Table of Contents
1. Executive Summary
2. Technology Landscape
2.1. Technology Background and Evolution
2.2. Technology and Application Mapping
2.3. Supply Chain
3. Technology Readiness
3.1. Technology Commercialization and Readiness
3.2. Drivers and Challenges in Hot Melt Adhesive Technologies
3.3. Competitive Intensity
3.4. Regulatory Compliance
4. Technology Trends and Forecasts analysis from 2018-2030
4.1. Hot Melt Adhesive Opportunity
4.2. Technology Trends (2018-2023) and Forecasts (2024-2030)
4.2.1. Ethylene Vinyl Acetate based Hot Melt Adhesive
4.2.2. Styrene Block Copolymers based Hot Melt Adhesive
4.2.3. Polyolefin based Hot Melt Adhesive
4.2.4. Polyurethane based Hot Melt Adhesive
4.2.5. Other
4.3. Technology Trends (2018-2023) and Forecasts (2024-2030) by Application Segments
4.3.1. Packaging
4.3.1.1. Ethylene Vinyl Acetate based Hot Melt Adhesive
4.3.1.2. Styrene Block Copolymers based Hot Melt Adhesive
4.3.1.3. Polyolefin based Hot Melt Adhesive
4.3.1.4. Polyurethane based Hot Melt Adhesive
4.3.1.5. Other
4.3.2. Disposable Hygiene Products
4.3.2.1. Ethylene Vinyl Acetate based Hot Melt Adhesive
4.3.2.2. Styrene Block Copolymers based Hot Melt Adhesive
4.3.2.3. Polyolefin based Hot Melt Adhesive
4.3.2.4. Polyurethane based Hot Melt Adhesive
4.3.2.5. Other
4.3.3. Pressure Sensitive Adhesives
4.3.3.1. Ethylene Vinyl Acetate based Hot Melt Adhesive
4.3.3.2. Styrene Block Copolymers based Hot Melt Adhesive
4.3.3.3. Polyolefin based Hot Melt Adhesive
4.3.3.4. Polyurethane based Hot Melt Adhesive
4.3.3.5. Other
4.3.4. Automotive
4.3.4.1. Ethylene Vinyl Acetate based Hot Melt Adhesive
4.3.4.2. Styrene Block Copolymers based Hot Melt Adhesive
4.3.4.3. Polyolefin based Hot Melt Adhesive
4.3.4.4. Polyurethane based Hot Melt Adhesive
4.3.4.5. Other
4.3.5. Construction
4.3.5.1. Ethylene Vinyl Acetate based Hot Melt Adhesive
4.3.5.2. Styrene Block Copolymers based Hot Melt Adhesive
4.3.5.3. Polyolefin based Hot Melt Adhesive
4.3.5.4. Polyurethane based Hot Melt Adhesive
4.3.5.5. Other
4.3.6. Bookbinding
4.3.6.1. Ethylene Vinyl Acetate based Hot Melt Adhesive
4.3.6.2. Styrene Block Copolymers based Hot Melt Adhesive
4.3.6.3. Polyolefin based Hot Melt Adhesive
4.3.6.4. Polyurethane based Hot Melt Adhesive
4.3.6.5. Other
4.3.7. Others
4.3.7.1. Ethylene Vinyl Acetate based Hot Melt Adhesive
4.3.7.2. Styrene Block Copolymers based Hot Melt Adhesive
4.3.7.3. Polyolefin based Hot Melt Adhesive
4.3.7.4. Polyurethane based Hot Melt Adhesive
4.3.7.5. Other
5. Technology Opportunities (2018-2030) by Region
5.1. Hot Melt Adhesive Market by Region
5.2. North American Hot Melt Adhesive Market
5.2.1. United States Hot Melt Adhesive Market
5.2.2. Canadian Hot Melt Adhesive Market
5.2.3. Mexican Hot Melt Adhesive Market
5.3. European Hot Melt Adhesive Market
5.3.1. The United Kingdom Hot Melt Adhesive Market
5.3.2. German Hot Melt Adhesive Market
5.3.3. French Hot Melt Adhesive Market
5.4. APAC Hot Melt Adhesive Market
5.4.1. Chinese Hot Melt Adhesive Market
5.4.2. Japanese Hot Melt Adhesive Market
5.4.3. Indian Hot Melt Adhesive Market
5.4.4. South Korean Hot Melt Adhesive Market
5.5. ROW Hot Melt Adhesive Market
6. Latest Development and Innovation in Hot Melt Adhesive Technologies
7. Companies / Ecosystem
7.1. Product Portfolio Analysis
7.2. Market Share Analysis
7.3. Geographical Reach
8. Strategic Implications
8.1. Implications
8.2. Growth Opportunity Analysis
8.2.1. Growth Opportunities for the Hot Melt Adhesive Market by Polymer Technology
8.2.2. Growth Opportunities for the Hot Melt Adhesive Market by Application
8.2.3. Growth Opportunities for the Hot Melt Adhesive Market by Region
8.3. Emerging Trends in the Hot Melt Adhesive Market
8.4. Disruption Potential
8.5. Strategic Analysis
8.5.1. New Product Development
8.5.2. Capacity Expansion of the Hot Melt Adhesive Market
8.5.3. Mergers, Acquisitions, and Joint Ventures in the Hot Melt Adhesive Market
9. Company Profiles of Leading Players
9.1. Henkel AG
9.2. 3M
9.3. H.B. Fuller Corporation
9.4. The DOW Chemical Company
9.5. Sika AG