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    • 3. 发明申请
    • Mold for thermoplastic resin molding, cavity mold, and process for producing the cavity mold
    • 用于热塑性树脂模制的模具,腔模,以及用于制造模腔的工艺
    • US20150075701A1
    • 2015-03-19
    • US14485031
    • 2014-09-12
    • Hiroyuki Iwami
    • Hiroyuki Iwami
    • B23P15/00
    • B23P15/007B29C33/3828B29C2033/023Y10T29/49826
    • A process for producing a heat-insulating cavity mold, characterized by producing two members, i.e., a metallic surface layer member (1) for forming a metallic surface layer (5) of a cavity mold in a mold for thermoplastic resin molding and a cavity mold main body member (9) for forming the cavity mold, forming a heat-insulating layer (10′) on a bonding surface of the member (9), bonding the two members to each other, and subsequently eliminating an unnecessary part (3, 12) of the metallic surface layer member to form the metallic surface layer (5); a heat-insulating cavity mold; and a mold for thermoplastic resin molding which employs the cavity mold. The mold for thermoplastic resin molding is characterized by being a heat-insulating mold comprising: the heat-insulating cavity mold produced by the production technique from a metallic surface layer member made of a metal having low thermal conductivity and a cavity mold main body member made of a metal having high thermal conductivity; and a core mold produced from an SUS steel material for molds.
    • 一种制造隔热型腔模具的方法,其特征在于制造两个构件,即用于在用于热塑性树脂模制的模具中形成腔模的金属表面层(5)的金属表面层构件(1) 用于形成空腔模具的模具主体构件(9),在构件(9)的接合表面上形成绝热层(10'),将两个构件彼此接合,并且随后消除不必要的部分 ,12),以形成所述金属表面层(5); 绝热腔模; 以及采用模腔的热塑性树脂成形用模具。 热塑性树脂模塑用模具的特征在于:绝热模具,其特征在于,具备:由具有导热性低的金属制的金属表面层构件和由模制成的模腔主体构件的制造技术制造的绝热型腔模具 具有高导热性的金属; 以及由用于模具的SUS钢材制成的芯模。
    • 4. 发明授权
    • Bottom insert with heat insulation
    • 底部插入带隔热
    • US08182261B2
    • 2012-05-22
    • US12226758
    • 2007-05-03
    • Witold NeterHelmut ThömmesStefan Schweininger
    • Witold NeterHelmut ThömmesStefan Schweininger
    • B29C45/73
    • B29C45/73B29C45/2711B29C45/2737B29C2033/023B29C2045/7343B29K2105/253
    • A bottom insert for a mold cavity for the production of moldings of plastic material. The mold cavity has a main body with a hot side which has a recess for receiving molten plastic material under pressure and a cold side having a recess, the inside contour of which is intended to come into contact with the molding to be produced and to shape the outside contour thereof. A gate (17) is provided that connects the recess of the hot side to the recess of the cold side and is intended to introduce molten plastic material from the hot side into the cold side. In accordance with the invention there is provided a device for thermal insulation within the bottom insert between the hot side and the cold side of the bottom insert to permit more rapid cooling of the cold side by restricting heat flow from the hot side.
    • 用于生产塑料材料模制品的模具腔的底部插入件。 模腔具有热侧的主体,该主体具有用于在压力下接收熔融塑性材料的凹部和具有凹部的冷侧,其内部轮廓旨在与待生产的模制件形成接触并形成 其外部轮廓。 设有将热侧的凹部连接到冷侧的凹部的浇口(17),用于将熔融的塑料材料从热侧引入冷侧。 根据本发明,提供了一种用于在底部插入件之间在底部插入件的热侧和冷侧之间进行绝热的装置,以允许通过限制来自热侧的热流更快地冷却冷侧。
    • 5. 发明授权
    • Resin molding apparatus
    • 树脂成型装置
    • US07938642B2
    • 2011-05-10
    • US12512248
    • 2009-07-30
    • Toru Hirata
    • Toru Hirata
    • B29C33/38
    • B29C45/263B29C33/3828B29C33/424B29C45/2632B29C2033/023B29C2045/2636Y10S425/81
    • A resin molding apparatus capable of enhancing transfer accuracy, reducing the cost of a molding apparatus, and shortening a molding cycle. The resin molding apparatus includes a first mold; a second mold disposed in opposition to the first mold; a transfer plate (34) attached to one of the first and second molds and comprising a transfer surface bearing a pattern of pits and projections and oriented toward a cavity (C1, C2); and a thermal insulation layer (40) disposed between the transfer plate (34) and the one of the first and second molds and formed through growth from the transfer plate (34) side or from the one of the first and second mold sides. Being disposed between the transfer plate (34) and the one of the first and second molds, the thermal insulation layer (40) can restrain dissipation of thermal energy of a molding material toward the mold. This can restrain formation of a skin layer, which would otherwise result from a sharp drop in temperature of the molding material, whereby transfer accuracy can be enhanced.
    • 一种能够提高转印精度,降低成型装置成本,缩短成型周期的树脂成型装置。 树脂成型装置包括:第一模具; 与第一模具相对设置的第二模具; 传递板(34),其附接到所述第一和第二模具中的一个,并且包括承载凹坑和突起图案并朝向空腔(C1,C2)定向的转印表面; 以及设置在所述转印板(34)与所述第一和第二模具中的一个之间的绝热层(40),并且通过从所述转印板(34)侧或从所述第一和第二模具侧中的一个成长而形成。 设置在转印板(34)与第一和第二模具中的一个之间,隔热层(40)可以抑制成型材料的热能向模具的散发。 这可以抑制由于成型材料的温度急剧下降而导致的表皮层的形成,从而可以提高转印精度。
    • 6. 发明授权
    • Resin molding apparatus and resin molding method
    • 树脂成型装置和树脂成型法
    • US07919035B2
    • 2011-04-05
    • US12226266
    • 2007-04-20
    • Toru Hirata
    • Toru Hirata
    • B29C45/26
    • B29C45/263B29C33/3828B29C33/424B29C45/2632B29C2033/023B29C2045/2636Y10S425/81
    • Disclosed is a resin molding apparatus capable of enhancing transfer accuracy, reducing the cost of a molding apparatus, and shortening a molding cycle. The resin molding apparatus includes a first mold; a second mold disposed in opposition to the first mold; a transfer plate (34) attached to one of the first and second molds and comprising a transfer surface bearing a pattern of pits and projections and oriented toward a cavity (C1, C2); and a thermal insulation layer (40) disposed between the transfer plate (34) and the one of the first and second molds and formed through growth from the transfer plate (34) side or from the one of the first and second mold sides. Being disposed between the transfer plate (34) and the one of the first and second molds, the thermal insulation layer (40) can restrain dissipation of thermal energy of a molding material toward the mold. This can restrain formation of a skin layer, which would otherwise result from a sharp drop in temperature of the molding material, whereby transfer accuracy can be enhanced.
    • 公开了能够提高转印精度,降低成型装置成本,缩短成型周期的树脂成形装置。 树脂成型装置包括:第一模具; 与第一模具相对设置的第二模具; 传递板(34),其附接到所述第一和第二模具中的一个,并且包括承载凹坑和突起图案并朝向空腔(C1,C2)定向的转印表面; 以及设置在所述转印板(34)与所述第一和第二模具中的一个之间的绝热层(40),并且通过从所述转印板(34)侧或从所述第一和第二模具侧中的一个成长而形成。 设置在转印板(34)与第一和第二模具中的一个之间,隔热层(40)可以抑制成型材料的热能向模具的散发。 这可以抑制由于成型材料的温度急剧下降而导致的表皮层的形成,从而可以提高转印精度。
    • 7. 发明授权
    • Injection moulding device comprising needle valve nozzles in a back-to-back arrangement
    • 注射成型装置,其包括背对背布置的针阀喷嘴
    • US07854605B2
    • 2010-12-21
    • US12311556
    • 2007-08-18
    • Herbert Gunther
    • Herbert Gunther
    • B29C45/23
    • B29C45/322B29C45/281B29C2033/023
    • The present invention relates to injection molding apparatus (10) comprising a main manifold plate (16) fitted with at least several flow ducts (18), further at least two auxiliary manifold plates (22) fitted with several flow ducts (24), said auxiliary manifold plates being configured above and underneath the main manifold plate (16), the flow ducts (24) of the particular auxiliary manifold plates (22) fluidly communicating with those of the main manifold plate (16), further with needle valve nozzles (26) configured in mutually opposite and back-to-back manner and fluidly communicating with the flow ducts (24) of the auxiliary manifold plates (22), where the needle valve nozzles (26) each comprise one valve needle (28) to open/close a nozzle outlet aperture, and further pneumatically or hydraulically actuated plunger units (units (30; 71) driving the valve needles (28), said plunger units being received in at least one separate receiving plate (32; 70) configured between the auxiliary manifold plates (22), and further means cooling and/or thermally insulating the minimum of one receiving plate (32; 70).
    • 本发明涉及一种注射成型设备(10),其包括装配有至少几个流动管道(18)的主歧管板(16),另外至少两个装有几个流动管道(24)的辅助歧管板(22) 辅助歧管板被配置在主歧管板(16)的上方和下方,特定辅助歧管板(22)的流动管道(24)与主歧管板(16)的流道连通,还有针阀喷嘴 26),其配置成相互相对和背靠背的方式并且与辅助歧管板(22)的流动管道(24)流体连通,其中针阀喷嘴(26)各自包括一个阀针(28)以打开 /关闭喷嘴出口孔,以及进一步气动或液压致动的柱塞单元(驱动阀针(28)的单元(30; 71)),所述柱塞单元被容纳在至少一个单独的接收板(32; 70)中, 辅助 歧管板(22),并且还意味着冷却和/或热绝缘一个接收板(32; 70)。
    • 8. 发明申请
    • Consolidating and Curing of Thermoset Composite Parts by Pressing Between a Heated Rigid Mold and Customized Rubber-faced Mold
    • 热固性复合材料通过加热刚性模具与定制橡胶模具之间的压合固化和固化
    • US20100181018A1
    • 2010-07-22
    • US12685435
    • 2010-01-11
    • Daniel WalczykCasey HoffmanMichael RighiSuvranu DeJaron Kuppers
    • Daniel WalczykCasey HoffmanMichael RighiSuvranu DeJaron Kuppers
    • B29C70/02B29C65/18
    • B29C70/44B29C2033/023B29K2101/10B29K2995/0015
    • Method and apparatus for consolidating and curing a composite part places and registers a composite laminate layer of thermoset polymer matrix and reinforcing fibers onto the temperature-controlled curing surface of a heated curing mold and provides a base mold with base surface covered by a rubber mask having a mask surface. Three-dimensional surfaces of the curing, base and mask surfaces complement each other so with the curing and base molds adjacent, a pressure space is formed between the base and curing surfaces that contains the compressed rubber mask, a bleeder layer for removing excess air and polymer matrix, and the composite laminate, the pressure space having a perimeter. The base and curing molds are pressed together with a particular force, thereby creating a uniform hydrostatic pressure at the rubber mask and composite laminate interface by virtue of the mold and mask three-dimensional surfaces and rubber mask thickness distribution, to squeeze the composite laminate during consolidation and curing of the part. A vacuum is also applied to the perimeter of the composite laminate during consolidation.
    • 用于固化和固化复合部件的方法和装置将热固性聚合物基质和增强纤维的复合层压层放置并登记到加热的固化模具的温度控制的固化表面上,并提供具有由具有由具有 面具表面。 固化,底部和掩模表面的三维表面相互补充,因此固化和基底模具相邻,在包含压缩橡胶掩模的基底和固化表面之间形成压力空间,用于除去多余空气的泄放层 聚合物基质和复合层压材料,压力空间具有周长。 基底和固化模具以特定的力压在一起,由此通过模具和掩模三维表面和橡胶掩模厚度分布在橡胶掩模和复合层压体界面处产生均匀的静水压力,以挤压复合层压板 固化和固化的部分。 在固结期间,复合层压板的周边也施加真空。