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超声激发会影响食品材料与切割工具之间的摩擦相互作用。

Ultrasonic excitation affects friction interactions between food materials and cutting tools.

作者信息

Schneider Yvonne, Zahn Susann, Schindler Claudia, Rohm Harald

机构信息

Institute of Food Technology and Bioprocess Engineering, Technische Universität Dresden, Bergstrasse 120, D-01062 Dresden, Germany.

出版信息

Ultrasonics. 2009 Jun;49(6-7):588-93. doi: 10.1016/j.ultras.2009.03.001. Epub 2009 Mar 12.

Abstract

In the food industry, ultrasonic cutting is used to improve separation by a reduction of the cutting force. This reduction can be attributed to the modification of tool-workpiece interactions at the cutting edge and along the tool flanks because of the superposition of the cutting movement with ultrasonic vibration of the cutting tool. In this study, model experiments were used to analyze friction between the flanks of a cutting tool and the material to be cut. Friction force at a commercial cutting sonotrode was quantified using combined cutting-friction experiments, and sliding friction tests were carried out by adapting a standard draw-off assembly and using an ultrasonic welding sonotrode as sliding surface. The impact of material parameters, ultrasonic amplitude, and the texture of the contacting food surface on friction force was investigated. The results show that ultrasonic vibration significantly reduces the sliding friction force. While the amplitude showed no influence within the tested range, the texture of the contact surface of the food affects the intensity of ultrasonic transportation effects. These effects are a result of mechanical interactions and of changes in material properties of the contact layer, which are induced by the deformation of contact points, friction heating and absorption heating because of the dissipation of mechanical vibration energy.

摘要

在食品工业中,超声切割用于通过降低切割力来改善分离效果。这种降低可归因于由于切割运动与切割工具的超声振动叠加,导致切削刃处及沿刀具侧面的刀具 - 工件相互作用发生改变。在本研究中,采用模型实验来分析切削刀具侧面与待切割材料之间的摩擦力。使用组合切削 - 摩擦实验对商用切割超声焊极的摩擦力进行量化,并通过改装标准拉拔组件并使用超声焊接超声焊极作为滑动表面来进行滑动摩擦测试。研究了材料参数、超声振幅以及接触食品表面的纹理对摩擦力的影响。结果表明,超声振动显著降低了滑动摩擦力。虽然在测试范围内振幅没有影响,但食品接触表面的纹理会影响超声传输效果的强度。这些效果是机械相互作用以及接触层材料性能变化的结果,这些变化是由接触点变形、摩擦热以及由于机械振动能量耗散引起的吸收热所导致的。

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