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首页> 外文期刊>Journal of food engineering >Surface Energy Investigation Of Chocolate Adhesion To Solid Mould Materials
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Surface Energy Investigation Of Chocolate Adhesion To Solid Mould Materials

机译:巧克力对固态模具材料粘附的表面能研究

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摘要

Chocolate residues staying behind on the mould surface during chocolate bar manufacture are responsible for production losses, and increased processing costs due to equipment cleaning. This study investigates the determining role of surface energy in chocolate adhesion to the mould substrate and the ease of its demoulding. Four materials (quartz glass, stainless steel, polycarbonate, and Teflon) were investigated as mould substrates. A classical contact angle approach was used for the surface energy determination of mould materials. Chocolate-mould adhesion was measured by a simple separation test between the solidified chocolate and a mould probe using a Texture Analyser. The results demonstrated that surface energy of the mould material is a key determining factor of chocolate-mould interaction and has a significant influence on the adhesion of cocoa butter and dark chocolate to the mould. Further analysis has shown that the electron donor component of the surface energy is the main differentiating factor determining the extent of chocolate adhesion. It is concluded that a high surface energy material is generally not favourable for fabrication of the mould. For clean demoulding, the mould material should have a surface energy below 30 mN m~(-1) and an electron donor component of the surface energy of approximately 15 mN m~(-1).
机译:在巧克力棒制造期间留在模具表面上的巧克力残留物会造成生产损失,并由于设备清洁而增加加工成本。这项研究调查了表面能在巧克力对模具基材的粘附力及其脱模的难易程度方面的决定性作用。研究了四种材料(石英玻璃,不锈钢,聚碳酸酯和特氟隆)作为模具基材。经典的接触角方法用于确定模具材料的表面能。通过使用质地分析仪的固化巧克力和霉菌探针之间的简单分离测试来测量巧克力霉菌的粘附力。结果表明,模具材料的表面能是决定巧克力与模具相互作用的关键因素,并且对可可脂和黑巧克力在模具上的附着力具有显着影响。进一步的分析表明,表面能的电子给体成分是决定巧克力粘附程度的主要差异因素。结论是,高表面能材料通常不利于模具的制造。为了进行清洁脱模,模具材料的表面能应低于30 mN m-1(-1),并且电子供体组分的表面能应约为15 mN m-1(-1)。

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