首页> 外文期刊>Acta Polytechnica >Study of Wear of Pitched Blade Impellers in a Solid-Liquid Suspension
【24h】

Study of Wear of Pitched Blade Impellers in a Solid-Liquid Suspension

机译:固液悬架中斜桨叶轮的磨损研究

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A study was made of the erosion wear of the blades of pitched blade impellers in a suspension of silicious sand (C_V = 5%, d = 0.325 mm, degree of hardness "7.5") in water under a turbulent flow regime of agitated charge when complete homogeneity of the suspension was achieved. Two aims of the study were defined: the dependence of the rate of the erosion process of the impeller blades on impeller frequency of revolution and on the size of the mixing equipment. Experiments were carried out on pilot plant mixing equipment of two sizes (geometrically similar) made of stainless steel (diameters of cylindrical vessels T_1 = 200 mm and T_2 = 300 mm, diameters of impellers D_1 = 100 mm and D_2 = 66.7 mm, impeller off-bottom clearances h_1 = 100 mm and h_2 = 66.7 mm, respectively) equipped with four radial baffles (width b_1 = 30 mm, b_2 = 20 mm, respectively) and an impeller with four inclined plane blades (pitch angle α = 30°, 45°, relative blade with W/D = 0.2) made of rolled brass (Brinnel hardness 40-50 BM) always pumping the liquid downwards towards the flat vessel bottom. The wear of the impeller was described by an analytical approximation in exponential form with two parameters (the wear rate constant k and the geometrical parameters of the worn blade C) calculated by the least squares method from the experimentally found profile of the worn, leading edge of the impeller blades. While the wear rate constant exhibits a monotonous dependence on the pitch angle only, the geometric parameter is dependent both on the pitch angle and in linear form on the impeller tip speed. Thus in the procedure for scaling up the rate of erosion wear of the pitched blade impellers in a suspension of higher solid particle hardness, the decision process parameters are the impeller Made pitch angle and the impeller tip speed.
机译:研究了在搅拌装料的湍流状态下,在水中的细砂(C_V = 5%,d = 0.325 mm,硬度为“ 7.5”)的悬浮液中,变桨叶轮的叶片的腐蚀磨损。悬浮液完全均匀。确定了研究的两个目标:叶轮叶片腐蚀过程的速率与叶轮旋转频率以及混合设备的尺寸之间的关系。在由不锈钢制成的两种尺寸(几何形状相似)的中试植物混合设备上进行实验(圆柱容器的直径T_1 = 200 mm和T_2 = 300 mm,叶轮直径D_1 = 100 mm和D_2 = 66.7 mm,叶轮关闭)底部间隙h_1 = 100毫米,h_2 = 66.7毫米,配备四个径向挡板(宽度b_1 = 30毫米,b_2 = 20毫米)和一个带四个倾斜平面叶片的叶轮(俯仰角α= 30°, 45°,W / D = 0.2的相对刀片由轧制黄铜制成(布氏硬度为40-50 BM),始终将液体向下泵向扁平容器底部。叶轮的磨损通过指数形式的解析近似来描述,其中具有两个参数(磨损速率常数k和磨损叶片C的几何参数),该参数通过最小二乘法从实验得出的磨损前缘轮廓中通过最小二乘法计算得出叶轮叶片。虽然磨损率常数仅显示出与桨距角单调相关,但几何参数不仅取决于桨距角,而且还呈线性关系,取决于叶轮的叶尖速度。因此,在提高固体颗粒硬度较高的悬浮液中变桨叶轮的腐蚀磨损率的过程中,决定性工艺参数是叶轮的制造桨距角和叶轮叶尖速度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号