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resin - メーカー・企業446社の業務用製品ランキング | イプロスものづくり

更新日: 集計期間:Mar 04, 2026~Mar 31, 2026
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resinのメーカー・企業ランキング

更新日: 集計期間:Mar 04, 2026~Mar 31, 2026
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  1. 寺田 Tokyo//Electronic Components and Semiconductors
  2. 三菱ガス化学ネクスト(旧日本ユピカ) 本社 Tokyo//Resin/Plastic
  3. 吉田SKT Aichi//Manufacturing and processing contract
  4. 4 MUROMACHI CHEMICALS INC. Chemicals Division Fukuoka//Chemical
  5. 5 アイエムティー Wakayama//Testing, Analysis and Measurement

resinの製品ランキング

更新日: 集計期間:Mar 04, 2026~Mar 31, 2026
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  1. Epoxy Resin Zero Mar Series for Sample Grinding [Made in Japan] アイエムティー
  2. Liquid Bismaleimide Resin LMI-5000 OSAKA ORGANIC CHEMICAL IND., LTD.
  3. Joint Surface Treatment Agent "Hitlock B" イチネンケミカルズ
  4. 4 What are the differences between fluororesin, PTFE, and ETFE? 吉田SKT
  5. 5 Concrete joint surface treatment agent "Tritex CB-20" Sanyo Trading Co., Ltd.

resinの製品一覧

211~240 件を表示 / 全 1518 件

表示件数

Weakly basic anion exchange resin "tertiary amine group"

It is an anion exchange resin with a weakly basic tertiary amine as the exchange group.

The weakly basic anion exchange resin "tertiary amine group" is an anion exchange resin that has a weakly basic tertiary amine -N+(CH3)2 as its exchange group. In the acidic region where pH < 7, it coordinates with Cl- to form the Cl- type, but in the region where pH > 7, it does not form the OH- type, and a pair of free electrons remains on the tertiary amine group (free base). It is easy to regenerate and can be processed using the batch method. For more details, please download the catalog.

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Water quality, ion exchange resin, separation membrane analysis and diagnosis.

We will determine the appropriate timing for resin replacement to contribute to your company's cost reduction! Please feel free to consult us about various water quality analyses as well.

We support our customers in various aspects, including development support for new projects, analysis of raw liquids, and health checks of the ion exchange resins currently in use. <Health Check of Ion Exchange Resins> Your company's ion exchange resins may still have capacity left even when it's time for replacement. How about diagnosing the capacity of your ion exchange resins once to ensure that you are using them efficiently?

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High Purity Ion Exchange Resin "Muromac HG Series"

High-purity ion exchange resin suitable for various liquid purification - Muromac HG Series

The Muromac HG series is a newly developed high-purity ion exchange resin designed to enable the high purification of various chemicals and process liquids required in the manufacturing process of electronic industrial products. ● To minimize elution from the resin, impurities such as metal and TOC contained in the resin are reduced in advance. ● Suitable for the purification of electronic material chemicals and process liquids in both aqueous and organic solvent systems. ● Specializes in the removal of ionic impurities in the ppm and ppb range.

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Track Record of Ion Exchange Resin Adoption for Pure Water Production

Water that has removed dissolved ions and consists only of H2O! "Pure water" is also used in boilers and humidifiers.

Water that has had dissolved ions removed and consists only of H2O is called "pure water." Pure water is necessary for cleaning electronic components and circuit boards, as well as for the raw water used in food and beverages, and for the manufacturing of pharmaceuticals and daily necessities. Additionally, pure water is used in boilers and humidifiers. [Applications] ■ Cleaning of electronic components and circuit boards, such as semiconductors ■ Raw water for food and beverages ■ Manufacturing water for pharmaceuticals and daily necessities ■ Boilers and humidifiers, etc. *For more details, please refer to the PDF document or feel free to contact us.

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Elevated Bridge Cation Exchange Resin "Muromac UL Series"

High oxidation resistance elevated bridge cation exchange resin - Muromac UL series

The Muromac UL series is a high-level cross-linked cation exchange resin that has successfully achieved high oxidation resistance by increasing the degree of cross-linking, significantly reducing the leaching of high molecular weight organic substances. ≪Features of the UL Series≫ ● Due to its high degree of cross-linking, it exhibits outstanding oxidation resistance. ● Because of its excellent oxidation resistance, it has low organic substance leaching. ● It has low leaching of high molecular weight organic substances, which can cause performance degradation in anion resins. ● Compared to general-purpose resins, its exchange capacity is approximately 20% larger. ● With a larger exchange capacity, the amount of water that can be sampled is greater, reducing the frequency of regeneration. ● From these perspectives, it is expected to help suppress water quality deterioration, extend resin lifespan, and increase sampling capacity.

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[Case Study] Proposal for Ion Exchange Resin Cleaning to Meet User Standard Values

Retaining knowledge of various ion exchange resins! We have solved the concerns of establishing cleaning methods and implementing cleaning operations.

We would like to introduce a case where we resolved the construction of a cleaning method to meet individual user quality requirements and the contracting of cleaning work. The user has an ion exchange resin used for analytical purposes, but issues arose due to trace contaminants (such as residues from surfactants) on the surface of the ion exchange resin. However, according to the Certificate of Analysis (COA) from the resin manufacturer, it was deemed a pass, and the manufacturer stated that further cleaning was difficult. Since the ion exchange resin from the LOT that experienced issues during user testing could no longer be used, we sought a cleaning method to meet the required quality. Umemura Chemical has extensive knowledge of various ion exchange resins, so we received a request to consider a resin cleaning method. [Overview] - Industry: Analytical Testing - Area: Confidential - Key Technology: Cleaning of Ion Exchange Resins *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study] Examination of Cu and Cd Treatment Using Chelating Resin

You have confirmed that the ion exchange resin can process Cu and Cd at lower and more stable levels!

We would like to introduce a case study confirming the effectiveness of treating Cu and Cd in on-site water using chelating resin. The facility was struggling with the desire to "lower and stabilize the values of Cu and Cd in the on-site water generated at the site," and the challenge was whether the chelating resin could achieve a lower and more stable treatment. Currently, the generated on-site water is stored in a reservoir, and treatment is performed by adding neutralizing agents and coagulants, but they were considering whether there might be a better treatment method. In response, Muromachi Chemical proposed "conducting actual treatment data acquisition using a testing machine on-site with chelating resin." [Overview] - Area: Chubu region - Treatment capacity: 60m3/h - Main technology: Ion exchange resin *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study] Drying and Crushing of Ion Exchange Resin

A case that solved the selection of ion exchange resins and the processing into powder form for use as filter materials!

We will introduce a case of drying and grinding ion exchange resin. The recurring challenge was the selection method for ion exchange resin, which serves as the material for developing new filters. Additionally, to use the ion exchange resin in filters, it needed to be dried and ground. Since we relied on outsourcing to companies capable of handling each process, manufacturing took longer, leading to increased material costs. By managing the entire process from application development to processing of ion exchange resin in-house, we were able to select suitable products from a wide range of ion exchange resins and perform the drying and grinding of the resin in the same factory, resulting in improved efficiency. [Overview] ■Industry: Chemical Manufacturer ■Area: Ion Exchange Resin (Drying and Grinding) *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study] Wastewater Treatment (Fluorine and Boron) Using Ion Exchange Resin

We will introduce a case where the fluoride and boron contained in the drainage were reduced to the standard values!

We would like to introduce a case of removing fluoride (F) and boron (B) from wastewater using ion exchange resin. In the cleaning process of a new product being manufactured at a facility, fluoride is generated, and we want to treat it to meet the sewer discharge standards. However, the chemicals used in the production contain hydrofluoric acid and boric acid, and after cleaning the products, the concentrations of fluoride and boron in the wastewater exceeded the standard values. Since the existing wastewater treatment facility could not accept this, it was a challenge to reduce the concentrations to the standard values before merging with the existing treatment facility. Therefore, Muromachi Chemical proposed "removal of fluoride and boron using a device with cartridges." 【Overview】 ■ Industry: Manufacturing ■ Area: Kanto region ■ Source water type: Cleaning wastewater from manufactured products ■ Treatment capacity: 0.1 m3/h ■ Main technology: Ion exchange resin *For more details, please refer to the PDF document or feel free to contact us.

  • image_31.png
  • Wastewater/wastewater treatment equipment
  • resin

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[Case Study] Selenium Removal from Drainage

There were no major construction works required for the sedimentation equipment, which helped keep costs and time down!

Selenium at a concentration of 0.4 ppm is present in the drainage generated from tunnel construction, and since construction cannot proceed unless the drainage is reduced to below the standard value of 0.1 ppm, we considered whether treatment using ion exchange resin could be implemented. Generally, the drainage generated from tunnel construction undergoes coagulation and sedimentation treatment; however, this requires a large equipment space and may lead to factors causing poor coagulation. Therefore, we sampled the actual drainage occurring at the site and conducted a liquid flow test using ion exchange resin at our lab. We confirmed the adsorption performance for selenium and demonstrated that treatment from 0.4 ppm to below 0.1 ppm is possible. [Issues with Coagulation and Sedimentation Treatment] ■ Removal of Selenium from Drainage - The concentration of selenium in the drainage generated from construction fluctuates, causing variations in the selenium concentration of the treated water from coagulation and sedimentation. - These fluctuations can also lead to variations in the amount of coagulant used, potentially resulting in poor coagulation. ■ Large equipment space required. *For more details, please refer to the related links or feel free to contact us.

  • Other water treatment equipment
  • resin

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[Case Study] Processing (Cleaning) of Ion Exchange Resins to Meet Customer Quality Requirements

We will introduce a case where two issues, the establishment of a cleaning method and the implementation of cleaning work, were resolved!

There is an ion exchange resin used for analytical purposes, but issues have arisen due to trace contaminants (such as residues from surfactants) on the surface of the ion exchange resin. Additionally, the manufacturer has indicated that further cleaning beyond what has already been done is difficult, and we have been exploring cleaning methods to meet the customer's specific quality requirements. Since the customer's quality evaluation test methods were not disclosed, we created several cleaning samples by adjusting the chemicals and process times used for cleaning. After evaluating multiple samples, we established a cleaning method that meets the required quality. 【Case Overview】 ■ Industry: Analytical Testing ■ Key Technology: Cleaning of Ion Exchange Resin ■ Challenge: Resolving issues caused by surface contaminants on ion exchange resin used for analytical purposes *For more details, please refer to the related links or feel free to contact us.

  • Other cleaning machines
  • resin

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[Technical Column] Particle Size Distribution and Hydraulic Characteristics of Ion Exchange Resins

I will explain topics such as "differences in characteristics due to particle size distribution" and "backwashing expansion and separation characteristics"!

Ion exchange resins are spherical substances with a diameter of approximately 0.3 to 1.2 mm, and there are ion exchange resins with a wide range of particle size distributions known as "Gaussian distribution" and those with a nearly uniform particle size distribution called "uniform particle size distribution." These are used differently depending on their applications, but ion exchange resins with a uniform particle size distribution often have advantageous characteristics. In this column, we explain topics such as "differences in particle size distribution due to manufacturing methods" and "differential pressure characteristics (pressure loss)." [Overview] ■ Differences in particle size distribution due to manufacturing methods ■ Differences in characteristics based on particle size distribution ■ Differential pressure characteristics (pressure loss) ■ Backwashing expansion and separation characteristics ■ Swelling ratio *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.

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[Technical Column] Reaction Rate of Ion Exchange Resins

In methods for evaluating reaction rates, it is necessary to conduct tests under controlled conditions!

As an evaluation item for the performance of ion exchange resins, an important physical property alongside "ion exchange capacity" is "reaction rate." Generally, those with a large ion exchange capacity have a low reaction rate, while those with a small ion exchange capacity have a high reaction rate. Therefore, the priority of either characteristic depends on the application conditions. In this column, we introduce an example where a water solution is prepared in a beaker and ion exchange resin is added. *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.*

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[Technical Column] Selectivity of Ion Exchange Resins

It is necessary to select appropriately based on the properties of the solution, such as the pH of the aqueous solution and the type of metal ions to be removed!

There are various types of ion exchange resins, and to select the appropriate type, it is necessary to recognize their characteristics. One particularly important characteristic is called "selectivity," which can be described as the "preferences of the ions" for the ion exchange resin. Additionally, the ease of adsorption varies depending on the type of ion exchange resin and the type of ions it reacts with, with characteristics such as "ions with higher valence are easier to adsorb" and "for elements in the same group, ions with a larger atomic number are easier to adsorb." In this column, we will provide a detailed explanation with reference to the periodic table and the selectivity coefficients of cation exchange resins and anion exchange resins. *For more detailed content of the column, please refer to the related links. For further inquiries, feel free to contact us.

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High Purity Ion Exchange Resin "Muromac SG Series"

"Effective for the purification of aqueous and organic solvent-based chemicals and process liquids" Muromac SG Series

The Muromac SG series is a higher-grade product of our HG series. It is a newly developed high-purity ion exchange resin that enables the high purification of various chemicals and process liquids required in the manufacturing process of electronic industrial products. ● To minimize elution from the resin, impurities and TOC are reduced by addressing unreacted materials contained in the resin. ● Effective for the purification of aqueous and organic solvent-based chemicals and process liquids. ● Specializes in the removal of ionic impurities at levels below ppb (patented technology).

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UV-curable optical elastic resin World Rock HRJ series

High transparency UV-curable optical elastomer resin for bonding display elements such as touch panels, cover lenses (front panels), and LCD displays.

An optical filling agent for bonding protective plates and front panels such as touch sensor devices and cover glass to display elements like LCDs and OLEDs. It has over 98% optical transparency and maintains high transparency even after reliability testing. It can be bonded without applying stress to the display element, preventing issues such as display unevenness.

  • LCD display
  • Other FPD related
  • Touch Panel
  • resin

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Ion exchange resin cartridge replacement service

Contributing to the reduction of water treatment running costs! Proposal for ion exchange resins necessary for pure water production.

At San Tai Sangyo Co., Ltd., we offer a cartridge replacement service for ion exchange resins necessary for pure water production. This service eliminates the hassle of replacement for our customers and reduces the disposal costs for degraded resins. We can also shorten lead times. Additionally, we provide regeneration of ion exchange resins that have decreased adsorption capacity, commonly used in cleaning machines in the electronics industry, as well as a shuttle service for replacing regenerated resins. We also collaborate with maintenance companies to provide resin replacement for installed resin towers, so please feel free to consult us. 【Features】 ○ Cost reduction for new resins – selling resins from various manufacturers ○ Ion exchange resin replacement shuttle service ○ Regeneration of ion exchange resins *For more details, please contact us or download the catalog.

  • Water treatment equipment
  • resin

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Ion exchange resin, new resin, food additive 9

Implementation of standard tests for the 9th edition of the Food Additive Standards Specification (Cation Exchange Resins, Anion Exchange Resins).

To all in the food and beverage industry: Proposal for the implementation of ion exchange resins (9th edition of the Food Additive Standards Official Handbook's standard tests for cation exchange resins and anion exchange resins).

  • Pure water production equipment
  • resin

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Functional Resins ALTESTER・CYTESTER

New grades of high-performance resins such as heat-resistant transparent polyester and highly heat-resistant thermosetting resins have been introduced.

Our company offers a variety of functional resins that excel in heat resistance, transparency, and high hardness! <Features of Each Product> 【ALTESTER New Grade (SH Grade)】 Introducing a new grade that further enhances heat resistance and improves impact resistance. A copolyester that balances heat resistance and amorphous properties. Compatible with various molding methods such as extrusion, injection, and blow molding. Preparing to obtain safety and health approvals. 【CYTESTER】 A thermosetting resin with excellent heat resistance and dielectric properties. Can be used in combination with various thermosetting resins such as epoxy resins and maleimide resins. *For more details, please refer to the PDF materials or feel free to contact us.

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Crystalline polyester resin "ALTESTER SC grade"

[Heat-resistant material] Improved heat resistance during stretching due to crystallinity! A special grade of ALTESTER aimed at enhancing physical properties!

The "ALTESTER SC Grade" is a special grade designed to improve physical properties after stretching, possessing crystallinity. The resin has heat resistance with crystallinity and a glass transition temperature of over 100°C, exhibiting high Izod impact strength and excellent impact resistance even at low stretch. Additionally, the heat resistance of the stretched film surpasses that of PET, making it suitable for applications requiring high heat resistance. 【Features】 - Resin heat resistance: Crystalline with a glass transition temperature of over 100°C - Resin impact resistance: High Izod impact strength and excellent impact resistance even at low stretch - Stretched film heat resistance: Surpasses PET, suitable for applications requiring high heat resistance - Stretched film characteristics: Low density, low elastic modulus, low dielectric constant (compared to PET film) - Safety and hygiene: Under consideration for positive list inclusion *For more details, please refer to the PDF document or feel free to contact us.

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Amorphous polyester resin "ALTESTER SH grade"

A special grade of ALTESTER suitable for applications requiring heat resistance and impact resistance! Amorphous and highly transparent!

The "ALTESTER SH Grade" is a special grade that has heat resistance and improved impact resistance. The impact resistance is higher compared to existing grades, on par with PET, and it has good chemical resistance as an amorphous polyester. Additionally, it has a Tg of 135°C and a total light transmittance of over 91%. It is a transparent material that demonstrates high heat resistance. 【Features】 ■ Glass transition temperature is 135°C, no deformation in boiling test ■ Amorphous with high transparency ■ Impact resistance is higher compared to existing grades, on par with PET ■ Good chemical resistance as an amorphous polyester ■ Listed in the Ministry of Health, Labour and Welfare positive list *For more details, please refer to the PDF document or feel free to contact us.

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Introduction of exhibited products at "Chemical Material Japan 2020"

Polyimide resin, which is expected to be utilized in various fields including 5G-related applications and aerospace. Product materials are being provided.

Our company will be exhibiting at "Chemical Materials Japan 2020," which will be held online from October 19 to November 18, 2020. 【Exhibited Products Features】 ■ Thermoplastic Polyimide Resin 'Supreme TO65' - Excellent moldability with a Tg of 185°C and a Tm of 323°C - Suitable for various applications such as melt-extruded films, machining, and injection molding ■ Heat-Resistant Transparent Polyester Resin 'ALTESTER Series' - Developed a new grade with a glass transition temperature up to 50°C higher than PET - Currently developing a new grade with crystallinity - Maintains transparency while improving impact resistance ■ Thermosetting Resin 'CYTESTER' - Cures by forming a triazine ring Excellent processability, with high glass transition temperature, low thermal expansion, and low dielectric properties after curing ■ Special Polyol 'SPG (Spiroglycol)' - Symmetrical and stable molecular structure - Incorporating into polymers enhances heat resistance, impact resistance, hardness, and moldability ■ Special Polyol 'DOG (Dioxanediol)' - Can impart flexibility when incorporated into polymers *For more details about each product, please refer to the materials or feel free to contact us.

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Thermoplastic polyimide resin "Saprime"

A thermoplastic polyimide resin that combines unprecedented moldability and heat resistance.

"Suprem" is a thermoplastic polyimide resin that exhibits a balanced glass transition temperature (Tg 185°C) and melting point (Tm 323°C) compared to super engineering plastics such as PEEK and PEKK, and combines high strength, high heat resistance, high solvent resistance, low dielectric constant (2.66 at 10GHz), and easy moldability. It is a crystalline TPI that maintains a high glass transition temperature while lowering the melting point, and it has a wide range of applications such as CFRP matrix resin, CFRP toughness modifiers, compounds, and electrical and electronic uses, leveraging its characteristics. [Features] ■ Crystalline thermoplastic polyimide (pellets, powder) ■ Insoluble in solvents ■ High heat resistance, high strength ■ Easy moldability ■ Reflow resistant ■ Low dielectric, high lubricity *For more details, please refer to the PDF document or feel free to contact us.

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Examples of Suprem Film Molding

Introducing examples of film molding of Surprim, boasting low dielectric properties and high toughness, with Tg of 185°C and Tm of 323°C!

Here is an introduction to examples of film molding using "Saprime." "Saprime" is a thermoplastic polyimide resin that exhibits a balanced glass transition temperature (Tg 185°C) and melting point (Tm 323°C) compared to super engineering plastics such as PEEK and PEKK. It combines high strength, high heat resistance, high solvent resistance, low dielectric constant (2.66 at 10GHz), and easy moldability. It is a crystalline TPI that maintains a high glass transition temperature while lowering the melting point, making it suitable for a wide range of applications such as CFRP matrix resins, CFRP toughness modifiers, compounds, and electrical and electronic applications. 【Features】 ■ Low dielectric properties ■ Low water absorption ■ High visibility ■ High toughness ■ High Tg (185°C) ■ Crystalline film *For more details, please refer to the PDF materials or feel free to contact us.

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『Therplim』 Low Friction Grade

For complex shape members and high-performance molded members!

Introducing the crystalline thermoplastic polyimide "Therplim Fiber Reinforced Grade". It is suitable for applications that require high Tg (185℃) as an alternative to super engineering plastics such as PEEK.

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Gas barrier CFRP matrix resin "BARRIZOW"

We have developed a resin with high gas barrier properties against hydrogen, suitable viscosity for various tank molding methods, and a shelf life for storage!

【Features】 - It has good impregnation and moldability for carbon fibers, resulting in excellent mechanical properties. - Due to its high gas barrier properties, it is expected to reduce the amount of gas leaking from containers and allow for thinner barrier layers and linerless designs. - We have developed grades suitable for filament winding (FW) molding, RTM molding, and more. It can be provided as tow prepreg or resin. It can also be used for coating applications. - It is compatible with various gases, including oxygen, nitrogen, and argon, in addition to hydrogen. *The resin composition can be adjusted according to molding conditions. Please consult us first.

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Book: Measurement and Evaluation Methods of Resin Hardness and Curing Behavior

Understanding the hardening behavior makes the measurement and analysis methods clear!

○Publication Date: July 13, 2007 ○Format: B5 size, hardcover, 575 pages ○Price: 60,000 yen (excluding tax) → STbook member price: 56,952 yen (excluding tax) ○Authors: Kiichi Hasegawa, Osaka Municipal Industrial Research Institute Nobuyuki Furukawa, National Institute of Technology, Sasebo College Satoshi Yamazaki, Mitsui Chemicals Polyurethane Co., Ltd. Akihiro Matsumoto, Osaka Municipal Industrial Research Institute Tatsuya Yamagami, The University of Tokyo Takeshi Tanaka, A&D Company, Limited Toru Fuji, Totsuya Echo Co., Ltd. Mikio Akutsu, Cashew Co., Ltd. Yasuyuki Takimoto, Advisor, Photopolymer Discussion Group Kenji Suda, Kawakami Paint Co., Ltd. Motokyo Mito, Osaka City University Koji Adachi, The University of Tokyo Kinji Taki, Shizuoka University Shozo Nakamura, Hiroshima Institute of Technology Masaki Yoshii, Hitachi Chemical Co., Ltd. Jun Sekiguchi, Risotech Japan Co., Ltd. Shuichi Takahashi, AZ Electronic Materials Co., Ltd. Others

  • 企業:S&T出版
  • 価格:10,000 yen-100,000 yen
  • Technical and Reference Books
  • resin

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Qualitative Analysis Result Report: Polyurethane

Cadmium, chromium, mercury, lead, and bromine: all five substances are not detected!

This document is a qualitative analysis report of "polyurethane" handled by J&H Business. It proves that none of the five substances—cadmium, chromium, mercury, lead, and bromine—were detected. 【Contents】 ■Sample Information ■Analysis Results ■Sample's Fluorescent X-ray Spectrum *For more details, please refer to the PDF document or feel free to contact us.

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