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Hollow Microspheres Market by Material Type, by Application Type, and by Region, Size, Share, Trend, Forecast, Competitive Analysis, and Growth Opportunity: 2021-2026

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    Report

  • 232 Pages
  • August 2020
  • Region: Global
  • Stratview Research
  • ID: 5206136
This strategic assessment report provides a comprehensive analysis that reflects today’s hollow microspheres market realities and future possibilities for the forecast period 2021 to 2026. The report segments and analyzes the market in the most detailed and comprehensive manner to provide a panoramic view of the market. This report also provides an estimate of the possible loss incurred in the market due to the pandemic and possible ways of recoveries in the market when the aftermath of the pandemic ends. The vital data/information provided in the report can play a crucial role for market participants as well as investors in the identification of low-hanging fruits available as well as future market growth potentials to formulate short- as well as long-term growth strategies.

Hollow Microspheres Market: Highlights

Hollow microspheres are low density, lightweight fillers that add volume without significantly adding weight. Weight reduction, viscosity reduction, cost-saving through lower resin consumption, enhanced mold flow, and improved resistance are the key benefits offered by these microspheres. The hollow microsphere includes various lightweight fillers: hollow glass microspheres, foam glass granulates, cenosphere, perlite microspheres, and expanded polymer microspheres; with density ranging from 0.1 to 0.63 g/cc in general. These microspheres are widely used for a variety of applications with each of them is suitable for the application. For instance, hollow glass microspheres and expanded polymer microspheres are widely used in paints & coatings and plastics & rubber applications, whereas foam glass granulates, cenosphere, and perlite microspheres are more used in construction material applications.

Hollow microspheres have witnessed a remarkable journey with its increasing adoption into different end-use industries to leverage weight reduction benefits. Owing to their usage in various end-use industries, hollow microspheres dominated the overall microspheres market in 2020. Key market stakeholders of the industry have heavily been investing in R&Ds in order to develop advanced products better addressing the market challenges. The major players of the market are serving only one or two types of microspheres.

Impact of COVID-19 on the Hollow Microspheres Market

Increasing demand for lightweight materials to curb emissions and to meet the fuel-efficiency targets, such as CAFÉ standards, in the automotive industry, the regulation to reduce volatile organic compound in the paints & coatings and rising demand for the energy-efficient buildings were the major factors that had helped hollow microspheres to grow at the healthy pace till 2019. While the market was expecting to continue its remarkable growth in 2020.

However, the rapid spread of the pandemic devastated hope. The pandemic exacerbated the existing challenges of key demand generators including automotive and construction, weakened the industry sales to its lowest figure of the decade. The global automotive production is estimated to decline by -22% in 2020 amid the pandemic. Analogously, major aircraft manufacturers, such as Airbus, have already curtailed the production rates of their key programs. The growth of the construction sector is estimated to contract to merely 0.5% in 2020, 2.5%-3.0% lower than pre-COVID projections.

Currently, to assess the real impact of the pandemic on the market in the short and long term is challenging as the pandemic is still spreading, taking the economies in its grip. It is difficult to state that when the impact of the pandemic starts to fade away. Based on the study of market recoveries in previous downturns (The Great Recession, SARS, etc.) coupled with primary interviews across the supply chain, the publisher's estimates suggest that the market for hollow microspheres is likely to rebound from 2021 onwards, followed by maintaining sequential growth till 2026, ultimately reaching a landmark figure of US$ 4.1 billion by 2026.

Market Share Analysis

Based on the material type, the hollow microspheres market is segmented as hollow glass microsphere, foam glass granulates, cenosphere, perlite microsphere, and expanded polymer microsphere. The hollow glass microsphere is likely to remain the most preferred microsphere type in the market in the coming years. Hollow glass microspheres are increasingly finding usage in plastics & rubber applications such as SMCs, injection-molded parts, packaging films, and wood composites. Similarly in paints & coatings, such as in acrylic and industrial latex paints, solar reflective coatings, and epoxy coatings; in construction materials, such as engineered wood, kitchen sinks, putties, caulks and sealants, washbasins and bathtubs, wall, sealing, gaps, cracks, interior and exterior use on walls, lightweight cement slurries and other applications such as agriculture, buoyancy modules and risers, deep-sea pipe and flowline insulation.

Expanded polymer microsphere, currently holding a diminutive position as compared to hollow glass microspheres, is estimated to capture some share of other hollow microspheres, especially of hollow glass microspheres in the coming years. Expanded polymer microspheres usually expand about 60 times their original size without the addition of weight. Furthermore, the density of the expanded polymer microsphere is relatively low than the hollow glass microsphere. Expanded polymer microspheres are gaining tractions in paints & coatings, plastics & rubbers, and construction materials, such as crack fillers, polyester putties, and cultured marble.

Based on the application type, the market is classified as plastics & rubber, paint & coatings, construction materials, and others. Plastics & rubber is likely to remain the most dominant application segment, in terms of value, in the hollow microspheres market during the forecast period. Plastics are replacing metals for years to reduce greenhouse gas emissions and improve fuel efficiency. Now research is focused on low-density plastics that are further lighter in weight without compromising performance. Contrary to the traditional fillers (talc, calcium carbonate, and clay with a specific density of 2.5 to 2.8 g/cm3), hollow microspheres with a specific density of less than 0.6 g/cm3 help in 10-30% plastic parts’ weight reduction. Hollow microspheres also improve productivity by reducing energy consumption, cost, and cycle time (by 25%).

In terms of regions, all regions are expected to mark a huge decline in 2020 in the wake of the rapid spread of the pandemic across regions. However, Europe, currently holding the leading position, will manage its lead in the global market by 2026, propelled by Germany. Increased demand for hollow microspheres in fuel-efficient vehicles and energy-efficient homes in the region are the major factors behind the dominance of Europe in the market.

Asia-Pacific is projected to witness the highest growth during the forecast period with China and India being the key sources of growth engines. The region is the largest manufacturer as well as consumers of traditional fillers in the world. An expected rebound in the production of automobiles and construction activities coupled with a gradual shift from traditional fillers to hollow microspheres may drive the region’s market in years to come.

North America is also estimated to generate a sizeable demand for hollow microspheres in the coming years. The USA to maintain its supremacy in the market not only in the region, but also in the world; backed by the presence of a large number of raw material suppliers, hollow microsphere manufacturers, tier players, distributors, and end-users.

Key Players

The supply chain of this market comprises raw material suppliers, hollow microsphere manufacturers, distributors, and end-users. Some of the key players in the hollow microspheres market are Chase Corporation, Dennert Poraver GmbH, Kureha Corporation, Matsumoto Yushi-Seiyaku Co., Ltd., Nouryon, Omya AG, PQ Corporation, Sekisui Chemical Co., Ltd., Sinosteel Maanshan New Material Technology Co., Ltd, and The 3M Company.

Research Methodology

This report offers high-quality insights and is the outcome of detailed research methodology comprising extensive secondary research, rigorous primary interviews with industry stakeholders, and validation and triangulation with the publisher’s internal database and statistical tools. More than 1000 authenticated secondary sources, such as company annual reports, fact book, press release, journals, investor presentation, white papers, patents, and articles have been leveraged to gather the data. The publisher has conducted more than 15 detailed primary interviews with the market players across the value chain in all five regions and industry experts to obtain both qualitative and quantitative insights.

Report Features

This report provides market intelligence most comprehensively. The report structure has been kept such that it offers maximum business value. It provides critical insights into the market dynamics and will enable strategic decision making for the existing market players as well as those willing to enter the market.

The following are the key features of the report:
  • Market structure: Overview, industry life cycle analysis, supply chain analysis
  • Market environment analysis: Growth drivers and constraints, Porter’s five forces analysis, SWOT analysis
  • Market trend and forecast analysis
  • Market segment trend and forecast
  • Competitive landscape and dynamics: Market share, Product portfolio, New product launches, etc.
  • Attractive market segments and associated growth opportunities
  • Emerging trends
  • Strategic growth opportunities for the existing and new players
  • Key success factors

The hollow microspheres market is segmented into the following categories:

Hollow Microspheres Market, by Material Type
  • Hollow Glass Microspheres (Regional Analysis: North America, Europe, Asia-Pacific, and RoW)
  • Foam Glass Granulates (Regional Analysis: North America, Europe, Asia-Pacific, and RoW)
  • Cenosphere (Regional Analysis: North America, Europe, Asia-Pacific, and RoW)
  • Perlite Microspheres (Regional Analysis: North America, Europe, Asia-Pacific, and RoW)
  • Expanded Polymer Microspheres (Regional Analysis: North America, Europe, Asia-Pacific, and RoW)

Hollow Microspheres Market, by Application Type
  • Paints & Coatings (Regional Analysis: North America, Europe, Asia-Pacific, and RoW)
  • Plastics & Rubber (Regional Analysis: North America, Europe, Asia-Pacific, and RoW)
  • Construction Materials (Regional Analysis: North America, Europe, Asia-Pacific, and RoW)
  • Others (Regional Analysis: North America, Europe, Asia-Pacific, and RoW)

Hollow Microspheres Market, By Region
  • North America (Country Analysis: The USA, Canada, and Mexico)
  • Europe (Country Analysis: France, Germany, the UK, Spain, and Rest of Europe)
  • Asia-Pacific (Country Analysis: China, India, Japan, and Rest of Asia-Pacific)
  • Rest of the World (Sub-Region Analysis: Latin America, the Middle East, and Others)

Table of Contents

  • Disclaimer
  • Copyright
  • Abbreviation
  • Currency Exchange
  • About Us
Report Scope
  • Key Questions Answered in the Report
  • Research Methodology
  • Secondary Research
  • Key Information Gathered from Secondary Research
  • Primary Research
  • Key Information Gathered from Primary Research
  • Breakdown of Primary Interviews by Region, Designation, and Value Chain Node
  • Data Analysis and Triangulation

1. Executive Summary
2. Hollow Microspheres Market Overview and Segmentation
2.1. Introduction
2.2. Hollow Microspheres Market Segmentation
2.2.1. By Material Type
2.2.2. By Application Type
2.2.3. By Region
2.3. Supply Chain Analysis
2.4. Industry Life Cycle Analysis
2.5. PEST Analysis
2.6. SWOT Analysis
3. Hollow Microspheres Market – The COVID-19 Impact Assessment
3.1. Insights
3.2. Hollow Microspheres Penetration in the Microspheres Market
3.3. Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
3.4. Pre-COVID vs Post-COVID Assessment
3.5. The Pandemic: Real GDP Loss vs Hollow Microspheres Market Loss (2020-2021)
3.6. Hollow Microspheres Market Scenario Analysis: Pessimistic, Most Likely, and Optimistic
3.7. Market Segments’ Analysis (US$ Million)
3.8. Regional and Country-Level Analysis (US$ Million)
3.9. Market Drivers
3.10. Market Challenges
4. Competitive Analysis
4.1. Insights
4.2. Product Portfolio Analysis
4.3. Geographical Presence
4.4. Strategic Alliances: Mergers & Acquisitions, Joint Ventures, Collaborations, etc.
4.5. Market Share Analysis
4.6. Porter’s Five Forces Analysis
5. Hollow Microspheres Market Trend and Forecast by Material Type (2015-2026)
5.1. Insights
5.2. Hollow Glass Microspheres: Regional Trend and Forecast (US$ Million and Thousand Tons)
5.3. Foam Glass Granulates: Regional Trend and Forecast (US$ Million and Thousand Tons)
5.4. Cenosphere: Regional Trend and Forecast (US$ Million and Thousand Tons)
5.5. Perlite Microspheres: Regional Trend and Forecast (US$ Million and Thousand Tons)
5.6. Expanded Polymer Microspheres: Regional Trend and Forecast (US$ Million and Thousand Tons)
6. Hollow Microspheres Market Trend and Forecast by Application Type (2015-2026)
6.1. Insights
6.2. Paints & Coatings: Regional Trend and Forecast (US$ Million and Thousand Tons)
6.3. Plastics & Rubber: Regional Trend and Forecast (US$ Million and Thousand Tons)
6.4. Construction Materials: Regional Trend and Forecast (US$ Million and Thousand Tons)
6.5. Others: Regional Trend and Forecast (US$ Million and Thousand Tons)
7. Hollow Microspheres Market Trend and Forecast by Region (2015-2026)
7.1. Insights
7.2. North American Hollow Microspheres Market Analysis: Country Analysis
7.2.1. The USA’s Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.2.2. Canadian Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.2.3. Mexican Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.3. European Hollow Microspheres Market Analysis: Country Analysis
7.3.1. French Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.3.2. German Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.3.3. The UK’s Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.3.4. Spanish Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.3.5. RoE’s Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.4. Asia-Pacific’s Hollow Microspheres Market Analysis: Country Analysis
7.4.1. Chinese Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.4.2. Indian Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.4.3. Japanese Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.4.4. RoAP’s Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.5. Rest of the World’s (RoW) Hollow Microspheres Market Analysis: Sub-Region Analysis
7.5.1. The Middle Eastern Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.5.2. Latin American Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
7.5.3. Others’ Hollow Microspheres Market Trend and Forecast (US$ Million and Thousand Tons)
8. Strategic Growth Opportunities
8.1. Insights
8.2. Market Attractiveness Analysis
8.2.1. Market Attractiveness by Material Type
8.2.2. Market Attractiveness by Application Type
8.2.3. Market Attractiveness by Region
8.2.4. Market Attractiveness by Country
8.3. Emerging Trends
8.4. Growth Matrix Analysis
8.5. Strategic Implications
8.6. Key Success Factors (KSFs)
9. Company Profile of Key Players (Profiling, Financial Information, Competition, Strategies, etc.)
*Financial information is not provided in detail for private companies.
9.1. Chase Corporation
9.2. Dennert Poraver GmbH
9.3. Kureha Corporation
9.4. Matsumoto Yushi-Seiyaku Co., Ltd
9.5. Nouryon
9.6. Omya AG
9.7. PQ Corporation
9.8. Sekisui Chemical Co., Ltd.
9.9. Sinosteel Maanshan New Material Technology Co., Ltd
9.10. The 3M Company

Samples

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Companies Mentioned

  • Chase Corporation
  • Dennert Poraver GmbH
  • Kureha Corporation
  • Matsumoto Yushi-Seiyaku Co., Ltd
  • Nouryon
  • Omya AG
  • PQ Corporation
  • Sekisui Chemical Co., Ltd.
  • Sinosteel Maanshan New Material Technology Co., Ltd
  • The 3M Company

Methodology

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