KUKA KR QUANTEC-2 PA is a 5-axis articulated robot designed for palletizing, handling, and material transfer scenarios, covering three models: KR 140 R3200-2 PA, KR 180 R3200-2 PA, and KR 240 R3200-2 PA. This series can control up to 4 axes, with the 5th axis being a coupled follower structure. The maximum arm span is 3195 mm, the workspace is 81.3 m ³, the pose repeatability accuracy is ± 0.07 mm, the body weight is approximately 1017 kg, the protection level is IP65, the wrist is IP65, and the noise level is below 75 dB (A). The controller supports KR C5 M6/M7 and KR C4. For on-site engineers, mastering the transportation posture, installation specifications, oil change cycle, balance cylinder inspection, motor replacement, and common fault troubleshooting are key to ensuring the stable operation of the palletizing production line.
Model positioning and core data
The rated load of KR 140 R3200-2 PA is 140 kg, with a maximum load of 180 kg. KR 180 R3200-2 PA has a rated load of 180 kg, with a maximum load of 230 kg. KR 240 R3200-2 PA has a rated load of 240 kg, with a maximum load of 292 kg. The maximum arm span of all three is 3195 mm, with a working space of 81.3 m ³, a repeatability of ± 0.07 mm, and a weight of approximately 1017 kg. When operating at ambient temperatures, the temperature ranges from 0 ° C to 55 ° C, and during storage and transportation, the temperature ranges from -40 ° C to 60 ° C. Preheating may be necessary to avoid condensation and frost during low-temperature operation.
In terms of axis data, A1 has a motion range of ± 185 °, A2 is -140 °/-5 °, A3 is 0 °/165 °, A4-A5 is -55 °/150 °, and A6 is ± 350 °. Rated load speed: A1 is about 137 °/s, A2 is about 111 °/s, A3 is about 119 °/s, A4-A5 is about 225 °/s, A6 is about 321 °/s. The zero calibration positions are A1-25 °, A2-100 °, A3 100 °, A4 0 °, A5 88.5 °, A6-15 °. The transport poses are A1 0 °, A2-137 °, A3 160 °, A4-A5 67 °, A6 0 °. The load center of gravity and inertia must be input into the controller and verified with KUKA Load, otherwise trajectory planning and dynamic performance will deviate from expectations.
The flange interface is PA Hand, with a hole diameter of 125 mm, M10 threads, 11 threads, a minimum depth of 11 mm and a maximum depth of 16 mm, a bolt grade of 10.9, and a positioning element of 10 H7. In terms of flange load, the axial force during operation is about 4350 N, the radial force is about 2900 N, the tilting torque is about 1050 Nm, and the flange torque is about 650 Nm; during emergency stop, the axial force is about 8600 N, the radial force is about 8050 N, the tilting torque is about 5400 Nm, and the flange torque is about 3300 Nm. In terms of foundation load, the normal vertical force is about 17250 N, and the maximum is 23000 N; the normal horizontal force is about 6750 N, and the maximum is 17250 N; the normal overturning torque is about 21250 Nm, and the maximum is 32500 Nm; the shaft 1 torque is normal Approximately 8000 Nm, with a maximum of 15750 Nm. The foundation must be able to withstand these loads for a long time.
Safety logic and homework prerequisites
KR QUANTEC-2 PA belongs to incomplete machinery and must be integrated into a complete system and meet the EU Machinery Directive before it can be put into operation. The system integrator is responsible for risk assessment, implementation of safety functions, CE labeling, and complete system operation manuals. The danger zone consists of a workspace and a stopping distance, where the stopping distance is equal to the reaction distance plus the braking distance. The safety protection device must be located outside the danger zone, but the robot stopping process may still be completed within the danger zone.
The manual operation mode is divided into T1 and T2. T1 is the manual slow debugging mode, with a speed not exceeding 250 mm/s, suitable for jogging, teaching, programming, and program verification. T2 is a manual quick debugging mode that allows for speeds exceeding 250 mm/s, but is only used for testing that requires speeds higher than T1. Teaching and programming are not allowed under T2. When multiple people enter a safe area, each person must be equipped with an enabling device, and everyone must be able to see the robot unobstructed and maintain mutual visibility. Automatic mode requires all safety protection devices to function properly, with no one in the hazardous area, or to meet the EN ISO 10218 cooperation requirements.
When maintaining and repairing, priority should be given to working outside of hazardous areas. When it is necessary to enter a dangerous area, the robot should be turned off and locked with a tag, and if necessary, it should be done under T1. The emergency stop device must remain effective. If the security function is temporarily disabled, it must be restored immediately after the work is completed. After the robot controller is turned off, some components may still carry a voltage of 50V to 780V for several minutes, and must wait for discharge and comply with ESD regulations. For controllers with transformers, the transformer should be disconnected before operation. The balance cylinder belongs to pressure equipment, and the pressure status must be confirmed before operation and operated by professional personnel. Personnel must be trained to assess tasks and identify potential hazards.