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    • 16. 发明公开
    • REDUCED RADIUS CONVEYOR BELT
    • 与半径缩小输送机
    • EP0815042A1
    • 1998-01-07
    • EP96909877.0
    • 1996-03-29
    • ASHWORTH BROS. INC.
    • RAUM, Jack, R.
    • B65G17
    • B65G17/063B65G2201/02
    • A conveyor belt (2, 200) having a direction of travel includes a plurality of pivotal transverse rods (8,209) extending laterally across the belt and having inner and outer ends (10, 12) along inner and outer edges (4, 6, 204, 206) of the belt and a plurality of connecting links (20, 24, 80, 100', 150, 220, 222, 224) disposed in a pair of spaced rows at the inner and outer ends of rods. Each of the connecting links has a base portion (30, 30', 300, 270) and a pair of spaced legs rigidly connected to the outer ends of the base portion and each of the legs has at least one stepped portion (32) parallel to the direction of travel. The stepped portions on opposing legs are spaced apart a relatively narrow distance at the base portion and a relatively wide distance at the opposite end thereof. The stepped portions include a substantially straight segment (42, 46', 246, 246') at said wider stepped portion, and an angled segment (44, 44', 244, 244') therebetween connecting the substantially straight segments. The angled segment between the substantially straight segments of the stepped portion of the inner connecting links is greater in length than the angled segment between the substantially straight segments of the stepped portion of the outer connecting links. The shorter length of the outer angled segments maintains the direction of travel of the belt in a normal straight orientation by limiting the amount of lateral clearance between adjoining connecting links and the longer length of the inner angled segments allow adjoining inner links to fully collapse in an alternate orientation to follow paths curved laterally to one side.
    • 18. 发明公开
    • Positive drive helical conveyor system
    • 正向驱动螺旋输送机系统
    • EP0341013A3
    • 1990-11-22
    • EP89304381.0
    • 1989-05-02
    • ASHWORTH BROS. INC.
    • Roinestad, Gerald C.
    • B65G21/18B65G23/36
    • B65G23/34B65G21/18B65G2207/24
    • A helical conveyor system is disclosed. A conveyor belt 11 is positively driven by drive cage 212 around a plurality of vertically spaced helical loops. A pair of supplemental positive drives 25 and 26, which are driven at the same speed and synchronized with the drive cage, engage the belt 11 near its entry into and exit from the helical portion of its endless path. Vertical driving bars 45 on the drive cage 21 positively engage the cross rod heads 14 of the belt 11 in its helical path. The driving surfaces of the bars 45 are relieved at 61 and 62 to prevent driving engagement with the rod heads 14 over an inlet section of the first loop and an exit section of the last loop. The driving bars 45 also engage the ends of the rod heads 14 to limit the penetration of the driving bars past the edge of the belt. The driving bars include means which may comprise gates 105 or ramps 121 to permit controlled intermittent slip-backs of the rod heads at predetermined intervals.
    • 公开了螺旋输送机系统。 传动带11由围绕多个垂直间隔的螺旋环的驱动器保持架212驱动。 以相同速度驱动并与驱动器保持架同步的一对补充正驱动器25和26在其进入和离开其环形路径的螺旋部分的入口附近接合带11。 驱动器保持架21上的垂直驱动杆45以其螺旋形路径将带11的横杆头14正向地接合。 杆45的驱动表面在61和62处释放,以防止在第一回路的入口部分和最后一个回路的出口部分处的杆头14的驱动接合。 驱动杆45还接合杆头14的端部以限制驱动杆穿过皮带边缘的穿透。 驱动杆包括可以包括门105或斜坡121的装置,以允许以预定间隔控制杆头的间歇滑动。
    • 20. 发明公开
    • SYSTEM AND METHOD FOR ANTICIPATING LOW-SPEED BEARING FAILURE
    • 用于防止低速轴承失效的系统和方法
    • EP3220122A1
    • 2017-09-20
    • EP17161035.5
    • 2017-03-15
    • Ashworth Bros., Inc.
    • MARSHALL, Arthur J.LACKNER, Joseph M.
    • G01M13/04F16C19/52
    • G08B21/187B65G21/18B65G43/00F16C19/52G01M13/045G08B21/182
    • A system for anticipating low-speed bearing failure triggers a notification when a noise generated by the low-speed bearing exceeds a threshold. The system predicts failure far in advance of the actual failure. The system includes an accelerometer for detecting the noise generated by the bearing. The signal produced by the accelerometer is processed using a band pass filter, an amplifier/rectifier, an averaging filter, and a voltage to current converter. The signal and raw data are transmitted to a remote monitoring system, such as a computer. The signal is further analyzed, such as to produce a best-fit line. When the signal exceeds a predetermined threshold, such as when the amount or the slope of the best-fit line exceeds a value, the remote system notifies a monitor to schedule maintenance.
    • 当低速轴承产生的噪音超过阈值时,用于预测低速轴承故障的系统触发通知。 系统在实际故障发生之前预测故障。 该系统包括一个加速度计,用于检测轴承产生的噪音。 加速度计产生的信号使用带通滤波器,放大器/整流器,平均滤波器和电压至电流转换器进行处理。 信号和原始数据被传输到远程监控系统,例如计算机。 信号被进一步分析,例如产生最佳拟合线。 当信号超过预定阈值时,例如当最佳拟合线的数量或斜率超过一个值时,远程系统通知监视器安排维护。