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Vibroflot excitation force monitoring system
The invention relates to a vibroflot excitation force monitoring system which comprises a direct method excitation force monitoring device, an indirect method excitation force monitoring device, channel steel and force measuring rings, the three force measuring rings are arranged on the peripheral wall of a vibroflot at intervals in the axial direction of the vibroflot, and the direct method excitation force monitoring device comprises 12 open-close type force sensors. The 12 open-close type force sensors are divided into three groups, each group comprises four open-close type force sensors, and the four open-close type force sensors in each group are symmetrically arranged into a circle in the axial direction of the vibroflot; the indirect method excitation force monitoring device comprises twelve accelerometers, the twelve accelerometers are divided into three groups, each group comprises four accelerometers, and the four accelerometers in each group are symmetrically arranged on the same force measuring ring; the positions of the accelerometer and the opening and closing type force sensor are not overlapped; the channel steel is arranged on the outer surface of the vibroflot in the axial direction of the vibroflot; and a connecting wire of the accelerometer and a connecting wire of the opening and closing type force sensor are arranged in the channel steel.
本发明涉及一种振冲器激振力监测系统,该系统包括直接法监测激振力装置、间接法监测激振力装置、槽钢和测力环,3个测力环沿着振冲器的轴向间隔设置在振冲器的外周壁上,直接法监测激振力装置包括12个开合式力传感器,12个开合式力传感器分为3组,每组包括4个开合式力传感器,每组的4个开合式力传感器沿振冲器的轴向对称布置成一圈;间接法监测激振力装置包括12个加速度计,12个加速度计分为3组,每组包括4个加速度计,每组的4个加速度计在同一个测力环上对称布置;加速度计与开合式力传感器的位置不重叠;槽钢沿着振冲器的轴向设置在振冲器的外表面上;加速度计的连接导线和开合式力传感器的连接导线均在槽钢内走线。
Vibroflot excitation force monitoring system
The invention relates to a vibroflot excitation force monitoring system which comprises a direct method excitation force monitoring device, an indirect method excitation force monitoring device, channel steel and force measuring rings, the three force measuring rings are arranged on the peripheral wall of a vibroflot at intervals in the axial direction of the vibroflot, and the direct method excitation force monitoring device comprises 12 open-close type force sensors. The 12 open-close type force sensors are divided into three groups, each group comprises four open-close type force sensors, and the four open-close type force sensors in each group are symmetrically arranged into a circle in the axial direction of the vibroflot; the indirect method excitation force monitoring device comprises twelve accelerometers, the twelve accelerometers are divided into three groups, each group comprises four accelerometers, and the four accelerometers in each group are symmetrically arranged on the same force measuring ring; the positions of the accelerometer and the opening and closing type force sensor are not overlapped; the channel steel is arranged on the outer surface of the vibroflot in the axial direction of the vibroflot; and a connecting wire of the accelerometer and a connecting wire of the opening and closing type force sensor are arranged in the channel steel.
本发明涉及一种振冲器激振力监测系统,该系统包括直接法监测激振力装置、间接法监测激振力装置、槽钢和测力环,3个测力环沿着振冲器的轴向间隔设置在振冲器的外周壁上,直接法监测激振力装置包括12个开合式力传感器,12个开合式力传感器分为3组,每组包括4个开合式力传感器,每组的4个开合式力传感器沿振冲器的轴向对称布置成一圈;间接法监测激振力装置包括12个加速度计,12个加速度计分为3组,每组包括4个加速度计,每组的4个加速度计在同一个测力环上对称布置;加速度计与开合式力传感器的位置不重叠;槽钢沿着振冲器的轴向设置在振冲器的外表面上;加速度计的连接导线和开合式力传感器的连接导线均在槽钢内走线。
Vibroflot excitation force monitoring system
一种振冲器激振力监测系统
MA BIN (author) / LU WEI (author) / CHEN TAO (author) / ZHANG GUANGBIAO (author) / LI MENG (author) / HU YANG (author) / LIANG XINGLONG (author) / WU SHAORU (author) / PU PINGXIN (author) / TANG YONGJUN (author)
2023-07-18
Patent
Electronic Resource
Chinese
IPC:
G01L
Messen von Kraft, mechanischer Spannung, Drehmoment, Arbeit, mechanischer Leistung, mechanischem Wirkungsgrad oder des Drucks von Fluiden
,
MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
/
E02D
FOUNDATIONS
,
Gründungen
/
G01P
MEASURING LINEAR OR ANGULAR SPEED, ACCELERATION, DECELERATION OR SHOCK
,
Messen der Linear- oder Winkelgeschwindigkeit, der Beschleunigung, der Verzögerung oder des Stoßes
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