Apparatus for connecting an appliance/tool and a method therefor
09562346 ยท 2017-02-07
Assignee
Inventors
Cpc classification
Y10T403/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E02F3/3677
FIXED CONSTRUCTIONS
E02F3/3627
FIXED CONSTRUCTIONS
E02F9/2025
FIXED CONSTRUCTIONS
International classification
G06F7/70
PHYSICS
Abstract
The present invention relates to an apparatus for connecting appliances/tools to a tool arm, wherein the apparatus includes: an upper fastening portion (10B) adapted to be supported by a tool arm (2) of a machine; a lower fastening portion (16A) arranged to support at least one appliance/tool (5) to be maneuvered by the machine, wherein the lower fastening portion (16A) has one or more recesses (40,41) arranged to receive corresponding fastening pins (30,31) of the appliance/tool (5) for engagement when connecting the appliance/tool to the apparatus; and at least one locking element (50) arranged to be in a locking position for locking the appliance/tool to the apparatus when the fastening pins are in engagement with the recesses (40,41); wherein the apparatus further includes: at least one first sensor (70) arranged to verify that the locking element (50) occupies a correct locking position; and at least one second sensor (80) arranged to verify correct engagement between the fastening pins (30,31) and the recesses (40,41). The invention also relates to a method.
Claims
1. Apparatus for connecting appliances/tools to a tool arm, wherein the apparatus includes: an upper fastening portion adapted to be supported by a tool arm of a machine; a lower fastening portion arranged to support at least one appliance/tool to be maneuvered by the machine, wherein the lower fastening portion has one or more recesses arranged to receive corresponding fastening pins of the appliance/tool for engagement when connecting the appliance/tool to the apparatus; and at least one locking element arranged to be in a locking position for locking the appliance/tool to the apparatus when the fastening pins are in engagement with the recesses; wherein the apparatus further includes: at least one first sensor arranged to verify that the locking element occupies a correct locking position; and at least one second sensor arranged to verify correct engagement between the fastening pins and the recesses; wherein the apparatus is a combined rotation and tilting device by which the appliance/tool can be rotated around a rotational axis and can be tilted around a tilting axis.
2. Apparatus according to claim 1, further including an elongated rod which is adapted to follow a movement of the locking element so as to verify that the locking element is in the correct locking position.
3. Apparatus according to claim 2, wherein the first sensor is arranged to detect a position of the rod in order to verify that the locking element is in the correct locking position.
4. Apparatus according to claim 3, wherein the first sensor is an inductive sensor arranged to read the conductive structure of the rod.
5. Apparatus according to claim 4, wherein the rod includes a non-conductive portion and a conductive portion.
6. Apparatus according to claim 1, wherein the second sensor (80) is arranged at a bottom region of a recess.
7. Apparatus according to claim 6, wherein the second sensor is an inductive sensor.
8. Apparatus according to claim 6, wherein a third sensor is arranged to detect a movement of the hydraulic cylinder in order to verify that the locking element is in the correct locking position.
9. Apparatus according to claim 1, wherein the locking element is a locking wedge, which is maneuvered with a hydraulic cylinder.
10. An excavator, a forestry machine or a wood treatment machine including at least one apparatus, comprising: an upper fastening portion adapted to be supported by a tool arm of a machine; a lower fastening portion arranged to support at least one appliance/tool to be maneuvered by the machine, wherein the lower fastening portion has one or more recesses arranged to receive corresponding fastening pins of the appliance/tool for engagement when connecting the appliance/tool to the apparatus; and at least one locking element arranged to be in a locking position for locking the appliance/tool to the apparatus when the fastening pins are in engagement with the recesses; wherein the apparatus further includes: at least one first sensor arranged to verify that the locking element (SO) occupies a correct locking position; and at least one second sensor arranged to verify correct engagement between the fastening pins and the recesses; wherein the apparatus is a combined rotation and tilting device by which the appliance/tool can be rotated around a rotational axis and can be tilted around a tilting axis.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) In the following, embodiments of the invention will be described with reference to the annexed drawings:
(2)
(3)
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(5)
(6)
DETAILED DESCRIPTION OF THE INVENTION
(7) In order to fulfil the above aims, the invention concerns an apparatus for connecting appliances/tools to a tool arm. As has been described above, the apparatus includes an upper fastening portion 10B being arranged to be supported by a tool arm 2 of a machine such as an excavator, a forestry machine or a wood treatment machine. The apparatus also includes a lower fastening portion 16A arranged to support at least one appliance/tool 5 to be manoeuvred by the machine. The lower fastening portion 16A has one or more recesses 40, 41 adapted to receive corresponding fastening pins 30, 31 of the appliance/tool 5 for engagement with each other when connecting the appliance/tool to the apparatus. Furthermore there is at least one locking element 15 being arranged to be in a locking position for locking the appliance/tool to the apparatus when the fastening pins are in engagement with the recesses 40, 41. Finally, the apparatus includes a first 70 and second sensor 80. The first sensor 70 is adapted to verify that the locking element 50 occupies the correct locking position and the second sensor 80 is arranged to verify correct engagement between the fastening pins 30, 31 and the recesses 40, 41.
(8) Signals from the sensors can be sent to one or more control units for signal treatment and/or control of the functions of a machine. For example, the received verification signals can lead to one or more indicating devices indicating to an operator/driver of the machine that the appliance is securely connected. The indication devices can be in respect of audible, visual or tactile indication, such as light signals, lamps and by vibrators or combinations thereof. The intention is that sufficient information indicating secure connection of the appliance/tool is communicated to the operator/machine driver, which i.a. prevents erroneous connecting, and reduces machine damages and/or personal injury. By using two sensors arranged according to the present invention, the security level is considerably increased compared to solutions according to previously known art.
(9) Further, the verification signals per se can be used in different control algorithms by a control system, for example for preventing manoeuvring of the appliance/tool if not verification is received or occurred correctly which results in even higher security level, since certain functions of the machine or the apparatus can be blocked if there has been no correct verification. The signals can be sent over suitable communication routes such as over communication busses (for example CAN-bus) or over thread-less transmission. Suitable protocols for such transmission are well known to the person skilled in the art and are for that reason not further discussed in this description. As concerns the control system, it can for example comprise signal entrances, signal exits, processors, memories, control programs etc. which are well known to the person skilled in the art.
(10) From the above it is hereby clarified that suitably electrical signals from the sensors can be communicated over conduits or by thread-less communication to the control panel of the machine over control units such that the operator/driver can receive information for correct action and establish satisfactory result of the connection. Also possibilities of automation with suitable control algorithms are of course at hand with the inventive sensor concept which has been discussed above.
(11) The control is often performed with programmed instructions. These programmed instructions are typically comprised of a computer program, which when it is executed in a computer or control unit results in that the computer/control unit performs the desired control, such as processes/methods according to the present invention. The computer program is usually comprised of a part of a computer program product where the computer program product includes a suitable storing medium with the computer program 109 stored on a suitable storage medium. Said digital storage medium can for example be comprised of any one from the group: ROM (Read-Only Memory), PROM (Programmable Read-Only Memory), EPROM (Erasable PROM), Flash memory, EEPROM (Electrically Erasable PROM), a hard disc unit, etc., and be arranged in or in connection with the control unit, wherein the computer program is executed by the control unit.
(12) It is further understood that many different types of sensor means or detector means can be used within the scope of the invention. Also electrical switches can comprise position sensors.
(13) According to an embodiment of the invention, the apparatus is a combined rotation and tilting device by which the appliance/tool can be rotated around a rotation axis and be tilted around a tilting axis.
(14) According to another embodiment of the invention, the apparatus includes an elongated rod 60, which is arranged to follow a movement of the locking element 50 for verifying that the locking element 50 is in the correct locking position. Such a rod is shown in the
(15) Preferably the first sensor 70 is an inductive sensor/detector arranged to read the conductive construction or structure of the rod 60, which is the reason that the rod has a non-conductive portion and a conductive portion. This is illustrated in the
(16)
(17) Alternatively the rod 60 can be made from a metal or any other conductive material with a metal free zone/portion at a desired indicating position. Thereby the system can receive a continuous sensor signal except at correct locking position, whereby the correct function of the sensor can be continuously verified by the control system.
(18) According to a further embodiment of the invention, the second sensor 80 is arranged at a bottom part of recess as is shown in
(19) As is shown in the
(20) In the embodiment where the apparatus includes a locking wedge and a hydraulic cylinder described above, the apparatus can also include a third sensor for verification, which, however, is not shown in the annexed figures. The third sensor is arranged to detect a movement of the hydraulic cylinder in order to verify that the locking element (50) is in the correct locking position. Thereby is provided still a further sensor in order to verify correct connection.
(21) It should be clear that the components/portions/elements shown in this description, within the scope of the inventive idea, can of course be exchanged to functional equivalent components/portions/elements. The invention is thus not limited to the shown and described embodiments, and amendments, modifications and additions are thus possible within the scope of the protection of the following claims.