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    • 32. 发明授权
    • Module class objects in a process plant configuration system
    • 过程工厂配置系统中的模块类对象
    • US07043311B2
    • 2006-05-09
    • US10368151
    • 2003-02-18
    • Mark NixonMichael LucasArthur WebbHerschel KoskaJian LiLarry JundtDennis StevensonRobert HavekostMichael Ott
    • Mark NixonMichael LucasArthur WebbHerschel KoskaJian LiLarry JundtDennis StevensonRobert HavekostMichael Ott
    • G06F19/00
    • G05B19/4188G05B2219/32154Y02P90/14Y02P90/24
    • A configuration system for a process plant uses module class objects to assist in configuring, organizing and changing the control and display activities within the process plant. Each module class object generically models or represents a process entity, such as a unit, a piece of equipment, a control activity, etc., and may be used to create instances of the object, called module objects, which represent and are tied to specific equipment within the process plant. The module class objects may represent process entities of any desired scope, which means that a single module class object may be used to configure the control and display activities of process entities of any desired scope within the process plant, instead of just at a control module level. In particular, module class objects of a large scope may be used to configure large sections or portions of the process plant, which makes configuration of the process plant easier and less time consuming. A module class object may be a unit module class object reflecting a physical unit within the process plant, an equipment module class object reflecting a physical piece of equipment within the process plant, a control module class object reflecting a control module or scheme within the process plant, or a display module class object reflecting a display routine that provides information to a user within the process plant.
    • 过程工厂的配置系统使用模块类对象来协助配置,组织和更改过程工厂内的控制和显示活动。 每个模块类对象一般地模拟或表示过程实体,例如单元,设备,控制活动等,并且可以用于创建被称为模块对象的对象的实例,所述对象表示并被绑定到 过程工厂内的具体设备。 模块类对象可以表示任何所需范围的过程实体,这意味着可以使用单个模块类对象来配置过程工厂内任何所需范围的过程实体的控制和显示活动,而不仅仅是在控制模块 水平。 特别地,可以使用大范围的模块类对象来配置过程工厂的大部分或部分,这使得过程工厂的配置变得更容易和更少耗时。 模块类对象可以是反映过程工厂内的物理单元的单元模块类对象,反映过程工厂内的物理设备的设备模块类对象,反映过程中的控制模块或方案的控制模块类对象 工厂或反映向处理工厂内的用户提供信息的显示程序的显示模块类对象。
    • 34. 发明申请
    • System for configuring a process control environment
    • 用于配置过程控制环境的系统
    • US20050172258A1
    • 2005-08-04
    • US10958720
    • 2004-10-05
    • Mark NixonDennis StevensonMichael OttStephen Hammack
    • Mark NixonDennis StevensonMichael OttStephen Hammack
    • G06F9/44
    • G05B23/0216G05B2219/31336G05B2219/31472G06F8/34
    • An apparatus having a programmable processor and a memory for performing a plurality of user-selectable control functions includes a database for storing a plurality of items associated with each of the control functions. The items include, for each function, at least one procedure for performing an action associated with the control function and a specification of at least one state associated with the control function. The apparatus further includes software routines stored on the memory and adapted to be executed by the processor that facilitate selection of a procedure in the database, that access the database and cause performance of the selected procedure to achieve the state specified therein, and that monitor at least one resource associated with the action of the procedure and, based thereon, determine whether the specified state has been achieved.
    • 具有可编程处理器和用于执行多个用户可选择控制功能的存储器的装置包括用于存储与每个控制功能相关联的多个项目的数据库。 对于每个功能,项目包括用于执行与控制功能相关联的动作的至少一个过程以及与控制功能相关联的至少一个状态的指定。 该装置还包括存储在存储器上并适于由处理器执行的软件例程,其便于选择数据库中的过程,访问数据库并导致执行所选择的过程以实现其中指定的状态,并监视 与该过程的动作相关联的至少一个资源,并且基于此确定是否已经实现了指定状态。
    • 39. 发明授权
    • Electrical resistor structure
    • 电阻器结构
    • US08063732B2
    • 2011-11-22
    • US12667448
    • 2008-07-03
    • Abdallah KamalMichael Ott
    • Abdallah KamalMichael Ott
    • H01C3/00H01C7/00
    • H05B3/06F02M31/13F02M31/135F24H9/1863F24H9/1872H05B3/16Y02T10/126
    • This electrical resistor structure which includes a frame (2) for receiving elements which form an electrical resistor (3) in the form of a serpentine resistive element, the folded ends of the branches of which are associated with elements (8, 9) for fixing to opposing cross-members (5, 6) of the frame, is characterised in that the fixing elements include elements which form spacing members (12) which are fixed to the cross-members of the frame and which are provided with projecting portions which are spaced-apart from each other and which together define zones for receiving, by clamping and with axial clearance, at least a part of the corresponding ends of the resistive element (3).
    • 该电阻结构包括用于接收形成蛇形电阻元件形式的电阻器(3)的元件的框架(2),其分支的折叠端与用于固定的元件(8,9)相关联 到框架的相对的横向构件(5,6)的特征在于,固定元件包括形成间隔构件(12)的元件,该间隔构件固定到框架的横向构件,并且设置有突出部分 彼此间隔开并且一起限定用于通过夹紧和轴向间隙接收电阻元件(3)的相应端部的至少一部分的区域。
    • 40. 发明授权
    • Heat treatment method for monocrystalline or directionally solidified structural components
    • 单晶或定向凝固结构组分的热处理方法
    • US07892370B2
    • 2011-02-22
    • US11587897
    • 2005-04-28
    • Michael OttUwe Paul
    • Michael OttUwe Paul
    • C21D1/00C30B33/00
    • C22F1/10C21D9/00C30B11/003C30B29/52C30B33/00
    • The invention relates to a heat treatment method for monocrystalline or directionally solidified structural components. Said method comprises a heat treatment which results in dissolving at least one crystalline phase of the material of the structural component, referred to in the following as component material. The inventive method is characterized by carrying out the heat treatment by heating the structural component to a dissolution temperature required for dissolving the crystalline phase only in at least one first component area in which the stresses within the component material do not exceed a predetermined value. In at least one second component area in which the stresses within the component material exceed the predetermined value the material is only heated to a temperature below the dissolution temperature.
    • 本发明涉及单晶或定向凝固结构组分的热处理方法。 所述方法包括热处理,其导致以下结构组分的材料的至少一个结晶相溶解作为组分材料。 本发明的方法的特征在于,通过将结构组分加热到仅将结晶相溶解在组分材料中的应力不超过预定值的至少一个第一组分区域中所需的溶解温度来进行热处理。 在其中部件材料内的应力超过预定值的至少一个第二部件区域中,材料仅被加热到低于溶解温度的温度。