METHOD OF MONITORING CRANE SAFETY AND A SYSTEM FOR MONITORING CRANE SAFETY
20170369287 · 2017-12-28
Inventors
Cpc classification
B66C23/26
PERFORMING OPERATIONS; TRANSPORTING
B66C23/76
PERFORMING OPERATIONS; TRANSPORTING
International classification
B66C13/16
PERFORMING OPERATIONS; TRANSPORTING
B66C15/06
PERFORMING OPERATIONS; TRANSPORTING
B66C23/76
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a method of monitoring the safety of a crane, in particular of a revolving tower crane having a revolving deck, wherein the crane has a sensor system and a crane control, and wherein furthermore at least one tilt sensor is provided. In accordance with the invention, the at least one tilt sensor is attached to the revolving deck of the revolving tower crane, with the monitoring of the crane safety taking place at least during the putting up and/or taking down of the revolving tower crane.
Claims
1. A method of monitoring the safety of a crane, in particular of a revolving tower crane having a revolving deck, wherein the crane has a sensor system and a crane control, furthermore at least one tilt sensor is provided, the at least one tilt sensor is attached and installed at the revolving deck of the revolving tower craned, and the monitoring of the crane safety takes place at least during the putting up and taking down of the revolving tower crane.
2. A method in accordance with claim 1, wherein the position of the revolving deck is determined via the at least one tilt sensor and the received measured values are transmitted to the crane control for evaluation, with an action being triggered on an exceeding of a predefined limit value.
3. A method in accordance with claim 1, wherein the putting up of the crane starts with the assembly of its substructure and of the tower and the revolving deck having the installed at least one tilt sensor is thereupon placed on, with the monitoring starting after the placing on of the revolving deck.
4. A method in accordance with claim 1, wherein the inclination of the revolving deck determined using the values determined by the at least one tilt sensor is compared with inclination values provided for the respective setup, with a warning signal being output on an exceeding of a permitted tilt, in particular of a permitted angle of inclination and, the determined data being logged.
5. A method in accordance with claim 1, wherein a correction of the data determined by the at least one tilt sensor is carried out in conjunction with values determined via a provided wind gauge so that a release is given for further assembly steps.
6. A method in accordance with claim 1, wherein the inclination results from a torque generated by the counter-boom and the hoist winch and in dependence on the height of the tower of the revolving tower crane after the assembly of the counter-boom, with the inclination resulting therefrom being determined by the at least one tilt sensor and being compared with data stored in the crane control.
7. A method in accordance with claim 1, wherein an angle of rotation sensor is provided in addition to the at least one tilt sensor to determine the position-dependent inclination of the tower, with the release for the placing on of an assembly counter-ballast thereupon taking place.
8. A method in accordance with claim 1, wherein the inclination, in particular an angle of inclination α(x), is determined after the assembly of the boom and is noted to log an intermediate step.
9. A method in accordance with claim 1, wherein the counter-ballast is completed in a further method step, with the correctness of permitted inclinations for a fixed configuration of the crane being confirmed by a full rotation of the crane thus set up by 360°, and the rotation being able to take place with an installed trolley at the tower and/or with a trolley at the boom tip.
10. A method in accordance with claim 1, wherein the crane is rotated by 360° after completion of the counter-ballast to confirm the correctness of inclinations for the fixed configuration.
11. A method in accordance with claim 1, wherein the monitoring does not only take place by the at least one tilt sensor during the putting up, but also during the taking down of the boom and/or counter-boom such that a warning signal is output on an exceeding of permitted inclination values.
12. A method in accordance with claim 1, wherein the inclinations that are recorded in the crane control are compared in the form of a load curve with current load torques, with any deviations being logged.
13. A method in accordance with claim 1, wherein the angle of inclination in dependence on the load torque/static torque and angle of rotation of the crane is constantly monitored during operation, with deviations from permitted stored values being displayed.
14. A method in accordance with claim 1, wherein the inclination is monitored during the climbing procedure on the putting up and taking down of the revolving tower crane.
15. A system for monitoring crane safety, in particular of a revolving tower crane having a revolving deck, wherein the system has a sensor system and a crane control, and at least one tilt sensor attached and installed at the revolving deck is provided for monitoring the safety during the putting up and taking down of the revolving tower crane and/or during the operation of the erected crane.
16. A method in accordance with claim 2, wherein the putting up of the crane starts with the assembly of its substructure and of the tower and the revolving deck having the installed at least one tilt sensor is thereupon placed on, with the monitoring starting after the placing on of the revolving deck.
17. A method in accordance with claim 16, wherein the inclination of the revolving deck determined using the values determined by the at least one tilt sensor is compared with inclination values provided for the respective setup, with a warning signal being output on an exceeding of a permitted tilt, in particular of a permitted angle of inclination and, the determined data being logged.
18. A method in accordance with claim 3, wherein the inclination of the revolving deck determined using the values determined by the at least one tilt sensor is compared with inclination values provided for the respective setup, with a warning signal being output on an exceeding of a permitted tilt, in particular of a permitted angle of inclination and, the determined data being logged.
19. A method in accordance with claim 2, wherein the inclination of the revolving deck determined using the values determined by the at least one tilt sensor is compared with inclination values provided for the respective setup, with a warning signal being output on an exceeding of a permitted tilt, in particular of a permitted angle of inclination and, the determined data being logged.
20. A method in accordance with claim 17, wherein a correction of the data determined by the at least one tilt sensor is carried out in conjunction with values determined via a provided wind gauge so that a release is given for further assembly steps.
Description
[0025] Further features, details and advantages of the invention will be explained in more detail with reference to embodiments shown in the drawings. There are shown:
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035] The system in accordance with the invention for monitoring the stability of the revolving tower crane 10 has a sensor system and a crane control now shown in any more detail here. A tilt sensor 28 having a very exact resolution is installed at the revolving deck 16 such that the position of the revolving deck 16 can be easily determined.
[0036] The actual monitoring starts in accordance with the invention in the putting up of the crane 10, with first the substructure 12 and the mast or the tower 18 being assembled in a manner known per se and only then the revolving tower 16 having the already installed tilt sensor 28 being put on. The tilt sensor 28 shows the position of the revolving deck 16. If the inclination of the revolving deck is larger than that intended for the tower height, the mechanic is informed and the received and evaluated data are then logged.
[0037]
[0038]
[0039] The inclination is determined by the tilt sensor 28, with the angle α1(x) being logged. If the angle α1(x) is larger than a permitted angle, a warning signal is output. An angle of rotation sensor also has to be used in this respect to determine the position-dependent inclination of the tower. The inclination pattern is then rotated by 360° and is completely mapped in conjunction with the wind measurement.
[0040] If the permitted inclination has not been exceeded, the release takes place for the placing on of the assembly counter-ballast 30, as shown in
[0041] The boom 20 is then assembled, as shown in
[0042]
[0043] As shown in
[0044] A respective second embodiment of the revolving tower crane in accordance with the invention is shown in
[0045] In the embodiment shown here, the inclination can be achieved in addition to a tilt sensor 28 or instead of a tilt sensor 28 by a pair of GPS transponders 40 and 41. While the GPS transponder 40 is arranged at the tip of the tower 18, the second GPS transponder 41 is arranged at the substructure or base of the lower part of the crane 10. The difference of the GPS signals of the two transponders enables a determination of the inclination from the position of rest as shown with reference to