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    • 91. 发明申请
    • CLOSED KNEADING MACHINE AND KNEADING ROTOR
    • 封闭机和旋转机
    • US20120014206A1
    • 2012-01-19
    • US13259954
    • 2010-03-12
    • Norifumi YoshidaMasaaki UemuraHiromi NakanoKatsunobu HagiwaraKimio InoueMika NishidaKazuhisa Fukutani
    • Norifumi YoshidaMasaaki UemuraHiromi NakanoKatsunobu HagiwaraKimio InoueMika NishidaKazuhisa Fukutani
    • B01F7/00
    • B29B7/186B29B7/246B29B7/263B29B7/7495
    • A kneading rotor, in which the length L4 of a long blade in the direction of rotation of a rotor section is greater than one half of the total length L5 of a rotor section main body in the direction of rotation, and the long blades are arranged in such a manner that, in a case where a pair of the rotor sections are arranged mutually in parallel inside the chamber of the closed kneading machine and are rotated in mutually opposite directions, an end section on the rearward side in the direction of rotation of the rotor section, of the long blade of one of the rotor sections, and an end section on the forward side in the direction of rotation of the rotor section, of the long blade of the other one of the rotor sections, alternately repeat mutually an approaching action and a separating action, and in the state of approach, the end section on the forward side and the end section on the rearward side oppose each other in the direction of rotation of the rotor sections on a line which links the respective central axes of the pair of rotor sections, in one cross-section perpendicular to the axial direction of the rotor section.
    • 一种搅拌转子,其中长叶片在转子部分的旋转方向上的长度L4大于转子部分主体沿旋转方向的总长度L5的一半,长叶片布置 其特征在于,在所述一对所述转子部在所述封闭混炼机的所述室的内部相互平行地配置并相互相反的方向旋转的情况下,在所述旋转方向的后方侧的端部 一个转子部分的长叶片的转子部分和另一个转子部分的长叶片在转子部分的旋转方向的前侧的端部的端部交替重复相互 接近动作和分离动作,并且在接近的状态下,前侧的端部和后侧的端部在转子部的旋转方向上彼此相对, 在一对垂直于转子部分的轴向的横截面中,是一对转子部分的各个中心轴线。
    • 92. 发明授权
    • Batch mixer
    • 批量搅拌机
    • US08087814B2
    • 2012-01-03
    • US10793926
    • 2004-03-08
    • Norifumi YamadaMasaki NaoiKo TakakuraMasao Murakami
    • Norifumi YamadaMasaki NaoiKo TakakuraMasao Murakami
    • B29B7/18
    • B29B7/263B29B7/183B29B7/186B29B7/7495B29B7/826
    • A batch mixer having a barrel which forms a cylindrical sealed chamber having a section consisting of two mutually communicated circles, and two rotors housed in the chamber to mix a mixing material by rotation, at least one of the inner wall of the barrel and the surface of the rotor having a plurality of recessed parts or protruding parts. The recessed parts or protruding parts are formed of grooves or projections extended in the direction crossing to the rotating direction of the rotor rotated in the chamber to mix the material. According to this structure, a batch mixer excellent in the controllability of material temperature during mixing can be provided.
    • 一种间歇式混合器,其具有形成具有由两个相互连通的圆形构成的部分的圆柱形密封室的筒,以及容纳在所述室中的两个转子,以通过旋转混合混合材料,所述筒的内壁和表面的至少一个 的转子具有多个凹部或突出部。 凹部或突出部由与在室内旋转的转子的旋转方向交叉的方向延伸的槽或突起形成,以混合材料。 根据该结构,可以提供混合时材料温度控制性优异的间歇式混合机。
    • 93. 发明申请
    • Batch mixer and mixing rotor used in the same
    • 分批搅拌机和混合转子一起使用
    • US20060104154A1
    • 2006-05-18
    • US11263954
    • 2005-11-02
    • Kimio InoueNorifumi YamadaKatsunobu HagiwaraHiromi Nakano
    • Kimio InoueNorifumi YamadaKatsunobu HagiwaraHiromi Nakano
    • B28C1/16
    • B29B7/82B29B7/183B29B7/186
    • A plurality of mixing rotors that are housed in a chamber having a cocoon-shaped cross section in a tangential non-intermeshing state, where a plurality of long wings and short wings are provided on a wing portion of the mixing rotors. The long wings and the short wings severally have a plurality of different sizes of tip clearances, a twist angle of the long wings is changed in the axis direction, and makes mixing efficiency and dispersion efficiency compatible. Further, cooling medium paths are provided severally in the chamber and the mixing rotors to suppress excessive increase of the temperature of mixing materials. According to a batch mixer using the mixing rotors, it is possible to control quality reduction of the mixing materials caused by heat generation, and to improve the productivity by increasing the number of the wings without diminishing inherent processing performance of the mixer.
    • 多个混合转子,其容纳在具有切向非啮合状态的茧状横截面的室中,其中多个长翼和短翼设置在混合转子的翼部上。 长翼和短翼分别具有多个不同尺寸的尖端间隙,长翼的扭转角度在轴线方向上变化,并且使混合效率和色散效率相容。 此外,冷却介质路径分别设置在室和混合转子中以抑制混合材料的温度过度增加。 根据使用混合转子的分批混合器,可以控制由发热引起的混合材料的质量降低,并且通过增加机翼的数量而不降低混合机的固有加工性能来提高生产率。
    • 97. 发明授权
    • Rotor having at least one split blade particularly for mixing machines
of internal type
    • 转子具有至少一个分离叶片,特别适用于内部混合机
    • US5297935A
    • 1994-03-29
    • US998409
    • 1992-12-29
    • Gian C. Passoni
    • Gian C. Passoni
    • B01F7/08B29B7/18B29B7/46F01D5/12
    • B29B7/186
    • A rotor (5) particularly for mixing machines of internal type (1) for elastomers and plastomers, equipped with at least one pair of blades (6) each projecting from the cylindrical hub of rotor (5) starting from flank (5c) of the rotor and set helically thereon, in which at least one of such blades (6) has at least one split delimited by two blade sections (6a, 6'a; 6b, 6'b; 8a, 8'a; 8b, 8'b; 10a, 10'a) located parallel to one another, one section (6a, 6b, 8a, 8b, 10a) having one of its ends located at flank (5c) of rotor (5) and at least one section (6a, 6'b, 8'a, 8'b, 10'a) being separated from the previous one or located on the same helix or on parallel helices to create at least one passage opening (7) capable of bringing about diversion of the flow of material during mixing.
    • 一种特别用于混合用于弹性体和塑性体的内部类型(1)的机器的转子(5),其配备有至少一对叶片(6),每个叶片从转子(5)的圆柱形轮毂突出,从侧面 转子并螺旋地设置在其上,其中至少一个这样的叶片(6)具有由两个叶片部分(6a,6'a; 6b,6'b; 8a,8'a; 8b,8' (6a,10b,8a,8b,10a),其一端位于转子(5)的侧面(5c)和至少一个部分(6a) ,6'b,8'a,8'b,10'a)与前一个分离或位于相同的螺旋上或平行的螺旋上,以形成至少一个通道开口(7),能够导致 混合时材料流动。
    • 98. 发明授权
    • Internal batch mixing machines with non-intermeshing rotors of increased
performance
    • 内部批量混合机具有非啮合转子,性能更高
    • US4744668A
    • 1988-05-17
    • US918155
    • 1986-10-14
    • Narku O. Nortey
    • Narku O. Nortey
    • B29B7/10B01F7/04B29B7/18B01F7/02
    • B29B7/186
    • Non-intermeshing four-wing and three-wing rotors for use in high intensity mixing machines of the batch type provide new sequences and new characteristics of dynamic interactions for achieving advantageously increased mixing effectiveness and strength of the rotors. These new rotors are adapted for driving at unequal speed (unsynchronized rotation) or at equal speed (synchronized rotation). In the four-wing rotors, long wings and short wings both originate from both ends of the rotor. The new four-wing and three-wing rotors intensify axial mixing action and transverse distributive mixing for causing the mixes (batches) to become more homogeneous. The markedly increased twist angles T in both types of rotors decreases the volume of material "sitting" at the center of the mixer for maximizing the dispersive mixing or high shear occurring between wing tips and wall surface of each rotor cavity. The marked increase in helix angles A enhance distributive (blending) mixing by rolling banks of material in axial directions in the rotor cavities with components of axial movement and axial flow. The larger ratios of axial wing length to rotor length increase the propelling of material from near the originating end of the long wing in an axial direction along the cavity over near to the other end of the cavity and then back again with back-and-forth zig-zag like motions for enhancing distributive mixing and blending. Randomization of blending is advantageously achieved by each rotor by rolling the banks of material back-and-forth with differing velocities in opposite directions. The new interactions of these rotors produce numerous advantages and mixing features.
    • 用于批次类型的高强度混合机的非啮合四翼和三翼转子提供动态相互作用的新序列和新特征,以实现有利地提高转子的混合效果和强度。 这些新的转子适用于以不相等的速度(不同步旋转)或等速(同步旋转)进行驱动。 在四翼转子中,长翼和短翼都来自转子的两端。 新的四翼和三翼转子增强轴向搅拌作用和横向分配混合,使混合物(批料)变得更均匀。 在两种类型的转子中显着增加的扭转角度T减小了“坐在”在混合器中心处的材料的体积,以最大化在翼尖和每个转子腔的壁表面之间发生的分散混合或高剪切。 螺旋角A的显着增加通过轴向移动和轴向流动的部件在转子腔中沿轴向方向滚动材料组来增强分配(混合)混合。 轴向翼长与转子长度的较大比例增加了材料从长翼起始端的轴向沿空腔的轴向沿空腔的另一端附近的推进,然后再次向后返回 曲折形似于增强分配混合和混合的运动。 有利地通过每个转子通过以相反方向以不同的速度来回滚动材料组来实现混合的随机化。 这些转子的新相互作用产生了许多优点和混合特征。