
Умная почта, быстрый бизнес. Автоматически помечайте, анализируйте и отвечайте на запросы, котировки, заказы и многое другое — мгновенно.
В тренде
HAL and Safran Expand Partnership to Produce Forged Parts for LEAP Engines

HAL and Safran Expand Partnership to Produce Forged Parts for LEAP Engines
Strengthening Industrial Collaboration in Aerospace Manufacturing
Hindustan Aeronautics Limited (HAL) and France’s Safran Aircraft Engines have formalized a significant industrial agreement to jointly manufacture forged rotating parts for the LEAP engine program. This development represents a major advancement for India’s aerospace manufacturing capabilities and aligns closely with the government’s “Make in India” initiative. The agreement was signed at the 55th Paris Air Show by HAL’s General Manager Abdul Salam and Safran’s Vice President of Purchasing Dominique Dupuy, building upon a Memorandum of Understanding inked in October 2023 and a subsequent contract finalized in February 2025.
Under the terms of the agreement, HAL will produce high-performance Inconel components—critical for the durability and performance of jet engines—at its state-of-the-art Ring Rolling facility in Bengaluru. Dr. D K Sunil, Chairman and Managing Director of HAL, emphasized the significance of this collaboration, stating, “We are proud to expand our long-standing partnership with Safran and develop our expertise in forging Inconel parts for the LEAP program.”
Technological Advancements and Market Implications
The LEAP engine, developed by CFM International—a joint venture between Safran Aircraft Engines and GE Aerospace—powers next-generation single-aisle aircraft such as the Airbus A320neo and Boeing 737 MAX. With global air travel, particularly in India, experiencing rapid growth, this partnership aims to accelerate LEAP engine production to meet increasing airline demand. The collaboration also marks a technological milestone for HAL, as it advances near-net Ring Forging technology, essential for manufacturing aerospace-grade components that demand exceptional precision, strength, and heat resistance.
Both companies intend to deepen their cooperation by developing additional technologies for other engine components, supporting a broader strategy of indigenization and advanced manufacturing within India. However, the partnership must navigate several challenges, including the integration of manufacturing processes, complex supply chain logistics, and stringent quality control standards required for aerospace components. Overcoming these obstacles will be crucial to fully realizing the benefits of this collaboration.
Market analysts have responded positively to the announcement, noting increased investor confidence in the partnership’s ability to meet the growing production demands of the LEAP engine program. At the same time, competitors are expected to intensify efforts to develop similar forged parts or alternative engine technologies to maintain their positions in the global aerospace market.
Dominique Dupuy of Safran highlighted the strategic importance of the collaboration, stating, “We are pleased to extend our collaboration with HAL, a key player in the Indian aerospace industry. This cooperation is part of our roadmap to diversify production sourcing and strengthen our industrial footprint in India, supporting both domestic air traffic growth and future military requirements.”
Building a Comprehensive Aerospace Ecosystem in India
This agreement reflects a broader ambition to establish a comprehensive aerospace ecosystem within India, catering to both domestic and international aviation programs. Safran, which already operates multiple facilities in the country, continues to regard India as a strategic partner for industrial growth and innovation. As India’s aviation sector continues its rapid expansion, strategic collaborations such as this between HAL and Safran are poised to play a pivotal role in positioning the nation as a global aerospace hub, delivering high-precision, high-performance components for commercial and defense applications alike.