The present application is based on and claims the priority of Chinese patent application No. 202111020595.3 filed on Sep. 2, 2021, the disclosure of which is incorporated herein by reference in its entirety.
The present disclosure relates to the field of graders, in particular to a rotary frame and a grader.
A grader is the machine used for shaping and leveling operations in the earthwork. The grader is also an essential piece of equipment in national defense engineering, mine construction, road construction, water conservancy construction, farmland improvement, etc. The reason why the grader assists operations in such a wide range of scenarios is closely related to the fact that the grader's blade rotates 360 degrees, and a soil-cutting angle of the blade is adjusted in real time according to the working environment. A rotary frame of the grader is the main load-bearing structure to realize the above functions, so that the lifetime of the rotary frame directly determines the service life of the whole grader. In recent years, with the working performance of graders being continuously improved, the tonnage of graders has been continuously increasing, resulting in a corresponding increase in blade length and load. However, the bending strength of the rotary frame is insufficient, so that the rotary frame is prone to damage, which affects the service life of the whole grader.
The inventors have found that there are at least the following problems in the prior art. There is obvious stress concentration in the bends of the rotary frames currently used by graders. When the graders work under heavy loads, the rotary frames are subjected to great bending moments and, therefore, are prone to damage. In order to solve this problem, the thickness and width of the bends need to be increased, but this cause an overweight of the rotary frames, which in turn overload the graders.
The present disclosure provides a rotary frame and a grader and is intended to improve the bearing capacity of a rotary frame while realizing a lightweight construction of the rotary frame.
Some embodiments of the present disclosure provide a rotary frame, comprising:
In some embodiments, the two second connecting members are arranged symmetrically about a central axial plane of the first connecting member.
In some embodiments, the two first reinforcing members are arranged symmetrically about a central axial plane of the first connecting member.
In some embodiments, the two second reinforcing members are arranged symmetrically about a central axial plane of the first connecting member.
In some embodiments, the first reinforcing members are both configured to be bent, and the two first reinforcing members are both convex toward the second reinforcing members.
In some embodiments, the two second reinforcing members are configured as a unitary piece, and a smooth concave surface is formed at a joint of the two second reinforcing members.
In some embodiments, one end of the first reinforcing member and one end of the second reinforcing member are fixedly joined to each other with a smooth transition at the joint, and said one end of the first reinforcing member and one end of the second reinforcing member are both joined to the same second connecting member.
In some embodiments, the first connecting member, together with the first reinforcing member and the second reinforcing member which are fixedly joined to the same second connecting member, confines a weight reducing through-hole.
In some embodiments, the first connecting member is configured as a plate;
and/or the second connecting member is configured as a beam; and/or the first reinforcing member is configured as a rib; and/or the second reinforcing member is configured as a rib.
In some embodiments, the first connecting member, the two second connecting members, the two first reinforcing members and the two second reinforcing members are integrally configured as a unitary piece.
Some embodiments of the present disclosure provides a grader, which comprises the rotary frame provided by any of the technical schemes of the present disclosure.
In some embodiments, the grader further comprises:
In some embodiments, the grader further comprises:
The rotary frame provided by the above technical scheme comprises a first connecting member, two second connecting members, two first reinforcing members and two second reinforcing members. The first reinforcing members and the second reinforcing members not only play a role in connecting the first connecting member and the second connecting members, but also play a role in strengthening the structural stability of the rotary frame. In addition, there are gaps between the first reinforcing members and the second reinforcing members, and the gaps are relatively large, which is beneficial to improvement of the bending moment resistance of the rotary frame against the load in a forward direction of the blade and has little influence on the weight of the rotary frame. According to the technical scheme above, the bending resistance of the structure is ensured, and the structural lightening is also facilitated, so that the requirements for increasing the strength and lightening the weight of the rotary frame are well balanced.
The accompanying drawings described here are used to provide a further understanding of the present disclosure and constitute a part of the present application. The illustrative embodiments of the present disclosure and their descriptions are used to explain the present disclosure, and do not constitute an improper limitation to the present disclosure. In the accompanying drawings:
The technical scheme provided by the present disclosure will be described in more detail below with reference to
The inventors have found that in the prior art, the structures of rotary frames are generally sickle-shaped, and stress concentration at the bends of such rotary frames is obvious. When the graders work under heavy loads, the rotary frames are subjected to great bending moments. If the strength of the rotary frames is to be improved by increasing the size of the bends, such as increasing the width and thickness of a bent plate or adding local reinforcing structures such as reinforcing ribs at the bends of the rotary frames, the strength of the rotary frame will be improved, but the weight of the rotary frames will also increase, which is not conducive to the lightweight construction of the rotary frames. Adding reinforcing ribs and other local reinforcing structures at the bends of the rotary frames will increase the weight of the rotary frames and increase the number of welds, and stress concentration often occurs at the welds, which will adversely affect the structural strength. In order to solve the above problems, the inventors propose a rotary frame and a grader provided by the following particular embodiments.
Some embodiments of the present disclosure provide a rotary frame, which comprises a first connecting member 1, two second connecting members 2, two first reinforcing members 3 and two second reinforcing members 4. The two first reinforcing members 3 are designated as the first reinforcing member 3a and the first reinforcing member 3b, respectively. The two second reinforcing members 4 are designated as the second reinforcing member 4a and the second reinforcing member 4b, respectively. The first connecting member 1 has an arc-shaped concave part 11. The concave part 11 is configured to be open-ended in its circumferential direction. The concave part 11 comprises a first end 11a and a second end 11b. Each second connecting member 2 is non-coplanar with the first connecting member 1. Each second connecting member 2 is provided with a mounting hole 21. One of the first reinforcing members 3(the first reinforcing member 3a) is connected between the first end 11a of the first connecting member 1 and one of the second connecting members 2(the second connecting member 2a); and another first reinforcing member 3(the first reinforcing member 3b) is connected between a second end 11b of the first connecting member 1 and the other second connecting member 2(the second connecting member 2b). One of the second reinforcing members 4(the second reinforcing member 4a) is connected between a middle part of a circumferential edge of the first connecting member 1 and one of the second connecting members 2(the second connecting member 2a); and the other second reinforcing member 4(the second reinforcing member 4b) is connected between the middle part of the circumferential edge of the first connecting member 1 and the other second connecting member 2 (the second connecting member 2b). At least the middle regions of the first reinforcing member 3 and the second reinforcing member 4, respectively, joined to the same second connecting member 2 are separate from each other.
The rotary frame is configured as a symmetrical structure which is symmetrical about a central axial plane A of the first connecting member 1. Here, the position of the central axial plane A of the first connecting member 1 is schematically shown at the plane in
The first connecting member 1 and the second connecting members 2 of the rotary frame are in different planes, and the rotary frame is a three-dimensional structure. The two first reinforcing members 3 and the two second reinforcing members 4 serve to connect the first connecting member 1 and the second connecting members 2 and enhance the strength and bearing capacity of the rotary frame.
Referring to
Referring to
Referring to
Referring to
With continued reference to
Referring to
As seen from the front view in
As seen from the front view shown in
With continued reference to
As seen from the angle of view in
Referring to
Referring to
Joined to the second connecting member 2b are the first reinforcing member 3b and the second reinforcing member 4b. The first reinforcing member 3b and the second reinforcing member 4b both have one end fixedly joined to the second connecting member 2b and the other end fixedly joined to the first connecting member 1. The other end of the first reinforcing member 3b and the other end of the second reinforcing member 4b are separate from each other, which makes the first reinforcing member 3b and the second reinforcing member 4b also have a gap P therebetween except the parts joined to the second connecting member 2b.
As seen from the left view in
Referring to
The first connecting member 1, the first reinforcing members 3 and the second reinforcing members 4 are integrally formed, in some embodiments the first reinforcing members 3 and the second reinforcing members 4 are fixed to each other by welding or by connectors such as bolts. The joints between the first reinforcing members 3, the second reinforcing members 4 and the first connecting member 1 are all smooth transitions to reduce stress concentration and improve the bearing capacity of the rotary frame.
The second connecting members 2, the first reinforcing member 3a, the first reinforcing member 3b, the second reinforcing member 4a and the second reinforcing member 4b are integrally formed. In some embodiments, the second connecting members 2, the first reinforcing member 3a, the first reinforcing member 3b, the second reinforcing member 4a and the second reinforcing member 4b are fixed to each other by welding or by connectors such as bolts. The joints between the first reinforcing members 3, the second reinforcing members 4 and the second connecting members 2 are also smooth transitions to reduce stress concentration and improve the bearing capacity of the rotary frame.
In some embodiments, the first connecting member 1, the two second connecting members 2, the two first reinforcing members 3 and the two second reinforcing members 4 are integrally configured as a unitary piece. That is, the second connecting members 2, the first reinforcing member 3a, the first reinforcing member 3b, the second reinforcing member 4a and the second reinforcing member 4b are integrally formed. The structure of the rotary frame is a stable unitary body with strong bearing capacity.
According to the rotary frame provided by the technical scheme above, a novel layout structure of the rotary frame of the grader is formed by topology optimization design and casting. The structure is not only light in weight, but also has high bending strength, which effectively solves the design contradiction between weight and strength of the structure, and is beneficial to lightening the structure of the rotary frame of the grader and improving the fatigue life of the rotary frame of the grader, thus ensuring the operation safety and reliability of the whole grader.
Some embodiments of the present disclosure further provide a grader, which comprises the rotary frame provided by any of the technical schemes of the present disclosure.
Referring to
In some embodiments, the grader further comprises two angular position adjusting members 7, a blade 8 and two cylinders 9. Each angular position adjuster 7 is rotatably mounted in a mounting hole 21 of one of the first connecting members 1, and the angular position adjuster 7 is rotatable relative to the rotary frame. Rotation of the angular position adjusting members 7 is driven by the cylinders 9, and each cylinder 9 drives one of the angular position adjusting members 7. One of the two cylinders 9 is mounted between the rotary ring 6 and one of the angular positions adjusting members 7, and the other cylinder 9 is mounted between the rotary ring 6 and the other angular position adjuster 7.
Referring to
In the description of the present disclosure, it should be understood that, descriptions relating to orientation, for example, orientation or positional relationships indicated by “center”, “longitudinal”, “lateral”, “front”, “back”, “left”, “right”, “vertical”, “horizontal”, “top”, “bottom”, “inside”, “outside” etc. are based on the orientation or positional relationships shown in the accompanying drawings, and are to facilitate the description of the present disclosure and simplify the description only, rather than indicating or implying that the device or element referred to must have a specific orientation or be configured and operated in a specific orientation, and therefore cannot be construed as limiting the present disclosure.
Finally, it should be noted that the above embodiments are only used to illustrate the technical schemes of the present disclosure and are not intended to limit the present disclosure. Although the present disclosure has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art will understand that modifications can be made to the technical schemes described in the aforementioned embodiments, or equivalent replacements can be made to some of the technical features in the embodiments, but these modifications or replacements do not make the essence of the corresponding technical schemes deviate from the spirit and scope of the technical schemes of the embodiments of the present disclosure.
Number | Date | Country | Kind |
---|---|---|---|
202111020595.3 | Sep 2021 | CN | national |