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    • 5. 发明公开
    • VERFAHREN UND INJEKTOR ZUM EINLEITEN EINES DAMPFFÖRMIGEN WÄRMETRÄGERS IN EIN FLÜSSIGES PRODUKT
    • VERFAHREN UND INJEKTOR ZUM EINLEITEN EINESDAMPFFÖRMIGENWÄRMETRÄGERSIN EINFLÜSSIGESPRODUKT
    • EP3011246A1
    • 2016-04-27
    • EP14733985.7
    • 2014-05-24
    • GEA TDS GmbH
    • SCHMIED, AndreasGEHLING, JürgenSTOCKHORST, StephanSCHWENZOW, UweTACKE, Ludger
    • F28C3/06F28C3/08
    • A23L3/22A23V2002/00F28C3/06F28C3/08
    • The invention relates to a method for introducing a vaporous heat carrier into a liquid product, in particular a food product or beverage, and in this case in particular viscous products, for example desserts, sauces or concentrates, in which method the vaporous heat carrier heats the liquid product in order to form a germ-free product, and also to an injector for carrying out the method. The object of the present invention is to provide a method of the generic type and an injector for carrying out said method, with which method and injector, in particular, a reduction in the heat transfer capacity of the injector is prevented over the entire production time. In the context of the method, this is achieved in that three physical measurement variables which can be detected during operation of the injector are used as indicators of the formation of product deposits, at least one of said three physical measurement variables being detected, and in that, depending on one or more of these physical measurement variables, an automatically controlled axial movement of the displacement body is carried out in such a way that the heat transfer capacity from the vaporous heat carrier (D) into the liquid product (P) remains the same.
    • 将蒸气热载体引入液体产品,特别是食品或饮料,更特别是粘稠的产品,例如甜点,酱汁或浓缩物的方法包括使用载体加热产物以形成无菌产物 。 还描述了用于执行该方法的喷射器。 在整个生产时间内防止喷射器的传热能力的降低。 这是通过在注射器操作期间可以检测到的三个物理测量变量被用作产物沉积物形成的指标。 检测所述三个物理测量变量中的至少一个,并且根据这些变量,执行位移体的自动控制的轴向运动,使得从气态热载体到液体产物的传热能力保持不变。
    • 8. 发明公开
    • VERFAHREN, DOSIEREINRICHTUNG UND DOSIERVENTIL ZUR ASEPTISCHEN DOSIERUNG EINES FLÜSSIGEN ZUSATZSTOFFES IN EINE ERZWUNGENE STRÖMUNG EINES BASISPRODUKTS
    • 的方法和用于无菌剂量的液体添加剂计量计量阀INTO A基本产品的强制流
    • EP2822406A1
    • 2015-01-14
    • EP12712927.8
    • 2012-03-08
    • GEA TDS GmbH
    • ASSING, HubertSCHMIED, AndreasSCHWENZOW, UweBUSS, HelmutTASLER, Franz
    • A23L3/00A23L3/22
    • A23L3/001A23L3/22A23V2002/00A61L2/07G01F11/32
    • The invention relates to a method, metering device (10) and metering valve (100) for the aseptic measured delivery of a liquid additive (Z) into a forced flow of a base product (P), the additive (Z) being removed from a storage container (18) under aseptic conditions by means of a removal conduit (18a) and being fed via an end section (E) of the removal conduit (18a) to the base product (P) which flows through a product chamber (RP). The aim of the present invention is that of finding a suitable method and providing a metering device for performing the method and a metering valve for the metering device which avoid the disadvantages of the prior art and guarantee aseptic measured delivery that is characterised by methodical, reproducible and clearly conditioned and controlled conditions. This is achieved via the following treatment steps for the end section (E) before the end section (E) feeds the additive (Z) to the base product (P): (a) the end section (E) is temporarily introduced a certain distance into an initial chamber (R) from one side or is permanently positioned therein and is sealed at the penetration point to this initial chamber (R), wherein the initial chamber (R) can optionally be opened towards the product chamber (RP); (b) a terminal part (E1) of the end section (E) that projects into the initial chamber (R) in a sealed manner is at least sterilised, all regions of the initial chamber (R) also being included in this treatment; (c) the terminal part (E1) of the end section (E) is slid a certain distance into a partial chamber (R1) that can optionally be sealably divided from the initial chamber (R), the terminal part (E1) being sealed at the end of the sliding action at the penetration point to the partial chamber (R1) by means of a sealing means treated as per treatment step (b);(d) the partial chamber (R1) is opened towards the product chamber (RP).