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Application of Surface Layer Inoculation Processes to Solid Solution-Strengthened Ductile Cast Iron

机译:表面层接种方法在固溶胶加固延性铸铁中的应用

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Within the present investigations, an in-mould inoculation method for ductile cast iron with elevated silicon contents was developed. The inoculation process takes place at the interface between the mould's surface and the melt. The application of a mould wall inoculation process allows inoculation at the latest possible point in time, which means high efficiency due to reduced fading effects. For this purpose, various inoculant suspensions are produced, containing inoculants in different amounts and grain fractions. The inoculant is applied to the surface of a PEP SET (TM)-bonded moulding material by means of an air-pressurized spraying pistol. The specimen geometry used in the tests is a 5-stepped wedge, which represents wall thicknesses in the range of 5-40 mm. For a total of 8 castings, inoculant fractions in the spectrum of 0-25 and 0-45 mu m are used to produce the solid solution-strengthened grade EN-GJS-500-14 that is specified in the European standard EN 1563. Metallographic investigations show that a complete solidification according to the stable system can be adjusted in the investigated wall thicknesses by inoculation with grain fractions of 0-25 mu m.
机译:在本研究中,开发了具有升高的硅内容物的延性铸铁的模制接种方法。接种过程在模具表面和熔体之间的界面处进行。模具壁接种过程的应用允许在最近可能的时间点接种,这意味着由于降低的衰落效果导致的高效率。为此目的,制备各种孕制剂悬浮液,含有不同量和颗粒级分的酸织物。粉碎剂通过空气加压喷涂手枪施加到PEP组(TM)粘合成型材料的表面上。测试中使用的样本几何形状是5阶梯式楔形物,其表示壁厚在5-40mm的范围内。对于总共8次铸件,在欧洲标准EN 1563中规定的固体溶液加强级en-GJS-500-14的固体溶液的植物级分研究表明,根据稳定体系的完全凝固可以通过接种0-25μm的粒子级分地接种在调查的壁厚中调节。

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