analysis Product List and Ranking from 138 Manufacturers, Suppliers and Companies | IPROS

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

analysis Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

  1. ユニオンシステム Osaka//Information and Communications
  2. B7 Tokyo//Information and Communications
  3. キャデナス・ウェブ・ツー・キャド Tokyo//Information and Communications
  4. 4 恒徳アイデック Osaka//Building materials, supplies and fixtures manufacturers
  5. 4 アイテス Shiga//others

analysis Product ranking

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

  1. 3D Dynamic Plasticity Response Analysis "3D DynamicPRO" ユニオンシステム
  2. Stress Analysis of Arbitrary Shape Plane Frames "Super Build/FA1" ユニオンシステム
  3. Finite Element Analysis (FEA) application "LISA" B7
  4. [Example] Image analysis using drones 中部EEN
  5. 4 Image and video analysis AI for analyzing visitor flow and determining attributes at outdoor festivals. ファントム

analysis Product List

181~210 item / All 398 items

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[Case Study] Analysis of Air Gap Magnetic Flux Density in Built-in Magnet Synchronous Motors

Understanding the magnetic flux density in the air gap is important! Here are some examples of magnetic flux density analysis for the relevant area.

We would like to introduce our analysis of the "Air Gap Magnetic Flux Density Analysis of Embedded Magnet Synchronous Motors (IPMSM)." The analysis mode used was transient response analysis, and the driving condition was no load at 3,000 min-1, with the analysis executed at the 45° position in the right diagram for 1/8 of the area (2D). As a result of the analysis, it was found that the magnetic flux density penetrating the air gap between the stator and rotor changes relative to the excitation timing of the stator coil of the rotating rotor. Therefore, analyzing the dynamic behavior is considered an effective approach. 【Analysis Conditions】 ■ Analysis Mode: Transient Response Analysis ■ Motor Specifications: 3-phase / 8-pole / 48-slot, distributed winding ■ Driving Conditions: No load / 3,000 min-1 ■ Analysis executed at the 45° position in the right diagram for 1/8 of the area (2D) ■ The air gap (air layer) between the stator and rotor is processed in 4 layers *For detailed information about this case, please refer to the related links. For more information, feel free to contact us.

  • Analysis and prediction system
  • analysis

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[Analysis Case] Analysis of the Propulsive Force of Linear Actuators

3D simulation is necessary for analysis! A case study analyzing the effects of differences in magnet length.

We would like to introduce the "Thrust Force Analysis of Linear Actuators" conducted by our company. In this case study, we analyzed the impact of differences in magnet length on the thrust direction and stroke of the motor. As a result of the analysis, we confirmed the presence or absence of magnetic saturation in the magnetic flux field circuit under the driving conditions of the motor, and found that magnetic saturation did not occur and the magnetic flux field was stable. 【Analysis Conditions】 ■ Driving Conditions: Input Current DC-1A/Phase ■ Stroke Operation Time: 4ms (Design Stroke Time Range 1-3ms)  ※ Design Stroke: -10mm to 10mm ■ Magnet Length Variation Width: -1mm, +3mm, +7mm (based on 60mm width)  ※ The magnet length was set as a variable, and calculations were performed for the above three variation widths. *Details of the case study can be viewed through the related links. For more information, please feel free to contact us.

  • Analysis and prediction system
  • analysis

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Elastoplastic analysis of arbitrary-shaped solid frames SNAP

Faster and more accurately. Analyzing the behavior of complex buildings.

SNAP performs member-level dynamic response analysis, stress analysis, and incremental analysis for structures of arbitrary shapes.

  • Other analytical equipment
  • Scientific Calculation and Simulation Software
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Server room (data center) air conditioning analysis

Analyzing the effects of aisle capping in the server room!

In server rooms and data centers, there are many servers and IT equipment, and heat management is essential for their stable operation. As a measure, we face the exhaust fans on the back of the server racks towards each other to create a pathway (hereinafter referred to as the hot aisle) that primarily directs exhaust from the racks upward, and we face the intake sides on the front of the server racks towards each other to create a pathway (hereinafter referred to as the cold aisle) that primarily introduces cool air from the floor into the server racks, alternating them to enable efficient exhaust. However, at the top of the server racks, there is a possibility of drawing in high-temperature exhaust from the equipment (short-circuiting), so we considered measures and conducted a comparison based on the presence or absence of a partition (hereinafter referred to as aisle capping) at the top of the cold aisle. For more details, please download the catalog.

  • Scientific Calculation and Simulation Software
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Entrance hall air conditioning analysis

Air conditioning analysis of the entrance hall was conducted during the basic design phase.

The entrance hall targeted for analysis is a large space with a height of approximately 20 meters. During the basic design phase, it is crucial to verify whether there are any issues with the temperature distribution and airflow distribution in the living area, based on the position, number, wind speed, and temperature of the air conditioning air outlets. This is very important for considering comfort and energy efficiency. Additionally, changes in conditions due to the seasons must also be taken into account. In this analysis, we detailed the internal space shape of the building, the arrangement of air outlets and inlets, and the thermal load, conducting air conditioning analysis for summer, winter, and transitional periods. For more details, please download the catalog.

  • Scientific Calculation and Simulation Software
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  • analysis

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Analysis of airflow around the cooling tower

Reproducing the thermal flow conditions around cooling towers with unknown characteristics and behaviors!

Thermal fluid equipment related to building facilities often has many unknown characteristics and behaviors. Cooling towers are one such example, but by precisely setting the structure, flow conditions, and thermal conditions of each cell of the cooling tower, it is possible to reproduce the thermal flow state quite accurately. In this analysis, we conducted a cooling tower thermal flow analysis considering external winds to examine the impact of multiple cooling towers with different specifications on the temperature distribution of the heated air released from each cell in relation to the airflow conditions around high-rise buildings. For more details, please download the catalog.

  • Scientific Calculation and Simulation Software
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Rotary door ventilation analysis

We analyzed the ventilation characteristics of the revolving door, which is a movable boundary.

What are the ventilation characteristics of revolving doors? In revolving doors, where the opening area changes significantly over time, it is important to capture the temporal variation of the ventilation airflow. This analysis treats the revolving section as a moving object, aiming to gain insights into the circulation of air inside and outside. For more details, please download the catalog.

  • Scientific Calculation and Simulation Software
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Analysis of airflow in the subway station when the train enters.

I analyzed the airflow in the subway station using the moving boundary problem.

It is known that there are significant speed and pressure fluctuations at the front and rear of vehicles running in narrow spaces such as tunnels and subway stations. In this analysis, we conducted simulations regarding the impact on the area around the platform (airflow, pressure) when a train passes, using the moving boundary problem. For more details, please download the catalog.

  • Scientific Calculation and Simulation Software
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Air Conditioning Analysis in an Electrical Components Factory

We conducted an air conditioning analysis using an electrical components factory with a clean room as an example.

The air conditioning analysis of an electrical components factory was conducted using a factory with a clean room as an example. Unlike general architecture, where aesthetics are emphasized, in facilities such as factories, functionality such as air conditioning performance and ventilation efficiency takes precedence over design. Even when achieving the same ventilation and air conditioning performance, there is often significant potential for cost reduction regarding the layout of ducts and outlets. For more details, please download the catalog.

  • Duct related equipment
  • Scientific Calculation and Simulation Software
  • Other Software
  • analysis

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Inclined apartment-style environmental analysis

Examining the difficult issues of a condominium built on a slope due to changes in the wind environment.

The purpose of wind environment analysis in sloped terrain is to examine some of the difficult issues that exist within wind environment analysis. Analyzing areas that include sloped and undulating terrain is one of these issues. The reason for this is that the presence of elevation differences between buildings and their foundations makes it challenging to create analysis models. Another reason is the question of how to set the conditions for approaching wind on sloped terrain. Like in typical flat terrain analysis, a power-law distribution is generally used as a basis, but it is preferable to establish a distribution along the slope's inclination. Furthermore, there is a need to set the height of the sky plane higher than in standard analyses. For more details, please download the catalog.

  • Surveying
  • others
  • analysis

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Moving Boundary: Analysis of Wind Pressure Acting on a Running Train

We analyzed the aerodynamic pressure exerted by a moving train.

Moving Boundary: The analysis of wind pressure acting on a moving train was conducted using numerical simulations that take into account the moving boundary. It has been pointed out that strong winds, such as those caused by typhoons, pose a risk of overturning moving trains. Therefore, understanding the wind pressure acting on a moving train is important. For more details, please download the catalog.

  • Scientific Calculation and Simulation Software
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  • analysis

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Analysis of the wind environment around the apartment complex

The analysis results for a condominium building located in an urban area were conducted for summer and winter.

The analysis of the wind environment around the condominium was conducted for condominium buildings located in urban areas, focusing on the results for summer (southwest wind) and winter (north wind). When constructing or expanding buildings in urban areas, the wind conditions within the site or surrounding area can change significantly. This is known as the wind environment (building wind) issue. Generally, an investigation is conducted on the changes in wind speed distribution caused by the presence of the planned building for all wind directions (8 or 16 directions), comparing it to the conditions before construction. For a simplified evaluation, analysis is performed only for the prevailing winds of each season. For more details, please download the catalog.

  • Other civil engineering works
  • Scientific Calculation and Simulation Software
  • Other Software
  • analysis

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Analysis of Wind Environment Around High-Rise Buildings

Investigating the changes in wind environment when high-rise buildings are constructed in areas with relatively open surroundings.

The analysis of the wind environment around high-rise buildings aims to investigate the degree of impact on the surrounding area, which inevitably increases. In urban areas, it is not uncommon for buildings over 100 meters tall to be constructed; however, in such cases, the impact on the wind environment (building wind) differs significantly compared to situations where relatively low-rise apartments are built in residential areas. For buildings exceeding 100 meters, the areas of reverse flow that appear on the approach (windward) side, as well as the wakes (downstream vortices) that occur behind, become very large, resulting in a correspondingly significant impact on the surroundings. This analysis examined the changes in the wind environment when high-rise buildings are constructed in areas where the surroundings are relatively open. For more details, please download the catalog.

  • Other civil engineering works
  • Surveying
  • others
  • analysis

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Heat flow analysis in thermal storage tank

Reproduction of ducts and structures inside the heat storage tank, thermal flow analysis related to liquid flow velocity and temperature stratification.

The thermal flow analysis within the thermal storage tank reproduces the ducts and structures inside the tank and conducts thermal flow analysis regarding the flow velocity and temperature stratification of the liquid within the tank. When predicting the performance of the thermal storage tank, it is crucial to understand the temperature distribution changes of the fluid inside the tank. This characteristic is greatly influenced by the shape and flow velocity within the tank, affecting the temperature stratification of the liquid in the thermal storage tank. For more details, please download the catalog.

  • Surveying
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  • analysis

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Thermal fluid analysis in continuous casting machine molds

Simulation experiment on the influence of the flow state of molten steel flowing into the mold from the immersion nozzle.

In the thermal fluid analysis of the continuous casting machine mold, we conducted a thermal fluid analysis related to the continuous casting equipment in steelmaking plants. We faithfully modeled the mold and immersion nozzle to reproduce the flow within the molten steel bath, which is extremely important for controlling the thickness of the solidification shell and reducing non-metallic inclusions, making it an essential requirement for high-speed casting equipment. In this analysis, we simulated the impact of the flow of molten steel entering the mold from the immersion nozzle, as shown in the diagram below. For more details, please download the catalog.

  • Surveying
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  • analysis

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Moving Boundary: Flow Analysis in a Stirring Tank Due to Impeller Rotation

Visualization of the fluid behavior in the tank generated by the rotation of the impeller, accompanied by a moving boundary.

Moving Boundary: In the flow analysis of a mixing tank caused by the rotation of an impeller, we conducted a numerical simulation with moving boundaries to visualize the behavior of the fluid generated by the rotation of the impeller within the tank. The mixing and blending of fluids in a mixing tank is one of the important processes in the chemical and bio fields. There are various types of blade shapes, and the goal is to sufficiently mix and blend the contents inside the mixing tank. For more details, please download the catalog.

  • Surveying
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  • analysis

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Analysis of airflow and heat within electronic device enclosures

Ventilation analysis was conducted using numerical simulations within the electronic device enclosure.

In the thermal airflow analysis of electronic device enclosures, we conducted ventilation analysis through numerical simulations within the enclosures. With the improvement of technology, electronic components are increasingly shrinking, making thermal issues within electronic device enclosures unavoidable. The placement of high-heat-generating components and ventilation parts such as fans can significantly affect the performance of the devices themselves. We conducted the analysis to gain insights into this. For more details, please download the catalog.

  • Surveying
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Entrusted Analysis Service [Thermal Fluid Analysis]

We have expertise in thermal fluid analysis in the fields of architecture, civil engineering, machinery, and electronics. Please try our analysis level and cost performance!

We have been engaged in various thermal fluid analysis services for over a decade, working hard and brainstorming with many clients to accumulate a wealth of know-how, insights, and presentation skills. The contracted analysis we provide has many advantages, such as: - Usable even by users who cannot operate software. - Convenient when time is limited or when the volume of analysis work is large. - Results can be interpreted by beginners in reports and other documents. - Conducted by experts, ensuring no concerns about the accuracy of the results. We promise to further enhance the level of analysis through organic collaboration with our clients while shedding light on unknown phenomena through simulation and opening new horizons of knowledge. For more details, please contact us or download the catalog.

  • Surveying
  • Architectural CAD
  • Civil Engineering CAD
  • analysis

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Mold flow analysis 【Analyzed from the unique perspective of a molder.】

We will check in advance the effects of product shape, resin characteristics, mold design, and molding conditions.

During product design, by evaluating moldability before mold design and improving design quality, we can reduce defects that occur in later processes and streamline the development process. We will assist our customers in developing high-value-added products by utilizing not only specialized knowledge and design techniques related to resin, which are essential for the structural, mechanical, and housing design of resin products, but also know-how and analytical techniques from the manufacturing process.

  • System kitchen equipment and accessories
  • Kitchen appliances
  • accessories
  • analysis

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Structural analysis

Improvements in design quality, reduction of man-hours for prototyping and experimentation, and shortening of development periods can be expected.

By utilizing structural analysis, we can expect improvements in design quality regarding product strength, reductions in man-hours for prototypes and experiments, and shortened development periods. Our company supports designers facing strength-related issues with products and components through extensive expertise and analytical techniques. - Evaluation and optimization of the structural performance of product shapes - Stress analysis - Can the material of the component withstand stress, and will it break? - Strain analysis - Where will the component fail? - Deformation analysis - To what extent will the shape of the component change? - Sensitivity check - Identification of design parameters that most significantly impact structural performance - Design optimization - Examination of which parameters need to be changed and by how much

  • Kitchen appliances
  • accessories
  • Rock drills, demolition machines, and excavators
  • analysis

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Failure analysis of power devices

We will identify and observe the defective areas of power devices such as diodes, MOS-FETs, and IGBTs.

We perform optimal preprocessing for power devices such as diodes, MOS FETs, and IGBTs of all sizes and shapes, and identify and observe defective areas through backside IR-OBIRCH analysis and backside emission analysis. ■ Preprocessing for Analysis - Backside Polishing - Supports various sample forms. Si chip size: 200um to 15mm square ■ Defective Area Identification - Backside IR-OBIRCH Analysis / Backside Emission Analysis - IR-OBIRCH Analysis: Supports up to 100mA/10V and 100uA/25V Emission Analysis: Supports up to 2kV * Covers a wide range of defect characteristics such as low-resistance shorts, micro-leaks, and high-voltage breakdown failures. ■ Pinpoint Cross-Section Observation of Leak Areas - SEM/TEM - Select SEM or TEM observation based on the predicted defects, allowing for pinpoint physical observation and elemental analysis of leak defect areas.

  • Other analytical equipment
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Analysis of semiconductor diffusion layers using sMIM

Detect changes in concentration as changes in C! The dC/dV signal can also be obtained, making it effective for analyzing the diffusion layer.

At Aites Co., Ltd., we conduct analysis of semiconductor diffusion layers using sMIM. The Scanning Microwave Impedance Microscopy (sMIM) is characterized by signals that have a linear correlation with dopant concentration. sMIM scans the sample by irradiating microwaves from the tip of a metal probe attached to an SPM and measures the reflected waves to obtain sMIM-C images that have a linear correlation with the concentration of the diffusion layer. The C component of Zs obtained from the reflectivity consists of the oxide film capacitance and the depletion layer capacitance. By utilizing the fact that the depletion layer width changes depending on impurity concentration, we detect changes in concentration as changes in C. [Application Examples] ■ sMIM-C: Visualization of diffusion layers and semi-quantitative evaluation of dopant concentration for various semiconductor devices such as Si, SiC, GaN, InP, and GaAs. ■ dC/dV: Evaluation of diffusion layer shape, determination of p/n polarity, visualization of the depletion layer. *For more details, please refer to the PDF materials or feel free to contact us.

  • Other analytical equipment
  • Analysis and prediction system
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Crystal analysis of Cu using the EBSD method.

Observe the changes before and after compression on the copper plate! You can compare the half-life of the crystal grain size before and after compression.

The EBSD (Electron Backscatter Diffraction) method obtains orientation information of individual crystals from the electron diffraction patterns generated by electron beam irradiation and maps this information. Furthermore, it is a technique for investigating not only crystal orientation (texture) but also material microstructural states such as crystal grain distribution and stress-strain as quantitative and statistical data. In the observation of changes before and after compression of a Cu plate, IQ maps, GROD maps, and IPF maps (in the Axis 3 direction) can be used to compare the half-life of crystal grain size before and after compression. 【Features】 ■ Obtains and maps orientation information of individual crystals ■ Investigates material microstructural states such as crystal orientation, crystal grain distribution, and stress-strain *For more details, please refer to the PDF materials or feel free to contact us.

  • Electrical Equipment Testing
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  • analysis

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Backside light emission analysis of SiC devices

Pre-processing of SiC devices → Identification of leakage points → Physical analysis/component analysis handled seamlessly!

Our company conducts "Backside Emission Analysis of SiC Devices." SiC is a power device that has less energy loss compared to conventional Si semiconductors and is attracting attention. However, since its physical properties differ from those of Si semiconductors, new methods are required for failure analysis. In a case study of backside emission analysis of SiC MOSFETs, an overseas SiC MOSFET was subjected to ESD, creating a G-(D,S) leakage, and numerous emissions indicating the leakage points were detected through emission analysis. When the emission points were observed using TEM, damage to the SiO2 film and the SiC crystal was noted. *For more details, please refer to the PDF document or feel free to contact us.

  • Other analytical equipment
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Narrowing down defective areas using the EBAC (Absorption Current) method.

"SEM images" and "absorption current images (current sensing)" etc.! It identifies open defects in wiring and areas with high resistance defects.

Our company provides analysis and reliability evaluation services. In the "Narrowing Down Defective Areas Using the EBAC (Absorbed Current) Method," we identify open defects and high-resistance areas in wiring using the EBAC method with a nano-probe and high-sensitivity amplifier. By sensing the absorbed current as voltage, we can obtain a contrast based on the resistance voltage drop within the wiring, allowing us to detect high-resistance defects in TEGs such as via chains. [Analysis Examples Using the EBAC Method] ■ SEM Images ■ Overlaid Images ■ Absorbed Current Images (Current Sensing) ■ Absorbed Current Images (Voltage Sensing) *For more details, please refer to the PDF document or feel free to contact us.

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EBSD analysis of flexible printed circuits (FPC)

We will introduce EBSD analysis that reveals areas where distortion has accumulated in the wiring of the bending section!

We will introduce the EBSD analysis of flexible printed circuits (FPC). Regarding flexible circuits used in products with movable parts or bending mechanisms, we conducted a verification using EBSD to check for differences in the Cu wiring between the bending section and the fixed section. As a result, while no significant abnormalities or differences were observed in the optical images of the wiring in the bending and fixed sections, the EBSD analysis revealed areas where strain is accumulated in the wiring of the bending section and locations where low-angle grain boundaries are concentrated. [Analysis Content] ■ Appearance of the flexible circuit and optical images of Cu wiring - Appearance of the flexible circuit - Wiring in the bending section - Wiring in the fixed section ■ Comparison of Cu wiring in the bending and fixed sections using EBSD - Wiring in the bending section - Wiring in the fixed section *For more details, please refer to the PDF document or feel free to contact us.

  • Other analytical equipment
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LED failure analysis

Applying advanced sample preparation techniques and failure analysis equipment for semiconductors! Investigating the causes of non-lighting and brightness degradation.

In our "LED Failure Analysis," we conduct failure analysis of LEDs using advanced sample preparation techniques and semiconductor failure analysis equipment to investigate the causes of non-lighting and brightness degradation. In the "LED Defect Mode Isolation," we performed lighting tests after lens polishing and observed the resin of the LED, polishing it to stages a, b, and c, conducting lighting observations for (a) and (b), and optical observations of the chip through the resin for (c). Additionally, we also have categories such as "electrically normal," "open, high resistance," etc. 【Initial Diagnosis Items for LED Packages】 ■ Electrical characteristic measurement ■ Appearance observation ■ Lens polishing/package internal optical observation ■ Lighting test (brightness distribution observation) *For more details, please refer to the PDF materials or feel free to contact us.

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Analysis of Li-ion battery separators

I confirmed the blocking function of polymer melting at high temperatures!

We conducted material analysis of the separator used in commercially available Li-ion batteries using FT-IR analysis, and confirmed its function of blocking polymer melting at high temperatures. The document presents the material analysis of Li-ion battery separators and observations of changes in the separator's condition under high-temperature environments, using graphs and photographs. [Analysis Overview] ■ Material analysis of Li-ion battery separators ■ Observation of changes in the condition of the separator under high-temperature environments - The condition changes of the separator were observed over time at a constant temperature of 135°C using FIB/SEM. *For more details, please refer to the PDF document or feel free to contact us.

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Structural analysis of prismatic Li-ion batteries.

Observation using optical microscopy and ultra-low acceleration FE-SEM! Detailed structural analysis and elemental analysis are possible.

By mechanically polishing commercially available rectangular Li-ion batteries and observing them with optical microscopy and ultra-low acceleration FE-SEM, detailed structural analysis and elemental analysis can be performed. The materials introduce the overall structure of the Li-ion battery and detailed structural observations of the Li-ion battery using SEM and ultra-low acceleration FE-SEM, accompanied by photographs. [Analysis Overview] ■ Overall structure of the Li-ion battery and SEM observation ■ Detailed structural observation of the Li-ion battery using ultra-low acceleration FE-SEM *For more details, please refer to the PDF materials or feel free to contact us.

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Structural analysis of nylon 6.10

We will elucidate the characteristics at the molecular level using our FT-IR and thermal decomposition GC-MS!

At AITES, we are conducting a structural analysis of Nylon 6.10. Nylon possesses flexibility and a texture similar to silk, while also having high strength and durability that natural fibers lack, being "stronger than steel and finer than spider silk." We will elucidate these characteristics at the molecular level using our FT-IR and pyrolysis GC-MS. 【Nylon 6.10 Interfacial Polymerization Reaction Mechanism】 1. Electron withdrawal by chlorine leads to a deficiency of electrons in adjacent carbon. 2. Non-bonding electrons from amine attack the carbon nucleophilically. 3. An oxygen atom is activated to form an unstable intermediate. 4. Hydrogen chloride is eliminated, forming an amide bond. 5. Interfacial polymerization progresses, resulting in polymerization. *For more details, please refer to the PDF document or feel free to contact us.

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