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    • 4. 发明申请
    • Release agents comprising hydrophobic, nanoscalar particles, and the use of these mold release agents
    • 脱模剂包括疏水性纳米级颗粒,以及使用这些脱模剂
    • US20050253302A1
    • 2005-11-17
    • US10506995
    • 2003-02-03
    • Edwin NunMarkus Oles
    • Edwin NunMarkus Oles
    • B08B17/06B29C33/60B29C37/00B29C45/14B60C11/00B60C13/00C08L1/00
    • B29C33/60B08B17/06B08B17/065B29C37/0032B29C37/0067B29C45/14778B60C1/00
    • The invention relates to mold-release agents, in particular mold-release agents which can be used for demolding moldings from molding tools, and also to the use of these mold-release agents. The mold-release agents of the invention, which are preferably based on suspensions of nanostructured microparticles, have the advantage of being markedly more environmentally compatible than the known mold-release agents based on organic or organosilicon compounds, since they can remain on the surfaces of the moldings. The use of the mold-release agents of the invention is very simple, since advantage can be taken of existing equipment. An example of a usual method is to produce injection moldings by means of injection molds into which the material is injected. The mold-release agent of the invention is applied, e.g. by spray-application, to the injection mold prior to the actual injection-molding process. Depending on the setting of the molding parameters, the microparticles are impressed into the surfaces of the moldings and anchored, and therefore another favorable effect is that the surfaces of the injection molding can have self-cleaning properties.
    • 本发明涉及脱模剂,特别是脱模剂,其可用于从成形工具脱模模制品,以及这些脱模剂的使用。 本发明的脱模剂优选基于纳米结构微粒的悬浮液,具有比已知的基于有机或有机硅化合物的脱模剂显着更环境相容的优点,因为它们可以保留在 模具。 使用本发明的脱模剂非常简单,因为可以利用现有的设备。 通常的方法的一个例子是通过注射模具来生产注射模制品,注射模具注入材料。 本发明的脱模剂,例如, 通过喷雾施加到注射模具之前,在实际的注射成型过程之前。 根据成型参数的设定,将微粒压入模制品的表面并锚固,因此另外一个有利的效果是注模的表面可以具有自清洁性。
    • 9. 发明申请
    • Shaping method for producing shaped bodies with at least one surface that has self-cleaning properties, and shaped bodies produced according to this method
    • 用于制造具有至少一个具有自清洁性能的表面的成形体的成形方法,以及根据该方法制造的成形体
    • US20050112326A1
    • 2005-05-26
    • US10506993
    • 2003-02-03
    • Edwin NunMarkus OlesArne Lang
    • Edwin NunMarkus OlesArne Lang
    • B08B17/02B08B17/06B29C49/20B29C51/12B29C70/64B29K105/16B65D1/00B32B1/00
    • B29C70/64B08B17/06B08B17/065B29C2059/023B29C2059/028Y10T428/24372
    • The invention relates to shaping processes for producing moldings with at least one surface which has self-cleaning properties and has elevations formed by microparticles, by thermal shaping of materials comprising organic compounds by means of a mold, and also to the resultant moldings. The process of the invention generates surfaces with self-cleaning properties by, prior to the thermal shaping, applying microparticles to the inner surfaces of the mold and then carrying out the molding process, in which the microparticles are pressed into and anchored into the surface of the molding, where this surface has not yet solidified. The process of the invention may be used in thermal shaping processes selected from blow molding, extrusion blow molding, extrusion stretch blow molding, injection blow molding, injection stretch blow molding, thermoforming, vacuum stretch forming, pressure stretch forming, and rotary thermoforming. The process is suitable for producing three-dimensional articles, such as bottles, housing parts, drums, and many other items. The process of the invention is very simple, since it makes use of existing equipment. The process of the invention gives access to self-cleaning surfaces which have particles with a fissured structure, without any need to apply an additional emboss layer or foreign-material carrier layer to the moldings.
    • 本发明涉及具有至少一个表面的模制品的成型方法,该模塑制品具有自清洁性能,并且具有由微粒形成的高度,通过用模具对包含有机化合物的材料进行热成形,以及所得到的模制品。 本发明的方法通过在热成形之前将微粒施加到模具的内表面,然后进行模塑过程,从而产生具有自清洁性能的表面,其中将微粒压入并固定到 该表面尚未固化。 本发明的方法可用于选自吹塑,挤出吹塑,挤出拉伸吹塑,注射吹塑,注射拉伸吹塑,热成型,真空拉伸成型,拉伸拉伸成形和旋转热成型的热成型工艺。 该方法适用于生产三维制品,例如瓶子,外壳部件,鼓和许多其它物品。 本发明的方法非常简单,因为它利用了现有的设备。 本发明的方法允许进入具有裂缝结构的颗粒的自清洁表面,而不需要向模制品施加额外的压花层或异物载体层。