Mold for Resin Injection Molding
    2.
    发明申请
    Mold for Resin Injection Molding 有权
    树脂注塑模具

    公开(公告)号:US20160297128A1

    公开(公告)日:2016-10-13

    申请号:US14811047

    申请日:2015-07-28

    IPC分类号: B29C45/17

    摘要: A mold for resin injection molding 1 having a shaping region formed by a low-density shaped portion 22 and a high-density shaped portion 21 in which each ventilation channel 32 for gas existing between an external region and a molding portion region forms a hollow state surrounded by a peripheral wall having any one or both of the high-density shaped portion 21 and the low-density shaped portion 22, and the secondary vent 33 connecting communicatively with a region molding portion is formed only by a low-density shaped portion 22 with thickness thinner than that of the shaping region.

    摘要翻译: 一种用于树脂注射成型的模具1,其具有由低密度形状部分22和高密度形状部分21形成的成形区域,其中存在于外部区域和模制部分区域之间的气体的每个通风通道32形成中空状态 由具有高密度形状部分21和低密度成形部分22中的任一个或两个的周壁围绕,并且与区域模制部分连通地连接的二次通气孔33仅由低密度成形部分22形成 其厚度比成形区的​​厚度薄。

    Porous electroformed shell for patterning and manufacturing method thereof
    5.
    发明授权
    Porous electroformed shell for patterning and manufacturing method thereof 有权
    多孔电铸壳及其制造方法

    公开(公告)号:US08845874B2

    公开(公告)日:2014-09-30

    申请号:US12845028

    申请日:2010-07-28

    申请人: Kyung-Ho Lee

    发明人: Kyung-Ho Lee

    摘要: Disclosed are a porous electroformed shell for forming a grain pattern and a manufacturing method thereof. The method includes the step of implanting a fiber into a patterned surface of a negative-type silicone cast; applying, laminating, and curing an epoxy resin on the patterned surface of the negative-type silicone cast, and transferring the fiber from the negative-type silicone cast to an epoxy mandrel during demolding of the epoxy mandrel; forming a conductive thin film on the patterned surface of the epoxy mandrel, and causing the patterned surface to be conductive; removing the fiber having the conductive thin film from a surface of the epoxy mandrel; forming an electrodeposited layer by electrodepositing an electroforming metal on the conductive thin film while generating and growing a fine pore at a position of a hole due to the removal of the fiber; and demolding the electrodeposited layer having the fine pore from the epoxy mandrel. Through the disclosed method, precise control on a diameter and distribution of a fine pore can be simply and efficiently can be carried out.

    摘要翻译: 公开了一种用于形成颗粒图案的多孔电铸壳及其制造方法。 该方法包括将纤维植入负型硅树脂铸型的图案化表面的步骤; 在负型硅树脂铸型的图案化表面上施加,层压和固化环氧树脂,并且在环氧心轴的脱模期间将纤维从负型硅氧烷铸件转移到环氧树脂心轴; 在环氧心轴的图案化表面上形成导电薄膜,并使图案化表面导电; 从环氧心轴的表面去除具有导电薄膜的纤维; 通过在导电薄膜上电沉积电铸金属而形成电沉积层,同时由于去除纤维而在孔的位置产生和生长细孔; 并从环氧树脂心轴脱模具有细孔的电沉积层。 通过所公开的方法,可以简单有效地对细孔的直径和分布进行精确控制。

    DEVICE AND METHOD FOR PRODUCING A COMPOSITE COMPONENT
    6.
    发明申请
    DEVICE AND METHOD FOR PRODUCING A COMPOSITE COMPONENT 审中-公开
    用于生产复合组分的装置和方法

    公开(公告)号:US20120119405A1

    公开(公告)日:2012-05-17

    申请号:US13296345

    申请日:2011-11-15

    IPC分类号: B29C70/44 B29C70/36

    摘要: The present invention provides a device for producing a composite fiber component. The device comprises a shaping tool having a shaping surface for shaping a resin-soaked fiber material, a filter panel that is arranged at the shaping surface and comprises a porous material, and a means for generating a negative pressure at the shaping surface at a side of the filter panel that faces away from the fiber material. In another aspect, the invention provides a method for producing a composite fiber component. First, a filter panel comprising a porous material is provided. In subsequent steps, a resin-soaked fiber material is arranged on the filter panel, the fiber material on the filter panel is covered and a negative pressure is generated at a side of the filter panel that faces away from the fiber material.

    摘要翻译: 本发明提供一种复合纤维成分的制造装置。 该装置包括具有用于成形树脂浸渍的纤维材料的成形表面的成形工具,布置在成形表面处并包括多孔材料的过滤器板,以及在侧面的成形表面处产生负压的装置 的过滤板面向远离纤维材料。 另一方面,本发明提供一种复合纤维成分的制造方法。 首先,提供包括多孔材料的过滤面板。 在随后的步骤中,在过滤面板上布置树脂浸渍的纤维材料,过滤面板上的纤维材料被覆盖,并且在过滤面板的远离纤维材料的一侧产生负压。

    NEGATIVE MOLD COMPRISING PREDEFINED FOAM BLOCKS FOR CASTING A COMPONENT AND METHOD FOR PRODUCING THE NEGATIVE MOLD
    7.
    发明申请
    NEGATIVE MOLD COMPRISING PREDEFINED FOAM BLOCKS FOR CASTING A COMPONENT AND METHOD FOR PRODUCING THE NEGATIVE MOLD 有权
    包含用于铸造组分的预定泡沫块的负型模具和用于生产负极模具的方法

    公开(公告)号:US20120013038A1

    公开(公告)日:2012-01-19

    申请号:US13171785

    申请日:2011-06-29

    申请人: Jason Stege

    发明人: Jason Stege

    IPC分类号: B29C33/40 B28B7/36

    摘要: A negative mold for casting a component such as a blade of a wind turbine is described The negative mold includes a support structure and a plurality of foam blocks, which are mounted to the support structure in such a manner, that a common surface contour of the plurality of foam blocks defines an outer surface of the component, which is to be casted. Each foam block of the plurality of foam blocks is taken from a predetermined number of different types of foam blocks, each type of foam block is defined by a predetermined foam block size and foam block shape. A method for producing such a negative mold is also described.

    摘要翻译: 描述了用于铸造诸如风力涡轮机的叶片的部件的负模具。负模具包括支撑结构和多个泡沫块,其以这样的方式安装到支撑结构,使得公共表面轮廓 多个泡沫块限定要被铸造的部件的外表面。 多个泡沫块的每个泡沫块都是从预定数量的不同类型的泡沫块中获取的,每种类型的泡沫块由预定的泡沫块尺寸和泡沫块形状限定。 还描述了用于制造这种负模的方法。

    MOLDING DIE AND MOLDING METHOD
    9.
    发明申请
    MOLDING DIE AND MOLDING METHOD 有权
    成型模具和成型方法

    公开(公告)号:US20110175262A1

    公开(公告)日:2011-07-21

    申请号:US12674613

    申请日:2008-08-13

    IPC分类号: B29C70/44

    摘要: A molding die is mainly constituted of a die surface shell layer (15) having a die surface (32) responsive to the shape of a composite item and a support (16) supporting the die surface shell layer (15). The die surface shell layer (15) is made of a material having air permeability, and a prepreg material (34) is placed on a die-shaped surface (32) thereof. Then, the prepreg material (34) is covered with a nonpermeable vacuum bag film (35), and a cavity portion (30) of the support (16) is evacuated. The die surface shell layer (15) has air permeability, whereby it follows that air present on the die-shaped surface (32) is also discharged into the cavity portion (30) through the die surface shell layer (15). Consequently, the prepreg material (34) is pressed against the die-shaped surface (32) by the atmospheric pressure outside the vacuum bag film (35), and strongly adheres.

    摘要翻译: 成型模具主要由模具表面壳层(15)构成,模具表面壳层(15)具有对复合材料的形状作出反应的模具表面(32)和支撑模具表面壳层(15)的支撑件(16)。 模具表面壳层(15)由具有透气性的材料制成,并且预浸料材料(34)被放置在其模具表面(32)上。 然后,用不可渗透的真空袋薄膜(35)覆盖预浸料材料(34),并抽出支撑体(16)的空腔部分(30)。 模具表面壳层(15)具有透气性,由此存在于模具形状表面(32)上的空气也通过模具表面壳层(15)排出到空腔部分(30)中。 因此,通过真空袋膜(35)外的大气压力将预浸料材料(34)压靠在模具形状的表面(32)上,并且强烈地粘附。

    Method for post-molding a molded article conditioning apparatus with a selectively controlled transfer flow structure
    10.
    发明授权
    Method for post-molding a molded article conditioning apparatus with a selectively controlled transfer flow structure 失效
    用于对具有选择性控制的转移流结构进行成型的成型制品调节装置进行后成型的方法

    公开(公告)号:US07364688B2

    公开(公告)日:2008-04-29

    申请号:US11733702

    申请日:2007-04-10

    IPC分类号: B29C45/72

    摘要: A cooling tube assembly for operating on a malleable molded plastic part. The cooling tube assembly comprising a porous tube/insert having a profiled inner conditioning surface, and a vacuum structure configured to cooperate with the porous tube. In use, the vacuum develops a reduced pressure adjacent the inner conditioning surface to cause an outer surface of the malleable molded plastic part, locatable within the cooling tube assembly, to contact the inner conditioning surface of the porous insert so as to allow a substantial portion of the outer surface of the malleable part, upon cooling, to attain a profile substantially corresponding to the profile of the inner conditioning surface. The cooling tube assembly further including a suction channel therein that is configured to cooperate with a valve member for the control of a suction flow therethrough that assists in a transferring of the molded article into the cooling tube assembly.

    摘要翻译: 用于在可锻塑料部件上操作的冷却管组件。 冷却管组件包括具有成型内部调节表面的多孔管/插入件,以及构造成与多孔管配合的真空结构。 在使用中,真空在内部调节表面附近产生减小的压力,以使位于冷却管组件内的可延展的模制塑料部件的外表面与多孔插入件的内部调节表面接触,从而允许大部分 在可延展部分的外表面上,在冷却时,获得基本对应于内调节表面轮廓的轮廓。 冷却管组件还包括其中的吸入通道,其构造成与阀构件协作以控制通过其中的抽吸流,其有助于将模制品转移到冷却管组件中。