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Fluid jet erosion as a non-linear fracture process: a discussion

机译:流体射流侵蚀作为非线性断裂过程的讨论

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Fluid jets are increasingly used to process and machine strain-softening materials. Typical applications are drilling, cutting, fragmentation, hydrodemolition and 3D-machining. Strain-softening materials, such as cement-based composites, ceramics, most rocks, ice and solidified impurities, are quasi-brittle behaving materials characterized by a so-called fracture process zone. Therefore, linear elastic fracture mechanics do not suitably cover these materials. Based on a literature review, it is also found that conventional strength parameters, such as compressive strength, cannot describe the resistance of this group of materials against fluid jet erosion, and that the erosion process is strongly determined by the si/e of the aggregate (inclusions) in the materials. Also, structure and behavior of non-linear behaving materials are characterized. An SEM-study performed on specimens of concrete, mortar, and hardened cement paste eroded by waterjets with velocities up to 470 m/s clearly illuminates features of quasi-brittle behavior, including grain bridging, microcracking and crack branching. It is concluded that a non-linear fracture resistance parameter may be suitable to estimate the erosion resistance of the materials. It is found that the characteristic length of a material is a very suitable resistance parameter. An already existing approximate empirical formula for estimating this length is used, and a very good relationship between the estimated values and the volumetric erosion rate taken from published results for 20 different types of concrete could be obtained. Finally, the application of the proposed resistance parameter for fracturing and drilling rocks and refractory ceramics by plain and abrasive-laden waterjets is checked by discussing results found in the literature.
机译:流体射流越来越多地用于加工和加工应变软化材料。典型的应用是钻孔,切割,破碎,加氢分解和3D加工。应变软化材料,例如水泥基复合材料,陶瓷,大多数岩石,冰和凝固的杂质,是准脆性表现为特征的材料,具有所谓的断裂过程区。因此,线性弹性断裂力学不能适当地覆盖这些材料。根据文献综述,还发现常规强度参数(例如抗压强度)无法描述这组材料对流体射流腐蚀的抵抗力,并且腐蚀过程强烈取决于骨料的硅/硫(包含)在材料中。而且,表征了非线性行为材料的结构和行为。对通过水射流侵蚀的混凝土,砂浆和硬化水泥浆样本进行的SEM研究表明,其速度高达470 m / s,清楚地表明了准脆性的特征,包括晶粒桥接,微裂纹和裂纹分支。可以得出结论,非线性抗断裂参数可能适合估算材料的抗冲蚀性。发现材料的特征长度是非常合适的电阻参数。使用已经存在的用于估计该长度的近似经验公式,可以从20种不同类型的混凝土的公开结果中获得估计值与体积侵蚀率之间的良好关系。最后,通过讨论文献中发现的结果,检查了所提出的阻力参数在通过平地和带有磨料的水射流压裂和钻孔岩石和耐火陶瓷中的应用。

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