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    • 6. 发明申请
    • AUGER DIP APPARATUS FOR APPLYING ANTIMICROBIAL SOLUTION
    • AUGER用于应用抗微生物溶液的DIP装置
    • WO2017188931A1
    • 2017-11-02
    • PCT/US2016/029299
    • 2016-04-26
    • SAFE FOODS CORPORATION
    • MASSEY, JustinYEAMAN, Tim
    • B01D11/02G05B1/00
    • Embodiments of the present disclosure provide an auger dip apparatus for the application of antimicrobial solution to raw food. Embodiments of the present disclosure may use an auger as a single moving part to move the food work pieces through the application area for antimicrobial solution. Embodiments of the present disclosure are simple with only one moving auger part to move the food pieces, and the bearing for the moving part, supporting the shaft of the auger, may be configured to be outside of the cabinet with the reservoir of the antimicrobial solution, so that the bearing is not in contact with the antimicrobial solution. This provides for less maintenance and downtime, particularly unscheduled downtime, than a system using more complicated exposed parts. The present disclosure also permits a more compact and lighter configuration for an assembled application unit.
    • 本公开的实施例提供了一种用于将抗微生物溶液应用于生食物的螺旋钻设备。 本公开的实施例可使用螺旋钻作为单个移动部件来移动食物工件穿过用于抗微生物溶液的应用区域。 本公开的实施例是简单的,只有一个运动的螺旋推运器部件移动食物块,并且支撑螺旋推运器的轴的用于运动部件的轴承可以被配置为在柜的外部,并且抗微生物溶液的储器 ,以便轴承不与抗微生物溶液接触。 与使用更复杂的暴露部件的系统相比,这提供了更少的维护和停机时间,特别是意外停机时间。 本公开还允许用于组装的应用单元的更紧凑和更轻的构造。
    • 8. 发明申请
    • METHOD OF GRINDING A WORKPIECE AND METHOD FOR DETERMINING PROCESSING PARAMETERS
    • 研磨工艺的方法和确定加工参数的方法
    • WO2015178819A1
    • 2015-11-26
    • PCT/SE2015/050496
    • 2015-05-06
    • SCANIA CV AB
    • KRAJNIK, PeterDRAZUMERIC, Radovan
    • B24B19/12B24B51/00G05B1/00
    • B24B19/125B24B49/14B24B51/00G05B19/40937Y02P90/265
    • The present disclosure relates to a grinding method for grinding of non-circular workpieces with an improved productivity and quality of the resulting workpiece. The method comprises a first and a second stage. The rotational speed profile of the workpiece in the first stage is controlled with the purpose of maintaining a pre-selected maximum surface temperature of the workpiece during said first stage, and grinding of the workpiece in said second stage is performed while controlling an aggressiveness number of said second stage so as to achieve an intended final surface quality. The present disclosure also relates to a method for determining the processing parameters of such a grinding method wherein the first and the second stage of the grinding method are iterated to thereby determine the processing parameters leading to a high productivity and desired quality of the workpiece after grinding.
    • 本公开涉及一种用于研磨非圆形工件的研磨方法,其具有提高的所得工件的生产率和质量。 该方法包括第一和第二阶段。 为了在第一阶段保持工件的预选最大表面温度,在第一阶段中工件的转速分布被控制,并且在所述第二阶段中对工件进行研磨,同时控制侵蚀性数量 所述第二阶段以达到期望的最终表面质量。 本公开还涉及一种用于确定这种研磨方法的处理参数的方法,其中重复研磨方法的第一阶段和第二阶段,从而确定导致研磨后工件的高生产率和期望质量的加工参数 。