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    • 4. 发明授权
    • Conveyor belt idler assembly
    • 输送带惰轮总成
    • US09139367B2
    • 2015-09-22
    • US13625549
    • 2012-09-24
    • Martin Engineering Company
    • Robert Todd SwindermanPaul Bernard HarrisonRichard P. Stahura
    • B65G15/08B65G15/60B65G15/64B65G39/10B65G41/00B65G39/12
    • B65G15/08B65G15/60B65G15/64B65G39/125
    • A conveyor belt idler assembly comprises support structure, a strand of catenary idler rollers, and an outboard wing roller or slider bar. The strand of catenary idler rollers can take on various trough-shaped contours. The outboard wing roller or slider bar is attached to the support structure and is able to translate relative to the support structure only along a linear path. The translational movement of the outboard wing roller or slider bar along the linear path is at least partial dependent upon changes in the contour of the strand of catenary idler rollers. The structure is adjustable such that the strand of catenary idler rollers can be lowered and raised to facilitate servicing and installation. A plurality of idler assemblies can be connected to each other using connecting brackets that rigidly tie the assemblies to each other near the outermost idler rollers or slider bars.
    • 传送带惰轮组件包括支撑结构,一根悬链惰轮和一个外侧翼辊或滑块。 悬链空转辊的绞线可以承受各种槽形轮廓。 外侧翼辊或滑块连接到支撑结构,并且能够仅沿着线性路径相对于支撑结构平移。 沿着线性路径的外侧翼形滚子或滑动条的平移运动至少部分地取决于连接线惰轮的线的轮廓的变化。 该结构是可调节的,使得可以降低和升高悬链空转辊的绞合线以便于维修和安装。 多个惰轮组件可以使用在最外侧的惰辊或滑块附近将组件彼此刚性地相互连接的连接支架彼此连接。
    • 6. 发明申请
    • Conveyor Belt Idler Assembly
    • 输送带惰轮总成
    • US20140083822A1
    • 2014-03-27
    • US13625549
    • 2012-09-24
    • MARTIN ENGINEERING COMPANY
    • Robert Todd SwindermanPaul Bernard HarrisonRichard P. Stahura
    • B65G15/08B65G15/64
    • B65G15/08B65G15/60B65G15/64B65G39/125
    • A conveyor belt idler assembly comprises support structure, a strand of catenary idler rollers, and an outboard wing roller or slider bar. The strand of catenary idler rollers can take on various trough-shaped contours. The outboard wing roller or slider bar is attached to the support structure and is able to translate relative to the support structure only along a linear path. The translational movement of the outboard wing roller or slider bar along the linear path is at least partial dependent upon changes in the contour of the strand of catenary idler rollers. The structure is adjustable such that the strand of catenary idler rollers can be lowered and raised to facilitate servicing and installation. A plurality of idler assemblies can be connected to each other using connecting brackets that rigidly tie the assemblies to each other near the outermost idler rollers or slider bars.
    • 传送带惰轮组件包括支撑结构,一根悬链惰轮和一个外侧翼辊或滑块。 悬链空转辊的绞线可以承受各种槽形轮廓。 外侧翼辊或滑块连接到支撑结构,并且能够仅沿着线性路径相对于支撑结构平移。 沿着线性路径的外侧翼形滚子或滑动条的平移运动至少部分地取决于连接线惰轮的线的轮廓的变化。 该结构是可调节的,使得可以降低和升高悬链空转辊的绞合线以便于维修和安装。 多个惰轮组件可以使用在最外侧的惰辊或滑块附近将组件彼此刚性地相互连接的连接支架彼此连接。
    • 7. 发明申请
    • Vibratory Device with Repositionable Weights and Method of Extending the Useful Life of Vibratory Devices
    • 具有可重定位重量的振动装置和延长振动装置使用寿命的方法
    • US20130283941A1
    • 2013-10-31
    • US13458582
    • 2012-04-27
    • Grant S. Burton
    • Grant S. Burton
    • B06B1/16
    • B06B1/161B06B1/16Y10T74/18552
    • A method comprises accessing a vibratory device having a rotor and first and second eccentric weights. The first weight is initially attached to the rotor's shaft in a manner such that its center of the mass is offset from the shaft in a first radial direction. The second weight is initially attached to the shaft in a manner such that its center of the mass is also offset in the first radial direction. The method further comprises reorienting the first and second weights relative to the shaft in a manner such that their centers of the mass are offset in a second radial direction. By performing these steps, the location of greatest bearing surface wear rate on the shaft is circumferentially relocated about the shaft. As such, the service life of an eccentric weight vibratory device is thereby extended.
    • 一种方法包括进入具有转子和第一和第二偏心重锤的振动装置。 第一重物最初以这样的方式附接到转子的轴上,即其质量的中心在第一径向上偏离轴。 第二重物最初以使得其质心的中心在第一径向方向上偏移的方式附接到轴上。 该方法还包括以使得其质心的中心在第二径向方向上偏移的方式相对于轴重新定向第一和第二配重。 通过执行这些步骤,轴上最大的轴承表面磨损率的位置围绕轴周向地定位。 因此,偏心重量的振动装置的使用寿命由此延长。
    • 8. 发明授权
    • Conveyor belt cleaner scraper blade with sensor and control system therefor
    • 输送带清洁刮刀带传感器及其控制系统
    • US08267239B2
    • 2012-09-18
    • US12900765
    • 2010-10-08
    • R. Todd SwindermanAndrew J. Waters
    • R. Todd SwindermanAndrew J. Waters
    • B65G45/12B65G45/14B65G45/16
    • B65G45/12B65G45/16B65G2203/02B65G2203/042
    • A conveyor belt cleaner scraper blade for cleaning the surface of a conveyor belt and a method of manufacture of the scraper blade. The scraper blade includes a body having a base member adapted to be attached to a cross shaft of a conveyor belt cleaner and a scraping member which extends outwardly from the base member to a scraping tip. The scraper blade includes one or more electrical sensors that are embedded in an insert member. The insert member and the sensors are molded and embedded within the body of the scraper blade. Each of the sensors is adapted to provide an electrical output signal representing a physical condition of the scraper blade sensed by the sensor. A variety of sensor embodiments are described, as well as two embodiments of control and monitoring systems for use in conjunction with the various blade and sensor combinations.
    • 一种用于清洁传送带表面的传送带清洁刮板刀片和刮刀的制造方法。 刮刀包括具有适于附接到传送带清洁器的横轴的基部构件的主体和从基部构件向外延伸到刮削尖端的刮削构件。 刮刀包括嵌入在插入件中的一个或多个电传感器。 插入构件和传感器被模制并嵌入刮刀的主体内。 每个传感器适于提供表示由传感器感测到的刮刀的物理状态的电输出信号。 描述了各种传感器实施例,以及与各种叶片和传感器组合结合使用的控制和监视系统的两个实施例。
    • 9. 发明申请
    • Conveyor Belt Cleaner Scraper Blade with Sensor and Control System Therefor
    • 带传感器和控制系统的输送带式清洁刮板
    • US20110247426A1
    • 2011-10-13
    • US12900765
    • 2010-10-08
    • R. Todd SwindermanAndrew J. Waters
    • R. Todd SwindermanAndrew J. Waters
    • G01L1/00B65G45/12
    • B65G45/12B65G45/16B65G2203/02B65G2203/042
    • A conveyor belt cleaner scraper blade for cleaning the surface of a conveyor belt and a method of manufacture of the scraper blade. The scraper blade includes a body having a base member adapted to be attached to a cross shaft of a conveyor belt cleaner and a scraping member which extends outwardly from the base member to a scraping tip. The scraper blade includes one or more electrical sensors that are embedded in an insert member. The insert member and the sensors are molded and embedded within the body of the scraper blade. Each of the sensors is adapted to provide an electrical output signal representing a physical condition of the scraper blade sensed by the sensor. A variety of sensor embodiments are described, as well as two embodiments of control and monitoring systems for use in conjunction with the various blade and sensor combinations.
    • 一种用于清洁传送带表面的传送带清洁刮板刀片和刮刀的制造方法。 刮刀包括具有适于附接到传送带清洁器的横轴的基部构件的主体和从基部构件向外延伸到刮削尖端的刮削构件。 刮刀包括嵌入在插入件中的一个或多个电传感器。 插入构件和传感器被模制并嵌入刮刀的主体内。 每个传感器适于提供表示由传感器感测到的刮刀的物理状态的电输出信号。 描述了各种传感器实施例,以及与各种叶片和传感器组合结合使用的控制和监视系统的两个实施例。
    • 10. 发明授权
    • Conveyor belt training idler with a locking mechanism
    • 带锁定机构的输送带训练惰轮
    • US07967129B2
    • 2011-06-28
    • US12234972
    • 2008-09-22
    • Robert Todd Swinderman
    • Robert Todd Swinderman
    • B65G15/08
    • B65G39/16
    • A conveyor belt training idler comprise a mount, a roller support frame, a roller, and a locking mechanism. The roller support frame is pivotally attached to the mount about a support frame axis for pivotal movement relative to the mount. The roller is rotatably attached to the roller support frame for rotation about a roller axis. The roller axis is pivotal with the roller support frame about the support frame axis relative to the mount. The locking mechanism has a plurality of discrete settings, each setting being configured and adapted to maintain the roller support frame at a discrete angular setting relative to the mount.
    • 传送带训练惰轮包括安装件,滚子支撑框架,滚子和锁定机构。 辊支撑框架围绕支撑框架轴线枢转地附接到支架,用于相对于支架枢转运动。 辊可旋转地附接到辊支撑框架上以围绕辊轴线旋转。 辊轴与支撑框架轴线相对于支架绕支撑框架枢转。 锁定机构具有多个离散设置,每个设置被配置和适于将辊支撑框架相对于安装件保持在离散的角度设置。