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市场调查报告书
商品编码
1926518

全球素车(BIW)检测市场(2025-2030 年)

Body In White (BIW) Inspection Market, Global, 2025-2030

出版日期: | 出版商: Frost & Sullivan | 英文 80 Pages | 商品交期: 最快1-2个工作天内

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简介目录

到2030年,OEM供应链多元化和对零缺陷製造的需求将推动成长。

素车(BIW)是指汽车製造中喷漆领先的阶段,涉及将各个钣金部件焊接底盘或车身结构上。本分析检验了全球白车身检测市场的关键趋势,并识别了推动和限制市场成长的因素。儘管疫情后景气衰退和消费需求疲软的风险是重大挑战,但跨境衝突和迫在眉睫的地缘政治威胁使风险环境特别复杂。在白车身检测市场中营运的公司应加快向区域化转型。

这份详尽的分析报告涵盖了车身白车身(BIW)检测产品,例如座标测量机(CMM)、光学数位化仪和扫描器(ODS)、柔性测量系统(FMS)以及雷射雷达,并以2025年为基准年。预测期间为2026年至2030年。报告还包括对美洲、欧洲、亚太地区以及中东和非洲等区域需求模式的分析。最后,报告总结了BIW检测领域涌现的成长机会,这些机会可供市场参与企业和相关人员利用。

报告摘要:素车(BIW)市场

全球汽车车体市场(主要关注素车检测系统)预计到2025年市场规模将达到3.186亿美元,到2030年将达到3.615亿美元,2025年至2030年的复合年增长率为2.6%。市场成长的驱动因素包括自动化检测技术的日益普及、电动车製造流程的日益复杂化以及汽车製造商对零缺陷生产和尺寸精度的追求。

关键市场趋势与洞察

  • 亚太地区在全球素车市场中占最大份额,这主要得益于较高的汽车产量和不断扩大的电动车製造能力。
  • 在汽车製造厂中,在线连续和自动化车身白车身检测系统的日益普及提高了首次合格率,降低了返工率。
  • 以侦测技术来看,光学数位化仪和扫描器由于其速度快、柔软性,并且能够适应复杂的车身结构几何形状,因此占据了最大的份额。
  • 汽车车体市场正在从传统的三坐标测量机过渡到柔性测量系统和雷射雷达解决方案。
  • 轻质材料和复合材料结构的日益普及,推动了素车(BIW)市场对检验要求的提高。

市场规模及预测

  • 2025年市场规模:3.186亿美元
  • 2030年市场规模预测:3.615亿美元
  • 复合年增长率(2025-2030年):2.6%
  • 亚太地区:最大的市场
  • 美洲和欧洲:成熟的、技术升级主导市场

汽车製造设施的持续现代化以及向数据驱动的品质保证的转变,预计将在整个预测期内支持汽车车体市场的稳定成长。

市场概况及趋势:素车(BIW)市场

汽车车体市场在整车製造中扮演着至关重要的角色,它涉及钣金零件的焊接,从而在喷漆前形成车辆结构。此阶段的检验至关重要,以确保尺寸精度、结构完整性以及符合日益严格的品质标准。因此,素车(BIW)市场成为整车製造商在自动化和智慧製造领域投资的重点。

素车市场的一个关键结构性趋势是从离线抽样检测转向100%在线连续检测。生产速度的提高、节拍时间的缩短以及轻量化材料的普及,使得传统的检测方法越来越难以满足需求。在线连续检测系统能够对尺寸精度进行连续监控,使原始设备製造商(OEM)能够即时检测偏差,从而减少返工和报废。

汽车车体市场另一个关键趋势是光学和非接触式检测技术的快速普及。光学数位化仪和扫描器具有高速测量和柔软性,使其成为采用铝、复合材料和复杂几何形状的电动车平台的理想选择。基于机器人的弹性测量系统正越来越多地直接整合到生产线中,以支援自动化品管。

软体和分析能力也正成为素车(BIW)市场的核心要素,原始设备製造商(OEM)正在部署支援数位双胞胎、统计製程控制和预测性品质分析的侦测软体。这些能力实现了闭合迴路製造,将检测数据直接回馈到製程优化。

从区域来看,亚太地区的需求主要受大规模汽车製造和电动车产能快速扩张的驱动;而欧洲和美洲的需求则较为稳定,这主要得益于监管合规、精密製造要求以及现有检测基础设施的现代化。这些趋势正在汇聚,推动素车市场转型为技术主导、数据驱动的汽车製造业。

分析范围:素车(BIW)市场

本分析检验了全球汽车车体市场,重点在于白车身製造和组装过程中使用的检测系统。研究週期涵盖2022年至2030年,其中2025年为基准年,2026年至2030年为预测期。所有市场价值均以美元计价。

素车(BIW)市场涵盖用于尺寸测量和品质保证的检测设备及相关软体。所涵盖的技术包括座标测量机(CMM)、光学数位化仪和扫描仪、柔性测量系统以及雷射测距仪(LiDAR)解决方案。安装、维护服务和售后支援方面的收入不包含在内。

地理覆盖范围包括亚太地区、美洲、欧洲和世界其他地区。分析重点在于整车製造商和一级供应商在素车市场的采用模式,反映了内燃机和电动车平台的需求。

调查方法结合了二手资料研究、OEM生产资料、技术采纳趋势和专家访谈。预测数据基于历史市场表现、技术转型速度和区域汽车生产前景。为与既定的汽车车体市场分析范围保持一致,本研究刻意省略了细分市场层面的收入组成。

收入与预测:素车(BIW)市场

全球汽车车体白车身市场呈现缓慢但稳定的收入成长,反映出其成熟的产业结构和在汽车製造业中的重要角色。根据这项研究,预计2025年素车市场收入将达到3.186亿美元,到2030年将达到3.615亿美元,预测期内复合年增长率(CAGR)为2.6%。

素车市场支出成长的主要驱动力是原始设备製造商 (OEM) 对自动化、数位化品管和电动车专用检测要求的投资,而非产量增加。随着车辆架构日益复杂,製造商正投入更多资金用于先进的侦测技术,以确保尺寸精度并降低缺陷率。

整体营收成长保持温和,对光学数位化仪、柔性测量系统和软体平台的持续投资支撑了各地区稳定的支出。亚太地区继续占据全球支出的最大份额,而欧洲和美洲则透过现代化倡议维持了稳定的需求。

市场区隔分析:素车市场

素车(BIW) 市场主要按检测技术类型进行细分,反映了汽车生产线中自动化程度、柔软性和整合度的差异。

座标测量机(CMM)是汽车车体市场中最传统的侦测技术。虽然这些系统广泛用于参考测量和校准,但其处理速度慢和离线操作的限制日益凸显。随着生产速度的提高,CMM正逐渐被其他技术补充或取代。

光学数位化仪和扫描器 (ODS) 占据了素车市场最大的份额。这些系统提供非接触式高速测量,使其成为全表面侦测的理想选择。其柔软性和精确性使其在具有复杂几何形状和轻质材料的电动车平台上特别受欢迎。

随着原始设备製造商 (OEM) 追求更高水准的自动化,弹性测量系统 (FMS) 正日益普及。 FMS 解决方案通常基于机器人,可直接在生产线上在线连续检测,帮助素车(BIW) 市场实现持续的品质监控并减少人为干预。

雷射雷达是一个新兴领域,它具备远距离、绝对测量能力。在传统光学系统有其限制的反射表面和大型素车组装上,雷射雷达系统正得到越来越广泛的应用。

从应用角度来看,BIW 检测系统已广泛部署在大规模生产工厂、专用电动车设施、原型车和小批量生产环境等。细分市场趋势表明,整个汽车车体市场正在向自动化、在线连续和软体驱动的检测解决方案发生明显转变。

成长要素:素车市场

影响汽车车体市场的关键成长要素包括对零缺陷製造和一次性品质优化的需求不断增长,因为OEM厂商面临着减少返工、报废和保固成本的压力,这使得先进的白车身检测变得越来越重要。

向电动车 (EV) 的转型也是一个主要驱动因素,因为电动车平台引入了新材料、更严格的公差和复杂的结构设计,提高了素车(BIW) 市场的检验要求。

自动化和智慧工厂理念的日益普及也推动了成长:在线连续检测系统能够提供即时品质回馈,提高生产效率并减少停机时间。

最后,监管和可追溯性要求迫使整车製造商实施全面的检查和数据记录系统,从而增强了素车市场的长期需求。

成长限制因素:素车市场

儘管汽车车体市场具有重要的战略意义,但它也面临一些限制:先进检测系统相关的高昂资本成本限制了其普及,尤其是在中小製造商和供应商中。

系统复杂性和对熟练操作人员的需求也是挑战,原始设备製造商 (OEM) 难以将日益复杂的检测技术与自身的人员能力相匹配。此外,素车(BIW) 市场的成熟也限制了成长,需求主要来自于替换和升级,而非新增产能。

宏观经济的不确定性和汽车产量的波动也可能影响短期投资决策。

竞争格局:素车(BIW)市场

汽车车体市场竞争环境较为多元化,超过 20 家公司年销售额超过 100 万美元。素车(BIW) 市场的竞争格局取决于企业长期累积的技术专长、与汽车 OEM 厂商建立的稳固客户关係,以及在大规模生产环境中保持稳定性能的能力。

素车市场的主要竞争优势在于成本效益、系统性能和客户关係。供应商之间的竞争体现在能否提供精准可靠的检测解决方案,同时保持价格竞争力并提供长期支援。鑑于白车身检测系统整合的复杂性,与汽车原始设备製造商 (OEM) 和一级供应商建立牢固的关係对于确保业务的持续成长和长期合约的签订至关重要。

汽车车体市场主要由汽车产业主导,涵盖内燃机汽车和电动车製造厂。市场需求与整车製造商的生产策略、自动化投资以及白车身阶段的品管要求密切相关。

蔡司集团和海克斯康公司主导竞争格局,预计到2025年,两家公司合计将占据市场总收入的50.5%,凸显了高端市场的高度集中。这些公司受益于丰富的产品系列、先进的软体生态系统和强大的全球布局。

素车(BIW) 市场的其他主要参与企业包括 Atlas Copco、Nikon、API Metrology、Inos Automation、LK Metrology、Wenzel Group、Mitutoyo Corporation、Creaform、Faro、ASF Metrology、Innovalia Metrology 和 Scantech,其中许多公司已在细分市场和区域市场建立了强大的市场地位。

汽车车体市场的分销由直销、分销商、经销商和系统整合商共同推动,这反映了白车身检测系统部署的客製化和计划主导特性。

目录

发展机会:研究范围

成长环境:车身检验产业的转型

  • 为什么经济成长变得越来越困难?
  • 策略要务
  • 三大策略要务对车身白车身检测产业的影响

车身检验部门生态系统

  • 价值链
  • 竞争环境
  • 主要竞争对手
  • 市场趋势

白车身检测市场的成长要素

  • 成长指标
  • 成长驱动因素
  • 驱动因素分析
  • 成长限制因素
  • 生长抑制分析
  • 预测考量
  • 收入预测
  • 按产品分類的收入预测
  • 按地区分類的收入预测
  • 各国收入预测
  • 各国收入预测
  • 各国收入预测
  • 收入预测分析
  • 收益分成

成长动力:CMM

  • 成长指标
  • 收入预测
  • 按地区分類的收入预测
  • 预测分析 - CMM

成长驱动因素:ODS

  • 成长指标
  • 收入预测
  • 按地区分類的收入预测
  • 预测分析 - ODS

成长动力:FMS

  • 成长指标
  • 收入预测
  • 按地区分類的收入预测
  • 预测分析 - FMS

增长动力:雷射雷达

  • 成长指标
  • 收入预测
  • 按地区分類的收入预测
  • 预测分析 -雷射雷达

白车身检测市场的成长机会

  • 成长机会1:电动车
  • 成长机会2:OEM供应链多元化
  • 成长机会3:人工智慧

附录与后续步骤

简介目录
Product Code: PG5Y-30

OEM Supply Chain Diversification and Demand for Zero-Defect Manufacturing to Drive Growth By 2030

BIW is the stage of automotive manufacturing preceding painting, during which individual sheet-metal components are welded to the chassis or car body structure. This analysis examines the key trends in the global BIW inspection market and identifies the factors that drive and restrain market growth. While the risks of recession and tepid consumer demand were important post-pandemic, the risk environment has become particularly complex with the addition of cross-border clashes and looming geopolitical threats. Companies operating in the BIW inspection market should hasten their pivot toward regionalization.

Using 2025 as the base year, this in-depth analysis covers BIW inspection products, including coordinate measuring machines (CMMs), optical digitizers and scanners (ODSs), flexible measurement systems (FMSs), and laser radar. The forecast period runs from 2026 to 2030. A regional perspective of demand patterns in the Americas, Europe, Asia-Pacific, and the Middle East and Africa. The study concludes with growth opportunities emerging from the BIW inspection space that market participants and stakeholders can leverage.

Report Summary: Body in White (BIW) Market

The global automotive body-in-white market, focused on Body in White (BIW) inspection systems, was valued at USD 318.6 million in 2025 and is projected to reach USD 361.5 million by 2030, growing at a CAGR of 2.6% from 2025 to 2030. Market growth is supported by increasing adoption of automated inspection technologies, rising electric vehicle (EV) manufacturing complexity, and OEM focus on zero-defect production and dimensional accuracy.

Key Market Trends & Insights

  • Asia-Pacific accounted for the largest share of the global body in white market, driven by high vehicle production volumes and expanding EV manufacturing capacity.
  • In automotive manufacturing plants, increasing deployment of inline and automated BIW inspection systems is improving first-time quality and reducing rework rates.
  • By inspection technology, optical digitizers and scanners held the largest share due to their speed, flexibility, and suitability for complex BIW geometries.
  • The automotive body-in-white market is transitioning from traditional coordinate measuring machines toward flexible measurement systems and laser radar solutions.
  • Growing use of lightweight materials and mixed-material structures is increasing inspection requirements within the Body in White (BIW) market.

Market Size & Forecast

  • 2025 Market Size: USD 318.6 Million
  • 2030 Projected Market Size: USD 361.5 Million
  • CAGR (2025-2030): 2.6%
  • Asia-Pacific: Largest Market
  • Americas & Europe: Mature, technology-upgrade-driven markets

The continued modernization of automotive manufacturing facilities and the shift toward data-driven quality assurance are expected to support steady growth in the automotive body-in-white market through the forecast period.

Market Overview & Trends: Body in White (BIW) Market

The automotive body-in-white market plays a foundational role in vehicle manufacturing, encompassing the stage where sheet-metal components are welded to form the vehicle structure prior to painting. Inspection at this stage is essential to ensure dimensional accuracy, structural integrity, and compliance with increasingly stringent quality standards. As a result, the Body in White (BIW) market has become a focal point for OEM investments in automation and smart manufacturing.

A key structural trend shaping the body in white market is the shift from offline, sampling-based inspection toward 100% inline inspection. Traditional inspection approaches are increasingly inadequate due to higher production speeds, reduced takt times, and the growing use of lightweight materials. Inline inspection systems enable continuous monitoring of dimensional accuracy, allowing OEMs to detect deviations in real time and reduce rework and scrap.

Another major trend in the automotive body-in-white market is the rapid adoption of optical and non-contact inspection technologies. Optical digitizers and scanners offer high-speed measurement and flexibility, making them well suited for EV platforms that use aluminum, mixed materials, and complex geometries. Flexible measurement systems, often robot-based, are increasingly integrated directly into production lines to support automated quality control.

Software and analytics capabilities are also becoming central to the Body in White (BIW) market. OEMs are deploying inspection software that supports digital twins, statistical process control, and predictive quality analytics. These capabilities enable closed-loop manufacturing, where inspection data feeds directly back into process optimization.

Regionally, Asia-Pacific leads demand due to large-scale vehicle production and rapid EV capacity expansion. In contrast, Europe and the Americas are characterized by stable demand driven by regulatory compliance, precision manufacturing requirements, and modernization of existing inspection infrastructure. Collectively, these trends are reshaping the body in white market into a technology-driven, data-centric segment of automotive manufacturing.

Scope of Analysis: Body in White (BIW) Market

This analysis examines the global automotive body-in-white market with a specific focus on inspection systems used during BIW manufacturing and assembly. The study period spans 2022-2030, with 2025 as the base year and 2026-2030 as the forecast period. All market values are presented in US dollars.

The scope of the Body in White (BIW) market includes inspection equipment and associated software used for dimensional measurement and quality assurance. Covered technologies include coordinate measuring machines, optical digitizers and scanners, flexible measurement systems, and laser radar solutions. Revenues from installation, maintenance services, and aftermarket support are excluded.

Geographic coverage includes Asia-Pacific, the Americas, Europe, and Rest of the World. The analysis focuses on OEM and Tier-1 supplier adoption patterns within the body in white market, reflecting demand across both internal combustion engine and electric vehicle platforms.

Methodologically, the study integrates secondary research, OEM production data, technology adoption trends, and expert interviews. Forecasts are developed using historical market performance, technology transition rates, and regional automotive production outlooks. Segment-level revenue splits are intentionally excluded to maintain consistency with the defined analytical scope of the automotive body-in-white market.

Revenue & Spending Forecast: Body in White (BIW) Market

The global automotive body-in-white market demonstrates moderate but stable revenue growth, reflecting its mature industry structure and critical role in automotive manufacturing. According to the study, the Body in White (BIW) market generated USD 318.6 million in 2025 and is forecast to reach USD 361.5 million by 2030, growing at a CAGR of 2.6% over the forecast period.

Spending growth in the body in white market is primarily driven by OEM investments in automation, digital quality control, and EV-specific inspection requirements rather than expansion in production volumes. As vehicle architectures become more complex, manufacturers are allocating capital toward advanced inspection technologies to maintain dimensional accuracy and reduce defect rates.

Although overall revenue growth remains modest, sustained investment in optical digitizers, flexible measurement systems, and software platforms supports consistent spending across regions. Asia-Pacific continues to account for the largest share of global spending, while Europe and the Americas maintain stable demand through modernization initiatives.

Market Segmentation Analysis: Body in White Market

The Body in White (BIW) market is segmented primarily by inspection technology type, reflecting varying levels of automation, flexibility, and integration within automotive production lines.

Coordinate Measuring Machines (CMMs) represent the most traditional inspection technology in the automotive body-in-white market. These systems are widely used for reference measurement and calibration but are increasingly limited by slower throughput and offline operation. As production speeds increase, CMMs are gradually being supplemented or replaced.

Optical Digitizers and Scanners (ODS) constitute the largest segment within the body in white market. These systems provide non-contact, high-speed measurement and are well suited for full-surface inspection. Their flexibility and accuracy make them particularly attractive for EV platforms with complex geometries and lightweight materials.

Flexible Measurement Systems (FMS) are gaining traction as OEMs pursue higher levels of automation. Typically robot-based, FMS solutions enable inline inspection directly on the production line, supporting continuous quality monitoring and reduced human intervention in the Body in White (BIW) market.

Laser Radar represents an emerging segment, offering long-range, absolute measurement capabilities. These systems are increasingly adopted for reflective surfaces and large BIW assemblies where traditional optical systems face limitations.

From an application perspective, BIW inspection systems are deployed across mass-production plants, EV-focused facilities, and prototype or low-volume manufacturing environments. Segmentation trends indicate a clear shift toward automated, inline, and software-enabled inspection solutions across the automotive body-in-white market.

Growth Drivers: Body in White Market

Key growth drivers shaping the automotive body-in-white market include increasing demand for zero-defect manufacturing and first-time quality optimization. OEMs are under pressure to reduce rework, scrap, and warranty costs, elevating the importance of advanced BIW inspection.

The transition toward electric vehicles is another major driver. EV platforms introduce new materials, tighter tolerances, and complex structural designs, increasing inspection requirements across the Body in White (BIW) market.

Rising adoption of automation and smart factory concepts further supports growth. Inline inspection systems enable real-time quality feedback, improving production efficiency and reducing downtime.

Finally, regulatory and traceability requirements are driving OEMs to implement comprehensive inspection and data-logging systems, reinforcing long-term demand in the body in white market.

Growth Restraints: Body in White Market

Despite its strategic importance, the automotive body-in-white market faces several constraints. High capital costs associated with advanced inspection systems limit adoption, particularly among smaller manufacturers and suppliers.

System complexity and the need for skilled operators also pose challenges, as OEMs struggle to align workforce capabilities with increasingly sophisticated inspection technologies. Additionally, the mature nature of the Body in White (BIW) market constrains growth, as demand is largely driven by replacement and upgrades rather than new capacity expansion.

Macroeconomic uncertainty and fluctuations in vehicle production volumes can further impact short-term investment decisions.

Competitive Landscape: Body in White (BIW) Market

The automotive body-in-white market exhibits a moderately fragmented competitive environment, with more than 20 companies generating annual revenues exceeding USD 1 million. Competition within the Body in White (BIW) market is shaped by long-standing technology expertise, established customer relationships with automotive OEMs, and the ability to deliver consistent performance across high-volume manufacturing environments.

Key competitive differentiation in the body in white market is primarily driven by cost efficiency, system performance, and customer relationships. Vendors compete on their ability to deliver accurate, reliable inspection solutions while maintaining competitive pricing and long-term support capabilities. Strong relationships with automotive OEMs and Tier-1 suppliers play a critical role in securing repeat business and long-term contracts, given the integration complexity of BIW inspection systems.

The primary end-user vertical for the automotive body-in-white market is the automotive industry, encompassing both internal combustion engine and electric vehicle manufacturing facilities. Demand is closely tied to OEM production strategies, automation investments, and quality control requirements at the BIW stage.

The competitive landscape is led by Zeiss Group and Hexagon AB, which together accounted for 50.5% of total market revenue in 2025, highlighting a degree of market concentration at the top end. These companies benefit from broad product portfolios, advanced software ecosystems, and strong global presence.

Other notable participants in the Body in White (BIW) market include Atlas Copco, Nikon, API Metrology, Inos Automation, LK Metrology, Wenzel Group, Mitutoyo Corporation, Creaform, Faro, ASF Metrology, Innovalia Metrology, and Scantech, many of which maintain strong niche or regional positions.

Distribution within the automotive body-in-white market is conducted through a mix of direct sales, distributors, resellers, and system integrators, reflecting the customized and project-driven nature of BIW inspection system deployment.

Table of Contents

Growth Opportunities: Research Scope

  • Scope of Analysis
  • Segmentation

Growth Environment: Transformation in BIW Inspection Sector

  • Why is it Increasingly Difficult to Grow?
  • The Strategic Imperative 8™
  • The Impact of the Top 3 Strategic Imperatives on the BIW Inspection Industry

Ecosystem in BIW Inspection Sector

  • Value Chain
  • Competitive Environment
  • Key Competitors
  • Market Trends

Growth Generator in BIW Inspection Market

  • Growth Metrics
  • Growth Drivers
  • Growth Driver Analysis
  • Growth Restraints
  • Growth Restraint Analysis
  • Forecast Considerations
  • Revenue Forecast
  • Revenue Forecast by Product
  • Revenue Forecast by Region
  • Revenue Forecast by Country
  • Revenue Forecast by Country
  • Revenue Forecast by Country
  • Revenue Forecast Analysis
  • Revenue Share

Growth Generator: CMM

  • Growth Metrics
  • Revenue Forecast
  • Revenue Forecast by Region
  • Forecast Analysis-CMM

Growth Generator: ODS

  • Growth Metrics
  • Revenue Forecast
  • Revenue Forecast by Region
  • Forecast Analysis-ODS

Growth Generator: FMS

  • Growth Metrics
  • Revenue Forecast
  • Revenue Forecast by Region
  • Forecast Analysis-FMS

Growth Generator: Laser Radar

  • Growth Metrics
  • Revenue Forecast
  • Revenue Forecast by Region
  • Forecast Analysis-Laser Radar

Growth Opportunity Universe in BIW Inspection Market

  • Growth Opportunity 1: Electric Vehicles
  • Growth Opportunity 2: OEM Supply Chain Diversification
  • Growth Opportunity 3: Artificial Intelligence

Appendix & Next Steps

  • Benefits and Impacts of Growth Opportunities
  • Next Steps
  • List of Exhibits
  • Legal Disclaimer