METHOD AND GRINDING MACHINE FOR GRINDING GROOVED WORKPIECES
20180043503 ยท 2018-02-15
Inventors
Cpc classification
B24B53/07
PERFORMING OPERATIONS; TRANSPORTING
International classification
B24B49/00
PERFORMING OPERATIONS; TRANSPORTING
B24B53/07
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method is disclosed for grinding grooves on workpieces using a profiled grinding wheel, the profile of which is crushed. A reshaping crush process includes driven crush rollers, each being controlled on the basis of a rotational speed and current consumption. Thus, relative advancement between the grinding wheel and crush roller is controlled according to the speed and current consumption. A grinding machine is also disclosed for grinding a workpiece, wherein the workpiece is held by means of a workpiece spindle head. A crush device comprising a crush roller with a dedicated rotary drive is provided on the grinding machine. The grinding wheel is applied to the crush roller in order to dress the grinding wheel profile. The crush roller has a profile-crushing portion for profile-crushing the grinding wheel with a first dressing volume and a reshaping profile-crushing portion for profile-crushing the grinding wheel with a second dressing volume.
Claims
1.-17. (canceled)
18. A method for grinding grooved workpieces (1) with a profiling (6) of a grinding wheel (5) corresponding to the cross section of the groove, by means of which the groove is grinded in the workpiece (1) at its clamping, wherein the profiling (6) of the grinding wheel (5) is crush dressed, wherein a reshaping crushing process of the grinding wheel (5) is performed by means of a crushing roller (8) driven by the same, wherein its control is performed depending on a respective measurement of rotational speed and current consumption of respective drives of grinding wheel (5) and crushing roller (8), and a relative advancement between the grinding wheel (5) and the crushing roller (8) during the crushing process on the basis of said measurement, characterized in that during the profiling-crushing with a profiling-crushing portion of the crushing roller, a larger truing volume is removed from the grinding wheel by means of a reshaping-crushing portion disposed on the same crushing roller, with respect to the reshaping-crushing process.
19. The method of claim 18, characterized in that the profiling-crushing of the grinding wheel (5) is performed by the crushing roller (8) which is, if necessary, only temporarily driven by the control of the grinding wheel drive, on the basis of its measured rotational speed and current consumption by controlling the relative advancement between the grinding wheel (5) and the crushing roller (8) on the basis of said measurement, wherein the profiling-crushing is performed before starting the grinding process.
20. The method of claim 18, characterized in that for crushing, the grinding wheel (5) is applied on the crushing roller (8) and is engaged with the same, wherein during the profiling-crushing, the crushing roller (8) freely rotates with the grinding wheel (5) without having its own drive (11).
21. The method of claim 19, characterized in that for crushing, the grinding wheel (5) is applied on the crushing roller (8) and is engaged with the same, wherein during the profiling-crushing, the crushing roller (8) freely rotates with the grinding wheel (5) without having its own drive (11).
22. The method of claim 18, characterized in that a cooling medium is fed to the crushing roller (8) and the grinding wheel (5) during crushing, in their respective engagement region.
23. The method of claim 19, characterized in that a cooling medium is fed to the crushing roller (8) and the grinding wheel (5) during crushing, in their respective engagement region.
24. The method of claim 18, characterized in that the maximum relative advancement between the grinding wheel (5) and the crushing roller (8) during crushing depends on machine parameters and crushing parameters and is determined before crushing, and is input as a threshold value into a machine control, in particular by storing it in the same.
25. The method of claim 19, characterized in that the maximum relative advancement between the grinding wheel (5) and the crushing roller (8) during crushing depends on machine parameters and crushing parameters and is determined before crushing, and is input as a threshold value into a machine control, in particular by storing it in the same.
26. A grinding machine for grinding grooved workpieces (1), which is provided with a grinding spindle stock (2), which is movable, under CNC-control, on a cross slide over a machine support along the X-axis and Z-axis, which holds a grinding wheel (5) and rotationally drives the same for grinding the groove, and a workpiece spindle stock (3) with a C-axis, wherein the workpiece (1) is held in a clamping by means of a workpiece spindle head (3), and a rigidly installed crush device (7) comprising a crushing roller (8) with a dedicated rotary drive (11) is additionally provided, which may be controlled by a control device, wherein the grinding wheel (5) and the crushing roller (8) may be driven and their rotational speed may be adjusted during the reshaping-crushing, characterized in that the grinding wheel (5) is applied to the crushing roller (8) in order to dress its profile (6) and the crushing roller (8) has a profiling-crushing portion (14) for profiling-crushing the grinding wheel (6) with a first dressing volume and a reshaping-crushing portion (15) positioned on the same crushing roller (8), for reshaping-crushing the grinding wheel (5) with a second dressing volume.
27. The grinding machine of claim 26, characterized in that the crushing device (7) is positioned in a housing (9) and is fixedly connected with the machine support.
28. The grinding machine of claim 26, characterized in that the crushing device (7) has a CNC-controlled drive (11), which is connected, through a clutch (10), with the crushing roller (8), which is particularly made of high performance high speed cutting steel or hard metal, for its rotational drive.
29. The grinding machine of claim 27, characterized in that the crushing device (7) has a CNC-controlled drive (11), which is connected, through a clutch (10), with the crushing roller (8), which is particularly made of high performance high speed cutting steel or hard metal, for its rotational drive.
30. The grinding machine of claim 26, characterized in that the crushing device (7) has a body-sound sensor (13), by which, in case of the grinding wheel (5) being engaged with the crushing roller (8), a signal may be sent to the control device, based on which the engagement contact between the crushing roller (8) and the grinding wheel (5) may be determined for its monitoring.
31. The grinding machine of claim 27, characterized in that the crushing device (7) has a body-sound sensor (13), by which, in case of the grinding wheel (5) being engaged with the crushing roller (8), a signal may be sent to the control device, based on which the engagement contact between the crushing roller (8) and the grinding wheel (5) may be determined for its monitoring.
32. The grinding machine of claim 26, characterized in that the grinding wheel (5) during the reshaping-crushing process, may be applied onto the crushing roller (8) and may be moved in a transversal direction with respect to the reshaping-crushing portion (15).
33. The grinding machine of claim 27, characterized in that the grinding wheel (5) during the reshaping-crushing process, may be applied onto the crushing roller (8) and may be moved in a transversal direction with respect to the reshaping-crushing portion (15).
34. The grinding machine of claim 26, characterized in that at the beginning and/or during the profiling-crushing, the drive (11) of the crushing device (7) may be provided, in case of a speed drop, with drive pulses.
35. The grinding machine of claim 27, characterized in that at the beginning and/or during the profiling-crushing, the drive (11) of the crushing device (7) may be provided, in case of a speed drop, with drive pulses.
36. The grinding machine of claim 26, characterized in that the crushing roller (8) is in one or two parts.
37. The grinding machine of claim 27, characterized in that the crushing roller (8) is in one or two parts.
38. The grinding machine of claim 26, characterized in that the control device is adapted so that a maximum relative advancement between the grinding wheel (5) and the crushing roller (8) during crushing is smaller than a predetermined threshold value, which depends on the machine parameters and process parameters, and which may be input into the control device before starting the crushing.
39. The grinding machine of claim 27, characterized in that the control device is adapted so that a maximum relative advancement between the grinding wheel (5) and the crushing roller (8) during crushing is smaller than a predetermined threshold value, which depends on the machine parameters and process parameters, and which may be input into the control device before starting the crushing.
Description
[0039] Further advantages, possible applications and details are described in the following with the use of examples in the attached figures. In particular:
[0040]
[0041]
[0042]
[0043]
[0044]
[0045]
[0046]
[0047]
[0048] In
[0049] In
[0050] The main structure of
[0051]
[0052]
[0053] The grinding wheel 5 shown in
[0054] The reshaping-crushing groove 15 also shown in
[0055] The body sound sensor 14 reacts at each contact of the profile 6 to be produced of the grinding wheel 5 against one of flanks of the crushing grooves 14, 15 and therefore monitors the engagement contact during crushing. The initially flat trued grinding wheel 5 is then crushed by the profiling-crushing groove 14 of
[0056] In the state shown in
[0057] Since the grinding wheel 5 usually has a rounding error, the crushing roller 8 is not completely driven at first contact with the grinding wheel 5. Therefore, the speed of the crushing roller 8 may drop. If a predetermined lower speed threshold is reached, the drive motor 11 of crushing spindle 16 may be activated in a pulsed way. This activation takes place until the crushing roller 8 has again the speed of the grinding wheel 5. This means that the drive pulse is active until the crushing roller 8 has reached its nominal speed corresponding to the speed of the grinding wheel 5.
[0058]
[0059] When both flanks of the profile 6 of the grinding wheel 5 have been individually applied and slightly crushed in the reshaping-crushing groove 15, the grinding wheel is moved in the Y direction, i.e. in the transversal direction, so that the profile is centrally positioned with respect to the crushing groove 15. This is shown in
[0060]
LIST OF REFERENCES
[0061] 1 workpiece [0062] 2 grinding spindle stock [0063] 3 workpiece spindle stock [0064] 4 tail stock [0065] 5 grinding wheel [0066] 6 profile of grinding wheel [0067] 7 crushing device [0068] 8 crushing roller [0069] 9 housing of crushing device [0070] 10 clutch of crushing device [0071] 11 drive of crushing device [0072] 12 roll bearing of crushing device [0073] 13 body sound sensor [0074] 14 profiling-crushing groove/profiling-crushing portion [0075] 15 reshaping-crushing groove/reshaping-crushing portion [0076] 16 spindle of crushing device [0077] 17 peripheral surface [0078] 18 machine control