首页> 外文会议>Biennial Worldwide Congress on Refractories >DEVELOPMENT OF A THERMOPLASTIC MAGNESIA CARBON BRICK 'A COLD PROCESS FLEXIBLE SYSTEM'
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DEVELOPMENT OF A THERMOPLASTIC MAGNESIA CARBON BRICK 'A COLD PROCESS FLEXIBLE SYSTEM'

机译:热塑性氧化镁碳砖'冷工艺柔性系统'的开发

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Conventional resin bonded MgO-C bricks, which are manufactured via cold mixing process, harden and attain brittleness during carbonization of resin due to the formation of isotropic glassy carbon. They do not exhibit thermo-plasticity, which can facilitate the release of huge amount of stresses generated during preheating or in operation. On the contrary, pitch bonded MgO-C bricks, show better pyro-plasticity due to formation of an anisotropic and graphitized coke structure during carbonization of pitch. Hence, pitch bonded bricks show a superior structural spalling resistance in comparison to resin-bonded bricks. One of the drawbacks of pitch-bonded bricks is that the manufacturing requires a hot mixing process and hot pressing facility. This paper describes how a combination of above two processes was optimized to make a MgO-C brick via cold process. These bricks exhibit a low Modulus of Elasticity and thereby facilitate release of stresses during operation. Normal coal tar pitch is considered as an environmental hazard due to the presence of polyaromatic hydrocarbons like benzopyrene B [a] P. So, a special binder with a low B[a]P was selected, which is eco-friendly in nature. Such bricks were made in our plant in China and supplied to an integrated steel plant in Europe for their ladle. The bricks supplied have given encouraging life.
机译:传统的树脂粘合MgO-C砖,其通过冷混合过程制造,在树脂的碳化期间制造,并且由于各向同性玻璃碳的形成而在树脂的碳化过程中。它们没有表现出热塑性,这可以促进在预热或操作期间产生的大量应力。相反,沥青粘合的MgO-C砖,由于在沥青碳化期间形成各向异性和石墨化的焦炭结构,表现出更好的热塑性。因此,与树脂粘合的砖相比,俯仰粘合砖显示出优异的结构剥落电阻。间距粘结砖的缺点之一是制造需要热混合过程和热压设施。本文介绍了如何优化上述两个过程的组合,以通过冷工艺制造MgO-C砖。这些砖块具有低弹性模量,从而促进在操作期间释放应力。普通煤焦间距被认为是由于苯并芘B [a] p的多芳族烃的存在,因此选择了一种具有低B [a] p的特殊粘合剂,其在自然界中是环保的。这些砖块在我国的植物中制造,并在欧洲的欧洲供应到勺子。提供的砖块令人鼓舞的生活。

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