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Experimental study of the structure of milled diamond-containing particles obtained by the detonation method

机译:爆轰法制备的含金刚石磨粒结构的实验研究

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摘要

A diamond-containing material (DCM) produced by detonation was mechanically milled using KM-1 and AGO-2S mills. Experimental spectra for infrared (IR) absorption, Raman scattering and X-ray diffraction patterns (XRD) were obtained for the treated DCM samples. We compared the Raman and IR spectra for the KM-1 milled samples and concluded that the surface of the DCM particles was not uniform. The mechanical force that resulted from milling with the AGO-2S destroyed the non-diamond part of the particles and initiated irreversible physical and chemical changes in them. The destruction of the diamond grains was the consequence of these irreversible changes. It follows from the experiments that the dipole momentum of the DCM particle was caused by the presence of polar fragments of molecules. The constant dipole momentum of the particles facilitated the aggregation. Based on this, we proposed a model of a structurally inhomogeneous DCM particle.
机译:使用KM-1和AGO-2S研磨机对通过爆轰产生的含金刚石的材料(DCM)进行机械研磨。获得了处理过的DCM样品的红外(IR)吸收,拉曼散射和X射线衍射图谱(XRD)的实验光谱。我们比较了KM-1研磨样品的拉曼光谱和红外光谱,得出的结论是DCM颗粒的表面不均匀。用AGO-2S研磨产生的机械力破坏了颗粒的非金刚石部分,并引发了颗粒中不可逆的物理和化学变化。钻石晶粒的破坏是这些不可逆变化的结果。从实验得出,DCM粒子的偶极动量是由分子极性片段的存在引起的。颗粒的恒定偶极动量有助于聚集。基于此,我们提出了结构不均匀的DCM粒子模型。

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