ORDERLY-MICRO-GROOVED PCD GRINDING WHEEL AND METHOD FOR MAKING SAME
20210268626 · 2021-09-02
Inventors
- Cong Mao (Changsha, CN)
- Lairong YIN (Changsha, CN)
- Yujie ZHONG (Changsha, CN)
- Yongle HU (Changsha, CN)
- Yuanqiang LUO (Changsha, CN)
- Weidong TANG (Changsha, CN)
- Peihao CAI (Changsha, CN)
- Mingjun ZHANG (Changsha, CN)
- Yifeng JIANG (Changsha, CN)
- Aiming TANG (Changsha, CN)
Cpc classification
International classification
Abstract
An orderly-micro-grooved PCD grinding wheel includes a wheel hub, a polycrystalline diamond (PCD) film, a number of micro-grinding units and a number of microgrooves. The PCD film is deposited on an outer circumferential surface of the wheel hub. The PCD film is processed by a water-jet guided laser device to form the microgrooves with high depth-width ratio and micro-grinding units with positive rake angles on the entire outer circumferential surface of the PCD film. An axial length of each micro-grinding unit and an axial length of each microgroove are equal to a thickness of the grinding wheel, respectively. The microgrooves are spaced apart by the micro-grinding units.
Claims
1. A grinding wheel, comprising: a wheel hub; a polycrystalline diamond (PCD) film; a plurality of micro-grinding units; and a plurality of microgrooves; wherein an outer circumferential surface of the wheel hub is deposited with the PCD film; the plurality of micro-grinding units and the plurality of microgrooves are orderly distributed on a whole outer circumferential surface of the PCD film; the plurality of micro-grinding units form a part of the PCD film; and the plurality of microgrooves are spaced apart by the plurality of micro-grinding units; each of the plurality of microgrooves and each of the plurality of micro-grinding units both have an axial length equal to a thickness of the grinding wheel; the micro-grinding units each comprise two side surfaces and an outer surface; the microgrooves each comprise two side walls that form one of the two side surfaces of two adjacent micro-grinding units, respectively; and the micro-grinding units each have a rake angle that is positive.
2. The grinding wheel of claim 1, wherein the rake angle is 10°-40°.
3. The grinding wheel of claim 1, wherein the micro-grinding units each have a clearance angle of 20°-50°.
4. The grinding wheel of claim 1, wherein the micro-grinding units have substantially the same geometric shapes and dimensions.
5. The grinding wheel of claim 1, wherein a thickness of the PCD film is 1-2 mm.
6. The grinding wheel of claim 1, wherein each of the micro-grinding units has a circumferential width of 80-150 μm and a radial height of 500-800 μm
7. The grinding wheel of claim 1, wherein each of the microgrooves has a circumferential width of 20-50 μm, a depth of 500-800 μm and a depth-width ratio of 10-40:1.
8. The grinding wheel of claim 1, wherein the wheel hub is made of titanium alloy.
9. The grinding wheel of claim 8, wherein the wheel hub has a diameter of 100-200 mm and a thickness of 6-20 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
DETAILED DESCRIPTION OF EMBODIMENTS
[0021] Definitions
[0022] Term “reference plane” is a plane which is perpendicular to cutting velocity vector at a selected point on a cutting tool. Herein, the cutting tool may refer to abrasives, or particularly grinding units.
[0023] Term “cutting plane” is a plane which is tangent to the selected point of the cutting tool where it is in contact with the surface of the workpiece. The cutting plane is perpendicular to the reference plane.
[0024] Term “rake angle” is an angle between a rake face of the cutting tool and the reference plane. The rake angle may be categorized into three types: positive, zero or neutral, and negative. Herein, the cutting tool has a positive rake angle.
[0025] Term “clearance angle” is an angle between a flank face of the cutting tool and the cutting plane.
[0026] Term “substantially” herein refers to two or more elements are identical to a great extent or degree, almost, but not absolutely the same.
[0027] Term “pickling” is a metal surface treatment used to remove impurities, such as stains, inorganic contaminants, rust or scale from ferrous metals, copper, precious metals and aluminum alloys, and a solution called pickle liquor, which usually contains acid, is used to remove the surface impurities.
[0028] This application will be further illustrated with reference to the embodiments and drawings.
[0029] Referring to
[0030] Each microgroove 10 and each micro-grinding unit 9 both have an axial length equal to a thickness of the grinding wheel. The microgrooves 10 each have a circumferential width of 20-50 μm, a depth of 500-800 μm, and a depth-width ratio of 10-40:1. Since the arrangement of the micro-grinding units 9 and the microgrooves 10 are formed by subtractive manufacturing or processing of the PCD film, the micro-grinding units 9 are a part of the PCD film. The microgrooves 10 are spaced apart by the micro-grinding units 9 to create an ordered arrangement.
[0031] Particularly, referring to a partial enlarged view on the right side in
[0032] Referring to
[0033] Continuing to refer to
[0034]
[0035] Referring to
[0036] Referring to
[0037] The PCD film 2 on the wheel hub 1 is finally processed with ordered arrangement of the microgrooves 10 and the micro-grinding units 9, as shown in
[0038] The outer circumferential working surface of the grinding wheel is provided with a large number of micro-grinding units with positive rake angle, which ensures that the micro-grinding units are worked in a positive rake angle during grinding, lowering the grinding force ratio and temperature, effectively reducing the damage to the surface and greatly improving the grinding performance and efficiency.
[0039] A large number of microgrooves with high depth-width ratio are provided on the outer circumferential working surface of the grinding wheel, which greatly improves the chip-holding space. Meanwhile the micro-grinding units are orderly arranged so that ordered chip-removing channels are formed during grinding, which greatly improves the chip-removing capacity and makes the grinding wheel less prone to blockage, effectively promoting the entering of the grinding fluid into the grinding zone, significantly improving the cooling effect for the grinding zone, reducing the thermal damage to the workpiece surface and further enhancing the grinding quality.
[0040] When the micro-grinding units are processed by the water-jet guided laser technique, the laser beam propagates along the water jet in a total reflection. During the processing, the laser is guided by the water jet to the surface of the PCD film to ablate the PCD film, and the ablated PCD film is carried away by the water jet. Additionally, the water jet also cools the surface of the PCD film, which effectively prevents the graphitization of the micro-grinding units, providing better grinding performance and greatly enhancing the surface quality.
[0041] The service life of the grinding wheel is extended. The PCD film on the outer circumferential surface of the grinding wheel is deposited by the HFCVD technique. The micro-grinding units are a part of the PCD film, which prevents the micro-grinding units from singly falling off due to excessive or concentrated grinding force and significantly improves the service life of the grinding wheel.
[0042] The number of effective cutting edges per unit area is increased and alleviates the periodic vibration during grinding. The micro-grinding units have the characteristics of high protrusion and good consistency, so that the cutting edge of each micro-grinding unit can participate in the grinding.
[0043] The shape and dimension of the micro-grinding units on the outer circumferential surface of the grinding wheel both have a good periodicity. Therefore, in the preparation process, the relative motion relationship between the Laser-Micro jet device and the grinding wheel can be controlled by the numerical control technology, which greatly reduces the difficulty in the preparation of the grinding wheel and lowers the cost.
[0044] It should be understood that the above embodiments are only illustrative of the invention and are not intended to limit the invention. In addition, various equivalent modifications and changes made by those skilled in the art without departing from the spirit of the invention fall within the scope of the invention as defined by the appended claims