The present invention relates to a front loader and to a working machine having the front loader.
A front loader disclosed in Japanese Patent Application Publication No. 2017-106180 (Patent Document 1) is previously known.
The front loader disclosed in Patent Document 1 includes an attachment mechanism that is detachably attached to a vehicle body of a tractor. The attachment mechanism includes engaged members provided on the left side and right side of the vehicle body and engaging members provided on the left side and right side of the front loader. The engaging members are engaged with the engaged members, and thereby the front loader is attached to the vehicle body.
However, when the vehicle body is inclined with respect to the front loader (for example, when the front loader keeps a horizontal posture but the left side and right side of the vehicle body have heights different from each other, or the vehicle body keeps a horizontal posture but the left side and right side of the front loader have heights different from each other), it will be difficult to smoothly engage the engaging members with the engaged members on both of the left side and the right side. Thus, there has been a problem that it takes much time for the attaching of the front loader.
In view of the above-mentioned problems, the present invention intends to provide a front loader configured to be easily attached to a vehicle body even when the vehicle body is inclined with respect to the front loader, and provide a working machine having the front loader.
To solve the problem mentioned above, the present invention employs the following technical means.
A front loader according to an aspect of the present invention includes a boom, a main frame attached to a vehicle body, a sub frame supporting the boom and being detachably attached to the main frame. The front loader includes a receiving tool provided on the main frame a cylindrical shaft provided on the sub frame and configured to be engaged with the receiving tool when attaching the sub frame to the main frame, a protruding portion protruding from the main frame and configured to guide the cylindrical shaft to be engaged with the receiving tool, and a coupling plate provided on the sub frame, the coupling plate having an opening through which the protruding portion is inserted when the cylindrical shaft is engaged with the receiving tool. The protruding portion protrudes forward from the main frame in a front-rear direction of the vehicle body.
A working machine according to an aspect of the present invention includes the front loader according to the aspect of the present invention, and includes the vehicle body supporting the front loader.
Hereinafter, an embodiment of the present invention will be described with reference to the drawings.
<Working Machine>
In the explanations described below, a front side of the operator seated on the operator seat 5 of the tractor (working machine) 1 (a left side in
The tractor 1 includes a vehicle body 2 and a traveling device 3.
An operator seat 5 is arranged on an upper portion of the vehicle body 2. A bonnet 6 is arranged on a front portion of the vehicle body 2. An engine or the like is housed inside the bonnet 6. A clutch housing, a transmission case 4 and the like are arranged on a rear portion of the vehicle body 2. The traveling device 3 has a front wheel 3F arranged on the front portion of the vehicle body 2 and has a rear wheel 3R arranged on the rear portion of the vehicle body 2.
A front loader 7 is attached to the vehicle body 2. The front loader 7 is supported by the front portion of the vehicle body 2. The front loader 7 will be described below.
<Front Loader>
As shown in
The attachment frame 8 includes a left frame 8L and a right frame 8R. Each of the left frame 8L and the right frame 8R has an attachment plate 13, a support body 14, a main frame 15, and a sub frame 16.
The attachment plate 13 is configured to be attached to the left side of the vehicle body 2, and another attachment plate 13 is configured to be attached to the right side of the vehicle body 2. The attachment plate 13 of the left frame 8L is configured to be attached to the left side of the vehicle body 2. The attachment plate 13 of the right frame 8R is configured to be attached to the right side of the vehicle body 2. The support body 14 protrudes outward from the attachment plate 13 arranged on the left and the attachment plate 13 arranged on the right, respectively.
The main frame 15 has a flat plate shape, and is provided extending upward in the machine outward direction from the end portion of the support body 14 arranged on the left and the end portion of the support body 14 arranged on the right. As shown in
The sub frame 16 is attached to the main frame 15. The sub frame 16 can be attached to and detached from the main frame 15. The sub frame 16 extends upward from the main frame 15 under a state where the sub frame 16 is attached to the main frame 15 (see
As shown to
As shown in
As shown in
The boom 9 is provided with a stand 20. The stand 20 is arranged on the left boom 9L, and another stand 20 is arranged on the right boom 9R, respectively. The stand 20 arranged on the left extends in the front-rear direction below the left boom 9L. The stand 20 arranged on the right extends in the front-rear direction below the right boom 9R.
The stand 20 is configured to be turned upward or downward around a pivot shaft arranged at the front portion.
As shown in
As shown in
As shown in
<Attachment Detachment Structure of Front Loader>
As shown in
Hereinafter, referring mainly to
Although
As shown in
As shown in
An inclining surface 37 is provided in front of the notched portion 31. The inclining surface 37 linearly extends forward from the upper end of the second edge 31c2. The inclining surface 37 is gradually shifted downward as the inclining surface 37 separates away from the upper end of the second edge 31c2 (as it extends forward).
The receiving tool 32 is a plate material bent in a J-shape in a side view. The receiving tool 32 is arranged along the arc portion 31a and the inclining portion 31b of the notched portion 31. As shown in
The upper surface (a surface opposite to the surface facing the notched portion 31) of the receiving tool 32 has an arc portion 32a and an inclining portion 32b. The arc portion 32a is formed in an arc shape convex downward. The inclining portion 32b extends obliquely upward and backward from the upper end of the arc portion 32a on the rear side. The front portion of the arc portion 31a extends upward, and the second edge portion 31c2 is located on the extension line of the front portion.
The lower surface of the receiving tool 32 is supported by the notched portion 31 and the support plate 36. The support plate 36 is fixed to both of the left surface and the right surface of the main frame 15. The upper surface of the support plate 36 has a shape spreading along the lower surface of the receiving tool 32. The support plate 36 supports the lower surface of the receiving tool 32 at the portion protruding leftward and rightward from the notched portion 31.
As shown in
As shown in
The above-mentioned shape of the first engaging portion 30 and the above-mentioned shape of the second engaging portion 41 may be replaced by each other. That is, the first engaging portion 30 may serve as the shaft, and the second engaging portion 41 may serve as the notch. In other words, the main frame 15 may be provided with the shaft, and the sub frame 16 may be provided with the notch.
As shown in
In addition, although it is preferred that the sub frame 16 is provided with the guide pin 42 mentioned above, it is not necessary to provide the guide pin 42. Furthermore, the sub frame 16 may be provided with a guide protrusion instead of the guide pins 42, the guide protrusion having the function same as the function of the guide pins 42.
As shown in
The guide portion 33 is a protruding portion that protrudes forward from the main frame 15 (toward the front in a vehicle longitudinal direction). Hereinafter, the guide portion 33 may be referred to as a protruding portion 33. The guide portion 33 protrudes diagonally upward and forward from the upper portion of the main frame 15. The width of the guide portion 33 in a side view is gradually narrowed from the base end side (the root side) in the protruding direction toward the tip end side. In the case of the present embodiment, the guide portion 33 has a trapezoidal shape in the side view, but may have a triangular shape in the side view.
The guide portion 33 is arranged below the boss 15a. The guide portion (the protruding portion) 33 is arranged above the first engaging portion 30. The guide portion 33 is arranged backward of the inclining surface 37. The tip of the guide portion 33 is located above the notched portion 31.
As shown in
The lower surface 33a is a guide surface to which the guide pin 42 contacts and moves on the surface when the sub frame 16 relatively moves with respect to the main frame 15. Hereinafter, the lower surface 33a of the guide portion (protruding portion) 33 may be referred to as a guide surface 33a. Both of the second engaging portion 41 and the guide pin 42 are arranged on the sub frame 16, and thus the second engaging portion 41 also moves in synchronization with the movement of the guide pin 42 (the relative movement with respect to the main frame 15). In particular, the guide pin 42 moves contacting to the lower surface 33a of the guide portion 33, and thereby the second engaging portion 41 moves in a direction of engagement with the first engaging portion 30 (diagonally backward and downward).
As shown in
The front surface 33c of the guide portion 33 is inclined gradually shifting backward as the first surface 33c extends upward. The front surface 33c and the upper surface 33b are continuous through smooth curved surface, and the front surface 33c and the lower surface 33a are also continuous through smooth curved surfaces. Moreover, in the case where the protruding part 33d is provided, it is preferable to provide the front end of the bulging portion 33d so as to be continuous with the front surface 33c.
As shown in
The concave portion 34 is recessed diagonally backward and downward. The width of the inlet of the concave portion 34 is larger than the diameter of the guide pin 42. The concave portion 34 catches the guide pin 42 when the second engaging portion 41 is engaged with the first engaging portion 30 (see
The concave portion 34 and the first engaging portion 30 are communicated with each other by the communication portion 35. The communication portion 35 allows the lower end of the concave portion 34 and the upper edge of the first engaging portion 30 to be communicated with each other. The communication portion 35 is inclined shifting forward as the communication portion extends downward. The surface of the inclining portion 32b of the receiving tool 32 is arranged on an extension of the lower portion of the communication portion 35.
As shown in
As shown in
The second engaging portion (a shaft) 41 is fixed to the coupling plate 43. The second engaging portion 41 is fixed to the lower portion of the coupling plate 43 (the lower portion of the first portion 43a). An opening portion 44 is formed in the coupling plate 43. That is, the coupling plate 43 is an opened member in which the opening portion 44 is formed. In other words, the opened member in which the opening portion 44 is formed is the coupling plate 43 that connects the inner sub frame 16A to the outer sub frame 16B. Hereinafter, the coupling plate 43 may be referred to as the opening member 43.
The opening portion 44 is formed in the first portion 43a. The opening portion 44 is formed such that the length of the lower portion (a lower edge) 44a is wider than the length of the upper portion (an upper edge) 44b. The length of the lower portion 44a of the opening portion 44 and the length of the upper portion 44b of the opening portion 44 are both longer than the length of width (thickness) of the guide portion 33. In the case of the present embodiment, the opening portion 44 is formed in a trapezoidal shape. However, the shape of the opening portion 44 is not limited to the trapezoidal shape, and may be rectangular or square.
A guide portion 33 described later is inserted into the opening portion 44 (see
In the process of attaching the sub frame 16 to the main frame 15, the edges (the upper edge 44a and the lower edge 44b) of the opening portion 44 is contacted to the protruding portion 33 and thereby guides the movement of the sub frame 16 in the direction of insertion of the protruding portion 33 (in the direction in which the protruding portion 33 is inserted to the opening portion).
Meanwhile, the guide portion 33 and the opening portion 44 are arranged on each of the left frame 8L and the right frame 8R. However, the movement of the protruding portion 33 is guided when at least the guide portion 33 arranged on the left or the right is contacted to the edge portion of the opening portion 44.
The opening portion 44 is arranged above the second engaging portion 41. The guide pin 42 is arranged on the edge portion of the opening portion 44. In the present embodiment, the guide pin 42 is fixed along the lower edge 44a of the opening portion 44. However, the guide pin 42 may be fixed along the upper edge 44b of the opening portion 44. The length of the guide pin 42 is longer than the length of the lower edge 44a of the opening portion 44.
When the second engaging portion 41 is engaged with the first engaging portion 30 (when the sub frame 16 is attached to the main frame 15), the first portion 43a of the coupling plate 43 is in contact with the coupling portion 35 of the main frame 15 (see
As shown in
As shown in
As shown in
As shown in
As shown in
The hook 52 is supported by a lateral shaft 55 extending in the machine width direction, and is configured to be rotated around the lateral shaft 55. The hook 52 is configured to be moved (turned) between an engaged position (the position indicated by a solid line in
The hook 52 is pushed by the biasing member (a spring) 53 in a direction (downward) toward the engaged position. An operating lever 54 is connected to the hook 52. The operation lever 54 is arranged at a position where an operator seated on the operator seat 5 can operate the operation lever 54. When the operation lever 54 is grasped and is operated upward (in the direction indicated by an arrowed line A1 in
The attachment detachment structure of the front loader mentioned above is identically employed in the left frame 8L side and in the right frame 8R side. In this manner, the shapes and structures of the components of the main frame 15 and the shapes and structures of the components of the sub frame 16 arranged on the left frame 8L side is similar to the shapes and structures of components arranged on the right frame 8R side, (the components of the main frame 15 including the first engaging portion 30, the guide portion 33, the concave portion 34, and the like), and (the components of the sub frame 16 including the second engaging portion 41, the guide pin 42, the opening portion 44, and the like).
In addition, under the state where the front loader 7 is attached to the vehicle body 2, positions of the components of the main frame 15 and positions of the components of the sub frame 16 arranged on the left frame 8L side is similar to the positions of components arranged on the right frame 8R side with respect to the vehicle body 2 in the longitudinal direction and the vertical direction, (the components of the main frame 15 including the first engaging portion 30, the guide portion 33, the concave portion 34, and the like), and (the components of the sub frame 16 including the second engaging portion 41, the guide pin 42, the opening portion 44, and the like).
<How to Attach and Detach the Front Loader>
The method of attaching and detaching the front loader 7 will be described below.
First, mainly referring to
When the vehicle body 2 travels forward and the hydraulic cylinders (the boom cylinder 11 and the bucket cylinder 12) are stretched and shortened from the initial state shown in
Mainly referring to
First, as shown in
Then, as shown in
Next, as shown in
Here, in the case where the vehicle body 2 is inclined with respect to the front loader 7, one of the guide portion 33 on the left side and the guide portion on the right side contacts to the edge portion of the opening portion 44. However, the other may be free from the contact. Even in that case, the movement of the guide portion 33 is guided by the edge portion 44 of the opening portion 44 when at least one of the guide portion 33 on the left and the guide portions 33 on the right contacts to the edge portion of the opening portion 44, and thus both of the guide portions 33 can be surely inserted into the opening portion 44.
Then, as shown in
In the transition process from the state of
In the transition process from the state of
In the state shown in
As described above, according to the front loader 7 of the present embodiment, the guide portion 33 is inserted into the opening portion 44 of the coupling plate (the opening member) 43, and thereby the second engaging portion 41 is guided in the direction of being engaged with the first engaging portion 30. In addition, the movement of the guide pin 42 is guided by the guide portion 33 arranged on the main frame 15, and thereby the second engaging portion 41 is guided in the direction in which the second engaging portion 41 is engaged with the first engaging portion 30. In other words, the guide portion 33 is inserted into the opening portion 44 and guides the movement of the guide pin 42, and thereby the position of the second engaging portion 41 in the vertical direction is adjusted in the direction of approaching the first engaging portion 30.
In this manner, even in the case where the vehicle body 2 is inclined with respect to the front loader 7 (for example, when the ground surface G1 of the front loader 7 is inclined with respect to the ground surface G2 of the traveling device 3 as shown in
The fact that the front wheels 3F on the left side and the right side are different in height in
In the case where the front loader 7 is detached from the vehicle body 2, the operation lever 54 is operated upward against the biasing force of the biasing member 53, and thereby the hook 52 is moved from the engaged position to the detached position. As the result, the sub frame 16 can be detached from the main frame 15. Subsequently, the hydraulic cylinder is stretched and shortened and the vehicle body 2 is moved (in place of the forward traveling, the backward traveling is performed) in the reversed procedure of the above-mentioned attachment method. In this manner, the engagement between the second engaging portion 41 and the first engaging portion 30 can be released, and then the front loader 7 can be detached from the vehicle body 2.
<Effect>
The effects provided by the front loader 7 and the working machine 1 according to the above-described embodiment will be described below.
The front loader 7 includes the boom 7, the main frame 15 attached to the vehicle body 2, the sub frame 16 supporting the boom 9, the sub frame 16 being attached to the main frame 15 and configured to be detached from the main frame 15. The front loader 7 further includes the first engaging portion 30 provided on the main frame 15, the second engaging portion 41 provided on the sub frame 16 and configured to be engaged with the first engaging portion 30 when the sub frame 16 is attached to the main frame 15, the guide portion 33 provided on the main frame 15 and configured to guide the second engaging portion 41 to be engaged with the first engaging portion 30, and the opening member 43 provided on the sub frame 16 and provided with the opening portion 44 to which the guide portion 33 is inserted when the second engaging portion 41 is engaged with the first engaging portion 30.
According to that configuration, the guide portion 33 arranged on the main frame 15 is inserted into the opening portion 44 provided on the sub frame 16 side, and thereby the second engaging portion 41 is led to the engagement with the first engaging portion 30. In this manner, even when the vehicle body 2 is inclined with respect to the front loader 7, the second engaging portion 41 is led to the engagement with the first engaging portion 30 on both of the left side and the right side. As the result, the second engaging portion 41 can be surely engaged with the first engaging portion 30, and the front loader 7 can be easily attached to the vehicle body 2.
Further, the guide portion 33 is a protruding portion protruding forward from the main frame 15 in the front-rear direction of the vehicle body 2.
According to that configuration, when the main frame 15 moves forward to the sub frame 16, the guide portion (the protruding portion) 33 provided on the main frame 15 can be easily inserted to the opening portion 44 arranged on the sub frame 16 side.
Further, an edge portion of the opening portion 44 provided in the opening member 43 contacts to the protruding portion 33 and thereby guides the protruding portion 33 to be moved in an insertion direction of the protruding portion 33 in a process for attaching the sub frame 16 to the main frame 15.
According to that configuration, the protruding portion 33 is guided by the edge portion of the opening portion 44 so as to move in the direction of being inserted into the opening portion 44 in the process of attaching the sub frame 16 to the main frame 15, thus the protruding portion 33 can be inserted into the opening portion 44 easily and reliably.
Further, the protruding portion 33 is arranged above the first engaging portion 30 and has the lower surface 33a that extends backward gradually inclining downward.
According to that configuration, the sub frame 16 provided with the opening member 43 can be guided so as to be shifted downward by the inclination of the lower surface 33a of the protruding portion 33 as the opening member 43 extends backward, in the process of inserting the protruding portion 33 into the opening portion 44. As the result, the second engaging portion 41 is surely guided to the engagement with the first engaging portion 30.
Also, the sub frame 16 has the inner sub frame 16A, and the outer sub frame 16B arranged opposed to the inner sub frame 16A. The opening member 43 is a coupling plate coupling the inner sub frame 16A to the outer sub frame 16B.
According to that configuration, the strength of the sub frame 16 can be improved by the coupling plate (the opening member) 43. In addition, the opening portion 44 can be formed by using the coupling plate 43 that couples the inner sub frame 16A to the outer sub frame 16B, and the movement of the protruding portion 33 can be guided by the opening portion 44.
In addition, the front loader 7 includes the guide pin 42 provided on an edge portion of the opening portion 44 and configured to contact to the guide portion 33 and thereby to relatively move with respect to the main frame 15 in a process for attaching the sub frame 16 to the main frame 15.
According to that configuration, the guide pin 42 provided at the edge portion of the opening portion 44 moves in contact with the guide portion 33, and thereby the guide portion 33 can be surely guided to the opening portion 44.
Also, the guide pin 42 is fixed along the lower edge 44a of the opening portion 44 of the coupling plate 43.
According to that configuration, when the guide pin 42 is guided and moved by the guide portion 33, the guide portion 33 can be guided by the lower edge 44a and surely guided to the opening portion 44.
Also, the guide pin 42 is fixed along the upper edge 44b of the opening portion 44 of the coupling plate 43.
According to that configuration, when the guide pin 42 is guided and moved by the guide portion 33, the guide portion 33 can be guided by the upper edge 44b and surely guided to the opening portion 44.
Further, the opening portion 44 includes an upper portion, and a lower portion having a width wider than a width of the upper portion.
According to that configuration, the guide portion 33 can easily and reliably enter the opening portion 44 from the wide lower portion side, and the upper portion with the narrow width appropriately positions the guide portion 33 in the machine width direction.
In addition, the second engaging portion 41 is fixed to the coupling plate 43.
According to that configuration, the second engaging portion 41 and the coupling plate 43 can be integrated, and thereby the rigidity of the second engaging portion 41 and the coupling plate 43 can be improved.
In addition, the main frame 15 has a concave portion 34 configured to hold the guide pin 42 when the second engaging portion 41 is engaged with the first engaging portion 30.
According to that configuration, the guide pin 42 can be retracted to a position (the concave portion 34) that does not interfere with the engagement between the second engaging portion 41 and the first engaging portion 30. The second engaging portion 41 and the first engaging portion 30 can be surely engaged with each other by holding the guide pin 42 in the concave portion 34.
In addition, the front loader 7 includes the guide pin 42 provided on an edge portion of the opening portion 44 and configured to contact to the guide portion 33 and thereby to relatively move with respect to the main frame 15 in a process for attaching the sub frame 16 to the main frame 15. The main frame 15 has the concave portion 34 configured to hold the guide pin 42 when the second engaging portion 41 is engaged with the first engaging portion 30, the concave portion 34 being provided on an extended line of the lower surface 33a of the protruding portion (the guide portion) 33.
According to that configuration, the guide pin 42 moves along the lower surface 33a of the protruding portion (guide portion) 33, and the guide pin 42 can be surely guided to the recessed portion 34.
A working machine 1 includes the front loader described above, and the vehicle body 2 supporting the front loader 7.
According to that configuration, it is possible to provide the working machine 1 configured to easily attach the front loader 7 to the vehicle body 2 even when the vehicle body 2 is inclined with respect to the front loader 7.
In the above description, the embodiment of the present invention has been explained. However, all the features of the embodiment disclosed in this application should be considered just as examples, and the embodiment does not restrict the present invention accordingly. A scope of the present invention is shown not in the above-described embodiment but in claims, and is intended to include all modifications within and equivalent to a scope of the claims.
This is a continuation application of U.S. patent application Ser. No. 16/353,435, filed Mar. 14, 2019. The entire disclosure of the above-identified application, including the specification, drawings, and claims thereof, is herein incorporated by reference in its entirety.
Number | Name | Date | Kind |
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20050111952 | Westendorf et al. | May 2005 | A1 |
20150093227 | Faivre | Apr 2015 | A1 |
20180327998 | Torii et al. | Nov 2018 | A1 |
Number | Date | Country |
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3 211 142 | Aug 2017 | EP |
2 044 724 | Oct 1980 | GB |
2005016023 | Jan 2005 | JP |
2017-106180 | Jun 2017 | JP |
Entry |
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Extended European Search Report dated May 28, 2020 in European Patent Application No. 20159940.4. |
Number | Date | Country | |
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20210040709 A1 | Feb 2021 | US |
Number | Date | Country | |
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Parent | 16353435 | Mar 2019 | US |
Child | 17078635 | US |