Aspiration: Â Â Â Â Â Â Â Â Turbocharged/Aftercooled
Displacement: Â Â Â Â Â Â 19 Liters (1150 In)
Bore * Stoke: Â Â Â Â Â Â 159*159mm (6.25*6.25 in)
Compression ratio: Â Â Â 13.8 : 1
Rotation: Â Â Â Â Â Â Â Â Â Counterclockwise facing flywheel
Model: Â Â Â Â Â Â Â Â Â Â Â KTA19-M4
Output power: Â Â Â Â Â Â Â 640HP, 477KW
Speed: Â Â Â Â Â Â Â Â Â Â Â 1800RPM
Fuel consumption: Â Â Â Â Â 82.6 L/hour (21.8 Gal/hr)
Rating: Â Â Â Â Â Â Â Â Â Â Â HD (Heavy Duty)
Size: Â Â Â Â Â Â Â Â Â Â Â Â 2007*963*1880 (L*W*H)
Weight: Â Â Â Â Â Â Â Â Â Â 2189Kg (4825lb)
Marine Propulsion | ||||
Engine | Rated | RPM | USE | |
HP | KW | |||
NT855-M | 240 | 179 | 1800 | CON |
NT855-M | 270 | 201 | 1800 | CON |
NT855-M | 300 | 224 | 1800 | CON |
N855-M | 350 | 261 | 1800 | CON |
NTA855-M | 350 | 261 | 1800 | CON |
N855-M | 400 | 298 | 1800 | CON |
N855-M | 400 | 298 | 2100 | HD |
NTA855-M | 400 | 298 | 1800 | CON |
NTA855-M | 400 | 298 | 2100 | MCD |
KT19-M | 425 | 317 | 1800 | CON |
NTA855-M | 450 | 336 | 1800 | HD |
KTA19-M | 470 | 351 | 1800 | CON |
K19-M | 500 | 373 | 1800 | CON |
KT19-M | 500 | 373 | 1800 | CON |
KTA19-M | 500 | 373 | 1800 | CON |
K19-M | 550 | 410 | 2100 | CON |
KTA19-M | 550 | 410 | 2100 | MCD |
K19-M | 600 | 447 | 1800 | CON |
KTA19-M3 | 600 | 447 | 1800 | CON |
K19-M | 640 | 477 | 1800 | HD |
KTA19-M3 | 640 | 477 | 1800 | HD |
KTA19-M4 | 700 | 522 | 2100 | HD |
KT38-M | 780 | 582 | 1800 | CON |
K38-M | 800 | 596 | 1800 | CON |
KT38-M | 800 | 596 | 1800 | CON |
K38-M | 900 | 671 | 1600 | CON |
KTA38-M0 | 900 | 671 | 1800 | CON |
K38-M | 1000 | 746 | 1800 | CON |
KTA38-M1 | 1000 | 746 | 1800 | CON |
K38-M | 1100 | 821 | 1800 | CON |
K38-M | 1200 | 895 | 1800 | CON |
KTA38-M2 | 1200 | 895 | 1800 | CON |
K38-M | 1350 | 1007 | 1900 | HD |
K50-M | 1600 | 1193 | 1800 | CON |
K50-M | 1800 | 1342 | 1900 | HD |
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CNC Drilling is a computer-controlled drilling process that uses a computer to program the coordinates and depth of drilling to create products on metal or non-metal materials. In CNC Drilling, a computer converts a 3D model created using CAD software into G-code to control a CNC machine tool.
The process of CNC Drilling includes the following steps:
- Programming: Using CAD software, a 3D model is created and converted into G-code to control the CNC machine tool.
- Fixing the workpiece: The workpiece is fixed to the CNC machine tool to ensure secure attachment.
- Drilling: According to the programmed coordinates and depth, a drill bit is used to drill holes on the workpiece.
- Finishing: The drilled holes are finished to ensure quality and precision.
- Inspection: The finished workpiece is inspected to ensure it meets the required standards.
CNC Drilling process has the characteristics of high precision, high efficiency, and ability to process complex shapes, and is widely used in automotive, aerospace, electronic, mechanical and other fields.
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