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KUKA KR IONTEC HO Maintenance Troubleshooting Guide

F: | Au:FANS | DA:2026-09-15 | 12 Br: | 🔊 点击朗读正文 ❚❚ | Share:

Practical Maintenance and Troubleshooting of KUKA KR IONTEC HO

KUKA KR IONTEC HO is a series of six axis articulated arm robots designed for secondary area applications in food related environments. The models include KR 50 R2100 HO, KR 50 R2500 HO, and KR 70 R2100 HO. This series emphasizes hygienic lubrication and reliable operation, suitable for tasks such as handling, processing, and transferring parts or products. For engineers in the search solution stage, what is truly valuable is not just the parameter table, but a complete set of executable methods from installation, transportation, safety, maintenance to troubleshooting. This article focuses on this series of robots, and combines key data and engineering practice to compile a technical guide that is easy to use on site.

Product positioning and key parameters

The KR IONTEC HO series adopts a six axis series joint structure, mainly composed of a base, a rotating column, a connecting rod arm, an arm, an inline wrist, and electrical installation components. The differences between the three models are concentrated in load and arm span: KR 50 R2100 HO and KR 50 R2500 HO have a rated load of 50 kg and a maximum load of 61 kg; KR 70 R2100 HO has a rated load of 70 kg and a maximum load of 85 kg. In terms of arm span, the R2100 model can reach a maximum of 2101 mm, and the R2500 model can reach a maximum of 2501 mm. The repeatability accuracy is ± 0.05 mm, which is suitable for applications that require high trajectory consistency.

The overall protection level of the machine is IP65, and the arm and wrist can reach IP65/IP67. The noise level is below 69 dB (A). The installation method is flexible and can be installed on the floor, ceiling, wall, or at any angle. However, the tilt installation angle must be correctly written into the controller, otherwise it may cause accidental movement or overload. The operating environment temperature ranges from 0 ° C to 55 ° C, and the storage and transportation temperature ranges from -40 ° C to 60 ° C. Preheating may be required during low-temperature start-up. The controller is compatible with KR C4 and KR C5 M6/M7, with conversion names of KR50R2100, KR50R2500, KR70R2100, etc.

In terms of connecting cables, KR C4 uses X20-X30 motor cables and X21-X31 data cables; The KR C5 uses XD30, XD10 brake connectors, and XF31 data cables. The standard cable lengths are 7 m, 10 m, 15 m, 20 m, 25 m, 30 m, 35 m, and 50 m, with a maximum length of 50 m and a maximum of one expansion connection allowed. The cross-sectional area of the grounding conductor is 16 mm ², and M8 ring cable plugs are used at both ends. When wiring, the bending radius of the motor cable should not be less than 150 mm, and the bending radius of the data cable should not be less than 60 mm. They should be separately laid in metal pipes to avoid electromagnetic interference.


Key points for installation and transportation

Before installation, it is necessary to confirm that the foundation or machine frame can withstand the forces and moments generated during operation. There are two common installation methods: a mounting base with a centering device and a machine frame mounting component. The installation base kit R300x400 weighs approximately 26.7 kg and is suitable for concrete foundations. The concrete grade should reach C20/25. The foundation must be flat, without insulation or mortar layer, and the minimum thickness and edge distance should be determined based on whether there are edge steel bars. The machine frame installation component weighs approximately 2.3 kg and is suitable for steel structures and linear units. It is fixed with 8 M20x60-8.8 hexagonal bolts and tapered spring washers.

Before transportation, the robot must enter the transportation positions: A1 0 °, A2-125 °, A3 150 °, A4 0 °, A5-115 °, A6 0 °. During forklift transportation, the minimum load capacity of the forklift should reach 2.0 tons, and excessive internal and external movement should be avoided when entering the fork slot, which may cause overload of the fork slot. When using lifting equipment, certified lifting accessories must be used, and all lifting straps should be arranged according to the markings to prevent the robot from tilting or being damaged. Personnel are prohibited from staying under the robot during transportation to avoid vibration and impact. After transportation is completed, the fork groove and lifting accessories must be removed before entering the start-up process.

Before starting, check if the robot is properly secured; Is there any damage caused by external forces, such as dents or paint abrasion; Whether the motor and balance system are intact; Are all safety devices installed and effective; Whether the power supply parameters match; Is the grounding conductor and equipotential connection reliable; Is the connector securely locked. For robots that have been subjected to collisions or impacts, even if there is no obvious damage to the appearance, there may still be invisible damage. It is necessary to carefully inspect the motor and balance system, and replace the affected components if necessary.

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