The Europe low pressure die casting machines market size was estimated at USD 469.0 million in 2024 and is projected to grow at a CAGR of 4.7% from 2025 to 2030. The Europe market for low pressure die casting (LPDC) machines is experiencing steady growth, driven by the increasing demand for lightweight, high-precision metal components, particularly within the automotive and aerospace industries. As manufacturers in Europe intensify efforts to meet stringent EU emissions regulations and improve vehicle fuel efficiency, LPDC technology is gaining traction for its ability to produce high-quality aluminum components with enhanced mechanical performance and reduced porosity.
Technological innovations in casting automation, coupled with growing investments in electric vehicle (EV) manufacturing across Europe, are propelling the market’s expansion. Additionally, the region’s industry’s shift toward producing high-quality structural components for industrial and renewable energy applications is further boosting demand for advanced LPDC machines. These developments align with Europe’s broader goals of enhancing manufacturing efficiency and supporting the transition to greener mobility solutions.
The Europe low pressure die casting (LPDC) machine market is moderately consolidated, featuring a blend of established multinational corporations and specialized regional manufacturers. Leading players focus on designing machines that deliver high precision, consistent processing, and compatibility with lightweight alloys such as aluminum and magnesium, primarily serving the automotive, aerospace, and electronics sectors.
Innovation within the Europe market is largely propelled by increasing demand for lightweight structural components, growing automation in casting operations, and the necessity for energy-efficient, cost-effective production systems. Market dynamics are influenced by Europe’s strong commitment to vehicle electrification, strict environmental regulations, and the increasing complexity of cast components required by OEMs and Tier 1 suppliers.
As manufacturers prioritize lightweight designs and emission reductions, LPDC machines are being developed to support higher throughput, flexible die changeovers, and superior metallurgical quality. Compliance with regional and international standards-including those from the European Union, ISO, and other regulatory bodies-is a critical factor shaping machine design. These standards emphasize sustainable manufacturing practices, energy conservation, and workplace safety, compelling vendors to innovate accordingly to remain competitive within the automotive and aerospace supply chains.
Despite the optimistic market outlook, LPDC machines face competition from high-pressure die casting (HPDC) systems, which are preferred for applications demanding rapid cycle times and large production volumes. Nonetheless, LPDC’s strengths in casting integrity, structural durability, and aptitude for producing complex hollow components ensure continued demand within niche but expanding segments. To maintain leadership in the regional market, manufacturers must advance automation, integrate digital monitoring technologies, and provide customized solutions tailored to next-generation casting challenges, with a strong emphasis on sustainability, material efficiency, and cost reduction.
A major driver of the Europe low pressure die casting (LPDC) machine market is the rising demand for durable, complex-shaped components that can be produced with high consistency and repeatability. LPDC technology offers superior control over the casting process, ensuring excellent surface finishes and robust structural integrity-attributes that are essential for high-performance applications across Europe’s advanced manufacturing sectors. Additionally, the ongoing shift from traditional steel parts to lightweight aluminum alloys in industries such as industrial machinery, consumer appliances, and automotive is accelerating market growth. This transition aligns with Europe’s focus on reducing carbon footprints and improving energy efficiency in manufactured goods.
The widespread adoption of LPDC machines in Europe is constrained by the high initial investment and ongoing maintenance expenses. Additionally, the complexity of operating these machines and their limited compatibility with a broader range of materials compared to alternative casting methods present significant challenges. These factors can hinder smaller manufacturers and impede faster market penetration, despite the technology’s clear advantages in precision and quality.
Significant opportunities in the Europe LPDC machine market stem from the rapid expansion of the electric vehicle (EV) and aerospace manufacturing sectors, both of which demand lightweight, high-strength metal components. Furthermore, the ongoing adoption of Industry 4.0 technologies across manufacturing plants in Europe is paving the way for smart, efficient, and scalable LPDC solutions. These advancements enable enhanced process monitoring, predictive maintenance, and improved production flexibility, aligning with Europe’s drive for digitalization and sustainability in industrial operations.
The automatic segment accounted for the largest revenue share of 63.4% of the overall market in 2024 due to its efficiency, consistent performance, and ability to reduce labor costs while managing high-volume production demands. Automatic LPDC machines are increasingly integrated with advanced digital controls and automation systems, making them well-suited for industries prioritizing scalability, precision, and compliance with Industry 4.0 standards. Their capability for real-time process monitoring and predictive maintenance significantly enhances production uptime and operational reliability.
Semi-automatic machines continue to attract manufacturers aiming to strike a balance between automation benefits and cost-effectiveness. These systems offer enhanced output and lower human error compared to manual setups, while remaining accessible to mid-sized enterprises in Europe. The flexibility in process control provided by semi-automatic machines makes them adaptable to a wide range of part sizes and production volumes, catering well to the diverse manufacturing landscape across Europe.
The horizontal segment led the market and accounted for a revenue share of 54.9% of the overall market in 2024. Horizontal LPDC machines are favored for manufacturing large, flat components with consistent wall thickness, making them particularly suitable for automotive body panels and industrial machinery housings-key sectors within Europe’s manufacturing landscape. Their design facilitates easier handling and provides better mold accessibility, while also optimizing factory floor space, which is critical in Europe’s often space-constrained, high-throughput production facilities.
On the other hand, vertical LPDC machines are preferred for casting components that demand precise metal filling and minimal turbulence, such as turbine blades and high-performance engine parts. The gravity-assisted metal flow in these machines improves material distribution and enhances overall part quality. This vertical configuration is especially effective in reducing common casting defects like shrinkage and air entrapment in complex geometries, aligning well with Europe’s stringent quality requirements in aerospace and energy sectors.
The automotive segment dominated the market with the largest revenue share of 55.0% of the overall market in 2024, driven by the increasing demand for lightweight, durable aluminum components used in engines, wheels, and structural parts, particularly fueled by the rapid expansion of electric vehicle (EV) production across Europe. LPDC technology enables the manufacture of high-performance parts that contribute to reducing overall vehicle weight, thereby enhancing fuel efficiency and extending EV battery range, which aligns with Europe’s stringent emissions targets and sustainability goals.
The electronics industry in Europe leverages LPDC for producing heat sinks, casings, and connectors that require precise geometries and excellent thermal conductivity. This supports the region’s push toward miniaturized, energy-efficient devices. LPDC’s consistent ability to produce thin-walled, thermally conductive components is instrumental in advancing innovations in power electronics, telecommunications, and consumer electronics sectors.
The low pressure die casting machines market in Germany, which is Europe’s industrial and automotive hub, is projected to grow at a CAGR of 5.4% over the forecast period driven by LPDC demand for precision engineering, sustainability, and high-quality manufacturing. The presence of major auto OEMs and machinery manufacturers encourages continuous upgrades to efficient and reliable casting technologies like LPDC.
Italy low pressure die casting machines market is another key market in Europe, known for its robust base of small and medium-sized casting foundries and machinery manufacturers. The country's expertise in precision casting for automotive, industrial machinery, and consumer goods sectors drives sustained demand for LPDC equipment. Italian manufacturers are increasingly integrating LPDC systems to produce complex, high-integrity aluminum parts, particularly for luxury vehicles and high-end motorcycles. Additionally, government incentives for energy-efficient manufacturing processes and export-oriented industrial policies support the adoption of advanced casting technologies.
Some key players operating in the market include CPC Machines and Kurtz Ersa, among others.
Kurtz Ersa is a globally active technology group based in Spessart, Germany. The company specializes in producing foaming and casting machines as well as systems and tools for electronics production. The company operates worldwide with subsidiaries and production facilities across Europe, North America, and Asia, providing customized solutions for various industries.
CPC Machines is a company specializing in the development of advanced casting machinery and technology tailored specifically for the automotive chassis components market. The company operates globally with headquarters in Lake Forest, California, and additional locations in Europe, Beijing, and Sofia, supported by a network that ensures fast and reliable service worldwide. CPC Machines also includes divisions such as Ilinden Ltd., a key manufacturing unit specializing in molds and tooling, and CPC-CERAMICS, which develops specialized ceramic products for casting applications.
In May 2025, UBE Machinery Corporation, a key global supplier of die casting equipment, announced a major expansion of its product portfolio with the introduction of two new ultra-large die casting machines: the UH7300 (7,300 metric tons clamping force) and the UH4500 (4,500 metric tons). This move complements its previously released UH9000 (9,000 metric tons), establishing a full lineup of die casting systems tailored for giga casting - an advanced manufacturing approach that enables the integral molding of large structural automotive parts, particularly for battery electric vehicles (BEVs).
In January 2023, LPM Group announced it moved its headquarters to a new, larger facility in Pontecchio Marconi. The new site covers 40,000 square meters (with 18,000 sqm indoors), centralizing production and administrative activities to support the company’s growth and improve operations.
Report Attribute |
Details |
Market size in 2025 |
USD 485.5 million |
Revenue forecast in 2030 |
USD 609.8 million |
Growth rate |
CAGR of 4.7% from 2025 to 2030 |
Base year for estimation |
2024 |
Historical data |
2018 - 2023 |
Forecast period |
2025 - 2030 |
Quantitative units |
Revenue in USD million, and CAGR from 2025 to 2030 |
Report coverage |
Revenue forecast, company market position analysis, competitive landscape, growth factors, and trends |
Segments covered |
Product, type, end use, country |
Country scope |
UK; Germany; France; Italy; Spain |
Key companies profiled |
CPC Machines; LPM Group; Colosio Srl; WELTOP MACHINERY; Buhler AG; Toshiba Machine Co., Ltd.; Idra Group; UBE MACHINERY CORPORATION, LTD; Dynacast, Kurtz Ersa; fiss Klaus Friedrich e.K. |
Customization scope |
Free report customization (equivalent up to 8 analysts working days) with purchase. Addition or alteration to country & segment scope. |
Pricing and purchase options |
Avail customized purchase options to meet your exact research needs. Explore purchase options |
This report forecasts revenue growth at regional & country levels and provides an analysis of the industry trends in each of the sub-segments from 2018 to 2030. For this study, Grand View Research, Inc has segmented the Europe low pressure die casting machines market report based on product, type, end use, and country:
Product Outlook (Revenue, USD Million, 2018 - 2030)
Automatic
Semi-automatic
Manual
Type Outlook (Revenue, USD Million, 2018 - 2030)
Horizontal
Vertical
End Use Outlook (Revenue, USD Million, 2018 - 2030)
Automotive
Aerospace
Electronics
Construction
Others
Country Outlook (Revenue, USD Million, 2018 - 2030)
UK
Germany
France
Italy
Spain
b. The Europe low pressure die casting machines market size was estimated at USD 469.0 million in 2024 and is expected to reach USD 485.5 million in 2025.
b. The Europe low pressure die casting machines market, in terms of revenue, is expected to grow at a compound annual growth rate of 4.7% from 2025 to 2030 to reach USD 609.8 million by 2030.
b. In 2024, automatic low pressure die casting machines led the market accounting for 63.4% of the regional revenue share due to their efficiency, consistent output, and reduced labor dependency, making them ideal for high-volume production. Their integration with advanced automation and digital controls supports precision, scalability, and real-time monitoring aligned with Industry 4.0 standards..
b. Some of the key players operating in the Europe low pressure die casting machines market are CPC Machines, LPM Group, Colosio Srl, WELTOP MACHINERY, Buhler AG, Toshiba Machine Co., Ltd., Idra Group, UBE MACHINERY CORPORATION, LTD, Dynacast, Kurtz Ersa, and fiss Klaus Friedrich e.K.
b. The Europe low-pressure die casting machines market is primarily driven by the automotive and aerospace industries' demand for lightweight, high-precision components. Additionally, the integration of automation and Industry 4.0 technologies enhances production efficiency and aligns with the region's emphasis on sustainability and stringent environmental regulations.
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