List of Stress Analysis products

  • classification:Stress Analysis

31~45 item / All 185 items

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Reduce the workload from handling heavy objects! Here are five case studies that solved customer challenges! We are also accepting free consultations and tests tailored to your work!

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  • Other conveying machines

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Strong cold wind from room temperature to -13°C! Depending on the usage environment, you can choose between the combo type or the separate type!

  • Cooling system

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April 10, 2024 (Wednesday) to April 12, 2024 (Friday) Notice of Participation in Nagoya Manufacturing World 2024

Sanwa Shiki Ventilator Co., Ltd. will be exhibiting at the 2024 Monozukuri World (Nagoya) held at Port Messe Nagoya. We will also be showcasing our large cooling fans and cool/warm ambient products. Date: April 10, 2024 - April 12, 2024 Opening: 10:00 AM Location: Nagoya Port Messe (Exhibition Hall 1) *Our booth: 19-1 We would be grateful if you could visit us if you have the time.

J-Composites is a modeling tool for resin composite press molding analysis that supports various composite molding methods.

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  • Stress Analysis
  • Structural Analysis

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Digimat is software specialized in composite material simulation, enabling the prediction of macro material properties that reflect microstructure.

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  • Structural Analysis
  • Mechanism Analysis
  • Stress Analysis

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J-OCTA enables collaboration of simulators at various scales on a common platform for research and development in materials and life sciences.

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  • Structural Analysis
  • Mechanism Analysis
  • Stress Analysis

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It is a CAE software that can analyze various changes due to processing, such as the material flow of metals and the stress state of molds in metal processing, including forging and plate forging.

  • Stress Analysis

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Launched a "Forged Product Development Site" for designers, featuring examples of reduced lead times and cost savings.

We solve the concerns of designers and developers, such as 'abandoning forging due to complex shapes' and 'long lead times due to numerous prototypes.' Yamanka Gokin, a leading company in mold design and CAE analysis, has launched a 'Forged Product Development Site' that consolidates case studies directly related to solving engineers' challenges. By combining 60 years of expertise with cutting-edge simulations, we strongly support your product development. <Highlighted Cases on the Site> No Cutting: Forging the serration part of bevel gears to achieve both process reduction and improved accuracy. Breaking Limits with Deep Hole Processing: Achieving deep hole forging with an L/D ratio of 10 times, exceeding processing limits. One-Shot Forming of Complex Shapes: Significantly reducing manufacturing costs by utilizing multi-axis compound presses. With optimal method proposals based on over 1,500 insights, we simultaneously achieve reduced development costs, lightweighting, and increased strength. For more details, please refer to the related link.

Residual stress in the surface layer of the sample is measured non-destructively using a residual stress measurement device.

  • Contract measurement
  • Testing Equipment and Devices
  • Stress Analysis

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We will quantify the residual austenite using the principle of X-ray diffraction.

  • Contract measurement
  • Stress Analysis
  • X-ray inspection equipment

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Using the principle of X-ray diffraction, residual stress in the sample is measured non-destructively.

  • Contract measurement
  • Stress Analysis
  • X-ray inspection equipment

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Supports the creation of databases for various materials! We assist in creating material databases tailored to your needs.

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  • Stress Analysis
  • Strength Testing Equipment
  • Contract measurement

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Fatigue evaluation of non-ferrous and non-metallic materials (short fiber reinforced resin / CFRP laminated materials / rubber, etc.)

  • Stress Analysis
  • Contract Analysis
  • Structural Analysis

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We will exhibit at the 14th Automotive World [January 19 (Wed) - 21 (Fri), 2022].

We are pleased to announce that we will be exhibiting at the "14th International Car Electronics Technology Exhibition" during the "14th Automotive World," which will be held at Tokyo Big Sight from January 19 (Wednesday) to January 21 (Friday), 2022. Automotive World showcases the latest technologies in cutting-edge themes within the automotive industry, such as autonomous driving, vehicle electrification, connected cars, and lightweighting. Among these, the "International Car Electronics Technology Exhibition" is the world's largest specialized exhibition in this field, featuring semiconductors, electronic components, software, and testing technologies that support the evolution of car electronics. We will be showcasing CAE software that can be utilized for improving fuel efficiency, reducing CO2 emissions, and considering lightweighting in the development and design of electric and hybrid vehicles. Specifically, we will introduce three products, including our flagship CAE software "FEMFAT," which is used for fatigue life prediction analysis, as well as engineering services for prototyping and vehicle testing. We invite you to visit the Magna booth.

We propose an efficient vibration fatigue analysis environment for solder joints and bus bars on electronic substrates!

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  • Stress Analysis
  • Contract Analysis

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We will consider the surface contact near the spot welding area to make it possible to reproduce the actual phenomenon!

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  • Mechanism Analysis
  • Stress Analysis
  • Contract Analysis

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We propose a consistent process from the creation of a material database for thermal fatigue evaluation to thermal fatigue analysis!

  • Structural Analysis
  • Stress Analysis
  • Contract Analysis

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Support for the creation of databases suitable for fatigue analysis methods of joints (welding, adhesives, fastening) and their applications!

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  • Stress Analysis
  • Structural Analysis
  • Contract Analysis

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We propose a structural optimization process that takes fatigue life into consideration, supporting realistic structural optimization!

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  • Structural Analysis
  • Stress Analysis
  • Contract Analysis

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Hysteresis can be reproduced! The analysis model takes into account the friction between the leaf springs and the U-bolt clamping force.

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  • Contract Analysis
  • Mechanism Analysis
  • Stress Analysis

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