EP3471922B1 - Procédé de blocage d'au moins une machine d'usinage, en particulier d'une machine-outil portative - Google Patents

Procédé de blocage d'au moins une machine d'usinage, en particulier d'une machine-outil portative Download PDF

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Publication number
EP3471922B1
EP3471922B1 EP17729094.7A EP17729094A EP3471922B1 EP 3471922 B1 EP3471922 B1 EP 3471922B1 EP 17729094 A EP17729094 A EP 17729094A EP 3471922 B1 EP3471922 B1 EP 3471922B1
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EP
European Patent Office
Prior art keywords
processing machine
operator
unit
communication unit
external unit
Prior art date
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EP17729094.7A
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German (de)
English (en)
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EP3471922A1 (fr
Inventor
Joachim Schadow
Joern Stock
Florian Esenwein
Anna Heszler
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Robert Bosch GmbH
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Robert Bosch GmbH
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Publication of EP3471922A1 publication Critical patent/EP3471922A1/fr
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25FCOMBINATION OR MULTI-PURPOSE TOOLS NOT OTHERWISE PROVIDED FOR; DETAILS OR COMPONENTS OF PORTABLE POWER-DRIVEN TOOLS NOT PARTICULARLY RELATED TO THE OPERATIONS PERFORMED AND NOT OTHERWISE PROVIDED FOR
    • B25F5/00Details or components of portable power-driven tools not particularly related to the operations performed and not otherwise provided for

Definitions

  • the invention is based on a method for securing at least one processing machine, in particular a portable machine tool, with at least one location parameter of the processing machine being evaluated in at least one method step.
  • the processing machine be enabled in at least one method step as a function of at least one operator-specific parameter.
  • An “operator-specific parameter” is to be understood here in particular as a parameter that can be directly assigned to an operator and / or in particular defines a state of an operator.
  • the operator-specific parameter can be, for example, an operator's vital value (pulse, heart rate, breathing rate, body temperature, fatigue parameter, etc.), an operator's type of exposure (noise exposure, vibration exposure, overload, for example as a result of lifting a heavy object or the like), as a movement parameter of an operator (Acceleration, direction of movement or the like), as an operator position of an operator (local and / or global position or the like), as an operator's level of training, as an operator's ability to work, as an operator's level of knowledge, as an operator's company affiliation, as a work order of a Operator or as another operator-specific parameter that appears useful to a person skilled in the art.
  • an operator's vital value pulse, heart rate, breathing rate, body temperature, fatigue parameter, etc.
  • an operator's type of exposure noise exposure, vibration exposure, overload, for example as a result of lifting a heavy object or the like
  • a movement parameter of an operator Acceler, direction of movement or the like
  • the location parameter of the processing machine can be designed as a local and / or global position of the processing machine, as a distance from the processing machine to an element and / or to a unit or as another location parameter that appears useful to a person skilled in the art.
  • activation of the processing machine should / should be understood here in particular to enable the processing machine to be started up and / or to enable the processing machine to move out of an approved area, in particular as a function of the transmission of electronic data between the processing machine and at least one external Unit.
  • the processing machine or several processing machines can be secured centrally or decentrally so that, for example, the processing machine or several processing machines can only be moved / used in an approved area. It is conceivable that, in at least one method step, at least one workstation is subdivided into areas, in particular virtual areas, which can be stored accordingly in a cloud.
  • the processing machine or the plurality of processing machines preferably has at least one locating unit, which is / are provided to determine a location of the processing machines or the plurality of processing machines.
  • the locating unit can, for example, by means of a global position system and / or by means of a signal link (WLAN, infrastructure element, beacon or the like) determine a location of the processing machines or the multiple processing machines.
  • a workplace is divided into areas by means of physical boundaries, with a data connection between the processing machine or the multiple processing machines and an area monitoring system being established at at least one input / output. If, for example, the processing machine or several processing machines are illegally removed from at least one permitted area, it is conceivable that, for example, an alarm can be triggered or the like.
  • a division of areas into permitted areas and non-permitted areas can be actively performed by an operator, in particular one in operator located at a company headquarters, or passively, in particular automatically.
  • Authorization to remove / start up the processing machine or several processing machines from an approved area / in an approved area can be granted as a result of a release as a result of a data comparison using a data connection between the external unit and the processing machine (s).
  • An operator authorization which can be generated as a function of at least one operator-specific parameter, is preferably stored on the external unit. Allocation and / or allocation of authorizations can, for example, be allocated by a company headquarters and, for example, be dependent on a level of training, a job qualification, a level of knowledge or the like. An operator can only put the processing machine or several processing machines into operation and / or remove them from an approved area if the latter has a corresponding authorization, the authorization being stored in the external unit.
  • the processing machine can be designed as a portable machine tool, as a mobile working device or the like.
  • a “portable machine tool” is to be understood here in particular as a machine tool for machining workpieces that can be transported by an operator without a transport machine.
  • the portable machine tool in particular has a mass that is less than 40 kg, preferably less than 10 kg and particularly preferably less than 5 kg.
  • the portable machine tool can be used, for example, as a drill, cordless screwdriver, circular saw, hammer drill, Be designed as a jigsaw, an electric planer, a chainsaw, a garden tool or the like.
  • the mobile work device can be designed as an autonomous mobile work device (autonomous sweeper, autonomous vacuum cleaner, autonomous swimming pool cleaning machine, autonomous floor mopping robot, autonomous lawn mower or the like) or as a manually operated mobile device (lawn mower, vacuum cleaner or the like).
  • autonomous is to be understood as meaning in particular “independently working”.
  • the external unit can be used as a smartphone, as a personal computer, as a laptop, as a netbook, as a tablet, as a company central computer, as a watch, as an electronic bracelet, as an output unit, such as a speaker, as work clothes, as protective goggles, as a hard hat or as a other external unit that appears sensible to a person skilled in the art can be designed.
  • an app is preferably provided for communication with the communication unit.
  • the external unit can be used as an external, transportable operating unit, as a permanently installed operating unit at an operator's workplace, as a synchronization unit permanently installed in a room at a location that can be controlled from a control center, for example as a result of company specifications / Safety regulations, is designed as a body parameters monitoring unit or as a further central or decentralized operating unit, input station and / or central or decentralized terminal that appears useful to a person skilled in the art.
  • a convenient and safe method for securing at least one processing machine can advantageously be implemented.
  • a high level of operating convenience can advantageously be achieved for activating the processing machine, since in particular automatic activation takes place as a function of at least one operator-specific parameter.
  • a reliable safeguarding of processing machines against use and / or theft by operators without authorization can advantageously be achieved.
  • a transmission of at least one operator-specific parameter by means of one, in particular wireless, data connection takes place between the processing machine and an external unit.
  • the operator preferably wears the external unit on his body, with at least one operator-specific parameter being stored in the external unit, which is individually assigned to the operator, in particular for a clear identification of the operator.
  • the external unit can be designed as a smartband that can be worn on a wrist, as a smartphone or the like.
  • the method is preferably provided for wireless transmission of electronic data between the processing machine and the external unit.
  • wireless transmission should be understood in particular to mean that electronic data are transmitted via an advantageously disembodied information carrier, for example via sound waves, light waves and / or preferably radio waves, in particular decoupled from a physical connection between connection partners, in particular between the processing machine and the external unit.
  • a communication unit in particular a communication unit of each of the connection partners, is automatically activated to transmit the electronic data as a function of a movement parameter of the communication unit, in particular the communication unit of each of the connection partners.
  • a "communication unit for the transmission of electronic data is automatically activated as a function of a movement parameter of the communication unit” is to be understood in particular to mean that the communication unit is automatically activated as a function of a movement parameter of the communication unit, in particular decoupled from a manual activation caused by an operator, such as, for example, by actuating a control element or the like, is at least converted from stand-by mode to active mode, in particular switched.
  • the communication unit is preferably automatically activated as a function of an acceleration value of the communication unit and / or as a function of a change in a local and / or global position parameter of the communication unit, in particular transferred from standby mode to active operation, in particular switched.
  • the communication unit is preferably switched automatically from a standby mode to an active communication mode as a result of a movement of the communication unit, in particular as a result of a movement in space, in particular independently of one manual activation as a result of actuation of a control element by an operator.
  • the communication unit can be activated manually by an operator in at least one method step.
  • the communication unit, in particular the communication unit of each of the connection partners is preferred as a WLAN communication unit, as a Bluetooth communication unit, as a radio communication unit, as an RFID communication unit, as an NFC unit, as an infrared communication unit, as a cellular network communication unit, as a Zigbee -Communication unit o. The like. Formed.
  • the communication unit in particular the communication unit of each of the connection partners, is / is provided for wired and / or wireless transmission of electronic data. Further configurations of the communication unit that appear sensible to a person skilled in the art, in particular the communication unit of each of the connection partners, are also conceivable.
  • the method is preferably carried out with one, in particular each, connection establishment of the at least two connection partners, in particular regardless of whether a connection between the at least two connection partners already existed in the past.
  • an electronic list is kept in which each connection partner is assigned a unique identification, such as by storing an IP address, a MAC address or the like however, it is also conceivable that the method is only carried out by the at least two connection partners when a connection is established for the first time, in particular when pairing is carried out for the first time.
  • a high level of operating convenience can advantageously be achieved.
  • a secure, in particular encrypted, data connection can advantageously be used for transmitting electronic data.
  • an, in particular dynamic, assignment of the processing machine to an operator takes place as a function of a transmission of the at least one operator-specific parameter.
  • the processing machine is assigned to an operator in a monitoring system, so that, for example, a work order to be carried out by the operator can be monitored can be done.
  • a work order to be carried out by the operator can be monitored can be done.
  • the processing machine When an operation of the processing machine is detected at a location that is different from a work location that is assigned to the work order, the processing machine can be secured (switched off or the like), in particular as a result of a data connection with the external unit, with a cloud , with a company headquarters or the like.
  • a high level of security against unauthorized use of a processing machine can advantageously be achieved.
  • At least one contact with the processing machine is taken into account in at least one method step. It is preferably monitored whether an operator who is authorized to operate the machine actually touches / holds the processing machine before it is enabled.
  • the processing machine can in particular have a touch-sensitive operating unit.
  • the presence of a hand of an operator on the operating unit, on a housing unit and / or on a handle unit of the processing machine is preferably monitored.
  • the method according to the invention preferably comprises at least one biometric method step in which, in particular in addition to touch monitoring, at least one fingerprint and / or another biometric parameter of an operator that appears useful to a person skilled in the art is evaluated.
  • the at least one operator-specific parameter be dynamically adapted in at least one method step.
  • the at least one operator-specific parameter can in particular be dependent on a time of day, on a place of work or the like.
  • an adaptation of a user-specific parameter can be carried out via a company headquarters, in particular as a result of a data connection between the external unit and the company headquarters.
  • a company headquarters can be used to adapt an operator-specific one designed as a work order Parameter feasible, in particular as a result of a data connection between the external unit and the company headquarters, with an authorization to enable the processing machine being able to be changed in particular as a function of the dynamic adaptation of the operator-specific parameter.
  • a dynamic adaptation of the user-specific parameter can be carried out.
  • an adjustment of a user-specific parameter designed as a vital sign of an operator can be carried out, in particular as a result of continuous recording and / or monitoring of a vital value by means of the external unit that an operator can wear on the body, with authorization being granted in particular depending on the dynamic adjustment of the user-specific parameter an activation of the processing machine can be changed.
  • a time parameter is evaluated for securing or activating the processing machine.
  • the time parameter can be designed as working time, time, usage time, operating time or the like.
  • the time parameter is preferably evaluated as a result of the transmission of the time parameter from the external unit to the processing machine, the time parameter being specifically assigned to an operator.
  • An evaluation of a time parameter recorded by the processing machine is also alternatively or additionally conceivable. If, for example, an operator has reached a maximum working time (eight hours or the like), the processing machine can be secured or commissioning can be prevented.
  • a processing machine may only be used at certain times in certain areas, so that processing machine can be secured or enabled as a result of an evaluation of the time parameter, in particular depending on a time of day (day, night or the like) it is grateful that, for example, an activation is maintained, should be within a time interval of more than 1 second, preferably more than 2 seconds and particularly preferably more than 10 seconds after a Activation of the processing machine, commissioning and / or movement of the processing machine can be detected. If commissioning and / or a movement is not detected within a time interval of more than 1 second, preferably more than 2 seconds and particularly preferably more than 10 seconds after the processing machine has been activated, the processing machine, for example, is secured again.
  • reliable protection of an operator against overload can advantageously be achieved.
  • a convenient and safe method for securing at least one processing machine can advantageously be implemented.
  • a joint movement of the processing machine and an operator of the processing machine is evaluated in at least one method step.
  • a data connection is maintained or a data connection is disconnected between an external unit that can be worn by an operator on the operator's body and the processing machine, with a backup or retention in particular an activation takes place.
  • the processing machine can be automatically secured. If, for example, an operator moves independently of the processing machine previously assigned to him, the processing machine previously assigned to him is secured so that unauthorized use can be prevented.
  • it is advantageously possible to easily check a correct assignment between the processing machine and an operator of the processing machine are made possible.
  • a reliable assignment of the processing machine to an operator of the processing machine can advantageously be achieved in order to enable reliable security, in particular anti-theft protection.
  • a distance parameter between an operator and the processing machine is evaluated in at least one method step.
  • the distance parameter can be designed as a signal attenuation, as a distance, or as another parameter that appears reasonable to a person skilled in the art. It can advantageously be evaluated whether an authorized user and not an unauthorized operator uses a processing machine, with a distance between the authorized user and the processing machine or a signal attenuation value of the external unit, which is carried on the body by the authorized user, is evaluated. An unauthorized use of a processing machine by an unauthorized operator can advantageously be prevented.
  • an anti-theft function of the processing machine can be deactivated as a function of a stored period of time / a movement that has taken place. If, for example, an operator with an external unit arranged on the body with an operator-specific parameter stored in the external unit approaches the processing machine to enable the processing machine, a communication function in particular is automatically activated, which enables the transmission of electronic data between the external unit and enables the processing machine to be secured or activated.
  • processing machine is moved together with the external unit, for example after activation, a connection is established, with a distance between the external unit and the processing machine being evaluated in order to avoid in particular that the processing machine is enabled by another operator who is later on Away from the processing machine than the operator.
  • a backup or activation of the processing machine can also take place depending on a company affiliation.
  • a processing machine belonging to company X can only be used by an operator who belongs to company X. Securing or activation depending on company affiliation makes sense, especially on large construction sites, since many companies are active there at the same time. Thus, for example, protection against theft or unconscious transport away from the company's own processing machines on a construction site can advantageously be made possible.
  • an, in particular automatic, adaptation of functions of the processing machine takes place at least as a function of the location parameter of the processing machine and of the at least one operator-specific parameter.
  • machine functions of the processing machine can be adapted to operator-specific parameters, such as the operator's level of training, a work order or the like, and to a location.
  • a system for securing at least one processing machine in particular according to a method according to the invention, is proposed.
  • the system according to the invention shown in claim 9, comprises at least the processing machine, in particular a portable machine tool, which has at least one locating unit for determining a location parameter and at least one communication unit for transmitting electronic data.
  • the system according to the invention comprises at least one external unit, which has at least one communication unit for transmitting electronic data, the processing machine being enabled as a function of at least one operator-specific parameter that is generated as a result of a data connection between the processing machine and the external unit to the processing machine can be transmitted.
  • the configuration according to the invention can be advantageous A high level of operating convenience can be realized for activating the processing machine, since in particular automatic activation takes place as a function of at least one operator-specific parameter. A reliable safeguarding of processing machines against use and / or theft by operators without authorization can advantageously be achieved.
  • the method according to the invention and / or the system according to the invention should / should not be restricted to the application and embodiment described above.
  • the method according to the invention and / or the system according to the invention can have a number of individual elements, components and units as well as method steps that differs from a number of individual elements, components, and units as well as method steps mentioned herein.
  • values lying within the stated limits should also be deemed disclosed and can be used as desired.
  • Figure 1 shows a system 36 for securing at least one processing machine 10.
  • the system 36 comprises at least the processing machine 10, which has at least one locating unit 38 for determining a location parameter and at least one communication unit 40 for transmitting electronic data.
  • the processing machine 10 is in the Figure 1 illustrated embodiment designed as a portable machine tool, in particular as an angle grinder. However, it is also conceivable that the processing machine 10 has a different configuration that appears sensible to a person skilled in the art, such as a configuration as a drill, cordless screwdriver, circular saw, hammer drill, jigsaw, electric planer, garden tool, autonomous lawnmower, etc.
  • the processing machine 10 has a configuration which is at least essentially known to a person skilled in the art.
  • the locating unit 38 of the processing machine 10 is designed in particular as a global position locating unit, such as, for example, a GPS locating unit, a GLONASS locating unit, a Galileo locating unit or the like.
  • a global position locating unit such as, for example, a GPS locating unit, a GLONASS locating unit, a Galileo locating unit or the like.
  • the locating unit 38 of the processing machine 10 has a different configuration that appears sensible to a person skilled in the art, such as, for example, a configuration as a WLAN location location unit, a GSM location location unit or the like, by means of which, as a result of a signal transit time measurement or the like A location of the processing machine 10 can be determined.
  • the processing machine 10 comprises at least one arithmetic unit 48, such as a microcontroller or the like, which is provided to record at least one location parameter of the processing machine 10, in particular at least one location parameter recorded by the locating unit 38 of the processing machine 10 the processing machine 10 to evaluate.
  • the at least one recorded location parameter can alternatively or additionally be transmitted to at least one external unit 18, 46 by means of the communication unit 40 of the processing machine 10.
  • the communication unit 40 of the processing machine 10 is designed in particular as a wireless communication unit. However, it is also conceivable that the communication unit 40 of the processing machine 10 is alternatively or additionally designed as a wired communication unit.
  • the processing machine 10 comprises at least one activation unit (not shown in detail here) which is provided to automatically activate the communication unit 40 of the processing machine 10 as a function of at least one movement parameter of the communication unit 40 of the processing machine 10.
  • the system 36 includes at least the external unit 18, which has at least one communication unit 42 for the transmission of electronic data, the processing machine 10 being enabled as a function of at least one operator-specific parameter that is generated as a result of a data connection between the processing machine 10 and the external Unit 18 can be transmitted to processing machine 10.
  • the operator-specific parameter can preferably be stored in a memory unit 44 of the external unit 18, in particular as a result of communication between the external unit 18 and a further external unit 46, such as a cloud, a company headquarters, an area monitoring unit or the like and / or as a result of manual communication Input can be stored in memory unit 44 of external unit 18.
  • the communication unit 42 of the external unit 18 is designed as a wireless communication unit.
  • the communication unit 42 of the external unit 18 is alternatively or additionally designed as a wired communication unit.
  • the external unit 18 comprises at least one activation unit (not shown here) which is provided to automatically activate the communication unit 42 of the external unit 18 as a function of at least one movement parameter of the communication unit 42 of the external unit 18.
  • the external unit 18 can be used as a smartphone, as a personal computer, as a laptop, as a netbook, as a tablet, be designed as a watch, as an electronic bracelet or as another external unit that appears sensible to a person skilled in the art.
  • the external unit 18 is designed as an electronic bracelet.
  • the processing machine 10 and the external unit 18 and / or the further external unit 46 communicate with one another for an exchange of electronic data, in particular wirelessly.
  • the processing machine 10 and the external unit 18 and / or the further external unit 46 are connected to one another in terms of data technology by means of the communication unit 40 of the processing machine 10 and the communication unit 42 of the external unit 18 for the transmission of electronic data.
  • the processing machine 10 and the external unit 18 are connection partners.
  • the computing unit 48 of the processing machine 10 is preferably provided to evaluate the at least one location parameter of the processing machine 10 and to activate or release the processing machine 10 depending on an evaluation of the at least one location parameter of the processing machine 10 and depending on the operator-specific parameter transmitted by the external unit 18 to secure.
  • the operator-specific parameter can preferably be transmitted to the processing machine 10 by means of a wireless data connection between the processing machine 10 and the external unit 18 or between the processing machine 10 and the external unit 18 and the further external unit 46.
  • the processing machine 10 communicates with the further external unit 46 and the processing machine 10 is enabled depending on a transmission of at least one operator-specific parameter from the external unit 18 to the further external unit 46.
  • the at least one operator-specific parameter is preferably dynamically adaptable, in particular as a result of communication between the external unit 18 and the further external unit 46 or as a result of active detection of the at least one operator-specific parameter by means of a detection unit 52 of the external unit 18, such as recording a vital sign of the Operator 22, a load parameter of the operator 22 or the like.
  • the computing unit 48 of the processing machine 10 is preferably provided to assign the processing machine 10 to an operator 22 as a function of a transmission of the at least one operator-specific parameter from the external unit 18, which the operator 22 wears on the body, to the processing machine 10.
  • the further external unit 46 is provided to assign the processing machine 10 to an operator 22 as a function of a transmission of the at least one operator-specific parameter from the external unit 18, which the operator 22 wears on the body, communication between the processing machine 10, the external unit 18 and the further external unit 46 taking place.
  • the processing machine 10 includes, in particular, a touch-sensitive contact surface unit 50 which is provided to detect at least one touch of the operator 22, which can in particular be processed by the computing unit 48 of the processing machine 10.
  • the touch-sensitive contact surface unit 50 is designed in particular as a touch-sensitive operating unit or as a touch-sensitive housing surface of the processing machine 10.
  • the processing unit 48 of the processing machine 10 is preferably provided to take into account at least the presence of a touch of the processing machine 10 by the operator 22 who is wearing the external unit 18 on his body, in particular in order to activate or secure the processing machine 10.
  • the computing unit 48 of the processing machine 10 is provided to evaluate a time parameter for securing or activating the processing machine 10, in particular in order to activate or secure the processing machine 10.
  • the computing unit 48 of the processing machine 10 is provided to evaluate a distance parameter between the operator 22, in particular between the external unit 18 arranged on the operator 22, and the processing machine 10.
  • the computing unit 48 of the processing machine 10 is provided to carry out an, in particular automatic, adaptation of functions of the processing machine 10 at least as a function of the location parameter of the processing machine 10 and as a function of the at least one operator-specific parameter.
  • the further external unit 46 is preferably provided for to specify permissible functions of the processing machine 10 as a function of a local parameter of the processing machine 10, in particular at least as a result of a communication between the processing machine 10 and the further external unit 46.
  • the external unit 18 comprises at least one locating unit 54, which is provided to detect at least one location parameter, such as a movement of the external unit 18, an acceleration of the external unit 18, a local and / or global position of the external unit 18 or the like. , capture.
  • the further external unit 46 is provided to evaluate a common movement of the processing machine 10 and the operator 22 of the processing machine 10, in particular the external unit 18 worn by the operator 22 on the body, in particular as a result of communication between the further external unit 46 and the processing machine 10 and the external unit 18.
  • FIG 2 shows an application example of the system 36 for securing at least one processing machine 10.
  • the operator 22 wears the external unit 18 on his body, in particular on his wrist, in particular an external unit 18 designed as an electronic bracelet, in which at least one operator-specific parameter is stored is.
  • the at least one operator-specific parameter stored in the external unit 18 can be adapted dynamically as a result of communication with the further external unit 46 and / or as a result of recorded parameters of the acquisition unit 52 of the external unit 18.
  • the at least one operator-specific parameter stored in the external unit 18 authorizes the operator 22 to use the processing machine 10.
  • the processing machine 10 is preferably secured so that use or movement from an approved area is prevented.
  • a data connection is established between the external unit 18 and the processing machine 10 external unit 18 and the processing machine 10 transmit electronic data as a result of the data connection.
  • a data connection is established between the processing machine 10 and the further external unit 46.
  • a data connection is established between the external unit 18 and the further external unit 46.
  • the operator 22 can put the processing machine 10 into operation and / or remove it from the permitted area, in particular if an authorization that results from the at least one operator-specific parameter stored in the external unit 18 enables this. If another operator 56 approaches the processing machine 10, who as a result of a user-specific parameter does not have authorization to start up the processing machine 10 and / or to move the processing machine 10 out of an approved area, the processing machine 10 is not enabled (in Figure 2 represented by an unopened lock symbol).
  • Figure 3 shows a division of a workplace into different areas and / or an assignment of authorizations to the different areas of the workplace.
  • the further external unit 46 can be used to subdivide a workplace into different areas and / or to assign authorizations to the different areas of the workplace.
  • the workplace is divided into virtual or physical areas, with each of the areas being assigned different authorizations for using and / or moving processing machines 10.
  • Figure 4 shows a method sequence of a method for securing at least the processing machine 10.
  • the method for securing at least one processing machine 10, in particular a portable machine tool comprises at least one method step 12 in which at least one location parameter of the processing machine 10 is evaluated.
  • the processing machine is enabled in at least one method step 14 10 as a function of the at least one operator-specific parameter.
  • the at least one operator-specific parameter is transmitted by means of an, in particular wireless, data connection between the processing machine 10 and the external unit 18.
  • the processing machine 10 is assigned to an operator 22 as a function of a Transmission of the at least one operator-specific parameter, in particular from the external unit 18 to the processing machine 10.
  • At least one method step 24 at least the presence of contact with the processing machine 10 is taken into account.
  • at least one method step 26 there is a dynamic adaptation of the at least one operator-specific parameter, in particular as a result of communication between the processing machine 10 and the external unit 18 and / or the further external unit 46.
  • a time parameter becomes a backup or an activation the processing machine 10 evaluated.
  • a joint movement of the processing machine 10 and the operator 22 of the processing machine 10 is evaluated.
  • a distance parameter between the operator 22 and the processing machine 10 is evaluated.
  • functions of the processing machine 10 are adapted, in particular automatically, at least as a function of the location parameter of the processing machine 10 and of the at least one operator-specific parameter.

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  • Mechanical Engineering (AREA)
  • Telephone Function (AREA)
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  • Lock And Its Accessories (AREA)

Claims (9)

  1. Procédé permettant de bloquer une machine d'usinage (10), en particulier un outil à moteur portatif, dans lequel, dans une étape de procédé, une grandeur caractéristique de localisation est transmise au moyen d'une unité de communication (40) de la machine d'usinage (10) à une unité de communication (42) d'une unité externe (18, 46), et dans une étape de procédé, une grandeur caractéristique spécifique à l'utilisateur est transmise au moyen de l'unité de communication (42) de l'unité externe (18, 46) à l'unité de communication (40) de la machine d'usinage (10), dans lequel, dans une étape de procédé (12), la grandeur caractéristique de localisation de la machine d'usinage (10) est évaluée, et dans une étape de procédé (14), un déblocage de la machine d'usinage (10) est effectué en fonction de la grandeur caractéristique spécifique à l'utilisateur, caractérisé en ce que dans une étape de procédé, l'unité de communication (40) de la machine d'usinage (10) est activée automatiquement en fonction d'une grandeur caractéristique de mouvement de l'unité de communication (40), et dans une étape de procédé, l'unité de communication (42) de l'unité externe (18, 46) est activée automatiquement en fonction d'une grandeur caractéristique de mouvement de l'unité de communication (42) de l'unité externe (18).
  2. Procédé selon la revendication 1 ou 2, caractérisé en ce que dans une étape de procédé (20), une attribution de la machine d'usinage (10) à un utilisateur (22) est effectuée en fonction de la transmission de la grandeur caractéristique spécifique à l'utilisateur.
  3. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que dans une étape de procédé (24), la présence d'un contact de la machine d'usinage (10) est prise en compte.
  4. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que dans une étape de procédé (26), une adaptation dynamique de la grandeur caractéristique spécifique à l'utilisateur est effectuée.
  5. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que dans une étape de procédé (28), une grandeur caractéristique de temps est évaluée pour bloquer ou débloquer la machine d'usinage (10) .
  6. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que dans une étape de procédé (30), un mouvement commun de la machine d'usinage (10) et d'un utilisateur (22) de la machine d'usinage (10) est évalué.
  7. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que dans une étape de procédé (32), une grandeur caractéristique de distance entre un utilisateur (22) et la machine d'usinage (10) est évaluée.
  8. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que dans une étape de procédé (34), une adaptation, en particulier automatique, des fonctions de la machine d'usinage (10) est effectuée au moins en fonction de la grandeur caractéristique de localisation de la machine d'usinage (10) et de la grandeur caractéristique spécifique à l'utilisateur.
  9. Système comprenant une machine d'usinage (10), en particulier un outil à moteur portatif, et une unité externe (18, 46), la machine d'usinage (10) présentant une unité de localisation (38) pour déterminer une grandeur caractéristique de localisation et une unité de communication (40) pour transmettre des données électroniques, et l'unité externe (18, 46) présentant une unité de communication (42) pour transmettre des données électroniques, dans lequel l'unité de communication (40) de la machine d'usinage (10) transmet la grandeur caractéristique de localisation à l'unité de communication (42) de l'unité externe (18, 46), et l'unité de communication (42) de l'unité externe (18, 46) transmet une grandeur caractéristique spécifique à l'utilisateur à l'unité de communication (40) de la machine d'usinage (10), un déblocage de la machine d'usinage (10) étant effectué en fonction de la grandeur caractéristique spécifique à l'utilisateur, caractérisé en ce qu'une unité d'activation de la machine d'usinage (10) active l'unité de communication (40) de la machine d'usinage (10) en fonction d'une grandeur caractéristique de mouvement de l'unité de communication (40), et une unité d'activation de l'unité externe (18, 46) active automatiquement l'unité de communication (42) de l'unité externe (18, 46) en fonction d'une grandeur caractéristique de mouvement de l'unité de communication (42) de l'unité externe (18).
EP17729094.7A 2016-06-16 2017-06-07 Procédé de blocage d'au moins une machine d'usinage, en particulier d'une machine-outil portative Active EP3471922B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102016210767.4A DE102016210767A1 (de) 2016-06-16 2016-06-16 Verfahren zu einer Sicherung von zumindest einer Bearbeitungsmaschine, insbesondere von einer tragbaren Werkzeugmaschine
PCT/EP2017/063805 WO2017215996A1 (fr) 2016-06-16 2017-06-07 Procédé de blocage d'au moins une machine d'usinage, en particulier d'une machine-outil portative

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EP3471922A1 EP3471922A1 (fr) 2019-04-24
EP3471922B1 true EP3471922B1 (fr) 2020-12-02

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EP (1) EP3471922B1 (fr)
CN (1) CN109562512B (fr)
DE (1) DE102016210767A1 (fr)
WO (1) WO2017215996A1 (fr)

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Publication number Priority date Publication date Assignee Title
US10737300B2 (en) * 2017-06-09 2020-08-11 American International Group, Inc. System and method for monitoring cleaning conditions of facility using cleaning apparatus with tracking feature
DE102018104218A1 (de) * 2018-02-24 2019-08-29 Wanzl Metallwarenfabrik Gmbh System zur Ablaufsteuerung in einem Betriebsbereich
EP3857654A4 (fr) 2018-09-28 2022-06-01 Hubbell Incorporated Outil électrique avec localisation de sertissage

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Publication number Priority date Publication date Assignee Title
EP1533767B1 (fr) * 2003-11-24 2007-01-10 BLACK & DECKER INC. Système de surveillance et de sécurité sans fil pour des biens
DE502005008889D1 (de) * 2005-11-18 2010-03-04 Metabowerke Gmbh Elektrohandwerkzeuggerät und akkupack hierfür
JP2010017129A (ja) * 2008-07-10 2010-01-28 Honda Motor Co Ltd 機器の盗難防止装置
DE102010041309A1 (de) 2010-09-24 2012-03-29 Robert Bosch Gmbh Diebstahlschutzvorrichtung
US9467862B2 (en) * 2011-10-26 2016-10-11 Milwaukee Electric Tool Corporation Wireless tracking of power tools and related devices
DE102012112835A1 (de) * 2012-12-21 2014-06-26 Robert Bosch Gmbh System mit einer zentralen Lizenzverwaltungseinheit und einer Werkzeugvorrichtung
EP2950984A4 (fr) * 2013-02-01 2016-10-05 Husqvarna Ab Outil électrique fournissant des mesures et des indications basées sur l'inertie
US9466198B2 (en) * 2013-02-22 2016-10-11 Milwaukee Electric Tool Corporation Wireless tracking of power tools and related devices
DE102013212003A1 (de) * 2013-06-25 2015-01-08 Robert Bosch Gmbh Handwerkzeugmaschine
US20150136829A1 (en) * 2013-11-20 2015-05-21 Revive Construction LLC Tool enhancements
DE102014208980A1 (de) * 2014-01-27 2015-07-30 Robert Bosch Gmbh Werkzeugmaschinenvorrichtung

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DE102016210767A1 (de) 2017-12-21
CN109562512B (zh) 2022-06-07
CN109562512A (zh) 2019-04-02
EP3471922A1 (fr) 2019-04-24
WO2017215996A1 (fr) 2017-12-21

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