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Internal Gear Skiving Machine Market Size, Share & Trends Analysis Report By Machine Type (Standalone, Multi-functional), By Automation Level, By Gear Size, By Technology, By End-use, By Region, And Segment Forecasts, 2025 - 2033

Published Oct 24, 2025
Length 130 Pages
SKU # GV20575148

Description

Internal Gear Skiving Machine Market Summary

The global internal gear skiving machine market size was estimated at USD 156.7 million in 2024, and is projected to reach USD 316.8 million by 2033, growing at a CAGR of 8.5% from 2025 to 2033. This growth is driven by the rapid electrification of drivetrains across automotive and industrial sectors, increasing adoption of Industry 4.0 enabled machining solutions, advancements in hybrid and micro-manufacturing technologies, supportive government initiatives promoting localized precision manufacturing, and rising automation demand due to workforce shortages in skilled machining operations.

The rapid electrification of vehicle drivetrains is significantly propelling market growth. The U.S. Department of Energy (DOE), through its Vehicle Technologies Office (VTO) and Electric Drive Technical Team, has emphasized the need for advanced manufacturing processes to support the expansion of electric vehicles. Electric drivetrains rely on compact, high-precision internal gears used in e-axles and planetary systems, which require tighter tolerances and faster production rates. Skiving technology offers a cost-efficient and precise solution for such components. Supported by national EV manufacturing incentives, the global market is witnessing strong adoption of internal gear skiving machines across automotive and industrial sectors.

The global move toward digitalized and automated manufacturing boosts demand for smart skiving machines. National programs led by the National Institute of Standards and Technology (NIST) and Manufacturing USA encourage manufacturers to adopt digitally integrated CNC skiving systems with process monitoring, data analytics, and predictive maintenance features. These initiatives are driving the modernization of machine tools and enabling small and medium-sized enterprises (SMEs) to upgrade production capabilities. As a result, integrating skiving machines into Industry 4.0 environments is accelerating, enhancing efficiency and productivity across multiple industries.

Government-funded R&D efforts by institutions such as the Oak Ridge National Laboratory (ORNL), NASA, and the Department of Energy’s Advanced Manufacturing Office are accelerating technological advancements in hybrid and micro-manufacturing. These research programs combine additive manufacturing with finishing processes such as hard skiving, enabling faster production of micro-gears and high-precision internal gears for aerospace, robotics, and medical devices. The integration of skiving into hybrid production lines is expanding its applications beyond traditional automotive uses and boosting the demand for advanced machine configurations capable of precision machining at micron levels.

Evolving export control policies and industrial strategies propel localized machine tool manufacturing investments, directly impacting the market. The U.S. Department of Commerce’s Bureau of Industry and Security (BIS) has updated export classifications for high-precision machine tools, ensuring compliance with dual-use technology regulations. These policy adjustments boost regional manufacturing capabilities and encourage OEMs to develop domestic production ecosystems for critical gear-making equipment. Such shifts reinforce supply chain resilience while stimulating demand for compliant, high-precision skiving machines in North America, Europe, and Asia.

Labor shortages in precision machining are driving rapid adoption of automated and user-friendly skiving solutions, further boosting market growth. Government-backed initiatives under NIST’s Manufacturing Extension Partnership (MEP) and Manufacturing USA are helping manufacturers modernize operations and implement automation-driven training programs. The push toward digital manufacturing and upskilling programs has resulted in greater investment in self-calibrating, turnkey skiving systems that minimize operator dependency and enhance production consistency. This focus on workforce modernization and automation propels market expansion, especially among small and medium-sized manufacturers upgrading to advanced gear machining technologies.

Global Internal Gear Skiving Machine Market Report Segmentation

This report forecasts revenue growth at the global, regional, and country levels and provides an analysis of the latest industry trends in each of the sub-segments from 2021 to 2033. For this study, Grand View Research has segmented the global internal gear skiving machine market report based on machine type, automation level, gear size, technology, end-use, and region:
  • Machine Type Outlook (Revenue, USD Million, 2021 - 2033)
  • Standalone
  • Multi-functional
  • Automation Level Outlook (Revenue, USD Million, 2021 - 2033)
  • Semi-automatic
  • Fully Automatic
  • Gear Size Outlook (Revenue, USD Million, 2021 - 2033)
  • Small Gears (upto 200 mm)
  • Medium Gears (200-500 mm)
  • Large Gears (above 500 mm)
  • Technology Outlook (Revenue, USD Million, 2021 - 2033)
  • Conventional
  • CNC
  • End-use Outlook (Revenue, USD Million, 2021 - 2033)
  • Automotive
  • Aerospace
  • Industrial Machinery
  • Robotics
  • Wind Energy
  • Others
  • Regional Outlook (Revenue, USD Million, 2021 - 2033)
  • North America
  • U.S.
  • Canada
  • Mexico
  • Europe
  • Germany
  • UK
  • France
  • Asia Pacific
  • China
  • Japan
  • India
  • South Korea
  • Australia
  • Latin America
  • Brazil
  • Middle East and Africa (MEA)
  • KSA
  • UAE
  • South Africa
Please note The report will be delivered in 2-3 business days upon order notification.

Table of Contents

130 Pages
Chapter 1. Methodology and Scope
1.1. Market Segmentation and Scope
1.2. Research Methodology
1.2.1. Information Procurement
1.3. Information or Data Analysis
1.4. Methodology
1.5. Research Scope and Assumptions
1.6. Market Formulation & Validation
1.7. Country Based Segment Share Calculation
1.8. List of Data Sources
Chapter 2. Executive Summary
2.1. Market Outlook
2.2. Segment Outlook
2.3. Competitive Insights
Chapter 3. Internal Gear Skiving Machine Market Variables, Trends, & Scope
3.1. Market Lineage Outlook
3.2. Market Dynamics
3.2.1. Market Driver Analysis
3.2.2. Market Restraint Analysis
3.2.3. Industry Challenge
3.3. Internal Gear Skiving Machine Market Analysis Tools
3.3.1. Industry Analysis - Porter’s
3.3.1.1. Bargaining power of the suppliers
3.3.1.2. Bargaining power of the buyers
3.3.1.3. Threats of substitution
3.3.1.4. Threats from new entrants
3.3.1.5. Competitive rivalry
3.3.2. PESTEL Analysis
3.3.2.1. Political landscape
3.3.2.2. Economic landscape
3.3.2.3. Social landscape
3.3.2.4. Technological landscape
3.3.2.5. Environmental landscape
3.3.2.6. Legal landscape
Chapter 4. Internal Gear Skiving Machine Market: Machine Type Estimates & Trend Analysis
4.1. Segment Dashboard
4.2. Internal Gear Skiving Machine Market: Machine Type Movement Analysis, 2024 & 2033, USD Million
4.3. Standalone
4.3.1. Standalone Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
4.4. Multi-functional
4.4.1. Multi-functional Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
Chapter 5. Internal Gear Skiving Machine Market: Automation Level Estimates & Trend Analysis
5.1. Segment Dashboard
5.2. Internal Gear Skiving Machine Market: Automation Level Movement Analysis, 2024 & 2033, USD Million
5.3. Semi-automatic
5.3.1. Semi-automatic Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
5.4. Fully Automatic
5.4.1. Fully Automatic Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
Chapter 6. Internal Gear Skiving Machine Market: Gear Size Estimates & Trend Analysis
6.1. Segment Dashboard
6.2. Internal Gear Skiving Machine Market: Gear Size Movement Analysis, 2024 & 2033, USD Million
6.3. Small Gears (upto 200 mm)
6.3.1. Small Gears (upto 200 mm) Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
6.4. Medium Gears (200-500 mm)
6.4.1. Medium Gears (200-500 mm) Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
6.5. Large Gears (above 500 mm)
6.5.1. Large Gears (above 500 mm) Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
Chapter 7. Internal Gear Skiving Machine Market: Technology Estimates & Trend Analysis
7.1. Segment Dashboard
7.2. Internal Gear Skiving Machine Market: Technology Movement Analysis, 2024 & 2033, USD Million
7.3. Conventional
7.3.1. Conventional Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
7.4. CNC
7.4.1. CNC Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
Chapter 8. Internal Gear Skiving Machine Market: End Use Estimates & Trend Analysis
8.1. Segment Dashboard
8.2. Internal Gear Skiving Machine Market: End Use Movement Analysis, 2024 & 2033, USD Million
8.3. Automotive
8.3.1. Automotive Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
8.4. Aerospace
8.4.1. Aerospace Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
8.5. Industrial Machinery
8.5.1. Industrial Machinery Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
8.6. Robotics
8.6.1. Robotics Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
8.7. Wind Energy
8.7.1. Wind Energy Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
8.8. Others
8.8.1. Others Market Revenue Estimates and Forecasts, 2021 - 2033 (USD Million)
Chapter 9. Internal Gear Skiving Machine Market: Regional Estimates & Trend Analysis
9.1. Internal Gear Skiving Machine Market Share, By Region, 2024 & 2033, USD Million
9.2. North America
9.2.1. North America Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.2.2. U.S.
9.2.2.1. U.S. Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.2.3. Canada
9.2.3.1. Canada Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.2.4. Mexico
9.2.4.1. Mexico Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.3. Europe
9.3.1. Europe Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.3.2. UK
9.3.2.1. UK Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.3.3. Germany
9.3.3.1. Germany Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.3.4. France
9.3.4.1. France Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.4. Asia Pacific
9.4.1. Asia Pacific Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.4.2. China
9.4.2.1. China Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.4.3. Japan
9.4.3.1. Japan Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.4.4. India
9.4.4.1. India Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.4.5. South Korea
9.4.5.1. South Korea Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.4.6. Australia
9.4.6.1. Australia Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.5. Latin America
9.5.1. Latin America Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.5.2. Brazil
9.5.2.1. Brazil Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.6. Middle East and Africa
9.6.1. Middle East and Africa Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.6.2. UAE
9.6.2.1. UAE Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.6.3. KSA
9.6.3.1. KSA Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
9.6.4. South Africa
9.6.4.1. South Africa Internal Gear Skiving Machine Market Estimates and Forecasts, 2021 - 2033 (USD Million)
Chapter 10. Competitive Landscape
10.1. Company Categorization
10.2. Company Market Positioning
10.3. Company Heat Map Analysis
10.4. Company Profiles/Listing
10.4.1. Liebherr-Verzahntechnik GmbH
10.4.1.1. Participant’s Overview
10.4.1.2. Financial Performance
10.4.1.3. Product Benchmarking
10.4.1.4. Strategic Initiatives
10.4.2. Gleason Corporation
10.4.2.1. Participant’s Overview
10.4.2.2. Financial Performance
10.4.2.3. Product Benchmarking
10.4.2.4. Strategic Initiatives
10.4.3. Mitsubishi Heavy Industries
10.4.3.1. Participant’s Overview
10.4.3.2. Financial Performance
10.4.3.3. Product Benchmarking
10.4.3.4. Strategic Initiatives
10.4.4. EMAG GmbH & Co. KG
10.4.4.1. Participant’s Overview
10.4.4.2. Financial Performance
10.4.4.3. Product Benchmarking
10.4.4.4. Strategic Initiatives
10.4.5. Klingelnberg AG
10.4.5.1. Participant’s Overview
10.4.5.2. Financial Performance
10.4.5.3. Product Benchmarking
10.4.5.4. Strategic Initiatives
10.4.6. NIDE C Machine Tool Corporation
10.4.6.1. Participant’s Overview
10.4.6.2. Financial Performance
10.4.6.3. Product Benchmarking
10.4.6.4. Strategic Initiatives
10.4.7. NACHI-FUJIKOSHI Corporation
10.4.7.1. Participant’s Overview
10.4.7.2. Financial Performance
10.4.7.3. Product Benchmarking
10.4.7.4. Strategic Initiatives
10.4.8. JTEKT Corporation
10.4.8.1. Participant’s Overview
10.4.8.2. Financial Performance
10.4.8.3. Product Benchmarking
10.4.8.4. Strategic Initiatives
10.4.9. FFG Werke
10.4.9.1. Participant’s Overview
10.4.9.2. Financial Performance
10.4.9.3. Product Benchmarking
10.4.9.4. Strategic Initiatives
10.4.10. DMG Mori
10.4.10.1. Participant’s Overview
10.4.10.2. Financial Performance
10.4.10.3. Product Benchmarking
10.4.10.4. Strategic Initiatives
10.4.11. DVS TECHNOLOGY GROUP
10.4.11.1. Participant’s Overview
10.4.11.2. Financial Performance
10.4.11.3. Product Benchmarking
10.4.11.4. Strategic Initiatives
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