Process stability for difficult-to-cut materials
Difficult-to-cut materials such as Ti6Al4V and Inconel 718 generate high cutting temperatures—insufficient cooling and lubrication cause rapid tool wear and surface burn on workpieces.
Automotive Fluid Solutions
Aerospace material machining faces a triple test: difficult-to-cut materials, stringent quality standards, and uncompromising reliability. Leveraging its role in the national key R&D program "Clean Cutting Technology for Typical Aerospace Materials" along with COMAC airworthiness certification and 30 years of heat-treatment media expertise, Kerun provides a full-process media solution—from heat treatment, machining & forming, cleaning & rust prevention to surface treatment—for aero-engines, airframe structures and landing gears.
Difficult-to-machine Materials
Precision Machining
Extreme-condition Reliability
Airworthiness Compliance

Industry Challenges
As aerospace material systems expand—titanium alloys, superalloys, aluminum alloys and composites—processing media must meet extreme demands in cooling, lubrication, cleanliness and safety. Backed by national-level R&D capability and airworthiness certification, Kerun ensures every critical process meets the "zero-compromise" standards of aerospace manufacturing.
Difficult-to-cut materials such as Ti6Al4V and Inconel 718 generate high cutting temperatures—insufficient cooling and lubrication cause rapid tool wear and surface burn on workpieces.
Aero-engine blades and airframe structures require extreme surface integrity, residual stress control and batch consistency—media stability and process repeatability directly affect flight safety.
Aerospace manufacturing demands strict control of media cleanliness, residue, traceability and airworthiness—any cross-contamination can trigger major quality incidents.
Related Process Solutions
For the extreme requirements of aerospace material processing, Kerun delivers a complete portfolio spanning heat treatment, machining & forming, surface treatment and protection. Trusted by AVIC, AECC, CASIC, CASC, BIAM, SAC, AVIC Chengdu, Guizhou Aviation, COMAC, Shenyang Tu南, AECC Sichuan and Aelita, while also participating in national key R&D programs and industry-standard development.
Heat Treatment
Quenching fluids and process support for hardness control, distortion reduction, and repeatable thermal processing.
Cutting & Forming
Cutting, grinding, and forming fluids for tool life, dimensional accuracy, friction control, and surface quality.
Surface Treatment & Protection
Cleaning, corrosion protection, and pretreatment solutions for controllable surface condition and downstream compatibility.
Typical Applications
These application areas follow the industry update sheet and identify where KERUN fluid systems are commonly required.
Aircraft Fuselage
Aircraft Wings
Engines
Aero Engines (Turbine Disks, Blades & Engine Casings)
Landing Gear
Spacecraft Structural Components
Recommended Product Systems
Recommended product categories are aligned with the process needs listed in the industry update sheet, covering the fluids and support systems most relevant to aerospace and parts manufacturing.
Fast cooling with excellent stability meets high-efficiency quenching requirements.
Ultra-fast cooling capability delivers deep hardening and superior mechanical performance.
Optimized for special materials and processes to solve advanced machining challenges.
Low-wear and highly stable lubrication designed for precision grinding applications.

Share your component type, material, process, equipment, and performance requirements. KERUN’s technical team can help recommend a suitable fluid system for your automotive production needs.