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evaluation Product List and Ranking from 37 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

evaluation Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. null/null
  2. 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  3. 大同分析リサーチ Aichi//Service Industry
  4. 4 ユーロフィンFQL Kanagawa//Service Industry
  5. 5 ロンビック Mie//Resin/Plastic

evaluation Product ranking

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. Eurofins FQL Co., Ltd. | Business Information ユーロフィンFQL
  2. Surface shape evaluation using a laser microscope. 一般財団法人材料科学技術振興財団 MST
  3. Lithium-ion battery contract evaluation (charging and discharging tests / safety tests / post-test analysis)
  4. Development of conductive pastes and inks, surface treatment, synthesis, and evaluation of metal nanoparticles. AndTech
  5. 4 Spectrophotometer 'spectro 2 guide Pro' evaluation of jet blackness テツタニ

evaluation Product List

286~300 item / All 333 items

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Evaluation of local thermal conductivity by SThM

It is possible to visualize the phase separation structure of polymers from thermal conductivity information.

The probe tip made of SiO2 is coated with Pd, and the probe itself acts as a resistive element. Therefore, when current flows through the probe tip, a temperature rise occurs, and when it comes into contact with the sample surface, the sample absorbs the heat from the probe. To maintain a constant probe temperature, the amount of electricity supplied to the probe is adjusted, and by plotting the changes in the supplied electricity at each measurement point, the thermal conductivity of the measurement locations (for each material) is visualized as a distribution.

  • Contract Analysis
  • Contract measurement

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[Analysis Case] Evaluation of the Composition of Secondary Battery Electrolyte

Qualitative and quantitative analysis of various components contained in the electrolyte.

In the electrolyte of lithium-ion secondary batteries, a combination of high dielectric constant solvents and low viscosity solvents is used to improve electrical conductivity. Additionally, additives and electrolytes (supporting salts) not only facilitate the transport of Li ions but also have the function of forming a film on the electrode surface, requiring various performance characteristics. This paper presents examples of qualitative and quantitative analysis of various components such as solvents, electrolytes, and additives by evaluating the electrolyte itself using ICP-MS, volatile components during electrolyte heating using GC/MS, and the dry residue of the electrolyte using TOF-SIMS.

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  • Contract measurement

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[Analysis Case] Local Area Evaluation of Positive Electrode Active Material in Secondary Batteries (C0614)

Composition, crystal structure, and chemical state evaluation near the surface of living materials are possible!

Our company conducts local area evaluation of positive electrode active materials for secondary batteries (C0614). It is known that in lithium-ion secondary batteries, the crystal structure of the active material surface and the valence of metal elements change due to ion extraction and insertion during charge and discharge, as well as degradation. In a case where TEM was used for local area evaluation to assess composition, crystal structure, and chemical state, it was found through EDX that AlOx is coated on the outermost layer. Additionally, electron diffraction and EELS revealed that the crystal structure and valence differ between the surface and the interior of the active material. [Measurement and Processing Methods] ■ [(S)TEM] Scanning Transmission Electron Microscopy ■ [TEM-EDX] Energy Dispersive X-ray Spectroscopy (TEM) ■ [TEM-EELS] Electron Energy Loss Spectroscopy *For more details, please download the PDF or feel free to contact us.

  • Contract Analysis

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Free Seminar | Reliability Evaluation, Analysis, Quality Technology, Quality Assurance

We are holding a "free seminar" on reliability evaluation, analysis, and quality technology.

Although it is irregular, we hold "free seminars" on quality technology, including reliability evaluation, analysis, and other topics, several times a year. ■Examples of themes■ We send out announcements of the seminars to customers who have subscribed to our company’s email newsletter. In addition to free seminars, we also provide information about special campaigns and offers. We encourage you to consider registering.

  • Other contract services

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Power Cycle Test | Reliability Evaluation of Power Modules and Power Devices

Reliability evaluation of power modules and power devices. We offer proposals from the construction of test environments tailored to your power cycle specifications to investigation and analysis!

When power semiconductors and power modules are repeatedly turned ON and OFF, the self-heating and cooling of the components and modules cause distortion due to the differences in expansion of the bonding materials, leading to a deterioration in bonding reliability. We offer power cycle testing that takes into account the heating operation due to repeated self-heating and cooling cycles. ■ Components, units, and devices where the adoption of power semiconductors and power modules is progressing: - Traction inverters for electric vehicles (EVs) and hybrid electric vehicles (HEVs) - On-board chargers and DC-DC converters - Motor control, robots, machine tools, elevators - Industrial inverters and uninterruptible power supplies (UPS) - Solar power generation systems and wind power generation systems

  • Engine parts
  • inverter
  • UPS/Uninterruptible Power Supply

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Evaluation using PLAZMARK atmospheric pressure plasma <Verification of distribution>

Color measurement was conducted using the Konica Minolta automatic scanning spectrophotometer FD-9, and color difference mapping was performed!

Using the No. 41 (high sensitivity) for "atmospheric pressure plasma," we conducted a distribution evaluation of a long-type atmospheric pressure plasma device. As a result, visual inspection revealed detectable unevenness in the treatment by the atmospheric pressure plasma device. The center showed significant discoloration, indicating a bias in plasma treatment. Since we can understand the condition of the currently used device, it can also be utilized for maintenance purposes. Additionally, by using a color difference meter, numerical analysis can be performed, allowing for quantitative evaluation of the distribution within the area. 【Device Information】 ■ Device Model: AP-2000 manufactured by Denshi Giken Co., Ltd. Dielectric barrier discharge atmospheric pressure plasma device ■ Treatment Conditions: CDA: 6SLM, Output 7.5kV, Treatment Speed 300mm/min, Treatment Count 1 time ■ Color Difference Meter: Konica Minolta fluorescent spectrophotometer FD-9/MYIRO-9 (Measurement Light Source C, Illumination System C Light Source, 2° Field of View) *For more details, please refer to the related links or feel free to contact us.

  • Plasma surface treatment equipment

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Evaluation using atmospheric pressure plasma <Verification of correlation with contact angle>

The color difference ΔE*ab increases! Even weak plasma treatment effects can be detected by the indicator.

Using No. 41 (high sensitivity) and No. 42 (low sensitivity) of "PLAZMARK atmospheric pressure plasma," we will confirm the color change of the indicators before and after dry air atmospheric pressure plasma treatment, as well as the contact angle of water on PET film and the color difference of the indicators. The No. 41 (high sensitivity) indicator showed a correlation with the contact angle of water on PET film under weak plasma treatment conditions, while the No. 42 (low sensitivity) indicator also showed a correlation with the contact angle of water. For detailed technical data, please refer to the related links. 【Equipment Information】 ■ Equipment Model: AP-2000 manufactured by Denshi Giken Co., Ltd. Dielectric barrier discharge atmospheric pressure plasma device ■ Color Difference Meter: Fluorescent spectrophotometer manufactured by Konica Minolta, Inc. FD-5 (Measurement light source M1, illumination system C light source, 2° viewing angle) *For more details, please refer to the related links or feel free to contact us.

  • Plasma surface treatment equipment

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Safety assessment of chemical substances: "In vitro irritation test" using a human corneal model.

OECD Guidelines (TG492) compliant! Testing and evaluation of eye irritation for chemicals, cosmetics, and pharmaceutical ingredients using a 3D human corneal model!

This is an eye irritation test using a human corneal model (OCL-200). We have a track record of compliance with GLP. We evaluate the eye irritation potential of chemical substances, cosmetics/cosmetic ingredients, and pharmaceutical ingredients in vitro. This can be utilized for determining eye irritation categories under EU CLP and UN GHS, as well as for GHS classification, SDS creation, and REACH registration. It has been validated through confirmation tests using known substances. 【Features】 ■ Compliance with regulations in various countries ■ Proposal for screening tests that achieve low cost and short turnaround time ■ We respond to trust as an internationally certified facility → AAALAC International (Association for Assessment and Accreditation of Laboratory Animal Care) certified facility → A GLP-compliant facility with over 40 years of history *For more details, please refer to the PDF document or feel free to contact us.

  • Contract Inspection

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Resin, plastic materials physical property measurement and evaluation

We propose optimal analytical designs utilizing the high-precision analytical technology and extensive experience cultivated as the Mitsubishi Chemical Group!

We would like to introduce our "Physical Property Measurement and Evaluation" services. We conduct measurements of viscoelasticity in solid and molten states, as well as evaluations of the physical properties required for polymer materials such as resins and rubbers. We also offer mixing (including torque measurement in extrusion tests using lab plastometers), molding (press and injection), and PVT measurements. 【Service Details (Excerpt)】 ■ Various physical property tests based on ISO/IEC 17025 from molding ■ Evaluation of physical properties required for polymer materials such as resins and rubbers → mechanical properties, thermal properties, physical properties, optical properties, gas permeability ■ Measurement of viscoelasticity in solid and molten states (dynamic viscosity, shear viscosity, elongational viscosity, melt tension, stress relaxation, normal stress, etc.) *For more details, please refer to the related links or feel free to contact us.

  • Contract measurement

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Evaluation of glass fiber length distribution in resin and plastic.

The length distribution of glass fibers in plastic materials can be evaluated through image processing!

Our company conducts "evaluation of glass fiber length distribution in resin" through morphological observation. We take photographs of glass fibers using an optical microscope and detect each glass fiber through image analysis. Based on the information of fiber length and quantity of the glass fibers, distribution evaluation can be performed using histograms and other methods. Additionally, we can calculate the number-average fiber length, length-weighted average fiber length, maximum fiber length, and minimum fiber length. 【Use Cases】 ■ Understand how changing the type of glass fiber affects the properties of glass fiber reinforced resin. ■ Understand how changing extrusion conditions and molding conditions affects the properties of glass fiber reinforced resin. *For more details, please refer to the related links or feel free to contact us.

  • Contract Analysis

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Evaluation of surface shape and surface condition using scanning probe microscopy (SPM).

For observing polymer blend materials and the fine surface texture of various molded products!

Our company conducts observations using "Scanning Probe Microscopy (SPM)" for morphological observation. We can observe surface shapes in 3D (three-dimensional) at the nanometer scale, and simultaneously observe the viscoelastic images of the surface. There are examples of observations and analyses such as the observation of polymer blend materials and the fine surface topography of various molded products and coated items. Please feel free to contact us when needed. 【Features】 ■ 3D (three-dimensional) observation of surface shapes at the nanometer scale ■ Simultaneous observation of surface viscoelastic images *For more details, please refer to the related links or feel free to contact us.

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  • Contract Analysis

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Evaluation of the degradation state of biodegradable resins and biodegradable plastics.

Observe how the plastic sheet decomposes in the compost!

We would like to introduce our service for "Evaluation of the Decomposition State of Biodegradable Plastics." For biodegradable plastics such as PLA (polylactic acid), we can observe the changes in appearance in compost over time, allowing us to monitor the decomposition process. In the examples provided in the related links, we conducted tests using compost as specified in JIS K6953-2 (ISO 14855-2) with plastic sheets; however, the measurement conditions and specimen sizes can be adjusted, so please feel free to consult us. 【Example】 ■ Compost used in JIS K6953-2 (ISO 14855-2) ■ Use of plastic sheets ■ Subjects: Biodegradable plastics A/B/C, non-biodegradable plastics (for comparison) ■ Observation intervals: 0 days, 10 days, 16 days, 35 days, 49 days *For more details, please refer to the related links or feel free to contact us.

  • Contract measurement

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Evaluation support for PET bottle recycling

We provide support for various evaluations and report preparation as outlined in the guidelines!

Our company provides support for various evaluations of the self-design guidelines for designated PET bottles established by the PET Bottle Recycling Promotion Council. According to the guidelines, the PET bottles used must conform to the fundamental standards outlined in the guidelines (e.g., the bottle must be made of pure PET), and if conformity is unclear, an evaluation based on the evaluation criteria is necessary. We are also available for meetings to discuss the process, so please feel free to consult with us. 【Evaluation Items】 ■ Basic Physical Property Evaluation ■ Reusability Suitability Evaluation - Fiber Applications - Sheet Applications - Bottle Applications - BtoB Applications *For more details, please refer to the related links or feel free to contact us.

  • Contract measurement

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Evaluation of recycled resin Evaluation of biodegradability

The degree of decomposition is calculated by measuring the amount of CO2 released during respiration when microorganisms break down plastic!

We would like to introduce "Model Case 4: Evaluation of Biodegradability." We conduct evaluations of biodegradation rates and degrees of decomposition necessary for the development, introduction, use, and approval of biodegradable materials, represented by biodegradable plastics. Lombic is a certified testing organization of JBPA. The measurement principle involves calculating the degree of decomposition by measuring the amount of CO2 released during the respiration of microorganisms as they decompose the plastic. [Details of our JBPA Certified Testing Organization] ■ Certification Testing Organization Number: JBPA-7 ■ Subject: Biodegradation Test JIS K6953-2 (ISO 14855-2) *For more details, please refer to the related links or feel free to contact us.

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