会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Gyratory crusher
    • 回转破碎机
    • US5718390A
    • 1998-02-17
    • US617346
    • 1996-03-18
    • William A. Ganser, IVJoseph E. MusilDonald W. HenryJohn C. VendelinPeter AlfordJon JuhlinJames MitchellGerald E. Parker
    • William A. Ganser, IVJoseph E. MusilDonald W. HenryJohn C. VendelinPeter AlfordJon JuhlinJames MitchellGerald E. Parker
    • B02C2/00B02C2/04
    • B02C2/00B02C2/04B02C2/045
    • A gyratory crusher includes a flexible dust seal having an outer edge attached to a cone head of the crusher and to an outer of a ball-bearing seal, an inner race of which is attached to a mounting arrangement for rotationally mounting an eccentric member about a crusher axis with a pair of taper bearings and for rotationally mounting the cone head about a cone head axis offset from the crusher axis. The cone head is also mounted on a plurality of hydrostatic bearings. A mantel of the crusher is attached to the cone head by a removable cap nut and mantel stud. The crusher includes a self-contained lubricating system and a hydraulic tramp iron relief system with connections contained internally within structure of a lower frame portion of the crusher. The crusher includes a drive gear centered about the crusher axis and attached directly to the eccentric member. The crusher also includes a thermal relief system adapted to transfer thermal energy from the mounting arrangement to the lower frame portion connected to the mounting arrangement.
    • 回转破碎机包括柔性防尘密封件,其具有附接到破碎机的锥形头部的外边缘以及滚珠轴承密封件的外部,其内圈附接到安装装置,用于将偏心构件围绕 具有一对锥形轴承的破碎机轴线,并且用于围绕与破碎机轴线偏移的锥头轴线旋转地安装锥形头部。 锥头也安装在多个静压轴承上。 破碎机的壁架通过可拆卸的盖螺母和壁架螺栓连接到锥头。 破碎机包括一个独立的润滑系统和一个液压疏水阀释放系统,其连接包含在破碎机的下部框架部分的结构内部。 破碎机包括以破碎机轴心为中心的驱动齿轮,并直接附接到偏心构件。 破碎机还包括适于将热能从安装装置传递到连接到安装装置的下部框架部分的热释放系统。
    • 4. 发明授权
    • Gyratory crusher having self-contained lubrication system
    • 回转破碎机具有独立的润滑系统
    • US5944265A
    • 1999-08-31
    • US786034
    • 1997-01-21
    • William A. Ganser, IVJoseph E. MusilDonald W. HenryMark HuntDavid A. OstergaardJohn C. VendelinPeter AlfordRoger M. ClarkJon JuhlinJames MitchellGerald E. Parker
    • William A. Ganser, IVJoseph E. MusilDonald W. HenryMark HuntDavid A. OstergaardJohn C. VendelinPeter AlfordRoger M. ClarkJon JuhlinJames MitchellGerald E. Parker
    • B02C2/00B02C2/04B02C25/00
    • B02C2/00B02C2/04B02C2/045
    • A gyratory crusher for crushing material having a frame mechanism including a lower frame portion; a crusher head having a bottom surface; a mounting mechanism for pivotally and gyrationally mounting the crusher head on the lower frame portion wherein the mounting mechanism includes a plurality of hydrostatic bearings configured to form a sliding engagement with the bottom surface of the crusher head to operatively support the crusher head; a drive train configured to operatively connect said mounting mechanism to an external power source; and a self-contained lubricating system for operatively lubricating the mounting mechanism and the drive train, wherein the self-contained lubricating system includes a flow divider configured to separately distribute lubricant to each hydrostatic bearing of the plurality of hydrostatic bearings wherein the flow divider is further configured to operatively provide lubricant to each sliding engagement of the plurality of hydrostatic bearings such that the crusher head is slightly elevated from the plurality of hydrostatic bearings, a monitoring system for monitoring the volume rate of lubricant flowing through the flow divider wherein the monitoring system is configured to operatively signal shut-down of the gyratory crusher as the volume rate decreases below a predetermined level, a pressure transducer configured to operatively signal shut-down of the gyratory crusher in the event that pressure of the lubricant to the flow divider decreases below a pre-determined level, and a relief valve configured to prevent pressure of the lubricant to the flow divider from exceeding a pre-determined level.
    • 一种用于破碎材料的回转破碎机,具有包括下框架部分的框架机构; 具有底面的破碎机头; 用于枢转地和旋转地将破碎机头部安装在下部框架部分上的安装机构,其中安装机构包括多个静压轴承,其构造成与破碎机头部的底面形成滑动接合以可操作地支撑破碎机头部; 配置成将所述安装机构可操作地连接到外部电源的传动系; 以及用于可操作地润滑所述安装机构和所述传动系的独立润滑系统,其中所述独立润滑系统包括分配器,所述分流器构造成将润滑剂分开地分配到所述多个静压轴承中的每个静液压轴承,其中所述分流器进一步 被构造成可操作地为所述多个静压轴承的每个滑动接合提供润滑剂,使得所述破碎机头部从所述多个静压轴承稍微升高;监测系统,用于监测流过所述分流器的润滑剂的体积速率,其中所述监控系统是 配置成当体积速率降低到预定水平以下时可操作地信号地回转回转式破碎机关闭;压力传感器,被配置为在流向分流器的润滑剂的压力降至低于1的情况下可操作地信号地关闭回旋式破碎机 预先确定的水平和救济va 以防止润滑剂对分流器的压力超过预定水平。
    • 6. 发明授权
    • Gyratory crusher having thermal relief system
    • 具有热释放系统的回转式破碎机
    • US5799886A
    • 1998-09-01
    • US788884
    • 1997-01-21
    • Joseph E. MusilDonald W. HenryDavid A. OstergaardJon Juhlin
    • Joseph E. MusilDonald W. HenryDavid A. OstergaardJon Juhlin
    • B02C2/00B02C2/04
    • B02C2/00B02C2/04B02C2/045
    • A gyratory crusher for crushing material having a frame with a lower frame portion; a crusher head; a mounting mechanism for pivotally and gyrationally mounting the crusher head: and a thermal relief system for operably transferring thermal energy from the mounting mechanism to the lower frame portion, wherein the thermal relief system includes at least one collar in thermal communication with the lower frame portion and a self-contained circulating system configured to operatively circulate coolant through the at least one collar. The thermal relief system may be configured to operatively provide a cooling system for cooling lubricant being used to lubricate the mounting mechanism. The coolant may be a lubricant such that the self-contained circulating system may be configured to operatively circulate the lubricant simultaneously through the thermal relief system and the mounting mechanism. Alternatively, the self-contained circulating system may be configured to operatively circulate lubricant through the mounting mechanism, and, after the lubricant reaches and surpasses a pre-selected temperature, to also simultaneously circulate the lubricant through the thermal relief system. A bypass valve arrangement is provided to operatively bypass flow of the coolant or lubricant through the at least one collar as the temperature of the coolant or lubricant is below a pre-selected temperature.
    • 一种用于破碎材料的回转破碎机,具有具有下框架部分的框架; 破碎机头; 用于枢转地和旋转地安装破碎机头的安装机构和用于将热能从安装机构可操作地传递到下部框架部分的热释放系统,其中热释放系统包括与下部框架部分热连通的至少一个套环 以及构造成使冷却剂可操作地循环通过所述至少一个轴环的独立循环系统。 热释放系统可以被配置为可操作地提供用于冷却用于润滑安装机构的润滑剂的冷却系统。 冷却剂可以是润滑剂,使得独立循环系统可以构造成通过热释放系统和安装机构同时操作地润滑润滑剂。 或者,独立循环系统可以构造成使润滑剂可操作地循环通过安装机构,并且在润滑剂达到并超过预选温度之后,同时使润滑剂循环通过热释放系统。 提供旁路阀装置,以便当冷却剂或润滑剂的温度低于预选温度时,可操作地绕过冷却剂或润滑剂通过至少一个环的流动。
    • 10. 发明授权
    • Asphalt plant having centralized media burner and low fugitive emissions
    • 沥青设备具有集中的媒体燃烧器和低逸散排放
    • US6146007A
    • 2000-11-14
    • US45212
    • 1998-03-20
    • Martin L. StimsonJoseph E. Musil
    • Martin L. StimsonJoseph E. Musil
    • E01C19/10B28C5/46
    • E01C19/1036E01C19/1063E01C2019/109E01C2019/1095
    • An asphalt plant including a plurality of asphalt processing components, with a selected first set of the components producing volatile emissions and a selected second set requiring process heat energy. A central burner assembly is connected to the selected second set of components by an insulated duct system for providing heat energy to the second component set. A first duct system is adapted to capture a portion of the volatile emissions produced by the first component set and convey the captured emissions into the central burner for mitigation. The central burner is preferably a media burner incorporating flameless combustion technology as well as an adjustable internal fuel injection system, which results in safer and more controllable combustion. Even with captured fugitive emissions in the inlet air, the fuel injection system keeps the concentration of combustible materials well below the lower flammability limit.
    • 包括多个沥青处理部件的沥青设备,其中所选择的第一组部件产生挥发性排放物,以及需要处理热能的所选择的第二组件。 中央燃烧器组件通过用于向第二组件组提供热能的绝缘管道系统连接到所选择的第二组组件。 第一管道系统适于捕获由第一组件组产生的一部分挥发性排放物,并将捕获的排放物输送到中央燃烧器中用于缓解。 中央燃烧器优选是包含无焰燃烧技术的介质燃烧器以及可调节的内部燃料喷射系统,其导致更安全和更可控的燃烧。 即使在入口空气中捕获的逃逸排放物,燃油喷射系统也使可燃材料的浓度远低于较低的可燃性极限。