BOX-SHAPED STRUCTURE FOR WORK MACHINE
20200291600 ยท 2020-09-17
Inventors
- Nobuyasu SUGIHARA (Minato-ku, Tokyo, JP)
- Yuki NAKATANI (Minato-ku, Tokyo, JP)
- Shinpei UTOU (Minato-ku, Tokyo, JP)
- Kouji SHINKAWA (Minato-ku, Tokyo, JP)
- Satoru KUBOTA (Minato-ku, Tokyo, JP)
- Shuhei WATANABE (Minato-ku, Tokyo, JP)
- Tooru TSUJI (Minato-ku, Tokyo, JP)
- Kazuo TAKAHASHI (Minato-ku, Tokyo, JP)
- Kenji SANADA (Minato-ku, Tokyo, JP)
Cpc classification
E02F3/422
FIXED CONSTRUCTIONS
E02F3/382
FIXED CONSTRUCTIONS
E02F9/0808
FIXED CONSTRUCTIONS
E02F3/38
FIXED CONSTRUCTIONS
International classification
Abstract
A boom includes a body and a base end bracket. The body includes a straight section and a wide section. When viewed from above, a width of the straight section is substantially constant. When viewed from above, a width of the wide section increases toward the base end bracket. The straight section and the wide section are smoothly continuous to each other.
Claims
1. A box-shaped structure for a work machine, comprising: a body extending in a longitudinal direction; and a bracket connected to one end of the body, the body including a straight section and a wide section, the straight section having a substantially constant width when viewed from above, and the wide section being connected to the bracket and having a width that increases toward the bracket when viewed from above, and the straight section and the wide section being smoothly continuous to each other.
2. The box-shaped structure for a work machine according to claim 1, wherein the body is formed of a top plate, a bottom plate, a first side plate and a second side plate; the bracket includes a first abutment surface that abuts against the first side plate and a second abutment surface that abuts against the second side plate; and each of the first abutment surface and the second abutment surface is angled with respect to the longitudinal direction of the body.
3. The box-shaped structure for a work machine according to claim 1, wherein the body has a center boss centrally located in the longitudinal direction; the bracket has an end boss; the straight section is smoothly continuous to the wide section at a predetermined position between the center boss and the end boss; and a ratio of a first interval between a center axis of the center boss and the predetermined position to a second interval between a center axis of the end boss and the predetermined position is from 1:1 to 4:1.
4. A method of manufacturing a box-shaped structure for a work machine, comprising: placing a first side plate and a second side plate on a bottom plate; pushing one end portion of the first side plate and one end portion of the second side plate outward using a lining; sandwiching and fixing a bracket between the one end portion of the first side plate and the one end portion of the second side plate; and fixing a top plate on top of the first side plate and the second side plate.
5. The box-shaped structure for a work machine according to claim 2, wherein the body has a center boss centrally located in the longitudinal direction; the bracket has an end boss; the straight section is smoothly continuous to the wide section at a predetermined position between the center boss and the end boss; and a ratio of a first interval between a center axis of the center boss and the predetermined position to a second interval between a center axis of the end boss and the predetermined position is from 1:1 to 4:1.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
DESCRIPTION OF EXEMPLARY EMBODIMENTS
[0019] Configuration of Hydraulic Excavator 1
[0020]
[0021] The hydraulic excavator 1 includes a traveling body 10, a turning body 11, a counterweight 12, an engine compartment 13, a device compartment 14, a cab 15 and a work machine 16.
[0022] The traveling body 10 has a pair of track pads that are rotatable independently of each other. The turning body 11 is turnably disposed on the traveling body 10. The turning body 11 provides a vehicle body frame of the hydraulic excavator 1.
[0023] The counterweight 12 is disposed on a rear end portion of the turning body 11. The engine compartment 13 is disposed on the turning body 11. The engine compartment 13 is disposed on the turning body 11 in front of the counterweight 12. The engine compartment 13 houses an engine, an exhaust gas processing device and other components. The device compartment 14 is disposed on the turning body 11 in front of the engine compartment 13. The device compartment 14 houses a hydraulic pump, a fuel tank, a working fluid tank and other components. The cab 15 is disposed on the turning body 11 in front of the device compartment 14. The cab 15 is provided with a driver's seat where an operator sits.
[0024] The work machine 16 is mounted in a vertically swingable manner on the turning body 11 in front of the device compartment 14 and to the right of the cab 15. The work machine 16 includes a boom 17, an arm 18, a bucket 19, a pair of boom cylinders 20, an arm cylinder 21 and a bucket cylinder 22. The boom 17 is an example of the box-shaped structure for a work machine.
[0025] A base end portion of the boom 17 is swingably mounted to the turning body 11. A tip end portion of the boom 17 is swingably mounted to a base end side bracket 18b. A base end portion of the arm 18 is mounted to the base end side bracket 18b. The bucket 19 is swingably mounted to a bucket bracket 18a that is provided on a tip end portion of the arm 18.
[0026] Both boom cylinders 20 drive the boom 17. The boom cylinders 20 are linked to the turning body 11 and a center boss CB of the boom 17. The arm cylinder 21 drives the arm 18. The bucket cylinder 22 drives the bucket 19.
[0027] Configuration of Boom 17
[0028] A configuration of the boom 17 according to this embodiment is described with reference to the figures.
[0029] The boom 17 includes a body 30, a base end bracket 31 and an arm bracket 32. The base end bracket 31 is an example of a bracket in this embodiment.
[0030] The body 30 extends in a longitudinal direction. The body 30 has a boomerang-like shape when viewed from the side. The body 30 is a hollow tube. The body 30 forms a box shape with a top plate 33, a bottom plate 34, a first side plate 35 and a second side plate 36.
[0031] The first side plate 35 and the second side plate 36 are disposed with a predetermined clearance therebetween. A rear end portion of the first side plate 35 is deformed so as to expand outward. Similarly, a rear end portion of the second side plate 36 is deformed so as to expand outward. A center boss CB that extends in a width direction is attached to the first side plate 35 and the second side plate 36. The center boss CB is located substantially at the center of the body 30.
[0032] The top plate 33 is disposed so as to cover a top opening of a space formed between the first side plate 35 and the second side plate 36. The bottom plate 34 is disposed so as to cover a bottom opening of the space formed between the first side plate 35 and the second side plate 36.
[0033] The base end bracket 31 is connected to a rear end of the body 30. The base end bracket 31 is provided with an end boss EB that extends in the width direction. The base end bracket 31 may be an ingot that is formed by casting a metal material.
[0034] The arm bracket 32 is connected to a front end of the body 30. The arm bracket 32 is provided with an arm mounting hole 32a. The arm 18 (see
[0035] Configuration of Body 30
[0036] A configuration of the body 30 is described with reference to
[0037] The body 30 includes a straight section 30a and a wide section 30b. The straight section 30a is formed of front side portions of each of the top plate 33, the bottom plate 34, the first side plate 35 and the second side plate 36. The wide section 30b is formed of rear side portions of each of the top plate 33, the bottom plate 34, the first side plate 35 and the second side plate 36.
[0038] The straight section 30a is continuous to the wide section 30b at a predetermined position LP between the center boss CB and the end boss EB. The straight section 30a is smoothly continuous to the wide section 30b at the predetermined position LP. In this embodiment, smoothly continuous means that there is no point of inflection in any of the top plate 33, the bottom plate 34, the first side plate 35 and the second side plate 36 at the predetermined position LP. None of the top plate 33, the bottom plate 34, the first side plate 35 and the second side plate 36 are bent at the predetermined position LP. Therefore, a drastic change in the cross-sectional area of the body 30 at the predetermined position LP is eliminated.
[0039] In this embodiment, as illustrated in
[0040] The straight section 30a is connected to the front of the wide section 30b. As illustrated in
[0041] The wide section 30b is connected to the rear of the straight section 30a. As illustrated in
[0042] As illustrated in
[0043] In this embodiment, the wide section 30b has a height that becomes smaller toward the base end bracket 31 from the straight section 30a. On the other hand, as described above, the width of the wide section 30b increase from the predetermined position LP, at which the straight section 30a and the wide section 30b are smoothly continuous to each other, to the base end bracket 31. With this configuration, the wide section 30b, which is most likely subject to load, is able to have improved bending strength at the sides.
[0044] Configuration of Base End Bracket 31
[0045]
[0046] The base end bracket 31 is formed in a shape that is entirely tapered toward the body 30. The base end bracket 31 includes a first abutment surface S3, a second abutment surface S4, and a front end surface S5.
[0047] The first side plate 35 of the body 30 abuts against the first abutment surface S3. The first abutment surface S3 is formed so as to be angled with respect to the longitudinal direction of the body 30 such that the first abutment surface S3 follows the first side plate 35 that expands outward. The first abutment surface S3 is a part of a left side surface of the base end bracket 31.
[0048] The second side plate 36 of the body 30 abuts against the second abutment surface S4. The second abutment surface S4 is formed so as to be angled with respect to the longitudinal direction of the body 30 such that the second abutment surface S4 follows the second side plate 36 that expands outward. The second abutment surface S4 is a part of a right side surface of the base end bracket 31.
[0049] The front end surface S5 is continued to the first abutment surface S3 and the second abutment surface S4. In this embodiment, the front end surface S5 is formed into a flat plate, but the front end surface S5 is not limited to this shape.
[0050] Method of Manufacturing Boom 17
[0051]
[0052] First, as illustrated in
[0053] Next, as illustrated in
[0054] Next, as illustrated in
[0055] Next, as illustrated in
[0056] Next, as illustrated in
[0057] The boom 17 includes the body 30 and the base end bracket 31. The body 30 includes the straight section 30a and the wide section 30b. When viewed from above, the width Wa of the straight section 30a is substantially constant. When viewed from above, the width Wb of the wide section 30b increases toward the base end bracket 31. The straight section 30a and the wide section 30b are smoothly continuous to each other.
[0058] As described above, because the wide section 30b is configured to increase in the width Wb toward the base end bracket 31, the bending strength of the wide section 30b at the sides can be improved. In addition, because the straight section 30a and the wide section 30b are smoothly continuous to each other, it is possible to reduce locally concentrating stresses in the body 30.
[0059] In the above-described embodiment, a case has been described in which a box-shaped structure for a work machine according to the present invention is applied to the boom 17, but the present invention is not limited thereto. The box-shaped structure for a work machine according to the present invention can also be applied to the arm 18. Even in this case, durability of the arm 18 can be improved with the body of the arm 18 having a width that increases toward the base end side bracket 18b.
[0060] In the above-described embodiment, as illustrated in
[0061] In the above-described example, the end boss EB that extends in the width direction is separately provided on the base end bracket 31, but the base end bracket 31 and the end boss EB may be formed integrally.
[0062] In the above-described example, an ingot formed by casting a metal material is used for the base end bracket 31, but the base end bracket 31 may be formed by forging or be formed of a metal plate.