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1.
公开(公告)号:US20060012153A1
公开(公告)日:2006-01-19
申请号:US11233707
申请日:2005-09-23
申请人: Matthias Arleth , Werner Schmidt , Alex Martin , Uwe Speck , Dirk Rubart
发明人: Matthias Arleth , Werner Schmidt , Alex Martin , Uwe Speck , Dirk Rubart
IPC分类号: B60R21/20
CPC分类号: B60R21/2165 , B60R21/205 , B60R2021/2612
摘要: The invention relates to an airbag system for motor vehicles, integrated in an inner trim piece, in particular, in a dashboard (16), comprising an airbag (5, 5′, 5″), which is inflatable by means of a gas generator (8, 8′, 8″). The inner trim piece comprises at least one dimensionally stable support (1, 1′,k 1″) and an airbag cover (2, 2′, 2″), which opens outwards under the pressure of the airbag (5, 5′, 5″) filling with gas. The airbag cover (2, 2′, 2″) is flexible and designed to yield to the pressure of the filling airbag (5, 5′, 5″). The airbag (5, 5′, 5″) is arranged under the cover (2, 2′, 2″) in a housing (4, 4′, 4″), connected to the support (1, 1′, 1″).
摘要翻译: 本发明涉及一种用于机动车辆的气囊系统,其集成在内部装饰件中,特别是在仪表板(16)中,包括可通过气体充气的气囊(5,5',5“) 发电机(8,8',8“)。 内部装饰件包括至少一个尺寸稳定的支撑件(1,1',k 1“)和安全气囊盖(2,2',2”),该安全气囊盖在气囊(5,5)的压力下向外打开 ',5'')填充气体。 安全气囊盖(2,2',2“)是柔性的并被设计成能够对填充气囊(5,5',5”)的压力产生影响。 安全气囊(5,5',5“)布置在壳体(4,4',4”)下方的盖子(2,2',2“)的下面,与壳体(4,4',4”)连接, ,1“)。
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公开(公告)号:US20070078637A1
公开(公告)日:2007-04-05
申请号:US11162994
申请日:2005-09-30
申请人: Alex Martin , David Eifert , David Kimble
发明人: Alex Martin , David Eifert , David Kimble
IPC分类号: G06G7/48
CPC分类号: G06Q10/06
摘要: A method is disclosed for analyzing an oil and gas production project with a computer system. Using a computer program, a user inputs characteristics of systems for the project and inputs characteristics of the expected production of the project, such as production life (years) and the production rate of the project. Based on the characteristics, the program generates a plurality of projected case profiles, each of which defines characteristics of the systems for a period of the production life of the project. A controlling case is then created using information from the plurality of case profiles. In the controlling case, each of the systems is analyzed to determine in which profile the system has the greatest cost, weight, area, or other criterion. From the analysis, characteristics of the systems are generated for the project that best meet the expected production over the entire production life of the project.
摘要翻译: 公开了一种利用计算机系统分析油气生产项目的方法。 使用计算机程序,用户输入项目系统的特征,并输入项目预期生产的特征,如生产年限(年)和项目生产率。 基于特征,程序生成多个投影案例简档,每个投影案例轮廓在项目的生产周期的一段时间内定义系统的特征。 然后使用来自多个案例简档的信息创建控制案例。 在控制情况下,分析每个系统以确定系统在哪个配置文件中具有最大的成本,重量,面积或其他标准。 从分析中可以看出,在项目整个生产周期中,最能满足预期生产要求的项目产生了系统特征。
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