市場調查報告書
商品編碼
1471012
輻射屏蔽材料市場:按類型、材料和最終用戶分類 - 全球預測 2024-2030Radiation Shielding Material Market by Type (Electromagnetic Radiation, Particle Radiation), Material (Lead Composite Shielding, Lead Shielding, Non-lead Shielding), End-User - Global Forecast 2024-2030 |
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預計2023年輻射屏蔽材料市場規模為7,1394萬美元,預計2024年將達7,6,084萬美元,2030年將達1,13,193萬美元,複合年成長率為6.80%。
輻射屏蔽材料市場開發、製造和銷售用於各行業免受有害電離和非電離輻射的防護材料。主要領域包括醫療、核能、航太、國防、工業射線照相、科學研究機構和電子製造。輻射屏蔽材料在醫療領域先進診斷設備的應用不斷增加,以及全球核能領域的成長,都有助於輻射屏蔽材料市場的擴張。政府和監管機構實施的嚴格安全法規和輻射防護標準也刺激了市場擴張。然而,製造成本高、最終用戶對適當保護措施的認知低以及對輻射屏蔽材料對環境影響的擔憂等挑戰正在阻礙市場成長。潛在的商機在於研究用於航太應用的輕質複合材料和對環境影響較小的永續材料。
主要市場統計 | |
---|---|
基準年[2023] | 71394萬美元 |
預測年份 [2024] | 76084萬美元 |
預測年份 [2030] | 113,193萬美元 |
複合年成長率(%) | 6.80% |
類型:醫療領域電磁波對策需求增加
電磁輻射屏蔽材料旨在防止暴露於電磁波(包括射頻 (RF) 和微波輻射)所造成的有害後果。這些材料廣泛應用於通訊、醫療、航太、國防等產業。對有效電磁屏蔽的需求源自於對人類健康和敏感電子設備的潛在負面影響。市面上有多種電磁輻射屏蔽材料,包括導電聚合物、金屬片材和箔材以及磁性材料。
粒子輻射屏蔽材料可保護個人和環境免受核反應和放射性崩壞過程中釋放的高能量粒子的影響。核能發電廠、研究實驗室以及提供放射治療和癌症治療的醫療設施等行業需要有效的粒子輻射防護,因為這些粒子對人類健康和設備完整性構成潛在危險。粒子束輻射屏蔽材料的選擇取決於被屏蔽的輻射類型。選擇合適的屏蔽材料取決於輻射源類型、所需的衰減程度、重量限制和成本效益。製造商繼續進行研究,開發可以提高安全性和性能的新材料和技術,以滿足不斷變化的行業需求。
材料:無鉛屏蔽材料的機會正在增加,因為它們可以在不影響性能的情況下解決環境和健康問題。
鉛複合屏蔽材料是輕質、靈活的混合解決方案,將鉛與其他緻密元素結合起來,以增強輻射衰減性能。這種材料非常適合製造醫療設備、航太零件和電子產品。鉛屏蔽材料因其高原子序數、密度和經濟高效的解決方案而廣受歡迎,適用於醫療、核能發電廠、實驗室和建築等行業。由於日益成長的環境問題和對鉛使用的監管限制,無鉛屏蔽材料(例如鎢基和鉍基複合材料)越來越受歡迎。這些替代材料列出了類似的輻射衰減特性,且沒有與鉛暴露相關的健康風險。適用於敏感應用,例如兒童輻射測試、食品測試設備和半導體製造。
最終用戶:醫院對更耐用、更先進的輻射屏蔽最尖端科技的需求增加
門診手術中心 (ASC) 需要輻射屏蔽材料,以確保患者和工作人員在放射治療過程中的安全。這些設施通常進行微創手術和診斷影像測試,因此需要比醫院更低等級的輻射防護。 ASC 中常見的輻射屏蔽材料包括襯鉛幹牆、含鉛玻璃和移動屏障。放射診所等診斷中心專注於醫學影像檢查,如 X 光、 電腦斷層掃描和 MRI篩檢,所有這些都涉及暴露於電離輻射。診斷中心通常首選的材料包括鉛門窗、軟質鉛窗簾和人員防護服。醫院進行從診斷到放射治療的各種放射程序和治療,並且需要用於各種應用和環境的各種輻射屏蔽材料,例如介入放射科、核醫學科和手術室。
區域洞察
在美洲,隨著美國和加拿大建立了醫療基礎設施、核能發電廠和國防部門,對輻射屏蔽材料的需求很高。美國在先進材料的研發方面投入巨資,最近也申請了多項專利。由於歐盟 (EU) 內有關輻射防護的嚴格規定,歐洲、中東和非洲對先進屏蔽材料的需求量很大。 Horizon 2020 等研究項目重點開發創新的職業和環境輻射防護解決方案。在中東,沙烏地阿拉伯和阿拉伯聯合大公國等國家正在投資核能發電,增加了對屏蔽材料的需求。在非洲,不斷擴大的醫療基礎設施和礦產探勘活動正在促進市場成長。亞太地區的主要參與企業包括中國、日本和印度。在中國,核能發電廠的擴建需要有效的屏蔽解決方案,在日本,福島第一核能發電廠的除役過程需要先進的防護措施。印度醫療領域和核能發電的成長將進一步推動該地區輻射屏蔽材料的需求。
FPNV定位矩陣
FPNV定位矩陣對於評估輻射屏蔽材料市場至關重要。我們檢視與業務策略和產品滿意度相關的關鍵指標,以對供應商進行全面評估。這種深入的分析使用戶能夠根據自己的要求做出明智的決策。根據評估,供應商被分為四個成功程度不同的像限。最前線 (F)、探路者 (P)、利基 (N) 和重要 (V)。
市場佔有率分析
市場佔有率分析是一種綜合工具,可以對輻射屏蔽材料市場供應商的現狀進行深入而詳細的研究。全面比較和分析供應商在整體收益、基本客群和其他關鍵指標方面的貢獻,以便更好地了解公司的績效及其在爭奪市場佔有率時面臨的挑戰。此外,該分析也為此細分市場的競爭特徵提供了寶貴的見解,包括在研究基準年觀察到的累積、分散主導地位和合併特徵等因素。詳細程度的提高使供應商能夠做出更明智的決策並制定有效的策略,從而在市場上獲得競爭優勢。
1. 市場滲透率:提供有關主要企業所服務的市場的全面資訊。
2. 市場開拓:我們深入研究利潤豐厚的新興市場,並分析其在成熟細分市場的滲透率。
3. 市場多元化:包括新產品發布、開拓地區、最新發展和投資的詳細資訊。
4. 競爭評估和情報:對主要企業的市場佔有率、策略、產品、認證、監管狀況、專利狀況和製造能力進行全面評估。
5. 產品開發與創新:包括對未來技術、研發活動和突破性產品開發的智力見解。
1.輻射屏蔽材料市場規模及預測是多少?
2.在輻射屏蔽材料市場的預測期內,我們應該考慮投資哪些產品和應用?
3.輻射屏蔽材料市場的技術趨勢和法規結構是什麼?
4.輻射屏蔽材料市場主要供應商的市場佔有率為何?
5. 進入輻射屏蔽材料市場的適當形式和策略手段是什麼?
[183 Pages Report] The Radiation Shielding Material Market size was estimated at USD 713.94 million in 2023 and expected to reach USD 760.84 million in 2024, at a CAGR 6.80% to reach USD 1,131.93 million by 2030.
The radiation shielding material market involves developing, producing, and selling materials designed to safeguard against harmful ionizing and non-ionizing radiation across various industries. Key sectors include healthcare, nuclear energy, aerospace, defense, industrial radiography, scientific research institutions, and electronic manufacturing. The rising application of radiation shielding material for advanced diagnostic equipment in the healthcare sector and the growing nuclear power sector worldwide are contributing to the radiation shielding material market's expansion. In addition, government and regulatory bodies impose stringent safety regulations and radiation protection standards, fueling market growth. However, challenges such as high production costs, limited end-user awareness about proper protection measures, and concerns associated with the environmental implications of radiation shielding materials are hampering the market growth. Potential opportunities lie in lightweight composite materials for aerospace applications and research into sustainable materials with low environmental impact.
KEY MARKET STATISTICS | |
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Base Year [2023] | USD 713.94 million |
Estimated Year [2024] | USD 760.84 million |
Forecast Year [2030] | USD 1,131.93 million |
CAGR (%) | 6.80% |
Type: Increasing demand for electromagnetic radiation from healthcare sector due to
Electromagnetic radiation shielding materials are designed to protect against the harmful outcomes of exposure to electromagnetic waves, including radio frequency (RF) and microwave emissions. These materials find widespread use in industries such as telecommunications, healthcare, aerospace, and defense. The need for effective electromagnetic shielding arises from the potential negative impact on human health and sensitive electronic equipment. In the market, various electromagnetic radiation shielding materials exist, including conductive polymers, metal sheets or foils, and magnetic materials.
Particle radiation shielding materials safeguard individuals and environments from high-energy particles emitted during nuclear reactions or radioactive decay processes. Industries such as nuclear power plants, research laboratories, and medical facilities implementing radiology or cancer treatment require efficient particle radiation protection due to the potential hazards these particles pose on human health and equipment integrity. The choice of particle radiation shielding material depends on the specific type of blocked radiation. Selection of the appropriate shielding material depends on the type of radiation source, required attenuation levels, weight constraints, and cost-effectiveness. Manufacturers continue to research to develop new materials and technologies that can enhance safety and performance in response to evolving industry demands.
Material: Growing opportunities for non-lead shielding materials due to their ability to address environmental and health concerns without compromising performance
Lead composite shielding is a lightweight, flexible hybrid solution that combines lead with other high-density elements to enhance radiation attenuation properties. This material is ideal for manufacturing medical devices, aerospace components, and electronic equipment. Lead shielding is popular due to its high atomic number, density, and cost-effective solutions for industries such as healthcare, nuclear power plants, research laboratories, and construction. Non-lead shielding materials such as tungsten and bismuth-based composites are gaining traction due to increasing environmental concerns and regulatory restrictions on lead usage. These alternatives offer comparable radiation attenuation properties without the health risks associated with lead exposure. They suit sensitive applications, including pediatric radiology, food inspection equipment, and semiconductor manufacturing.
End-User: Increasing demand for radiation shielding materials with increased durability and cutting-edge technology across the hospitals
Ambulatory Surgical Centers (ASCs) require radiation shielding materials to ensure patient and staff safety during radiological procedures. These facilities typically perform minimally invasive surgeries and diagnostic imaging tests, requiring lower radiation protection levels than hospitals. Common radiation shielding materials in ASCs include lead-lined drywall, leaded glass, and mobile barriers. Diagnostic centers such as radiology clinics focus on medical imaging procedures such as X-rays, CT scans, and MRI screenings - all involving exposure to ionizing radiation. Materials commonly preferred by diagnostic centers include lead doors and windows, flexible lead curtains, and shielded clothing for personnel. Hospitals perform various radiological procedures and treatments ranging from diagnostics to radiation therapy and require a diverse range of radiation shielding materials that cater to different applications and settings, such as interventional radiology suites, nuclear medicine departments, and operating rooms.
Regional Insights
In the Americas, the United States and Canada have a high demand for radiation shielding materials due to their well-established healthcare infrastructure, nuclear power plants, and defense sectors. The US has invested heavily in research and development of advanced materials, with several patents filed recently. EMEA witnesses substantial demand for advanced shielding materials due to stringent regulations on radiation protection within the European Union. Research programs such as Horizon 2020 focus on developing innovative occupational and environmental radiological protection solutions. In the Middle East, countries such as Saudi Arabia and UAE invest in nuclear power capabilities, increasing the need for shielding materials. Africa's growing healthcare infrastructure and mineral exploration activities contribute to market growth. The Asia-Pacific region's major players include China, Japan, and India. China's expansion of nuclear power plants requires effective shielding solutions, while Japan needs advanced protective measures during the Fukushima Daiichi Nuclear Power Plant decommissioning process. India's growing healthcare sector and nuclear power generation capabilities further drive the region's demand for radiation shielding materials.
FPNV Positioning Matrix
The FPNV Positioning Matrix is pivotal in evaluating the Radiation Shielding Material Market. It offers a comprehensive assessment of vendors, examining key metrics related to Business Strategy and Product Satisfaction. This in-depth analysis empowers users to make well-informed decisions aligned with their requirements. Based on the evaluation, the vendors are then categorized into four distinct quadrants representing varying levels of success: Forefront (F), Pathfinder (P), Niche (N), or Vital (V).
Market Share Analysis
The Market Share Analysis is a comprehensive tool that provides an insightful and in-depth examination of the current state of vendors in the Radiation Shielding Material Market. By meticulously comparing and analyzing vendor contributions in terms of overall revenue, customer base, and other key metrics, we can offer companies a greater understanding of their performance and the challenges they face when competing for market share. Additionally, this analysis provides valuable insights into the competitive nature of the sector, including factors such as accumulation, fragmentation dominance, and amalgamation traits observed over the base year period studied. With this expanded level of detail, vendors can make more informed decisions and devise effective strategies to gain a competitive edge in the market.
Key Company Profiles
The report delves into recent significant developments in the Radiation Shielding Material Market, highlighting leading vendors and their innovative profiles. These include A&L Shielding, Amray Medical, Burlington Medical, LLC, Corning Incorporated, ESCO Technologies Inc., Global Partners in Shielding Inc., Gravita India Limited, Infab Corporation, Laird Technologies, Inc., Lemer Pax, Marswell Group of Companies, Mirion Technologies, Inc., Nelco, Inc., Nuclear Shields B.V., ProtecX Medical Ltd, RADIANT FIRE PROTECTION ENGINEERS PVT. LTD., Radiation Protection Products, Inc., RADIATION SHIELD TECHNOLOGIES, Ray-Bar Engineering Corp., Shree Manufacturing, StemRad Ltd., Trivitron Healthcare, Ultraray Group Inc., Veritas Medical Solutions LLC, and Wolverson X-Ray Limited.
Market Segmentation & Coverage
1. Market Penetration: It presents comprehensive information on the market provided by key players.
2. Market Development: It delves deep into lucrative emerging markets and analyzes the penetration across mature market segments.
3. Market Diversification: It provides detailed information on new product launches, untapped geographic regions, recent developments, and investments.
4. Competitive Assessment & Intelligence: It conducts an exhaustive assessment of market shares, strategies, products, certifications, regulatory approvals, patent landscape, and manufacturing capabilities of the leading players.
5. Product Development & Innovation: It offers intelligent insights on future technologies, R&D activities, and breakthrough product developments.
1. What is the market size and forecast of the Radiation Shielding Material Market?
2. Which products, segments, applications, and areas should one consider investing in over the forecast period in the Radiation Shielding Material Market?
3. What are the technology trends and regulatory frameworks in the Radiation Shielding Material Market?
4. What is the market share of the leading vendors in the Radiation Shielding Material Market?
5. Which modes and strategic moves are suitable for entering the Radiation Shielding Material Market?