, significantly impacting the quality and accuracy of microscopic examinations. Through precise hardness adjustment, AEQUIDUR - Type M ensures the reliable prevention of relief formations on the surface of steel samples. Reproducibility is another advantage of this product, especially when embedding steel samples. The precise control of sample hardness leads to consistent results in repeated examinations, which is crucial for characterizing steels and meeting quality standards. Additionally, AEQUIDUR - Type M contributes to improving quality assurance, especially when it comes to meeting the specific embedding conditions for steels. In materialography, it is crucial to meet quality standards and norms, and the hardness equalizing powder plays an important role by ensuring that the embedding of steel samples is done at the correct hardness. Efficiency is another benefit of this product. Thanks to precise hardness adjustment, workflows can be expedited. This saves time and resources in sample preparation without compromising the quality of results. In summary, AEQUIDUR - Type M provides significant advantages for materialographic work, especially in the embedding of steel samples. Through tailored hardness adjustment, prevention of relief formations, and precise control of embedding conditions, this hardness equalizing powder contributes significantly to enhancing the reliability and meaningfulness of microscopic examinations of steels in materials science.