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    • 21. 发明授权
    • Method of automated thrust-based roll guidance limiting
    • 自动推力滚动导向限制方法
    • US06282466B1
    • 2001-08-28
    • US09185424
    • 1998-11-03
    • Edward P. NolteMichael J. MyersDavid C. CoombsJohn C. Griffin, III
    • Edward P. NolteMichael J. MyersDavid C. CoombsJohn C. Griffin, III
    • G06F700
    • G05D1/0808
    • An improvement to a method of automatic flight using a flight management system is provided. The flight management system includes a lateral navigation (LNAV) control mode in which the flight management system provides roll commands via a flight director system to the pilot during manual flight or to an autopilot during autoflight to effectuate lateral flight guidance. The improvement includes evaluating the energy state of the airplane during the LNAV control mode, calculating a Thrust Based Roll Limit (TBRL), and providing an appropriately limited bank angle command signal via the flight director system for use by the pilot during manual flight or to the autopilot during autoflight while flying in a thrust-limited condition. The TBRL is calculated as a function of the energy state of the airplane. The use of the TBRL to limit the bank angle command signal avoids an uncommanded change in altitude and/or airspeed.
    • 提供了使用飞行管理系统的自动飞行方法的改进。 飞行管理系统包括侧向导航(LNAV)控制模式,其中飞行管理系统在手动飞行期间通过飞行总监系统向飞行员提供滚动命令,或者在自动飞行期间向自动驾驶仪提供侧向飞行指导。 该改进包括在LNAV控制模式期间评估飞机的能量状态,计算基于推力的滚动限制(TBRL),以及通过飞行指导系统提供适当有限的横跨角度指令信号以供飞行员在手动飞行期间使用或者 自动驾驶仪在自动飞行期间在推力限制条件下飞行。 TBRL计算为飞机能量状态的函数。 使用TBRL来限制倾斜角度指令信号避免了高度和/或空速的不受命令的变化。
    • 22. 发明授权
    • Container and method of making container from polyethylene naphthalate
and copolymers thereof
    • 从聚萘二甲酸乙二醇酯制造容器的容器和方法及其共聚物
    • US5780130A
    • 1998-07-14
    • US775309
    • 1996-12-31
    • Jeffrey E. HansenKunio OsakadaMichael J. Myers
    • Jeffrey E. HansenKunio OsakadaMichael J. Myers
    • B29C49/06B29C49/08B65D1/02B65D90/02
    • B29C49/08B65D1/0207B29C49/06B29K2067/00Y10S428/91Y10T428/1352Y10T428/139Y10T428/1397Y10T428/31786
    • The present invention is directed to a pourable, hot wash, refillable container comprising a base, a cylindrical body having an average side wall thickness of at least 0.635 mm, a shoulder portion, and a neck portion, the pourable, hot wash, refillable container being composed of polyethylene napthalate or a copolymer thereof, the refillable container being capable of undergoing multiple trips through a washing, filling, shipping and consumer use cycle, and the base of the container having sufficient impact resistance so that the container will not break when dropped one meter onto a concrete surface when filled with water at both 4.4.degree. C. and 22.2.degree. C. The invention is further directed to a method for manufacturing a pourable, hot wash, refillable container, which comprises the steps of forming a preform of the container composed of polyethylene napthalate or a copolymer thereof, and molding said preform to form a pourable, hot wash, refillable container.
    • 本发明涉及一种可倾倒的热洗可再填充容器,其包括基座,平均侧壁厚度至少为0.635mm的圆柱体,肩部和颈部,可倾倒的,热洗的可再填充容器 由聚萘二甲酸乙二醇酯或其共聚物组成,可再填充容器能够通过洗涤,填充,运输和消费者使用周期进行多次跳闸,并且容器的底部具有足够的抗冲击性,使得容器在掉落时不会破裂 在4.4℃和22.2℃下充满水时,一米到混凝土表面。本发明还涉及一种用于制造可倾倒的热洗可再填充容器的方法,其包括以下步骤:形成 由聚萘二甲酸乙二醇酯或其共聚物组成的容器,并模制所述预成型件以形成可倾倒的,热洗的,可再填充的容器。