The embodiments herein generally relates to agricultural and off road vehicle wheels. Specifically, the embodiments described herein relate to a variable thickness disc wheel for an agricultural tractor or construction/off-road application. Particularly, the embodiments described herein relate to a disc wheel with a maximum thickness at a centre and gradually reduced thickness up to connection bracket using flow form process thereby to optimized stress and material required at low stress region.
A tractor is an important agricultural vehicle specifically designed to provide a high tractive effort at slow speeds. A wheel plays a vital role in agricultural vehicles, and helps to carry out various tasks. The wheels in conjunction with axles allow heavy objects to be moved easily facilitating movement or transportation while supporting a load.
The main parts of the wheel are a rim, a disc which are connected by a member lug (Connecting bracket), which is attached to the rim. The rim is an outer edge of a wheel, holding a tire. Disc mates with the hub on the center portion and extended towards rim to meet at lug. A disc is one solid part radiating from the center of a wheel (the hub where the axle connects), connecting the hub with the round traction surface. The term originally referred to portions of a lug which had been split lengthwise into four, six or eight sections. To support the rim structure, a disc can be made by stamping the metal plate.
A conventional uniform thickness disc profile is illustrated in
Therefore, there is a need for a disc wheel with variable thickness on selected segment for agricultural tractor application to overcome the problem associated with the prior art. Further, there is a need for a disc wheel with variable thickness which uses less material input for imparting high strength. Still, there is a need for a disc wheel with variable thickness to prevent bolt hole failures.
Some of the objects of the present disclosure are described herein below:
A main object of the present invention is to provide a disc wheel with variable thickness for agricultural tractor application.
Another object of the present invention is to provide a disc wheel with variable thickness with a maximum thickness at the centre and gradually reduced thickness up to the end of the wheel weight mounting area achieved using flow form process.
Still another object of the present invention is to provide a disc wheel with variable thickness which uses less material input for imparting high strength.
Yet another object of the present invention is to provide a disc wheel with variable thickness to prevent bolt hole failures.
Another object of the present invention is to provide a thickness gradually decreasing from the axle mounting area up to the end of the wheel weight mounting area in a range of (0.4 to 0.5) T.
Another object on the invention is to achieve no spinning on the outer portion of the disc where it connects to lug to avoid keyhole enlargement and avoid stress concentration at the lug weld region.
Another object of the invention is to achieve spinning of square blanks with or without hole and achieving the variable thickness in between the axle mounting area and connection bracket mounting area.
The other objects and advantages of the present invention will be apparent from the following description when read in conjunction with the accompanying drawings which are incorporated for illustration of preferred embodiments of the present invention and are not intended to limit the scope thereof.
In view of the foregoing, an embodiment herein provides a disc wheel with variable thickness for agricultural tractor application. According to an embodiment, a disc wheel with variable thickness includes an axle mounting area, an axle mounting radius area, a wheel weight mounting area and a connection bracket mounting area. Thickness of the axle mounting area is T. The axle mounting radius area is connected to the wheel weight mounting area and the thickness of the connection bracket mounting area is same as that of the thickness of the axle mounting area. According to an embodiment, the thickness of the disc wheel includes a maximum thickness at the axle mounting area and at the connection bracket mounting area; wherein said thickness from the axle mounting area gradually decreases up to the end of the wheel weight mounting area and matches the thickness at the connection bracket mounting area using flow form process; wherein said thickness of the wheel weight mounting area is less than the thickness of the axle mounting radius area and the thickness of the axle mounting radius area is less than the thickness of the connection bracket mounting area; and wherein said disc wheel with variable thickness uses less material input for imparting high strength.
According to an embodiment, the thickness of the axle mounting radius area is 65-90% of the thickness of the axle mounting area. The thickness of the wheel weight mounting area is up to 40% of the thickness of the axle mounting area and the thickness of the connection bracket mounting area is untouched during flow forming process and possesses same thickness as that of the axle mounting area. Therefore, said thickness of the axle mounting radius area is in a range of (0.65 to 0.9) T and thickness of the wheel weight mounting area is in the range of (0.4 to 0.5) T. The disc wheel with variable thickness prevents bolt hole failures by providing higher strength at the axle mounting area.
According to an embodiment, tensile strength of the disc is typically 300 MPa to 800 MPa. The tensile strength of the axle mounting radius area is enhanced by flow forming process based on input material strength and degree of reduction in thickness. The increase in strength would be typically 50 to 400 MPa from input material strength.
According to an embodiment, thickness ratio from the axle mounting area to the end of the axle mounting radius area is T to (0.65 to 0.9) T; wherein said thickness ratio from the axle mounting area to the end of the wheel weight mounting area is T to (0.4 to 0.5) T. The disc wheel with variable thickness provides good stress distribution and reduces wheel weight. The disc wheel with variable thickness is formed by flow form process and thereby provides non-uniform thickness across the disc profile.
According to an embodiment, the method for forming a disc wheel using a flow forming process comprising the steps of, spinning a square blank with or without hole in a circular mandrel; forming disc using flow forming process in the square blank; reducing thickness of the disc gradually from the axle mounting area up to the end of the wheel weight mounting area without affecting thickness of an axle mounting area and a connection bracket mounting area; and piercing and clipping edge of the formed disc.
These and other aspects of the embodiments herein will be better appreciated and understood when considered in conjunction with the following description and the accompanying drawings. It should be understood, however, that the following descriptions, while indicating preferred embodiments and numerous specific details thereof, are given by way of illustration and not of limitation. Many changes and modifications may be made within the scope of the embodiments herein without departing from the spirit thereof, and the embodiments herein include all such modifications.
The detailed description is set forth with reference to the accompanying figures. In the figures the use of the same reference numbers in different figures indicates similar or identical items.
The embodiments herein and the various features and advantageous details thereof are explained more fully with reference to the non-limiting embodiments and detailed in the following description. Descriptions of well-known components and processing techniques are omitted so as to not unnecessarily obscure the embodiments herein. The examples used herein are intended merely to facilitate an understanding of ways in which the embodiments herein may be practiced and to further enable those of skill in the art to practice the embodiments herein. Accordingly, the examples should not be construed as limiting the scope of the embodiments herein.
As mentioned above, there is a need for a disc wheel with variable thickness for agricultural tractor application. The embodiments herein achieve this by providing a disc wheel with variable thickness with maximum thickness at a centre and gradually reduced thickness towards up to the mounting bracket area using flow form process. Referring now to drawings, and more particularly to
In accordance with an embodiment, a novel disc wheel profile with variable thickness 200 for agricultural tractor application is illustrated in
According to an embodiment, the axle mounting area 201 extends to the wheel axis. The axle mounting radius area 202 is connected to the wheel weight mounting area 203. Further, the axle mounting radius area 202 has a same thickness as the connection bracket mounting area 204.
According to a preferred embodiment, the thickness from the axle mounting area 201 gradually decreases up to the end of the wheel weight mounting area 203 and matches the thickness at the connection bracket mounting area 204 using flow form process 402. The thickness of the wheel weight mounting area 203 is less than the thickness of the axle mounting radius area 202 and the thickness of the axle mounting radius area 202 is less than the thickness of the connection bracket mounting area 204. The disc wheel 200 with variable thickness uses less material input for imparting high strength. The disc wheel 200 with variable thickness prevents bolt hole failures by providing higher strength at the axle mounting area 201. The disc wheel 200 with variable thickness provides good stress distribution and reduces wheel weight.
According to an embodiment, the thickness of the disc wheel 200 includes a maximum thickness at the axle mounting area 201 and at the connection bracket mounting area 204. According to an embodiment, the thickness of the axle mounting radius area 202 is in a range of (0.65 to 0.9) T. According to an embodiment, the tensile strength of the axle mounting area 201 is 300 Mpa to 800 Mpa.
According to an embodiment, the thickness of the wheel weight mounting area 203 is 40% of the thickness of the axle mounting area 201 and the tensile strength may be increased due to flow forming process. Therefore, thickness of the wheel weight mounting area 203 is in a range of (0.4 to 0.5) T.
In an embodiment, the tensile strength of a region between the axle mounting radius area 202 and the wheel weight mounting area 203 can be increased 50 MPa to 400 MPa from raw materials strength.
In accordance with an embodiment,
According to an embodiment, thickness ratio from the axle mounting area 201 to the axle mounting radius area 202 is T to (0.65 to 0.9) T. The thickness ratio from the axle mounting area 201 to the wheel weight mounting area 203 is T up to (0.4 to 0.5) T.
The input material for the spinning operation is in square form with less width than the final component. Spinning process achieves the thickness reduction and as well as increases its width and length to the final dimension.
According to an embodiment, the method for forming a disc wheel using a flow forming process 402 comprising the steps of, spinning a square blank with or without hole in a circular mandrel 407; forming disc using flow forming process in the square blank 408; reducing thickness of the disc gradually from the axle mounting area 201 up to the end of the wheel weight mounting area 203 without affecting thickness of an axle mounting area and a connection bracket mounting area 409; and piercing and clipping edge of the formed disc 410.
The foregoing description of the specific embodiments will so fully reveal the general nature of the embodiments herein that others can, by applying current knowledge, readily modify and/or adapt for various applications such specific embodiments without departing from the generic concept, and, therefore, such adaptations and modifications should and are intended to be comprehended within the meaning and range of equivalents of the disclosed embodiments. It is to be understood that the phraseology or terminology employed herein is for the purpose of description and not of limitation. Therefore, while the embodiments herein have been described in terms of preferred embodiments, those skilled in the art will recognize that the embodiments herein can be practiced with modification within the spirit and scope of the embodiments as described herein.
Number | Date | Country | Kind |
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201841008432 | Mar 2018 | IN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2018/052894 | 4/26/2018 | WO | 00 |