The present invention relates to a system for confirming a hooking state of a safety harness to determine whether or not the safety harness is used correctly.
When working in high places such as construction sites, any worker is obliged to wear a safety harness for fall-prevention. Such a safety harness comprises a belt to be worn on the body of a worker, a safety rope connected to the belt, a hook attached to a distal end of the safety rope, and a hook holder for allowing the hook to be attached to the belt therethrough. The worker secures safety when working in a high place by wearing the belt on the body and hooking the hook to a main rope or the like installed in a high-place work area.
Meanwhile, in order to reliably prevent fall accidents, it is necessary for a worker to use the safety harness correctly. Particularly, in view of concern that a worker can forget to hook the hook to the main rope or the like in a high-place work area, there have heretofore been proposed a number of systems configured to detect whether or not the hook is hooked to the main rope or the like, and issue a warning when it is detected that the hook is not hooked to the main rope or the like.
For example, the below-mentioned Patent Document 1 discloses a system comprising a coil, detection means to detect whether or not an electromotive force is generated in the coil due to a change in magnetic flux, warning means, and control means operable, when it does not receive, from the detection means, any detection signal indicating the presence of generation of an electromotive force, to output a warning instruction signal to the warning means.
However, the technique disclosed in the Patent Document 1 needs to incorporate the coil in the hook of the safety harness, and incorporate, in the safety rope, an electric signal cable connecting the coil to the detection means and the warning means. Thus, the technique of the Patent Document 1 has a problem that the hook and the safety rope become complicated in terms of their configurations, leading to deterioration in durability.
A technical problem to be solved by the present invention is to provide a new technique capable of determining whether or not a hook of a safety harness is used correctly, without causing complexity in the configurations of the hook and a safety rope.
In conventional techniques, whether or not the hook of the safety harness is used correctly has been determined by detecting whether or not the hook is hooked to the main rope or the like. For this reason, the configurations of the hook and the safety rope inevitably become complicated.
The present inventors have changed viewpoint such that whether or not the hook of the safety harness is used correctly is determined by detecting whether or not the hook is attached to the hook holder of the safety harness, instead of detecting whether or not the hook is hooked to the main rope or the like. Specifically, when the hook is attached to the hook holder, it can be determined that the hook is not used correctly. Here, even when the hook is not attached to the hook holder, there is a possibility that the hook is not used correctly (the hook is not hooked to the main rope or the like). That is, a worker can leave the hook detached from the hook holder, without hooking the detached hook to the main rope or the like. However, if the hook detached from the hook holder is left as-is, the hook and the safety rope will hinder the work. Thus, it is unlikely that the worker leaves the hook detached from the hook holder. Therefore, no practical problem arises even if whether or not the hook of the safety harness is used correctly is determined depending on whether or not the hook is attached to the hook holder of the safety harness.
The present invention has been conceived based on the above technical idea, and the subject matter thereof is as follows.
1. A system for confirming a hooking state of a safety harness, wherein the safety harness comprises: a belt to be worn on a body of a worker; a safety rope connected to the belt; a hook attached to a distal end of the safety rope; and a hook holder for allowing the hook to be attached to the belt therethrough, the system being operable to detect whether or not the hook is attached to the hook holder, and issue a warning when it is detected that the hook is attached to the hook holder.
2. The system set forth in the section 1, which comprises, as means to detect whether or not the hook is attached to the hook holder: a magnet mounted to the hook; and a sensor installed adjacent to the hook holder to serve as means to detect a magnetism of the magnet.
3. The system set forth in the section 1, which comprises, as means to detect whether or not the hook is attached to the hook holder: a current supply to supply a minute electric current to the hook holder, and a sensor installed adjacent to the hook holder to serve as means to detect the current.
4. The system set forth in any one of the sections 1 to 3, which is configured such that means to define a high-place work area is installed in a work site, and means to detect whether or not the safety harness is located within the high-place work area is installed in the safety harness, wherein the system is operable to issue the warning only when it is detected that the safety harness is located within the high-place work area.
5. The system set forth in the section 4, wherein the means to define a high-place work area is configured to define the high-place work area by an AC induced magnetic field.
A technical problem to be solved by the present invention is to provide a new technique capable of determining whether or not a hook of a safety harness is used correctly, without causing complexity in the configurations of the hook and a safety rope.
As shown in
The tag 16 comprises: a magnetic sensor installed adjacent to the hook holder 14 to serve as means to detect a magnetism of the magnet 17; warning means, display means, AC induced magnetic field-receiving means, a transmitting circuit, an antenna, tag control means to control the above components, and a battery. The tag control means is operable, when the magnetic sensor detects a magnetism, to determine that the hook 13 is attached to the hook holder 14, and output a warning signal.
On the other hand, the control device 20 is installed in a high-place work area to mainly serve as means to define the high-place work area, and comprises AC induced magnetic field-transmitting means for defining the high-place work area by an AC induced magnetic field. Specifically, the AC induced magnetic field transmitting means transmits an AC induced magnetic field to cover the high-place work area. Then, when the AC induced magnetic field is received by the AC induced magnetic field-receiving means of the tag 16, the tag control means determines that the safety harness 10 is located within the high-place work area (a worker wearing the safety harness 10 is located within the high-place work area). In this embodiment, the tag 16 is operable to issue a warning when the AC induced magnetic field-receiving means receives an AC induced magnetic field, and further the magnetic sensor detects a magnetism. In other words, the tag 16 is operable to issue a warning only when the AC induced magnetic field-receiving means receives an AC induced magnetic field (a worker wearing the safety harness 10 is located within the high-place work area) under the condition that the magnetic sensor detects a magnetism (the hook 13 is attached to the hook holder 14).
In this embodiment, the warning is issued from the warning means of the tag 16 in the form of sound and from the display means in the form of light. In addition, a warning signal of the warning is transmitted via the transmitting circuit and the antenna of the tag 16 in the form of radio wave, together with a unique identification number of the rag 16. Then, when an antenna and a receiving circuit of the control device 20 receive the radio wave from the tag 16, device control means of the control device 20 is operable to cause warning means of the control device 20 to issue a warning, and further transmit information about the warning to other device such as a host computer.
As above, according to this embodiment, it becomes possible to determine whether or not the hook 13 of the safety harness 10 is used correctly, without causing complexity in the configurations of the hook 13 and the safety rope 12.
Several modifications of the above embodiment will be shown below.
In the above embodiment, the hook holder 14 is formed in the configuration as illustrated in
Further, in the above embodiment, the hook holder 14 is incorporated in the hook holder section 15. Alternatively, the hook holder 14 may be formed independently. In this case, the tag 16 may be installed adjacent to the hook holder 14 separately.
In the above embodiment, the means to detect whether or not the hook 13 is attached to the hook holder 14 comprises the magnet 17 mounted to the hook 13, and the magnet sensor installed adjacent to the hook holder 14 to serve as means to detect a magnetism of the magnet 17. Alternatively, the means to detect whether or not the hook 13 is attached to the hook holder 14 may comprise a current supply to supply a minute electric current to the hook holder 14, and a sensor installed adjacent to the hook holder 14 to serve as means to detect the current.
Since the hook 15 is generally made of metal, the amount of current flowing through the hook holder 14 varies depending on whether or not the hook 13 is attached to the hook holder 14. Thus, when the current amount detected by the means to detect the current corresponds to that to be detected when the hook 13 is attached to the hook holder 14, it can be determined that the hook 13 is attached to the hook holder 14. As the means to detect the current in the modification (2), the magnetic sensor in the rag 16 illustrated in
In the above embodiment, a high-place work area is defined by an AC induced magnetic field. Alternatively, a high-place work area may be defined by, e.g., a radio wave, instead of an AC induced magnetic field. In this case, the AC induced magnetic field-transmitting means of the control device 20 illustrated in
In a case where a high-place work area covers a wide range, the control device 20 (AC induced magnetic field-transmitting means or radio wave-transmitting means) may be installed plurally.
Number | Date | Country | Kind |
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2020-071878 | Apr 2020 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2021/013239 | 3/29/2021 | WO |