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    • 23. 发明申请
    • CRUCIBLE AND SPINDLE FOR A VARIABLE SIZE DROP DEPOSITION SYSTEM
    • 可变尺寸降水沉积系统的可控和主轴
    • WO01036136A1
    • 2001-05-25
    • PCT/US1999/026946
    • 1999-11-16
    • B22F3/00B29C31/04B29C41/36B23D23/00B06B1/20B22F9/08
    • B29C41/36B22F3/008B29C31/04
    • An apparatus for forming three-dimensional objects includes a crucible (1) for holding a molten material; a conically-shaped orifice (1a) having a fixed outlet diameter (do) at the bottom of the crucible through which a jet (50) of the molten material flows towards the substrate; and an oscillating mechanical member (5) for breaking the flow of molten material into the molten material drops (60). The oscillating mechanical member further includes a conically-shaped head (5a) for cooperating with the orifice (1a) and for varying the effective size of the orifice. The conically-shaped head includes a slanted radial portion (5c) and a tip portion (5b) extending through the orifice. The effective diameter (deff) of the jet is defined by the relationship deff=[d0 -(d0- delta tan theta ) ] , wherein delta represents the amount of the tip portion extending through the orifice, and theta represents a slant angle corresponding to the slanted radial portion of the conically-shaped head.
    • 用于形成三维物体的装置包括:用于保持熔融材料的坩埚(1); 在坩埚底部具有固定的出口直径(do)的圆锥形孔口(1a),熔融材料的喷嘴(50)通过该孔口朝向衬底流动; 以及用于将熔融材料流入熔融材料液滴(60)的振荡机械部件(5)。 振荡机械构件还包括锥形头部(5a),用于与孔口(1a)配合并改变孔口的有效尺寸。 圆锥形头部包括倾斜径向部分(5c)和延伸穿过孔口的尖端部分(5b)。 射流的有效直径(deff)由关系deff = [d0 < - (d0-δtanθ)2]] 1/2来定义,其中δ表示尖端部分延伸的量 孔口,θ表示对应于锥形头部的倾斜径向部分的倾斜角度。
    • 24. 发明申请
    • MOLDING APPARATUS AND PROCESS EMPLOYING HEATED FLUID
    • 造型设备和加工加热流体的工艺
    • WO00054950A1
    • 2000-09-21
    • PCT/IB2000/000190
    • 2000-02-21
    • B29C33/04B29C41/18B29C41/36B29C41/46B29C41/04
    • B29C41/46B29C33/04B29C41/18B29C41/36Y10S264/60
    • A molding apparatus and method for forming a thermoplastic shell or skin product. The molding apparatus includes a hollow mold housing provided with a mold tool thereon, which together define a fluid chamber within the mold housing. A quantity of heated liquid is supplied at a predetermined or operating temperature to the chamber of the mold housing from a liquid supply via an elongate feed pipe until a rear surface of the mold tool is covered. The mold housing is then oscillated to uniformly distribute the heated liquid within the chamber and to effect uniform heating of the mold tool. Heating devices are located within the chamber of the mold housing to add heat to the liquid within the housing chamber to maintain a desired liquid temperature.
    • 一种用于形成热塑性壳或皮肤产品的成型装置和方法。 模制设备包括在其上设置有模具的中空模具壳体,它们一起在模具壳体内限定流体室。 一定量的加热液体通过细长的进料管从液体供应器以预定的或操作的温度供给到模具壳体的腔室,直到模具的后表面被覆盖。 然后模具壳体振荡以将加热的液体均匀地分布在室内并且实现模具的均匀加热。 加热装置位于模具壳体的腔室内,以将热量加热到壳体腔室内的液体以保持所需的液体温度。
    • 25. 发明申请
    • METHOD AND APPARATUS FOR MANUFACTURE OF THIN-WALL ARTICLE FROM PLASTIC PARTICLES
    • 从塑料颗粒制造薄壁制品的方法和装置
    • WO99059794A1
    • 1999-11-25
    • PCT/IB1999/000830
    • 1999-05-07
    • B29C33/00B29C33/04B29C41/18B29C41/36B29C41/00B29C41/22
    • B29C41/18B29C33/0011B29C33/04B29C41/36
    • A molding process and apparatus including a powder box containing plastic particles which is brought into engagement with a mold shell (13) heated to a desired temperature. The powder box (21) and mold shell (13) together define a closed chamber (14). The powder box (21) includes therein an agitating arrangement (27) which creates a dense dispersion of particles within the chamber (14) and displaces the particles upwardly toward the heated face of the mold shell (13). The particles as they contact the heated face become sticky and adhere thereto due to the transfer of heat to the particles from the heated face by conduction. This heat transfer effects melting of the particles and results in formation of a layer of plastic over the face of the mold shell. The agitation of the particles continues for a time period sufficient to create an article having the desired thickness.
    • 一种成型工艺和设备,其包括含有塑料颗粒的粉盒,该粉盒与加热到期望温度的模壳(13)接合。 粉盒(21)和模壳(13)一起限定了一个封闭的腔室(14)。 粉盒(21)包括搅拌装置(27),其产生颗粒在腔室(14)内的致密分散并使颗粒朝向模壳(13)的加热面向上移动。 随着与加热面接触的颗粒由于通过传导从加热面传递到颗粒而粘附并附着在其上。 这种热传递会影响颗粒的熔化,并导致在模壳表面上形成一层塑料。 颗粒的搅动持续一段足以产生具有所需厚度的制品的时间。