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    • 43. 发明授权
    • Blow filter device
    • 吹风过滤装置
    • US08118025B2
    • 2012-02-21
    • US10592424
    • 2005-01-27
    • Frank BeckerDetlef KielowMartin WeberMichael Schulz
    • Frank BeckerDetlef KielowMartin WeberMichael Schulz
    • A62B7/10
    • A62B18/006A62B17/04
    • A blow filter device for breathing masks and hoods, comprising a blower which is driven by a motor and at least one filter which is arranged upstream from the blower, in addition to an electronic control system for adjusting a predefined airflow volume. The invention is characterized in that the motor is an electronically commutated direct current motor (6) which is controlled with the aid of a pulse width modulation ratio as a control variable, wherein a calibrating curve is created and stored in the memory (14) of the electronic control system and is based on a plurality of different filter resistances and a respectively corresponding pulse-width modulation ratio (PWM) and the respective motor speed (n) for a specific volume of air. The direct current motor can be controlled in the hood mode according to the speed (n) measured in relation to the respective filter resistance after activation with the aid of the associated pulse-width modulation ratio read from the calibrating curve and can be controlled in the mask mode independently of the respective filter resistance with a respective specific constant pulse-width modulation ratio (PWM) for the associated mask type, wherein the electronic control system (5) is associated with an identifying means (19,20) which is used to recognize the associated head part and to adjust the operational mode concerned.
    • 一种用于呼吸面罩和罩的吹风过滤器装置,包括由电动机驱动的鼓风机和布置在鼓风机上游的至少一个过滤器,以及用于调节预定气流量的电子控制系统。 本发明的特征在于,电动机是电子换向直流电动机(6),其以脉宽调制比作为控制变量进行控制,其中校准曲线被创建并存储在存储器(14)的 电子控制系统并且基于针对特定体积的空气的多个不同的滤波电阻和分别对应的脉宽调制比(PWM)和相应的电动机速度(n)。 根据从校准曲线读取的相关脉冲宽度调制比,根据相对于激活后的相应滤波器电阻测量的速度(n),可以在发动机罩模式下控制直流电动机,并且可以在 掩模模式独立于相应的滤波器电阻和相应掩模类型的相应的特定恒定脉冲宽度调制比(PWM),其中电子控制系统(5)与识别装置(19,20)相关联,识别装置 识别相关的头部并调整相关的操作模式。
    • 44. 发明申请
    • Method For Manufacturing A Multi-Layered Confectionery Shell
    • 制造多层糖果壳的方法
    • US20110280996A1
    • 2011-11-17
    • US13107578
    • 2011-05-13
    • Thorsten GustavSandra BauerMichael Schulz
    • Thorsten GustavSandra BauerMichael Schulz
    • A23G3/54
    • A23G1/0076A23G1/0069A23G1/54A23G1/545A23G3/008
    • A method for manufacturing a multi-layered confectionery shell is provided. The method includes depositing a first edible liquid into a mould cavity, depositing at least one other edible liquid onto the first edible liquid in the mould cavity, and pressing the edible liquids in the mould cavity using a stamp having a surface temperature below the solidification temperature of each of the edible liquids to form at least two shell layers. The ratio of the apparent viscosity of each edible liquid having one or more other edible liquids deposited directly thereon to the apparent viscosity of said other edible liquid(s) is 0.8 or less or 1.5 or more, the viscosities of the liquids being measured at a shear rate of 5 s−1 and at a liquid temperature of 40° C. A multi-layered confectionery shell obtainable by this method is also provided.
    • 提供了一种制造多层糖果壳的方法。 该方法包括将第一可食用液体沉积到模腔中,将至少一种其它可食用液体沉积在模腔中的第一可食用液体上,并使用具有低于凝固温度的表面温度的压模将模具腔中的可食用液体压制 的每种可食用液体以形成至少两个壳层。 在其上直接沉积有一种或多种其它可食用液体的每种食用液体的表观粘度与所述其它可食用液体的表观粘度之比为0.8或更小或1.5或更高,所述液体的粘度在 剪切速率为5s-1,液温为40℃。还提供了可通过该方法获得的多层糖果壳。