IMPROVED CONTROL SYSTEM FOR GRINDING APPARATUS
20220410342 ยท 2022-12-29
Inventors
Cpc classification
B24B45/00
PERFORMING OPERATIONS; TRANSPORTING
B23B31/1175
PERFORMING OPERATIONS; TRANSPORTING
B24B41/04
PERFORMING OPERATIONS; TRANSPORTING
B24B27/04
PERFORMING OPERATIONS; TRANSPORTING
B24D7/005
PERFORMING OPERATIONS; TRANSPORTING
International classification
B24B51/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present disclosure provides a Grinding apparatus for grinding working tips of hard metal inserts of rock drill bits, comprising: a grinding machine, means for holding a rock drill bit to be ground and a support system, the support system, the grinding machine equipped with a spindle assembly having an output drive shaft having a longitudinal axis, one of a plurality of grinding tools of different sizes and profiles detachably connected to the output drive shaft for grinding different sizes and profiles of working tips; and having a control system having a programmable operator control panel capable of directly or indirectly monitoring and adjusting one or more operational parameters, a programmable control card provided having a circuit board containing a central processor, an RFID reader provided within operator control panel together with a touch screen display wherein when the free end of a grinding cup equipped with an RFID tag in accordance with present invention is inserted into the RFID reader a proximity sensor detects the RFID tag and scans the data on the tag wherein the data includes a specific ID identifier for the particular grinding cup and the number of grinding cycles over which it has been used to date.
Claims
1. Grinding apparatus for grinding working tips of hard metal inserts of rock drill bits, comprising: a grinding machine, means for holding a rock drill bit to be ground and a support system, the support system, the grinding machine equipped with a spindle assembly having an output drive shaft having a longitudinal axis, one of a plurality of grinding tools of different sizes and profiles detachably connected to the output drive shaft for grinding different sizes and profiles of working tips; and having a control system having a programmable operator control panel capable of directly or indirectly monitoring and adjusting one or more operational parameters, a programmable control card provided having a circuit board containing a central processor, an RFID reader provided within operator control panel together with a touch screen display wherein when grinding cup equipped with an RFID tag is scanned by the RFID reader a proximity sensor detects the RFID tag and scans the data on the tag wherein the data includes a specific ID identifier for the particular grinding cup and the number of grinding cycles over which it has been used to date.
2. A grinding apparatus according to claim 1 wherein the support system has means for providing a controlled variable feed pressure during grinding.
3. A grinding apparatus according to claim 2 having means for varying and controlling feed pressure and a speed of rotation of the output drive shaft during grinding based on a size of a connected grinding tool.
4. A plurality of grinding apparatus according to claim 1 wherein the control system of each of the plurality of grinding apparatus are networked and can communicate over an internet or other connection to a server or virtual server located remotely from the grinding apparatus.
5. A control system for grinding apparatus according to claim 1 said grinding apparatus having a grinding machine carried on an support system journaled on a frame and means for holding one or more bits to be ground, said grinding machine equipped with a grinding cup driven by a motor to rotate the grinding cup about its longitudinal axis, wherein the support system comprises an arm or lever system to control movement of the grinding machine for alignment of the grinding machine with a hard metal insert to be ground and means that provides a feed pressure for said grinding machine during grinding, wherein the means to provide feed pressure is a first actuator connected to the arm or lever system and the support system has an upper and lower parallel arm with a first end of each arm pivotally mounted to a front side of said frame, and a second end of each arm is pivotally connected to a back side of a control box wherein the first actuator is connected to the upper arm, wherein the means for holding one or more bits to be ground has one or more apertures to hold one or more bits to be ground and includes a moveable pressure plate for each aperture wherein the shank of a bit is held between said pressure plate and the sides of one of said apertures wherein movement of said pressure plate is controlled by a second actuator, said control system comprising a programmable control system to monitor, control and adjust one or more operational parameters selected from the group consisting of feed pressure, grinding cup RPM, grinding time, movement of the moveable pressure plate and movement of the actuators.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] In order that the disclosure may be more clearly understood, embodiments will now be described in detail by way of example, with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION
[0038] With reference to the
[0039] In the grinding apparatus 1 shown in
[0040] In
[0041] With reference to the
[0042] The spindle assembly 15 is intended to be drivably connected to the motor of a grinding machine (not shown). The spindle assembly 15 is attached to the motor housing by bolts 17. A drive coupling at the bottom of the motor housing permits attachment of a mating drive coupling 20 on the spindle assembly 15. The spindle assembly 15 has an output drive shaft 16 to which a grinding cup 60 can be detachably connected. Coolant water for delivery to the grinding cup surface is provided though connection 18. Suitably connected to the output drive shaft 16 by any conventional means is a holder device 24. In the illustrated embodiment, the holder device 24 is an integral extension of the shaft 16 which constitutes a rotatable elongate drive member 25. The shaft 16 and drive member 25 are provided with a coaxial passageway 26 extending along the length or part thereof and through which coolant/flushing fluid may be directed to a grinding cup 60 supported thereon, the grinding cup being shown in
[0043] As shown in
[0044] Retaining means may be provided in recess 29 of drive member 25 to detachably retain the grinding cup 60 so that grinding cup 60 will not fly off during use but can still be easily removed or changed after use. The retaining means may include one or more annular grooves 36 in the interior wall 30 within the support section 32 of recess 29 in drive member 25. O-rings or expansion rings 37 may be inserted into the grooves.
[0045]
[0046] The bottom (grinding) surface 64 and the surface of the centrally disposed recess 63 formed in the bottom surface 64 of the grinding section 61 are formed from a material capable of grinding the tungsten carbide button bits. In the embodiment illustrated, the grinding surface is formed from a metal and diamond matrix. The peripheral edge 65 in the bottom surface 64 is beveled to facilitate the removal of steel from the face of the bit around the base of the button during grinding.
[0047] The upper body section 62 has an upper base 66 having a centrally disposed upright drive section 67 formed on the top surface 68 of the base 66. The drive section 67 is shaped and sized to drivably engage within the corresponding recess 29 at the free end 28 of the output drive shaft 16 of said grinding machine. Retaining means, generally indicated at 68, for detachably connecting the grinding cup to the output drive shaft of the grinding machine are provided on the upright drive section 67. In the embodiment illustrated the retaining means comprises an annular groove 69 in the outer surface 70 of the upright drive section 67 sized and shaped to retain an O-ring 71.
[0048] In the embodiment illustrated, the upright drive section 67 has a first support section 72 connected to the top surface 68 of upper base 66 and having a circular cross section. A co-axial drive section 73 on the upright drive section 67 extends from a top surface 74 of the first support section 72 to a free end 75 of the drive section 67. The co-axial drive section 73 has a lower portion 76 in the form of a cam having an elliptical cross section, shaped and sized to fit within a corresponding pair of lobed grooves 33 (see
[0049] A passageway 79 is provided through the upright drive section 67 and upper body section 62. The passageway 79 is co-axial with the upright drive section 67 and upper body section 62 and communicates with one or more openings (not shown) on the grinding surface 64 through which coolant/flushing fluid may be directed to the surface of the button being ground during grinding.
[0050] As noted above, the grinding apparatus 1 has a control system, part of which is generally indicated at 5, having a programmable operator control panel 6 capable of directly or indirectly monitoring and adjusting one or more operational parameters. A programmable control card is provided attached to rear of operator control panel 6, having a circuit board containing the central processor (ie. microprocessor or microcontroller) for the control system of the grinding apparatus. The central processor can be located anywhere suitable for the application and can be suitably interconnected with other sub-processors to monitor various functions as deemed necessary for proper function. The overall control system includes systems and controls that together with a microprocessor or microcontroller can control all aspects of the grinding apparatus including grinding time on each button, rotational speed of the grinding cup, grinding pressure, bit holder tilt function, operating lights and coolant flow. The microprocessor or microcontroller and the control system can be used to provide other functions either manual or automatic. For example, the microprocessor or microcontroller and control system, in the case of an electric motor, can monitor the amperage being used and/or the temperature and if it reaches a preset limit automatically decrease the grinding pressure to prevent motor burn out. The microprocessor or microcontroller and control system can also control the flow of coolant to the face of the button during grinding.
[0051] In addition, the control panel software can be configured such that the user could select for example whether long grinding cup life or high material removal rate of the grinding cup is preferred.
[0052] When using a grinding cup of the type illustrated in
[0053]
[0054] In a preferred embodiment of the control system of the present invention, each operator of the grinding apparatus is required to login before using one of grinding apparatus and log out after use. Login can be by way of the touch screen display on the grinding apparatus or a token containing operator ID data such as in the form of key fob, that can be scanned or connected when in proximity to the grinding apparatus. Requiring operator login insures only persons trained in the proper and safe operation of the grinding apparatus are utilizing same. A further benefit to management is that hard data can be communicated from the grinding apparatus on operator performance and efficiency.
[0055] After the operator has logged in and the grinding apparatus is ready for normal operation, the operator puts a bit into the means on the grinding apparatus for holding the bits to be ground. Once the bit is secure the operator selects a grinding cup of the type illustrated in
[0056] The use of the control system of the present invention provides the management of the grinding facility with valuable data on the operation, performance and life of not only the grinding cups but the grinding apparatus and can compare performance of different grinding apparatus in the same or different facilities.
[0057] The control system of the grinding apparatus can be pre-programmed with recommended operational parameters for different sizes and profiles of grinding cups. On reading the RFID tag associated with a particular grinding cup, the control system can automatically set the grinding time and feed pressure for the grinding cup. The operator can be provided with an override ability to increase or decrease grinding time and or feed pressure where the button wear is more or less than normal.
[0058] By connecting each grinding apparatus to a network and to the internet, the control system equipped with transmitter and receiver capability allows the equipment manufacturer to be advised of error messages during operation of the grinding apparatus and either fix the error and/or schedule maintenance on the grinding apparatus. It also provides a means for the manufacturer to quickly install software upgrades or fixes. Finally the data received by the manufacturer assists in designing further improvements to the equipment.
[0059] Having illustrated and described a preferred embodiment of the invention and certain possible modifications thereto, it should be apparent to those of ordinary skill in the art that the invention permits of further modification in arrangement and detail and is not restricted to the specific semi-automatic grinding apparatus illustrated.
[0060] It will be appreciated that the above description related to the preferred embodiment by way of example only. Many variations on the invention will be obvious to those knowledgeable in the field, and such obvious variations are within the scope of the invention as described and claimed, whether or not expressly described.