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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Influence of nanomechanical crystal properties on the comminution process of particulate solids in spiral jet mills.
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Influence of nanomechanical crystal properties on the comminution process of particulate solids in spiral jet mills.

机译:纳米机械晶体特性对螺旋射流粉碎机中颗粒状固体粉碎过程的影响。

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摘要

Elastic-plastic properties of single crystals are supposed to influence the size reduction process of bulk materials during jet milling. According to Pahl [M.H. Pahl, Zerkleinerungstechnik 2. Auflage. Fachbuchverlag, Leipzig (1993)] and H. Rumpf: [Prinzipien der Prallzerkleinerung und ihre Anwendung bei der Strahlmahlung. Chem. Ing. Tech., 3(1960) 129-135.] fracture toughness, maximum strain or work of fracture for example are strongly dependent on mechanical parameters like hardness (H) and young's modulus of elasticity (E). In addition the dwell time of particles in a spiral jet mill proved to correlate with the hardness of the feed material [F. Rief: Ph. D. Thesis, University of Wurzburg (2001)]. Therefore 'near-surface' properties have a direct influence on the effectiveness of the comminution process. The mean particle diameter as well as the size distribution of the ground product may vary significantly with the nanomechanical response of the material. Thus accurate measurement of crystals' hardness and modulus is essential to determine the ideal operational micronisation conditions of the spiral jet mill. The recently developed nanoindentation technique is applied to examine subsurface properties of pharmaceutical bulk materials, namely calcite, sodium ascorbate, lactose and sodium chloride. Pressing a small sized tip into the material while continuously recording load and displacement, characteristic diagrams are derived. The mathematical evaluation of the force-displacement-data allows for calculation of the hardness and the elastic modulus of the investigated material at penetration depths between 50-300 nm. Grinding experiments performed with a modified spiral jet mill (Type Fryma JMRS 80) indicate the strong impact of the elastic-plastic properties of a given substance on its breaking behaviour. The fineness of milled products produced at constant grinding conditions but with different crystalline powders varies significantly as it is dependent on the nanohardness and the elasticity of thefeed material. The analysis of this correlation gives new insights into the size reduction process.
机译:据推测,单晶的弹塑性特性会影响喷射研磨过程中块状材料的尺寸减小过程。根据Pahl [M.H. Pahl,Zerkleinerungstechnik。2.装饰。 Fachbuchverlag,莱比锡(1993)]和H. Rumpf:[Prinzipien der Prallzerkleinerung und Ihre Anwendung bei der Strahlmahlung。化学g Tech。,3(1960)129-135。]例如,断裂韧性,最大应变或断裂功在很大程度上取决于诸如硬度(H)和杨氏弹性模量(E)的机械参数。此外,事实证明,在螺旋气流粉碎机中颗粒的停留时间与进料的硬度相关[F。 Rief:维尔茨堡大学博士学位论文(2001年)。因此,“近表面”特性直接影响了粉碎过程的有效性。磨碎产品的平均粒径以及尺寸分布可能会随着材料的纳米机械响应而发生显着变化。因此,准确测定晶体的硬度和模量对于确定螺旋射流磨的理想操作微粉化条件至关重要。最近开发的纳米压痕技术用于检查药物散装材料的表面性质,即方解石,抗坏血酸钠,乳糖和氯化钠。在连续记录载荷和位移的同时,将小尺寸的尖端压入材料中,即可得出特性图。力-位移数据的数学评估允许计算在50-300 nm穿透深度下所研究材料的硬度和弹性模量。使用改进的螺旋射流磨机(Fryma JMRS 80型)进行的研磨实验表明,给定物质的弹塑性特性对其破坏行为具有强烈影响。在恒定的研磨条件下生产的但具有不同结晶粉末的研磨产品的细度变化很大,因为它取决于进料的纳米硬度和弹性。对这种相关性的分析为减小尺寸的过程提供了新的见解。

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