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    • 3. 发明申请
    • SYSTEMS FOR FORMING AGGREGATE MATERIALS FROM HEAT FUSABLE POWERED MATERIALS
    • 用于形成来自热熔融材料的聚集材料的系统
    • US20140327167A1
    • 2014-11-06
    • US14332487
    • 2014-07-16
    • Simpet Holdings LLC
    • Peter AylmoreSimon Wiper
    • B29C44/60
    • B29C44/60B29C43/003B29C43/203B29C44/0461B29C44/0469B29C44/445B29C44/585B29C44/586B29C2043/023B29C2043/3623B29K2105/251B29K2105/26
    • In one embodiment, a system for forming aggregate materials may include a lower open-topped mold, an upper mold, an actuation assembly, a heating system, a pressure sensor, and a controller. The lower open-topped mold can receive a heat moldable material that can include a foaming agent. The lower open-topped mold can contact the heat moldable material and the upper mold can contact the heat moldable material. The controller can execute machine readable control logic to cause the actuation assembly to generate relative outward motion at an expansion rate. The foaming agent can expand the heat moldable material when heated. During outward motion, the lower open-topped mold can maintain close contact with the heat moldable material, and the upper mold can maintain close contact with the heat moldable material. The expansion rate of the relative outward motion can be based upon a pressure signal indicative of back pressure.
    • 在一个实施例中,用于形成骨料材料的系统可以包括下开口模具,上模具,致动组件,加热系统,压力传感器和控制器。 下开口模具可以容纳可以包括发泡剂的可热模塑材料。 下开口的模具可以接触可热成型的材料,上模具可以接触可热成型的材料。 控制器可以执行机器可读控制逻辑,以使致动组件以膨胀速率产生相对向外的运动。 发泡剂可以在加热时膨胀热模塑材料。 在向外运动的过程中,下开口模具可以保持与热模塑材料的紧密接触,并且上模可以保持与可热热成型材料的紧密接触。 相对向外运动的膨胀率可以基于指示背压的压力信号。
    • 4. 发明申请
    • MOLD, MOLDING MACHINE, AND FOAMED MOLDED BODY MANUFACTURING METHOD
    • 模具,成型机和泡沫成型体制造方法
    • US20140312521A1
    • 2014-10-23
    • US14360409
    • 2012-06-07
    • Taisuke YonezawaYoshinori Ohashi
    • Taisuke YonezawaYoshinori Ohashi
    • B29C44/58
    • B29C44/588B29C33/10B29C44/586B29C44/587
    • A mold, a molding machine, and a foamed molded body manufacturing method are provided that are capable of more reliably preventing ingress of foamed resin into a gas discharge hole using a gas-impermeable member and capable of adequately discharging gas inside the cavity to the cavity outside through the gas discharge hole during foam molding, and that are also capable of achieving good design characteristics in a foamed molded body. A gas discharge hole 5 is provided at a cavity 4 inner face of a mold 1 and discharges gas inside the cavity 4 to outside the cavity 4. A gas-permeable member 6 is disposed inside the cavity 4 of the mold 1 so as to cover the gas discharge hole 5, and a gas-impermeable member 8 is disposed on the gas discharge hole 5 side of the gas-permeable member 6 so as to face the gas discharge hole 5. A portion of the gas discharge hole 5, spanning at least from axial direction intermediate portion of the gas discharge hole 5 to the cavity 4 side of the gas discharge hole 5, is configured with a tapered profile portion 5a that increases in diameter on progression toward the cavity 4 side.
    • 提供了一种模具,成型机和发泡成型体的制造方法,其能够更可靠地防止使用不透气构件将泡沫树脂进入气体排出孔,并且能够将空腔内的气体适当地排放到空腔 在发泡成型时通过气体排出孔外部,并且在发泡成型体中也能够获得良好的设计特性。 气体排出孔5设置在模具1的空腔4的内表面,并将空腔4内的气体排出到空腔4的外部。透气构件6设置在模具1的空腔4的内部以覆盖 气体排出孔5和气体不可渗透部件8设置在透气部件6的气体排出孔5侧,以与气体排出孔5相对。排气孔5的一部分跨越 至少从气体排出孔5的轴向中间部分到气体排出孔5的空腔4侧构造有锥形轮廓部分5a,该锥形轮廓部分5a朝向腔体4侧进行直径增加。
    • 5. 发明申请
    • PROCESS AND DEVICE FOR PRODUCING AN INJECTION MOULDING
    • 用于生产注射成型的工艺和装置
    • US20130328229A1
    • 2013-12-12
    • US13813911
    • 2011-06-21
    • Thomas HelmingMarkus Liedel
    • Thomas HelmingMarkus Liedel
    • B29C45/00
    • B29C45/0053B29C44/0415B29C44/086B29C44/586
    • A process is described for producing an injection moulding (300) with the aid of an injection moulding device (100), where a charge (301) is injected into a cavity (200) of the injection moulding device (100) and is foamed with the aid of a ventilation cycle (132, 142, 152). In this process, a displacer element (130, 140, 150) restricted to a selected section (220, 240, 260) of the cavity (200) is introduced into the cavity (200), and the charge (301) is injected into the cavity (200) with the displacer element (130, 140, 150) arranged therein. In a subsequent ventilation cycle (132, 142, 152), the displacer element (130, 140, 150) is then moved out from the cavity (200) in order to foam the charge (301) in the selected section (220, 240, 260) of the cavity (200).
    • 描述了一种用于通过注射成型装置(100)制造注射成型(300)的方法,其中将注射成型装置(100)注入到注射成型装置(100)的空腔(200)中并用 辅助通气循环(132,142,152)。 在该过程中,限制到空腔(200)的选定部分(220,240,260)的置换元件(130,140,​​150)被引入空腔(200)中,并且将电荷(301)注入 具有布置在其中的置换元件(130,140,​​150)的空腔(200)。 在随后的通气循环(132,142,152)中,然后将置换器元件(130,140,​​150)从空腔(200)移出,以便使选定部分(220,240)中的电荷(301)发泡 ,260)。
    • 6. 发明申请
    • METHOD FOR PREPARING FABRIC-INTEGRATED CROSS-LINKED FOAMED PRODUCT
    • 制备织物相互交联的泡沫产品的方法
    • US20130207290A1
    • 2013-08-15
    • US13704195
    • 2011-03-29
    • Jang Won Park
    • Jang Won Park
    • B29C44/02
    • B29C44/025B29C43/021B29C43/145B29C43/18B29C44/1209B29C44/14B29C44/3488B29C44/586
    • The present invention relates to a method for manufacturing a fabric-integrated cross-linked foamed product, comprising the steps: preparing a mold having a cavity; filling the cavity of the mold with a molding material in an amount greater than the volume of the cavity of the mold; pressurizing and heating the mold; releasing pressure before the molding material of the mold begins to be cross-linked after having reached the softening point by the applied heat, and opening the mold; completely removing the molding material other than the molding material charged in the cavity of the mold, of the molten molding material in the opened mold; placing fabric on the upper surface of the mold the cavity of which is filled with the molding material; pressurizing and heating the mold to cross-link the molding material in contact with the fabric; and releasing pressure and rapidly opening the mold to foam the cross-linked molding material in contact with the fabric.
    • 本发明涉及一种制造织物一体化交联发泡产品的方法,包括以下步骤:制备具有空腔的模具; 用大于模具空腔的体积的模制材料填充模具的空腔; 对模具加压加热; 在模具的成型材料在通过施加的热量达到软化点之后开始交联并打开模具之前释放压力; 在打开的模具中完全除去填充在模具的空腔中的模制材料以外的模制材料; 将织物放置在模具的上表面上,其模腔填充有模制材料; 加压和加热模具以使与模制材料接触的模制材料交联; 并释放压力并快速打开模具以使与织物接触的交联成型材料发泡。
    • 7. 发明授权
    • Dynamic mould tool
    • 动态模具工具
    • US08419406B2
    • 2013-04-16
    • US12527678
    • 2007-06-11
    • Roland KarlssonJerry StigssonAnders Paulsson
    • Roland KarlssonJerry StigssonAnders Paulsson
    • B29C43/02B29C43/32
    • B29C33/0038B29C33/10B29C44/027B29C44/586
    • Mould tool to be arranged in a press with essentially parallel press surfaces for production of rigid expanded polymer embryo bodies, the mould tool comprises a first mould member and an second mould member that are moveable with respect to each other in a direction perpendicular to the press surfaces, and sealing means providing an essentially hermetic seal between the first and second mould member during at least a portion of such a relative motion, thereby defining a closed mould cavity of variable volume, wherein the first mould member defines at least a portion of the mould cavity volume and comprises an outer peripheral edge, and the second mould member comprises a rim that closely circumscribes the outer peripheral edge of the first mould member and wherein the sealing means is arranged in the gap formed between the rim and the outer peripheral edge.
    • 模具可以在具有基本上平行的压制表面的压机中布置,用于生产刚性膨胀聚合物胚体,模具包括第一模具构件和第二模具构件,其可以在垂直于压力机的方向上相对于彼此移动 表面和密封装置在这种相对运动的至少一部分期间在第一和第二模具构件之间提供基本上气密的密封,从而限定可变体积的封闭模腔,其中第一模具构件限定了至少一部分 模腔体积并且包括外周边缘,并且第二模具构件包括紧密地围绕第一模具构件的外周边缘的边缘,并且其中密封装置布置在形成在边缘和外周边缘之间的间隙中。
    • 8. 发明授权
    • Molding die and method for molding a molded article
    • 成型模具和模塑制品的成型方法
    • US08323540B2
    • 2012-12-04
    • US13067260
    • 2011-05-19
    • Yoshihisa MiyabeKazuhiro DoteguchiKatsuyoshi ShimakataShu Onodera
    • Yoshihisa MiyabeKazuhiro DoteguchiKatsuyoshi ShimakataShu Onodera
    • B29C45/16B29C44/06
    • B29C44/586B29C44/086B29C45/062B29C45/1635B29C45/1676B29K2105/04
    • A molding die and a method for molding a molded article including a foam layer made up of faces extended in a plurality of directions are provided, by which all of the faces can grow up to a predetermined expansion ratio or more. To this end, a molding die 1 includes a stationary die including a main die 2 and a slide die 3 movable relative to the main die 2, and a movable die 4. The slide die 3 partially faces a cavity C and can move in a direction (Y direction) different from a die clamping/die opening direction (X direction). When a foam layer a2 made up of a face a21 orthogonal to the die clamping/die opening direction and a face a22 other than the face a21 grows in the cavity C, at least the slide die 3 moves in Y direction, whereby both of the faces a21 and a22 of the foam layer a2 can grow to satisfy a predetermined expansion ratio.
    • 本发明提供一种成型模具和成型体的成型体,其中,所述成形品包括由沿多个方向延伸的面构成的泡沫层,通过该成形体,所有面都可以成长至预定的膨胀比以上。 为此,成型模具1包括固定模具,其包括主模具2和相对于主模具2可移动的滑动模具3以及可动模具4.滑动模具3部分地面向空腔C,并且可以在 方向(Y方向)不同于模具夹紧/模具打开方向(X方向)。 当由与模具夹紧/开模方向正交的面a21构成的泡沫层a2和除了面a21以外的面a22在空腔C中生长时,至少滑动模3沿Y方向移动, 泡沫层a2的表面a21和a22可以生长以满足预定的膨胀比。
    • 9. 发明授权
    • Injection mold for the production of an injection-molded part from a rigid plastic layer and a plastic foam surface layer
    • 用于从刚性塑料层和塑料泡沫表面层制造注塑部件的注射模具
    • US08221662B2
    • 2012-07-17
    • US12512493
    • 2009-07-30
    • Georg Kaufmann
    • Georg Kaufmann
    • B29C67/00
    • B29C45/4471B29C44/0446B29C44/582B29C44/586B29C45/33B29L2031/3008B29L2031/3041
    • An injection mold is provided for the production of an injection molding having a stiff plastics layer and a foamed-plastic surface layer, with at least one undercut region and comprising two mold halves and comprising one or more sliding elements, which delimit a mold cavity with a convex and a concave side. Whereby, there is a first sliding element provided on the convex side of the mold cavity, and this sliding element has been designed so as to interlock with the first mold half more distant from the undercut region, and is movable with this same mold half, in the same direction, after the injection of the stiff plastics backing layer and of the polymer melt forming the foamed-plastic surface layer, in the step of decompression of the polymer melt forming the foamed-plastic surface layer.
    • 提供了一种注射模具,用于生产具有硬塑料层和发泡塑料表面层的注模,其具有至少一个底切区域并且包括两个半模并且包括一个或多个滑动元件,其限定模具腔 一个凸和一个凹面。 由此,在模腔的凸面上设置有第一滑动元件,该滑动元件被设计为与第一半模更靠近底切区域互锁,并且可以用相同的半模移动, 在形成发泡塑料表面层的聚合物熔体的减压步骤中,在注入刚塑料背衬层和形成发泡塑料表面层的聚合物熔体之后,沿相同的方向。
    • 10. 发明申请
    • STRUCTURAL FOAM AND MANUFACTURE THEREOF
    • 结构泡沫及其制造方法
    • US20110104478A1
    • 2011-05-05
    • US12937867
    • 2009-03-16
    • Yan SimardEric LalancetteDaniel Thomas Jones
    • Yan SimardEric LalancetteDaniel Thomas Jones
    • B32B3/26B29C44/52
    • B29C44/352B29C44/083B29C44/3403B29C44/3423B29C44/353B29C44/5627B29C44/586B29C2791/006B29K2105/04Y10T428/26
    • A method of manufacturing a foam body having an anisotropic cell structure, the method including the steps of: expanding a polymer at an elevated temperature to form an initial foam body; and cooling the initial foam body under a negative pressure. There is also provided a method of manufacturing a foam body having an anisotropic cell structure, the method including the steps of: (a) in a first expansion step, expanding a foamable polymer composition substantially isotropically to form an initial foam body having an isotropic cell structure; and (b) in a second expansion step, expanding the initial foam body anisotropically in a selected direction under a negative pressure which applies an expanding force in the selected direction to provide a final foam body having an anisotropic cell structure. Apparatus for the methods are also disclosed.
    • 一种制造具有各向异性单元结构的泡沫体的方法,所述方法包括以下步骤:在高温下膨胀聚合物以形成初始泡沫体; 并在负压下冷却初始泡沫体。 还提供了一种制造具有各向异性单元结构的泡沫体的方法,该方法包括以下步骤:(a)在第一膨胀步骤中,基本上各向同性膨胀可发泡聚合物组合物以形成具有各向同性电池的初始泡沫体 结构体; 和(b)在第二膨胀步骤中,在施加沿所选方向的膨胀力的负压下沿选定方向各向异性膨胀初始泡沫体,以提供具有各向异性单元结构的最终泡沫体。 还公开了用于该方法的装置。