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    • 12. 发明申请
    • MODULAR DRIVE WHEEL FOR LOG PROCESSORS, DELIMBERS AND SINGLE GRIP HARVESTERS
    • 用于日志处理器,调节器和单个收割机的模块化驱动轮
    • WO2004069500A1
    • 2004-08-19
    • PCT/CA2004/000142
    • 2004-02-03
    • DUVAL, Alain
    • DUVAL, Alain
    • B27B25/02
    • B27B25/02A01G23/097
    • The modular drive wheel (20) for log processors includes a tubular midsection (26) sandwiched between a pair of annular rings (28, 30) mounted concentrically on opposite ends of the midsection. The midsection has a resilient outer surface extending around the midsection. The pair of annular rings each have a radially spaced apart array of notches (42, 62) therearound. The notches in the radially spaced apart arrays of notches are sized to snugly receive in releasable locking engagement therein links on opposite ends of chain segments (46) extending between the pair of annular rings. The drive wheel further includes means mounted between the pair of annular rings for selectively forcing apart the pair of annular rings along a longitudinal axis of symmetry of the midsection.
    • 用于对数处理器的模块化驱动轮(20)包括夹在一对环形环(28,30)之间的管状中段(26),该环形环同心地安装在中央部分的相对端。 中部具有围绕中部延伸的弹性外表面。 一对环形圈在其周围具有径向间隔开的凹口阵列(42,62)。 在径向间隔开的凹口阵列中的切口的尺寸被设计成在其可释放的锁定接合中紧密地接收在一对环形环之间延伸的链条段(46)的相对端上的链节。 所述驱动轮还包括安装在所述一对环形环之间的装置,用于沿着所述中央部分的纵向对称轴线选择性地迫使所述一对环形环分开。
    • 17. 发明申请
    • SPRING CAGING MECHANISM FOR A COIL SPRING RAIL BRAKE
    • 弹簧起重机械用于线圈弹簧制动
    • WO2012162783A1
    • 2012-12-06
    • PCT/CA2011/000642
    • 2011-05-30
    • HILLMAR INDUSTRIES LIMITEDBOURHILL, Ian W.
    • BOURHILL, Ian W.
    • B61H7/04
    • B61H13/005B60T1/00B61H7/04F16D63/008
    • A rail brake includes a rigid enclosure which mounts under a crane so as to dispose the base end of the enclosure over and adjacent a rail. A spring carriage is mounted for vertical translation within the enclosure. Springs are mounted between the spring carriage and the top of the enclosure so that the springs are compressed when the spring carriage is elevated. A brake shoe is mounted under the carriage. Actuators are mounted between the spring carriage and the base end of the enclosure. Extension of the actuators compress the springs and elevate the brake shoe from the rail. Retraction allows the springs to drive the brake shoe against the rail. Elevation of the brake shoe aligns a pair of spline joints between the sides of the brake shoe and corresponding channel walls underneath the enclosure. Removable elongate keys provide the locking splines in the pair of spline joints.
    • 轨道制动器包括安装在起重机下方的刚性外壳,以便将外壳的基端部设置在轨道上并与其相邻。 安装弹簧托架以在外壳内垂直平移。 弹簧安装在弹簧托架和外壳的顶部之间,使得当弹簧托架升高时弹簧被压缩。 一个刹车片安装在滑架下面。 驱动器安装在弹簧支架和外壳的基端之间。 执行器的延伸部分压缩弹簧并使制动蹄从导轨上提升。 回退允许弹簧驱动制动蹄靠在轨道上。 制动瓦的高度使制动蹄侧面和外壳下面相应的通道壁之间的一对花键接合对齐。 可拆卸的细长键在一对花键接头中提供锁定花键。
    • 18. 发明申请
    • OBJECT-FIELD-BASED MATHEMATICS SYSTEM
    • 基于现场的数学系统
    • WO2012056329A2
    • 2012-05-03
    • PCT/IB2011/003232
    • 2011-10-28
    • HALTON, Peter, K.SMITH, BenFEE, Greg
    • HALTON, Peter, K.SMITH, BenFEE, Greg
    • G06F17/10G06F17/11G06F17/24G06F3/14
    • G06F17/215G06F17/10G06F17/24
    • An apparatus includes a processor, a computer memory, a user interface, and computer-executable instructions which enable a user to formulate mathematical expressions via the user interface. The mathematical expression is composed from objects selected from a library of object types in the memory. The object types include primitive objects and non-primitive objects. Non-primitive objects contain at least one field which in turn can contain additional objects; primitive objects have no fields. The mathematical expression is defined by a computer-readable data structure in the memory, and each object and field has a mathematical significance assigned thereto. The data structure uniquely identifies each object and each field, and includes pointers to define nesting of the objects and fields in the mathematical expression. The computer-executable instructions include steps to identify user inputs with at least some of the objects, and to display the mathematical expression represented by the data structure via the display.
    • 一种装置包括处理器,计算机存储器,用户界面和计算机可执行指令,使得用户能够通过用户界面来形成数学表达。 数学表达式由从存储器中的对象类型的库中选择的对象组成。 对象类型包括原始对象和非原始对象。 非原始对象包含至少一个字段,该字段又可以包含其他对象; 原始对象没有字段。 数学表达式由存储器中的计算机可读数据结构定义,并且每个对象和字段具有分配给它的数学意义。 数据结构唯一地标识每个对象和每个字段,并且包括用于定义数学表达式中对象和字段嵌套的指针。 计算机可执行指令包括用至少一些对象来识别用户输入的步骤,以及经由显示器显示由数据结构表示的数学表达式。