CN218546404U - Steel wire rope bending fatigue testing device - Google Patents

Steel wire rope bending fatigue testing device Download PDF

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Publication number
CN218546404U
CN218546404U CN202120221655.7U CN202120221655U CN218546404U CN 218546404 U CN218546404 U CN 218546404U CN 202120221655 U CN202120221655 U CN 202120221655U CN 218546404 U CN218546404 U CN 218546404U
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wheel
loading
wire rope
steel wire
test
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CN202120221655.7U
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王敬轩
徐凌云
叶燕峰
陈长奎
杨岳民
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Shanghai Customs Industrial Products And Raw Material Testing Technology Center
SHANGHAI SHENLI TESTING MACHINE CO LTD
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Shanghai Customs Industrial Products And Raw Material Testing Technology Center
SHANGHAI SHENLI TESTING MACHINE CO LTD
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Abstract

A steel wire rope bending fatigue testing device comprises a working host and a PLC (programmable logic controller) control cabinet, wherein the working host comprises a base, a rack, a test wheel, a driving wheel, a guide wheel, a loading wheel, a motor, a speed reducer, a crank-link mechanism and a loading oil cylinder, the power output end of the crank-link mechanism drives the driving wheel to rotate in a reciprocating mode, the test wheel, the driving wheel, the loading wheel and the guide wheel are located on the same plane, and the PLC control cabinet controls a hydraulic oil source to drive the loading oil cylinder to jack up and drive the loading wheel to tension a steel wire rope sample according to a preset loading force. The device and the test method adopt the loading oil cylinder to provide constant large-tonnage tension for the steel wire rope sample, solve the problem that the tension is too low to meet the test requirement, realize the requirement of the bending fatigue test of the steel wire ropes with different diameters and large specifications by the aid of the test wheel and guide rail structures which can be conveniently replaced, and effectively improve the test efficiency of the device.

Description

Steel wire rope bending fatigue testing device
Technical Field
The utility model relates to the field of machinary, especially, relate to wire rope capability test device, specifically a wire rope bending fatigue test device.
Background
The large-size steel wire rope is a spiral rope manufactured through multiple processes of wire drawing, stranding, rope combining and the like. The tension bearing device is mainly used for bearing tension in use and is widely applied to production and life such as hoisting, elevators, ships, bridge construction and the like. In the use process of the large-size steel wire rope, the large-size steel wire rope is mostly matched with the pulley for use, so that the purposes of changing the direction, increasing the force, increasing the speed or reducing the speed and the like are realized. When the steel wire rope is matched with a pulley for use, the steel wire rope can be bent to and fro, and the bending fatigue test needs to be carried out on phenomena of wire breakage, twisting breakage and the like which can occur when the steel wire rope is used, so that the service life of the steel wire rope in a bending fatigue state is verified, and the safety in use is ensured. In the prior art, a steel wire rope bending fatigue testing machine is generally used for a steel wire rope with the diameter being less than 20mm, a lever structure is adopted to provide tension, the tension is difficult to exceed 10 tons, and the tension required by a large-specification steel wire rope bending fatigue test cannot be effectively achieved.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a wire rope bending fatigue testing device provides invariable large-tonnage tension for the wire rope sample through adopting loading cylinder, has solved the problem that tensile force can't reach the test demand on the low side in the bending fatigue testing of big specification wire rope. The test wheel and the guide rail structure which can be conveniently replaced meet the requirement of bending fatigue tests of steel wire ropes with large diameters and specifications, the problems that the test wheel cannot be moved manually and hoisting equipment cannot be used when the position is replaced are solved, and the test efficiency of the device is effectively improved.
The steel wire rope bending fatigue testing device of the utility model comprises a working host and a PLC control cabinet, the working host is electrically connected with the PLC control cabinet and comprises a base, a frame, a test wheel, a driving wheel, a guide wheel, a loading wheel, a motor, a speed reducer, a crank-link mechanism and a loading oil cylinder, the frame is fixedly connected on the base, the motor and the speed reducer are horizontally and fixedly connected with the base through a bracket, the output shaft of the motor is connected with the input shaft of the speed reducer, the output shaft of the speed reducer is connected with the power input end of the crank-link mechanism through a crank, the power output end of the crank connecting rod mechanism is fixedly connected with the wheel shaft of the driving wheel through a rocker to drive the driving wheel to rotate in a reciprocating manner, the test wheel, the driving wheel, the loading wheel and the guide wheel are positioned on the same plane, the driving wheel and the guide wheel are respectively arranged on the frame through wheel seats, the test wheel is rotatably arranged on a test wheel seat which is fixedly connected on the frame through a replaceable screw, the test wheel and the driving wheel are arranged on two sides of the base, the loading wheel is positioned right above the test wheel, the guide wheel is arranged at the position of 45-degree angle above the left of the driving wheel, and is positioned at the 45-degree angle position below the right of the loading wheel, the loading oil cylinder is positioned below the loading wheel and is fixedly connected on the rack, the top of a piston rod of the loading oil cylinder is fixedly connected with a wheel seat of the loading wheel, the PLC control cabinet controls a hydraulic oil source to drive the loading oil cylinder to lift up, the loading wheel is driven to tension a steel wire rope sample according to a preset loading force, and a fixing clamping seat is arranged on the driving wheel and used for fixing two ends of the steel wire rope sample.
Further, a guide rail is installed below the test wheel, four supporting pulleys are arranged at the bottom of the test wheel seat, and the four supporting pulleys are connected with the guide rail in a sliding fit mode.
Further, the wheel diameter of the test wheel is 16 times of the diameter of the steel wire rope sample.
Furthermore, the PLC control cabinet adopts a touch screen type PLC programmable control system.
The working process of the utility model is as follows:
the method comprises the following steps: mounting a test wheel with the wheel diameter matched with the specification of the steel wire rope sample to be tested on a rack of the working host through a guide rail; step two: sequentially winding a steel wire rope sample to be tested on a driving wheel, a guide wheel, a loading wheel and a test wheel, wherein two ends of the steel wire rope sample are fixed on the driving wheel through fixing clamping seats to form an annular structure; step three: operating the PLC control cabinet and setting a loading force, controlling the loading oil cylinder to drive the loading wheel to apply the loading force, and keeping the set load unchanged after the preset test loading force is reached; step four: the starting motor and the speed reducer output power, and the driving wheel is driven to swing back and forth through the crank connecting rod mechanism; step five: a control system of the PLC control cabinet records the state of a motor and the number of times of reciprocating rotation, determines a bending section to be detected in a steel wire rope sample to be detected as an observation section of a bending fatigue test, and observes and records the change of the reduction rate of the rope diameter and the number of visible broken wires in the observation section at set time intervals; step six: when the diameter reduction rate or the number of visible broken wires of the observation section exceeds a specified standard, acquiring the number of times of the reciprocating rotation of the motor, namely the bending fatigue life of the test steel wire rope sample; step seven: and when the conditions of judging the test termination, such as set times or broken wires, are reached, the test is terminated, the motor is stopped, and the loading oil cylinder is reset.
The utility model discloses a theory of operation is: after the steel wire rope sample is installed, a loading oil cylinder tensions the steel wire rope according to a preset loading force and continuously keeps a set load, a motor and a speed reducer output power drive a crank link mechanism to push a driving wheel to rotate in a reciprocating mode, the steel wire rope sample drives a guide wheel, a loading wheel and a test wheel to rotate together, reciprocating motion of the steel wire rope sample on the test wheel is achieved, a PLC control cabinet records the number of times of reciprocating rotation of the motor, when the diameter reduction rate or the number of visible broken wires of a steel wire rope observation section exceeds a specified standard or reaches a set test number, the number of times of reciprocating rotation of the motor recorded by the PLC control cabinet is used for calculating the bending fatigue life of the steel wire rope sample to be tested, and the bending fatigue test of the steel wire rope sample is completed.
Compared with the prior art, the utility model, its effect is positive and obvious. The utility model discloses a loading cylinder provides invariable large-tonnage tension (16 kN-800 kN) for the wire rope sample, has solved the problem that tensile force can't reach the test demand on the low side among the bending fatigue test of big specification wire rope. The test wheel and the guide rail structure which can be conveniently replaced meet the requirement of bending fatigue tests of steel wire ropes with different diameters and large specifications, the problems that the test wheel cannot be moved by manpower and hoisting equipment cannot be used when the position is replaced are solved, and the test efficiency of the device is effectively improved.
Drawings
Fig. 1 is a schematic perspective view of the device of the present invention.
Fig. 2 is a schematic front view of the device of the present invention.
Fig. 3 is a schematic structural view of a crank link mechanism of the device of the present invention.
Fig. 4 is a schematic view of the structure of the testing wheel of the device of the present invention.
Detailed Description
Example 1:
as shown in fig. 1 to 4, the steel wire rope bending fatigue testing device of the present invention comprises a working host 1 and a PLC control cabinet 2, the working host 1 is electrically connected to the PLC control cabinet 2, the working host 1 comprises a base 101, a frame 102, a testing wheel 103, a driving wheel 104, a guide wheel 105, a loading wheel 106, a motor 107, a speed reducer 108, a crank link mechanism 109 and a loading cylinder 1010, the frame 102 is fixedly connected to the base 101, the motor 107 and the speed reducer 108 are horizontally and fixedly connected to the base 101 through a bracket 102, an output shaft of the motor 107 is connected to an input shaft of the speed reducer 108, an output shaft of the speed reducer 108 is connected to a power input end of the crank link mechanism 109 through a crank 1011, a power output end of the crank link mechanism 109 is fixedly connected to a wheel shaft of the driving wheel 104 through a rocker 1012, the driving wheel 104 is driven to rotate back and forth, the testing wheel 103, the driving wheel 104, the loading wheel 106 and the guide wheel 105 are located on the same plane, the driving wheel 104 and the guide wheel 105 are respectively installed on the frame through a wheel seat 1013, the testing wheel seat 1013 is fixedly connected to the frame 102, the testing wheel 103 and the testing wheel 104 are arranged above the replaceable testing wheel 104, the testing wheel 104 is arranged on two sides of the left side of the testing wheel 104, and is located at the 45-degree angle position of the right lower side of the loading wheel 106, the loading oil cylinder 1010 is located below the loading wheel 106 and is fixedly connected to the rack 102, the top of a piston rod of the loading oil cylinder 1010 is fixedly connected with a wheel seat of the loading wheel 106, the PLC control cabinet 2 controls a hydraulic oil source to drive the loading oil cylinder 1010 to lift up, the loading wheel 106 is driven to tension the steel wire rope sample 1014 according to a preset loading force, and the driving wheel 104 is provided with a fixed clamping seat 1015 for fixing two ends of the steel wire rope sample 1014.
Further, guide rail 1016 is installed to experimental wheel 103 below, and the bottom of experimental wheel seat 1013 is equipped with four supporting pulley 1017, and four supporting pulley 1017 are connected with guide rail 1016 sliding fit, because experimental wheel subassembly weight is about 1 ton, and the manpower can't be moved, and hoisting equipment is also inconvenient to use in the change position, through set up supporting pulley 1017 and guide rail 1016 structure on experimental wheel seat 1013, realizes the convenient change of experimental wheel subassembly. Firstly, the test wheel assembly is placed on the guide rail 1016 by the hoisting equipment, the four supporting pulleys 1017 on the test wheel assembly are in contact with the guide rail 1016, the test wheel assembly can be pushed to the installation position by manpower, and then the test wheel assembly is fastened with a bracket of the working main machine by screws. When the test wheel assembly is detached, the screw is detached firstly, the test wheel assembly automatically falls onto the guide rail 1016, the test wheel assembly is pushed out manually, and then the test wheel assembly is transported to a proper position by the hoisting equipment.
Further, the wheel diameter of the test wheel 103 is 16 times of the 1014 diameter of the steel wire rope sample, the 1014 specification of the steel wire rope sample is in the range of phi 20 mm-phi 50mm, when the 1014 steel wire rope samples with different specifications are replaced, different test wheels 103 need to be replaced, the wheel diameter of the test wheel 103 is guaranteed to be 16 times of the 1014 diameter of the steel wire rope sample, and meanwhile, the wheel groove of the test wheel 103 needs to be adjusted according to the specification of the sample.
Furthermore, the PLC control cabinet 2 adopts a touch screen type PLC programmable control system.
The working process of the utility model is as follows:
the method comprises the following steps: mounting a test wheel with the wheel diameter matched with the specification of the steel wire rope sample to be tested on a frame of a working host through a guide rail;
step two: sequentially winding a steel wire rope sample to be tested on a driving wheel, a guide wheel, a loading wheel and a test wheel, wherein two ends of the steel wire rope sample are fixed on the driving wheel through fixing clamping seats to form an annular structure;
step three: operating the PLC control cabinet and setting a loading force, controlling the loading oil cylinder to drive the loading wheel to apply the loading force, and keeping the set load unchanged after the preset test loading force is reached;
step four: the starting motor and the speed reducer output power, and the driving wheel is driven to swing back and forth through the crank connecting rod mechanism;
step five: a control system of the PLC control cabinet records the state of the motor and the number of times of reciprocating rotation, determines a to-be-measured bending section in a to-be-measured steel wire rope sample as an observation section of a bending fatigue test, and observes and records the change of the rope diameter reduction rate and the visible broken wire number in the observation section at set time intervals;
step six: when the diameter reduction rate or the number of visible broken wires of the observation section exceeds a specified standard, acquiring the number of times of the reciprocating rotation of the motor, namely the bending fatigue life of the test steel wire rope sample;
step seven: and when the conditions of judging the test termination, such as set times or broken wires, are reached, the test is terminated, the motor is stopped, and the loading oil cylinder is reset.

Claims (4)

1. The utility model provides a wire rope bending fatigue testing arrangement which characterized in that: the device comprises a working host and a PLC control cabinet, wherein the working host is electrically connected with the PLC control cabinet, the working host comprises a base, a rack, a test wheel, a driving wheel, a guide wheel, a loading wheel, a motor, a speed reducer, a crank connecting rod mechanism and a loading oil cylinder, the rack is fixedly connected on the base, the motor and the speed reducer are horizontally and fixedly connected with the base through a support, an output shaft of the motor is connected with an input shaft of the speed reducer, an output shaft of the speed reducer is connected with a power input end of the crank connecting rod mechanism through a crank, a power output end of the crank connecting rod mechanism is fixedly connected with a wheel shaft of the driving wheel through a rocker to drive the driving wheel to rotate in a reciprocating manner, the test wheel, the driving wheel, the loading wheel and the guide wheel are positioned on the same plane, and the driving wheel and the guide wheel are respectively installed on the rack through wheel seats, the testing wheel is rotatably installed on a testing wheel seat, the testing wheel seat is fixedly connected to the rack through replaceable screws, the testing wheel and the driving wheel are arranged on two sides of the base, the loading wheel is located right above the testing wheel, the guide wheel is arranged at the 45-degree-angle position on the upper left side of the driving wheel and located at the 45-degree-angle position on the lower right side of the loading wheel, the loading oil cylinder is located below the loading wheel and fixedly connected to the rack, the top of a piston rod of the loading oil cylinder is fixedly connected to the loading wheel seat, the PLC control cabinet controls hydraulic oil source to drive the loading oil cylinder to lift up, the loading wheel is driven to tension a steel wire rope sample according to preset loading force, and two ends, used for fixing the steel wire rope sample, of the fixing clamping seat are arranged on the driving wheel.
2. The steel wire rope bending fatigue testing device according to claim 1, characterized in that: the guide rail is installed to the test wheel below, the bottom of test wheel seat is equipped with four supporting pulley, four supporting pulley with guide rail sliding fit connects.
3. The steel wire rope bending fatigue testing device according to claim 1, characterized in that: the wheel diameter of the test wheel is 16 times of the diameter of the steel wire rope sample.
4. The steel wire rope bending fatigue testing device according to claim 1, characterized in that: the PLC control cabinet adopts a touch screen type PLC programmable control system.
CN202120221655.7U 2021-01-27 2021-01-27 Steel wire rope bending fatigue testing device Active CN218546404U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120221655.7U CN218546404U (en) 2021-01-27 2021-01-27 Steel wire rope bending fatigue testing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120221655.7U CN218546404U (en) 2021-01-27 2021-01-27 Steel wire rope bending fatigue testing device

Publications (1)

Publication Number Publication Date
CN218546404U true CN218546404U (en) 2023-02-28

Family

ID=85259526

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120221655.7U Active CN218546404U (en) 2021-01-27 2021-01-27 Steel wire rope bending fatigue testing device

Country Status (1)

Country Link
CN (1) CN218546404U (en)

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