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    • 4. 发明授权
    • Bottle with dosing device
    • 瓶装配配药装置
    • US4607762A
    • 1986-08-26
    • US462933
    • 1983-01-31
    • Karlheinz ZulaufFranz Steigerwald
    • Karlheinz ZulaufFranz Steigerwald
    • B65D1/32B65D47/34G01F11/28B65D37/00
    • B65D1/323G01F11/286
    • A dosaging device for dispensing defined amounts of a liquid being contained in a bottle with a squeezable wall. A valve is disposed between the content of the bottle and the dosaging container which can be selectively opened or closed by turning a gripping piece. The openings for feeding the bottle content into the dosage container are arranged in a specific manner with respect to the pouring orifice. An oblique trough which encompasses the pouring orifice reduces the still remaining liquid in the area of the pouring orifice back into the dosaging container, after the pouring. Baffle ribs are mounted on the inner side of the lid which covers the dosage container to the outside and which contains the pouring orifice in such a manner that they limit the liquid film formed by the impact of the liquid streams on the inside of the lid in direction of the opening provided for pouring.
    • 一种用于将包含在具有可压缩壁的瓶中的液体的限定量分配的剂量装置。 阀设置在瓶的内容物和剂量容器之间,该剂量容器可通过转动夹持件而选择性地打开或关闭。 用于将瓶子内容物进料到剂量容器中的开口以相对于浇口的特定方式布置。 包含倾倒口的倾斜槽在倾倒之后将浇注孔的区域中剩余的液体还原回到剂量容器中。 挡板肋安装在盖的内侧,盖子的内侧覆盖剂量容器到外面,并且包含倾倒孔,使得它们将由液体流冲击形成的液膜限制在盖的内部 开口方向为浇注提供。
    • 6. 发明授权
    • Container
    • 容器
    • US4203517A
    • 1980-05-20
    • US965915
    • 1978-12-04
    • Bodo HildebrandtErich JaneleFranz Steigerwald
    • Bodo HildebrandtErich JaneleFranz Steigerwald
    • B65D51/28B65D25/08B65D1/04B65D81/32
    • B65D51/2871Y10S215/08
    • A container for separately accommodating two materials and mixing the same, has a first and second wall bounding a wider and narrower chamber, a connecting sleeve having one portion which is sealingly fitted on the first wall and another portion extending in an opposite direction and having an outer thread, a discharge cap connected to the second wall and having an inner thread which meshes with the outer thread of the other portion of the connecting sleeve so that the discharge cap is movable relative to the connecting sleeve, and a separating member having a separating portion which disconnects the chambers from one another and a projecting portion which extends into the narrower chamber and is held by the second wall. The second wall has an outer projection engaging in an inner groove in the other portion of the connecting sleeve so as to retain the discharge cap on the other portion of the connecting sleeve during unscrewing of the former. The groove has a length which is substantially equal to the length of the projecting portion of the separating member.
    • 用于分开容纳两种材料并将其混合的容器具有限定更宽和更窄的腔室的第一和第二壁,具有密封地装配在第一壁上的一部分的连接套筒和沿相反方向延伸的另一部分, 外螺纹,排出盖,其连接到第二壁并且具有与连接套筒的另一部分的外螺纹啮合的内螺纹,使得排出盖相对于连接套筒可移动,分离构件具有分离 将这些室彼此断开的部分和延伸到较窄室中并由第二壁保持的突出部分。 第二壁具有与连接套筒的另一部分中的内槽接合的外部突出部,以便在拧开前者时将排放盖保持在连接套筒的另一部分上。 槽的长度基本上等于分离构件的突出部分的长度。
    • 7. 发明申请
    • Cap with actuation protection for a pressurized container
    • 带有用于加压容器的致动保护的盖
    • US20080035638A1
    • 2008-02-14
    • US11809742
    • 2007-06-01
    • Johannes BurghausHeiko EberhardtHans EngelandFranz Steigerwald
    • Johannes BurghausHeiko EberhardtHans EngelandFranz Steigerwald
    • B65D83/20B65D83/14B65D83/16
    • B65D83/226B65D83/206
    • A cap (1) for a pressurized container (2) with an actuation button (3) arranged at the top, which is provided for discharging a metered spray or foam quantity of a product from a nozzle (4) or opening (4A) via a channel (5), wherein the channel (5) communicates with a short-stroke valve (6) of a valve disk (7) for the pressurized container (2) and the actuation button (3). The actuation button (3) communicates with an actuation protection device (8.1-8.4) for first-time activation. The cap (1) with the actuation button (3) has the shape of a protective cap (32) externally and exhibits an essentially closed surface. As an actuation protection device (8.1-8.4), the channel (5) is connected to a first reinforcement rib (22) in the lower, lateral area (9) in the proximity of the valve (6); said reinforcement rib (22) is connected to a lever (26) on the bottom end (24), wherein the lever (26) is connected to a start (25) of a first rib (10) via a predetermined breaking zone (15). An end (27) of the first rib (10) is connected to a base part (14), which is supported on the valve disk (7), wherein, by overcoming a counterforce during first-time activation of the actuation button (3), the predetermined breaking zone (15) causes a predetermined break (16) due to manual force at the lever and thus enables activation of the valve (6) (FIG. 1).
    • 一种用于加压容器(2)的盖(1),其具有布置在顶部的致动按钮(3),用于从喷嘴(4)或开口(4A)排出计量喷雾或泡沫量的产品, 通道(5),其中通道(5)与用于加压容器(2)和致动按钮(3)的阀盘(7)的短行程阀(6)连通。 致动按钮(3)与用于第一次激活的致动保护装置(8.1-8.4)通信。 具有致动按钮(3)的盖(1)在外部具有保护盖(32)的形状,并且呈现基本上封闭的表面。 作为致动保护装置(8.1- 8.4),通道(5)连接到位于阀(6)附近的下侧横向区域(9)中的第一加强肋(22)。 所述加强肋(22)连接到底端(24)上的杆(26),其中所述杆(26)经由预定的断裂区(15)连接到第一肋(10)的起始(25) )。 第一肋(10)的端部(27)连接到支撑在阀盘(7)上的基部(14),其中,通过在第一次启动致动按钮(3)期间克服反作用力 ),由于杠杆处的手动力,预定的断裂区(15)引起预定的断裂(16),因此能够启动阀(6)(图1)。
    • 9. 发明授权
    • Method for producing foamed plastic hollow bodies
    • 生产泡沫塑料中空体的方法
    • US6162380A
    • 2000-12-19
    • US297712
    • 1999-05-06
    • Udo KohnFranz Steigerwald
    • Udo KohnFranz Steigerwald
    • B29C49/00B29C49/04B29C49/18B29K23/00B29K105/04B29C44/02
    • B29C49/04B29C49/0005B29K2023/06B29K2023/065B29K2023/12B29K2105/04
    • In the method of producing a hollow foamed plastic body from polyethylene or polypropylene by means of an extrusion blow-molding process using a single-screw extruder and a blow-molding tool, the plastic material is foamed by means of a chemical blowing agent, and a pre-molded tube blank formed from the foamed plastic material is blow-molded in the blow-molding tool. The blow-molding tool has a tool surface temperature of at least 35.degree. C. over at least one portion of the surface. A blowing agent that decomposes endothermically and provides a nucleation effect is included in a blowing-agent master batch based on high density polyethylene. The master batch has an average grain size of about 1 mm and the pre-molded tube blank is blow molded at a pressure of from 0.5 to 2.0 bar, or the pre-molded tube blank is blow-molded in an interval blow-molding process with a blow-molding pressure of from 3 to 10 bar, preferably 8 to 10 bar, in a first time slot and a blow-molding pressure of from 0.5 to 1.0 bar in a second time slot.
    • PCT No.PCT / EP98 / 05692 Sec。 371日期1999年5月6日 102(e)日期1999年5月6日PCT提交1998年9月8日PCT公布。 公开号WO99 /​​ 12724 日期1999年3月18日在使用单螺杆挤出机和吹塑工具的挤出吹塑法由聚乙烯或聚丙烯制造中空发泡塑料体的方法中,塑料通过 化学发泡剂和由发泡塑料材料形成的预成型管坯在吹塑工具中吹塑成型。 吹塑工具在表面的至少一部分上具有至少35℃的工具表面温度。 基于高密度聚乙烯的发泡剂母料包含吸热分解并提供成核效果的发泡剂。 母料的平均粒径约为1mm,预成型管坯在0.5-2.0巴的压力下进行吹塑,或者将预成型的管坯在间歇吹塑成型过程中吹塑 在第一时隙中的吹塑压力为3至10巴,优选8至10巴,在第二时间段中的吹塑压力为0.5至1.0巴。