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更新日: 集計期間:Aug 27, 2025~Sep 23, 2025
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materialの製品一覧

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[Research Material] Global Market for NVH Materials for Buses

Global Market for NVH Materials for Buses: NVH Materials for Body, NVH Materials for Engine, Others, 3-8MT, Over 8MT, Under 3MT

This research report (Global Bus NVH Material Market) investigates and analyzes the current status and outlook for the global market of NVH materials for buses over the next five years. It includes information on the overview of the global bus NVH materials market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the bus NVH materials market include NVH materials for body, NVH materials for engine, and others, while the segments by application cover 3-8MT, over 8MT, and under 3MT. The regional segments are categorized into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa to calculate the market size for bus NVH materials. It also includes the market share of major companies in bus NVH materials, product and business overviews, and sales performance.

  • Other services

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[Research Material] The Global Market for Food-Grade Magnesium Carbonate

World Market for Food-Grade Magnesium Carbonate: Powder, Granular, Flour Improvers, Moisture Absorbers, and Others

This research report (Global Food Grade Magnesium Carbonate Market) investigates and analyzes the current status and outlook for the global food-grade magnesium carbonate market over the next five years. It includes information on the overview of the global food-grade magnesium carbonate market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The market segments by type focus on powder and granular forms, while the segments by application cover flour improvers, moisture absorbers, and others. The regional segments are categorized into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa to calculate the market size for food-grade magnesium carbonate. It also includes the market share of major companies in the food-grade magnesium carbonate sector, product and business overviews, and sales performance.

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[Research Material] Global Market for Smart Label Materials

Global Market for Smart Label Materials: Solvent-based, Non-solvent/Water-based Products, Recycling, Food & Beverage, Manufacturing, Aerospace

This research report (Global Smart Label Materials Market) investigates and analyzes the current state of the global smart label materials market and its outlook for the next five years. It includes information on the overview of the global smart label materials market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the smart label materials market include solvent-based and solvent-free/water-based products, while the segments by application focus on recycling, food and beverage, manufacturing, and aerospace. The regional segments are divided into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa, to calculate the market size of smart label materials. It also includes the market share of major companies in smart label materials, product and business overviews, and sales performance.

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3D printing compatible material 'PA12GF Glass Fiber'

Nearly double the strength of conventional nylon! A material suitable for the production of gadgets and design items.

DMM.make 3D Printing Service provides total support for various manufacturing processes, from mass production assistance using molds to the creation of prototypes, utilizing 3D printers. We offer a range of materials, from those boasting strength comparable to injection molding to softer materials like rubber and silicone. On this page, we introduce 'PA12GF Glass Fiber,' one of the selectable materials for 3D printing. This material possesses very high strength by mixing glass beads into PA12 nylon powder. It is suitable for the production of gadgets, cases, interior items, and design products through 3D printing. As a reinforced nylon, it has less flexibility than conventional nylon but offers nearly double the strength. 【Features】 - Suitable material for producing gadgets and design items - Nearly double the strength compared to conventional nylon - Built with a layer pitch of 0.1mm 【Usage Examples】 It is widely used as an alternative method for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods using 3D CAD data.

  • Contract manufacturing

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Materials sensitive to heat (resins, synthetic rubber, surfactants, etc.) can be dried! Proven results◎

Even materials that are thermally unstable and prone to decomposition can be dried uniformly at low temperatures using vacuum drying.

Among chemical materials, those that are sensitive to heat, such as resins, synthetic rubber, and surfactants, can easily lead to quality defects when exposed to temperatures above 100°C, resulting in: × shape changes × discoloration × decomposition of additives × loss of the material's inherent properties. For such materials, "vacuum drying" under vacuum conditions (-98 kPa) at temperatures below 80°C is optimal. Our company has vacuum dryers capable of accommodating various raw material shapes and quantities, so if you are considering drying, please feel free to consult us. ■ Introduction to Vacuum Drying Equipment Shelf Vacuum Dryer (https://www.nc-ind.com/equipment/000024.php) - Capable of drying up to 720L (up to 288kg for a bulk density of 0.4) at once - Installed in a clean room Nauta Mixer (https://www.nc-ind.com/equipment/000029.php) - Capable of drying up to 2,000L at once → High processing capacity, leading to cost reduction! - Simultaneous stirring and drying through rotating and revolving screw arms → Uniform drying in a short time, even for raw materials with different specific gravities.

  • Chemicals
  • Contract manufacturing
  • Rubber

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3D printing compatible material "AGILISTA"

It can produce waterproof packing structures in one go, making it usable for various applications from mock-ups and prototypes to maintenance parts.

DMM.make 3D Printing Service provides comprehensive support for various manufacturing processes, from mass production assistance using molds to the creation of prototypes, utilizing 3D printers. We offer a range of materials, from those boasting strength comparable to injection molding to softer materials like rubber and silicone. This page introduces 'AGILISTA,' a selectable material for 3D printing. This material features a layer pitch of 20-30μm and includes four types of resins suitable for mock-ups. You can choose from transparent resins with excellent toughness and rigidity, high heat-resistant resins, low-hardness silicone rubber, and high-hardness options, depending on your application. 【Features】 ■ Capable of outputting small items ■ One-shot output for waterproof gasket structures ■ Layer pitch of 20-30μm ■ Four types suitable for mock-ups available ■ Use Cases We utilize 3D CAD data for a wide range of applications, including extrusion molding, casting, machining, and as alternative methods for injection molding, molds, and formwork, as well as for forming small parts for IoT products and finished goods.

  • Contract manufacturing

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3D printing compatible material 'Agilus Rubber'

A material suitable for a wide range of applications that require a soft shape. It can output materials of different hardness in one go.

DMM.make 3D Printing Service provides total support for various manufacturing processes, from mass production assistance using molds without 3D printers to the creation of prototypes. We offer a wide range of materials, from those boasting strength comparable to injection molding to soft materials like rubber and silicone. On this page, we introduce 'Agilus Rubber,' one of the selectable materials for 3D printing. This material is a new rubber-like substance suitable for a wide range of applications that require soft shapes. Its Shore hardness is A30-35. Additionally, it can be used for surfaces that require anti-slip properties. The printing method is PolyJet, resulting in a smooth surface. 【Features】 ■ Capable of outputting small items ■ Shore hardness ranges from A30-90 ■ Usable for surfaces requiring anti-slip properties ■ The PolyJet printing method results in a smooth surface ■ Use Cases It is utilized in a wide range of applications, including as an alternative method for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for shaping small parts of IoT products and finished goods using 3D CAD data.

  • Contract manufacturing

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Multi-purpose new value material 'SUPER DURABLE FILM'

Just stick it on for increased durability! It retains gloss and prevents discoloration and fading! New film material.

The "SUPER DURABLE FILM" is a new film material that features a uniquely developed "super durable coating layer" on the surface of a PET substrate and a re-peelable adhesive layer on the back. Simply applying it protects the surface of the object and enhances durability. Dirt that adheres can be easily removed with a wipe, and the antibacterial and antifungal treatment ensures excellent hygiene. Its applications are virtually limitless, depending on your ideas, including building materials such as floors and walls, factory and store floors, walls, and ceilings, touch panels and monitor screens, floor signs, and large posters. 【Features】 ■ Scratch-resistant and maintains high gloss ■ Easy to apply and remove ■ Resistant to strong acids and strong alkaline solvents. Excellent chemical resistance ■ UV cut effect prevents discoloration and fading ■ Safe shatterproof and anti-static properties *For more details, please download the catalog or contact us.

  • Other polymer materials

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Material: "Clear Acrylic / Multi-Material / Agilus Rubber"

3D printer "J750" used for modeling! It is a material that results in a smooth surface!

"Clear Acrylic / Multi-Material / Agilus Rubber" is a material that has a smooth surface due to the PolyJet printing method. Additionally, this product is created using the 3D printer "J750." We offer "Clear Acrylic," which has a slightly wet and smooth texture finish, "Multi-Material," which is a composite of acrylic and Agilus rubber, and "Agilus Rubber," which is suitable for a wide range of applications requiring soft shapes. [Features] - Smooth surface due to the PolyJet method - When printing in a flat position, it is possible to set the glossy mode on GrabCAD to avoid having supports on the top. *For more details, please refer to the PDF document or feel free to contact us. - Use Cases We utilize 3D CAD data for a wide range of applications, including extrusion molding, casting, machining, and as alternative methods for injection molding, molds, and formwork, as well as for small parts of IoT products and finished goods.

  • Other polymer materials

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3D printing compatible material "Full Color Multi-Material"

Introducing a product that can output waterproof packing structures in one go, suitable for prototypes, casing production, food samples, and more!

DMM.make 3D Printing Service provides comprehensive support for various manufacturing processes, from mass production assistance using molds to the creation of prototypes, all utilizing 3D printers. We offer a wide range of materials, from those boasting strength comparable to injection molding to soft materials like rubber and silicone! On this page, we introduce the 'Full Color Multi-Material,' a selectable material for 3D printing. This material utilizes the Stratasys J750. The printer's feature is its ability to output over 600,000 colors in full color using acrylic material. It allows for high precision and the specification of colors for each part, making it suitable for a wide range of applications, from product mock-ups to one-of-a-kind art pieces and mass production of final products. The modeling method is polyjet, resulting in a smooth surface. 【Features】 ■ Capable of outputting small items ■ Usable for food samples, etc. ■ One-shot output of waterproof packing structures ■ Reproducibility: minimum wall thickness is 1mm Additionally, DMM.make can provide examples of cases where mass production has been achieved without using molds, utilizing 3D printing technology. For more details, please check the materials or contact us using the information provided in the materials.

  • Contract manufacturing

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[Research Material] Global Market for Non-Halogen Flame Retardants

Global Market for Non-Halogen Flame Retardants: Aluminum Hydroxide, Organophosphorus Chemicals, Others, Polyolefins, Epoxy Resins, Unsaturated Polyesters ...

This research report (Global Non-halogen Flame Retardant Market) investigates and analyzes the current status and outlook for the global non-halogen flame retardant market over the next five years. It includes information on the overview of the global non-halogen flame retardant market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The market segments by type include aluminum hydroxide, organophosphorus chemicals, and others, while the segments by application cover polyolefins, epoxy resins, unsaturated polyesters, polyvinyl chloride, and others. The regional segments are divided into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa to calculate the market size of non-halogen flame retardants. It also includes the market share of major companies in non-halogen flame retardants, product and business overviews, and sales performance.

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[Research Material] Global Market for Polymer Foam Materials

Global Market for Polymer Foam Materials: Polyurethane Foam, Polystyrene Foam, Polyvinyl Chloride Foam, Phenolic Foam, ...

This research report (Global Polymer Foam Material Market) investigates and analyzes the current status and outlook for the global polymer foam material market over the next five years. It includes information on the overview of the global polymer foam material market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the polymer foam material market include polyurethane foam, polystyrene foam, polyvinyl chloride foam, phenolic foam, polyolefin foam, melamine foam, and others. The segments by application cover automotive, construction, packaging, electrical, furniture & bedding, and others. The regional segments are divided into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa, to calculate the market size of polymer foam materials. The report also includes the market share of major companies in the polymer foam material sector, product and business overviews, and sales performance.

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[Research Material] The Global Market for Heavy Magnesium Carbonate

World Market for Heavy Magnesium Carbonate: Powder, Granular, Pharmaceuticals, Plastics & Rubber Industry, Personal Care & Cosmetics, Paints & Inks, Paper Pulp ...

This research report (Global Heavy Magnesium Carbonate Market) investigates and analyzes the current status and outlook for the global heavy magnesium carbonate market over the next five years. It includes information on the overview of the global heavy magnesium carbonate market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the heavy magnesium carbonate market focus on powder and granular forms, while the segments by application cover pharmaceuticals, plastics and rubber industry, personal care and cosmetics, paints and inks, paper and pulp industry, food and beverages, and others. The regional segments calculate the market size of heavy magnesium carbonate by dividing it into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa. It also includes the market share of major companies in the heavy magnesium carbonate sector, product and business overviews, and sales performance.

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[Research Material] Global Market for Halogen-Free Materials

Global Market for Halogen-Free Materials: TPU Halogen-Free Materials, PPO Halogen-Free Materials, TPE (excluding TPU) Halogen-Free Materials ...

This research report (Global Halogen Free Materials Market) investigates and analyzes the current state and outlook for the global market of halogen-free materials over the next five years. It includes information on the overview of the global halogen-free materials market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the halogen-free materials market focus on TPU halogen-free materials, PPO halogen-free materials, and TPE (excluding TPU) halogen-free materials, while the segments by application target wire & cable and electronic materials. The regional segments calculate the market size of halogen-free materials by dividing it into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa. It also includes the market share of major companies in halogen-free materials, product and business overviews, and sales performance.

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Environmentally friendly material "WS"

Reduce the necessary energy! Significantly lower the environmental impact in dyeing processes.

"WS" refers to "fast dyeing," a material developed by changing physical actions during the yarn-making process. It significantly shortens the dyeing time during fabric processing, reduces the energy required for dyeing, and decreases CO2 emissions. Compared to conventional dyeing processes, it dyes at "low temperatures" and "quickly," making it possible to improve dyeing efficiency by 50%. 【Features】 ■ 50% increase in dyeing efficiency ■ Dyes quickly ■ 20% reduction in dye usage ■ Dyes at low temperatures ■ 30% reduction in utility usage *For more details, please refer to the PDF materials or feel free to contact us.

  • Composite Materials

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