Method and device for monitoring tension equalization and displacement adjustment states of steel wire ropes of multi-rope hoister
09914618 ยท 2018-03-13
Assignee
- China University of Mining and Technology (Xuzhou, Jiangsu, CN)
- Xuzhou Coal Mine Safety Equipment Manufacture Co., Ltd. (Xuzhou, Jiangsu, CN)
Inventors
- Zhencai Zhu (Xuzhou, CN)
- Guohua CAO (Xuzhou, CN)
- Gongbo ZHOU (Xuzhou, CN)
- Changhua Hu (Xuzhou, CN)
- Wei LI (Xuzhou, CN)
- Guoan Chen (Xuzhou, CN)
- Yuxing Peng (Xuzhou, CN)
- Qingyong Du (Xuzhou, CN)
- Ronghua Wu (Xuzhou, CN)
Cpc classification
B66B7/1215
PERFORMING OPERATIONS; TRANSPORTING
B66B7/10
PERFORMING OPERATIONS; TRANSPORTING
International classification
B66B7/10
PERFORMING OPERATIONS; TRANSPORTING
B66B7/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A device for monitoring tension equalization and displacement adjustment states of steel wire ropes of a multi-rope hoister includes a displacement sensor mounted on a steel wire rope tension equalization device, a signal acquisition transmitter designed to store and transmit signals of the displacement sensor, a barometric altimeter designed to detect the depth of a mine shaft where a hoisting container is located, and a wireless receiving and processing system arranged at the well mouth of the mine shaft. A method for use includes collecting the displacement adjustment amounts of the tension equalization devices connected with all the hoisting ropes of the hoisting container and the corresponding depth position of the hoisting container during the up-down running process of the hoisting container by means of the signal acquisition transmitter; judging the maximum displacement adjustment amount measured in the entire hoisting process and the corresponding tension adjustment device and corresponding depth, by receiving and processing data via the wireless receiving and processing system; and, giving an alarm when the maximum adjusted displacement is greater than a preset adjustment threshold.
Claims
1. A device for monitoring tension equalization and displacement adjustment states of steel wire ropes of a multi-rope hoister, comprising: a ground wireless receiving and processing system; multiple tension equalization devices; multiple hoisting steel wire ropes for hoisting a hoisting container; and a hoisting container pulling plate provided on the top of the hoisting container, multiple tension equalization devices are arranged at an interval on the hoisting container pulling plate and fixed to the hoisting steel wire ropes respectively, wherein, each of the tension equalization device is provided with a displacement sensor thereon; a barometric altimeter and a signal acquisition transmitter connected with the barometric altimeter are arranged on a side wall of the hoisting container, and each displacement sensor is connected with the signal acquisition transmitter through conductive wires; the displacement sensors are pull-rod displacement sensors, and an extension rod of each sensor is hinged to a wedge-shaped rope ring of the tension equalization device via a bolt; the enclosure of each sensor is fixed to a side plate of the tension equalization device by screws.
2. A method for monitoring the tension equalization and displacement adjustment states of steel wire ropes of a multi-rope hoister with a monitoring device including: a ground wireless receiving and processing system; multiple tension equalization devices, each of the tension equalization device provided with a displacement sensor thereon; multiple hoisting steel wire ropes for hoisting a hoisting container; and a hoisting container pulling plate provided on the top of the hoisting container, multiple tension equalization devices are arranged at an interval on the hoisting container pulling plate and fixed to the hoisting steel wire ropes respectively, a barometric altimeter and a signal acquisition transmitter connected with the barometric altimeter are arranged on a side wall of the hoisting container, and each displacement sensor is connected with the signal acquisition transmitter through conductive wires; the displacement sensors are pull-rod displacement sensors, and an extension rod of each sensor is hinged to a wedge-shaped rope ring of the tension equalization device via a bolt the enclosure of each sensor is fixed to a side plate of the tension equalization device by screws; the method comprising: measuring an initial adjustment amount of one of the tension equalization device before the hoisting container runs at a well mouth, wherein the initial adjustment amount of the tension equalization device is measured by the displacement sensor, transmitting a signal to the signal acquisition transmitter, wherein the signal acquisition transmitter transmits the acquired signal to the wireless receiving and processing system, and the wireless receiving and processing system sets an adjustment threshold for the tension equalization device according to the initial adjustment amount of the tension equalization device; adjusting a displacement amount of the hoisting steel wire rope during operation and a loading and unloading process of the hoisting container in a mine shaft, because an amount of tension on each different hoisting steel wire ropes is different, the amounts of displacement adjustment to be adjusted are different among the hoisting steel wire ropes, wherein the tension equalization device fixed to each hoisting steel wire rope adjusts the displacement amount of the hoisting steel wire rope according to the tension on the hoisting steel wire rope and the extension rod of the displacement sensor on each tension equalization device moves up and down along with the wedge-shaped rope ring connected with the hoisting steel wire rope and thereby transmits the displacement signal to the signal acquisition transmitter; measuring a depth of the hoisting container in the mine shaft via the barometric altimeter transmitting a measured data to the signal acquisition transmitter wherein the signal acquisition transmitter acquires the data from the barometric altimeter and the displacement sensors in real time, and stores the displacement adjustment amounts of the tension equalization devices and the corresponding depth of the hoisting container in the mine shaft and then transmits the acquired data to the wireless receiving and processing system wherein the wireless receiving and processing system processes the received data, outputs the displacement adjustment amount of the tension equalization device connected with each hoisting steel wire rope and the corresponding depth data of the hoisting container in the mine shaft during the up-down running process and the loading and unloading process of the hoisting container and judges a maximum amount of displacement adjustment adjusted in the entire hoisting process and the depth of the tension adjustment device corresponding to the maximum amount of displacement adjustment; and the wireless receiving and processing system proving an alarm if the maximum amount of displacement adjustment is greater than the preset adjustment threshold.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5) Among the figures: 1tension equalization device, 1-1wedge-shaped rope ring, 1-2side plate, 1-3hydraulic oil cylinder, 2displacement sensor, 2-1extension rod, 2-2enclosure, 3hoisting container, 3-1hoisting container pulling plate, 4signal acquisition transmitter, 5hoisting steel wire rope, 6wireless receiving and processing system, 7mine shaft, 8barometric altimeter
DETAILED DESCRIPTION OF THE EMBODIMENTS
(6) Hereunder the present invention will be further detailed in an embodiment, with reference to the accompanying drawings:
(7) The device for monitoring tension equalization and displacement adjustment states of steel wire ropes of a multi-rope hoister in the present invention mainly comprises: tension equalization devices 1, displacement sensor 2, a signal acquisition transmitter 4, hoisting steel wire ropes 5, and a barometric altimeter 8, all of which are arranged in a mine shaft 7 and fixed to a hoisting container 3, and a wireless receiving and processing system 6 arranged on the ground; a hoisting container pulling plate 3-1 is provided on the top of the hoisting container 3, multiple tension equalization devices 1 are arranged at an interval on the hoisting container pulling plate 3-1 and are fixed to multiple hoisting steel wire ropes 5 respectively, and each tension equalization device 1 is provided with a displacement sensor 2 thereon respectively; the barometric altimeter 8 and the signal acquisition transmitter 4 connected with the barometric altimeter 8 are arranged on a side wall of the hoisting container 3, and the displacement sensors 2 are connected with the signal acquisition transmitter 4 via conductive wires respectively; the displacement sensors 2 are pull-rod displacement sensors, and the extension rod 2-1 of each sensor 2 is hinged to a wedge-shaped rope ring 1-1 of the tension equalization device 1 via a bolt; the enclosure 2-2 of each sensor 2 is fixed to a side plate 1-2 of the tension equalization device 1 by screws.
(8) As shown in
(9) As shown in
(10) The method for monitoring tension equalization and displacement adjustment states of steel wire ropes of a multi-rope hoister with the device described above is:
(11) before the hoisting container 3 runs at the well mouth (i.e., in zero load state at the well mouth), the initial adjustment amount of the tension equalization device 1 is measured by the displacement sensor 2, the signal is transmitted to the signal acquisition transmitter 4, the signal acquisition transmitter 4 transmits the acquired signal to the wireless receiving and processing system 6, and the wireless receiving and processing system 6 sets an adjustment threshold for the tension equalization device 1 according to the initial adjustment amount of the tension equalization device 1;
(12) during the up-down running process and loading and unloading process of the hoisting container 3 in the mine shaft 7, since the tensions on different hoisting steel wire ropes 5 are different, the amounts of displacement adjustment to be adjusted are different among the hoisting steel wire ropes 5; the tension equalization device 1 fixed to each hoisting steel wire rope 5 adjusts the tension on the hoisting steel wire rope 5 by extending or retracting an hydraulic oil cylinder 1-3 in the tension equalization device, according to the tension on the hoisting steel wire rope 5, so as to control the displacement amount; the extension rod 2-1 of the displacement sensor 2 on each tension equalization device 1 moves up and down along with the wedge-shaped rope ring 1-1 connected with the hoisting steel wire rope 5, and thereby transmits the displacement signal to the signal acquisition transmitter;
(13) Meanwhile, the barometric altimeter 8 measures the depth of the hoisting container in the mine shaft 7, and thereby obtains the depth of the hoisting container 3 in the mine shaft 7 when the adjustment amount of the tension equalization device 1 is measured, and the barometric altimeter 8 transmits the measured data to the signal acquisition transmitter 4; the signal acquisition transmitter 4 acquires the data from the barometric altimeter 8 and the displacement sensors 2 in real time, and stores the displacement adjustment amounts of the tension equalization devices 1 and the corresponding depth of the hoisting container 3 in the mine shaft 7; when the hoisting container 3 is hoisted to the well mouth of the mine shaft 7, the signal acquisition transmitter 4 transmits the acquired data to the wireless receiving and processing system 6; the wireless receiving and processing system 6 processes the received data, outputs the displacement adjustment amount of the tension equalization device 1 connected with each hoisting steel wire rope 5 and the corresponding depth data of the hoisting container in the mine shaft 7 during the up-down running process and the loading and unloading process of the hoisting container 3, and judges the maximum amount of displacement adjustment adjusted in the entire hoisting process and the depth of the tension adjustment device corresponding to the maximum amount of displacement adjustment; if the maximum amount of displacement adjustment is greater than the preset adjustment threshold, the wireless receiving and processing system 6 will give an alarm.