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Jet mill and classifier and its method of operation of the particulate generation method and for its

机译:气流粉碎机和分级机及其操作方法的颗粒物产生方法及其

摘要

This invention has, the classification wheel (8), the classification wheel axis (35) and the classification housing (21), the aforementioned classification wheel (8) with the aforementioned classifier housing (21) with the classifier air gap (8a) is formed between, the aforementioned classifier air gap due to the compressed gas of low, energy content regarding this method in regard to the method of forming the particulate the dynamic air classifier where the aforementioned classification wheel axis (35) with the aforementioned classifier housing (21) with the axial passage (35b) is formed between, is unified (7) the fluid energy mill which it has with (1), (8a) And/or the aforementioned axial passage (35b) thing and energy rich air gap washing is done the pulverization jet entrance where superheated steam is supplied it features that (5) exists. Furthermore this invention has, the classification wheel (8), the classification wheel axis (35) and the classification housing (21), the aforementioned classification wheel (8) with the aforementioned classifier housing (21) with the classifier air gap (8a) is formed between, the aforementioned classifier air gap due to the compressed gas of the energy content which the dynamic air classifier where the aforementioned classification wheel axis (35) with the aforementioned classifier housing (21) with the axial passage (35b) is formed between, is unified (7) creates the fluid energy mill for particulate formation which it has, in this fluid energy mill, is low (8a) and/Or the aforementioned axial passage (35b) it can provide the cleaning device which does air gap washing, at the same time energy rich the pulverization jet entrance where superheated steam is supplied it features that (5) exists. According to this invention, also operational method of the dynamic air classifier and the said classifier which mention is created.
机译:本发明具有分类轮(8),分类轮轴线(35)和分类机壳(21),上述具有分类机壳体(21)和分类机气隙(8a)的分类轮(8)为:关于该方法,由于在动态分级机中形成颗粒的方法,其中上述分级轮轴线(35)与上述分级机壳体(21)形成颗粒的方法有关,因此,该方法由于能量含量低而在上述分级机气隙之间形成。 )与轴向通道(35b)之间形成,与(1),(8a)所具有的流体能粉碎机(7)和/或前述轴向通道(35b)和富能气隙的洗涤被一体化。完成了向过热蒸汽供应的粉状射流入口,它具有(5)的特征。此外,本发明具有分类轮(8),分类轮轴线(35)和分类壳体(21),具有上述分类器壳体(21)和上述分类器气隙(8a)的上述分类轮(8)。在上述分级器气隙之间形成有由于能量含量的压缩气体而形成的动态空气分级器,其中上述分级轮轴线(35)与上述分级器壳体(21)与轴向通道(35b)之间形成了,是统一的(7),它创建了一种用于颗粒形成的流体能磨,在该流体能磨中,其低(8a)和/或上述轴向通道(35b),它可以提供进行气隙清洗的清洁装置,同时提供过热蒸汽的粉碎喷嘴入口处能量丰富,其特征在于存在(5)。根据本发明,还提出了动态空气分级机和上述分级机的操作方法。

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