The present invention relates to an adapter for mounting an implement to a working arm of a working machine, the adapter comprising an acentric hole for an axis of an implement attachment and a base element having one or more movement restricting formations. The invention also relates to a method for fixing an implement by using an adapter comprising an acentric hole for an axis of an implement attachment and a base element having one or more movement restricting formations.
Working machines are known in which it is possible to change a working tool to a working arm of the working machine. These kinds of changeable working tools may also be called as implements. Such implements may be coupled to the working arm e.g. by using an implement attachment. The working arm usually comprises two or more axes or other bar-like members (e.g. pins) which can be positioned through holes of two side walls of the implement attachment. One problem with such arrangements is that the holes in the implement attachment are fixed and only fit to working arms for which they have been designed. In other words, such implement attachments fit only such working arms in which the mutual distance between the axes correspond with the mutual distance between the holes in the implement attachment.
Some implement attachments are known in which an adapter may be put into the holes of the two side walls of implement adapter. The adapter comprises an eccentric hole for receiving the axis, wherein the distance between the acentric holes of the adapters may be slightly varied by rotating the adapters in the holes of the implement attachment. For example, the patent U.S. Pat. No. 7,204,656 discloses such arrangement for implement attachments. The arrangement comprises two or more adapters having acentric hole for receiving the axes of the working arm and threaded holes positioned in the circularly near an edge of a base element of the adapter. These threaded holes are for receiving tips of bolts for fixing the adapters to the walls of the implement attachment. Similar holes need also be formed to the walls of the implement attachment so that the bolts can be put through the holes of the walls of the implement attachment and screwed to the threaded holes of the adapter. Such a construction needs accurate machining (i.e. location of the holes in the walls of the of the implement attachment and the threaded holes of the adapters need to be accurately aligned). Furthermore, a relatively large number of bolts are need for fixing and thus there need to be a relatively large number of threaded holes in the adapters and holes in the walls of the implement attachment. Therefore, if the same implement attachment should be fixed to a different working arm in which the distance between the axes is different, at least one pair of the adapters need to be rotated into another position. This requires a lot of unscrewing and screwing work due to the high number of bolts.
WO03069077A1 discloses a connector assembly for attaching an implement to a prime mover having spaced connecting pins, the connector assembly including a pair of spaced plates, each of the plates carrying a first receiver to receive a first of the connecting pins and a second receiver adapted to receive the second of the connecting pins, wherein at least one of the first and second receivers is an adjustable receiver rotatable about an axis and having a transverse bore spaced radially from the axis and rotatable relative thereto, whereby rotation of the adaptable receiver about the axis changes the relative spacing.
The rotatable receiver may be positioned so that the distance between the connecting pins corresponds with the implement. Rotation of the rotatable receiver may be prevented by putting one or more lock pins into a receiver. Axial movement of the rotatable receiver may be prevented by providing a chamfered end at the end of the pin which may receive a lock ring and putting a washer between the lock ring and a side plate of the connector assembly.
This kind of construction has several drawbacks. For example, it may be difficult to remove the lock ring when the distance between the pins need to be changed. It may also be difficult to put the lock ring back when the receivers need to be secured in their place. Moreover, distance between the side plates of the connector assembly is not adjustable, wherein the connector assembly can only be used with implements in which the distance is appropriate.
An aim of the present invention is to provide an improved adapter for an implement attachment in which the above mentioned problems have been reduced or eliminated. The invention is based on the idea that the adapter comprises a base element having one or more movement restricting formations, and that the adapter is tightened with a nut or another corresponding element to an implement attachment. To put it more precisely, the adapter according to the present invention is mainly characterized in that the adapter comprises a shaft having a threading, a nut for tightening the adapter to the implement attachment. The method according to the present invention is mainly characterized in that the method comprises at least:
The adapter according to the present invention provides more efficient and flexible solution for attaching implements to a working machine than the solutions of prior art. The adapter need not be machined so accurately than with prior art solutions. Furthermore, fixing and releasing the adapter is much faster and easier because the adapter itself is constructed in such a way that separate bolts are not needed. It may also be possible to modify an implement attachment in the field to adapt the implement attachment to be used with the adapter according to the present invention because no holes for fixing bolts need to be formed to the implement attachment but only the hole in which the adapter shall be installed suffices.
In the following the present invention will be described in more detail with reference to the appended drawings in which
In the following some examples of the adapter 1 according to the present invention are disclosed in more detail with reference to
In this example the base element has one or more movement restricting formations 1c. In this example embodiments the movement restricting formations 1c are formed as notches at the outer circumference of the base element 1b. One purpose of the movement restricting formations 1c is to prevent or at least restrict the rotation of the adapter 1 in the hole 2b of the wall of the implement attachment 2. There are also other alternatives to implement the movement restricting formations 1c. For example, they can be formed as a protrusion on that surface of the base element 1b which is intended to be placed against the wall of the implement attachment 2. An example of this kind of arrangement is depicted in
The base element 1b has an acentric hole 1e. Due to the acentric position of the hole 1e the adjustment of the distance of the axes 2c can be performed by rotating the base element 1b.
The shaft 1a of the adapter is hollow so that the axis 2c of the implement attachment can be placed through the hollow shaft 1a at least at the location of the hole of the base element. Therefore, the axis can be placed through the hollow shaft 1a and the hole of the base element.
In some embodiments the hole of the base element 1b need not be a through hole. However, the depth of the hole should be enough to receive the axis and provide enough support to the shaft to prevent the shaft dropping out from the hole.
The shaft 1a of the adapter has a threading 1f on the outer surface of the shaft, wherein the adapter 1 can be tightened by using a nut 1d.
In the following the use of the adapter 1 for coupling the implement attachment 2 to a working arm 3 of a working machine is depicted in more detail with reference to
The axes 2c may need to be locked so that they do not drop out through the hole 1e but are properly supported by the holes 1e, i.e. one end of the axis is in the hole 1e of one adapter 1 and the other end of the axis is in the hole of the adapter 1 in the opposite wall 2a of the implement attachment. The locking may be performed e.g. by putting a perforated shoulder (not shown) into a groove of the axis and fastening the perforated shoulder by screwing a screw (not shown) to a threaded hole 1g of the shaft 1a. However, the locking may also be performed by some other appropriate method to prevent the axes falling out from the implement attachment 2.
In some embodiments the implement attachment 2 is not needed but the implement 4 may comprise the elements of the implement attachment 2 for receiving the adapter 1 and the axes 2c.
In the embodiment of
The adapters can be secured to prevent rotational movements of the adapters 1 in the holes by inserting e.g. one or more bolts 5 (illustrated in
If the distance d2 need to be changed e.g. when the implement attachment 2 should be connected to a different work arm 3, the fixing of one or more of the adapters 1 could be released or at least partly released e.g. by unscrewing the nut(s) 1d so that one or more of the adapters could be rotated to a different angular position to decrease or increase the distance d2. After the correct position has been found, the adapters 1 can be tightened e.g. by screwing the nuts 1d.
In some situations it may be necessary to adjust the position of the acentric holes 1e with respect to the work arm 3 and/or the implement attachment 2. In other words, the centres of the acentric holes form a kind of a straight line and the direction of this line with respect to the bottom of the implement attachment 2 can be changed by rotating the adapters 1 in the holes 2b. By this kind of rotation the difference of the distances of the centres of the holes 1e of the adapters 1 from e.g. the bottom of the implement attachment 2 may be changed. This difference of distances is illustrated with the reference e in
In some embodiments the implement attachment 2 can also be adapted to work arms 3 having axes of different lengths. This may be performed e.g. by inserting one, two or more bush rings 6 (
In some embodiments mutual adhesion between the adapter 1 and the implement attachment 2 may be increased by adding a locking ring 7 on the shaft 2a of the adapter so that the locking ring when the adapter is tightened forms a kind of spring force on the wall of the implement attachment 2. Thus, friction between the wall of the implement attachment 2 and the surface of the base element 1b may be increased.
In many embodiments of the adapter 1 of the present invention the friction between the wall of the implement attachment and the surface of the base element (1b) may be so strong that no welding of parts of the adapter 1 to the implement attachment 2 is required.
In some embodiment of the present invention the thickness of the wall 2a of the implement attachment 2 may be different in different embodiments because the nut 1d can be screwed on the threading of the shaft 1a to an appropriate position so that the nut tightens the adapter 1. Therefore, the same adapter 1 may be used with many different kinds of implement attachments 2 provided that the length of the shaft 1a and the threading on the shaft is sufficient for locating the wall 2a between the base element 1b and the nut 1d.
In the examples presented above (and illustrated in more details in
The adapter 1 according to the invention can be used with many kinds of working machines to enable the usage of a broader scope of implements without the need to manufacture the implement specifically to that particular working machine. Some non-limiting examples of such working machines are excavators, diggers, cranes etc.
Number | Date | Country | Kind |
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20125972 | Sep 2012 | FI | national |
Filing Document | Filing Date | Country | Kind |
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PCT/FI2013/050907 | 9/20/2013 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2014/044914 | 3/27/2014 | WO | A |
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Number | Date | Country | |
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20150219135 A1 | Aug 2015 | US |