We will calculate and verify the stress levels at the planar and three-dimensional corner sections of the steel bridge pier.
The design of the steel bridge pier corner section "JSP-34W" calculates and verifies the stress at the plane and spatial corner sections of steel bridge piers subjected to design section forces, based on the provisions of the Road Bridge Design Guidelines and Commentary I Common Edition, II Steel Bridges and Steel Members Edition (November 2017), and the Civil Engineering Society Paper No. 153 "Stress Calculation for Thin Plate Structural Frame Corner Sections" (by Toshie Okumura and Naruo Ishizawa). For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095775).
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【Features】 ○ Unit system: SI unit system ○ Structural form: Plane corner (beam + column), three-dimensional corner (beam + column + main girder) ○ Cross-sectional shapes: Selectable from 7 types of beam cross-sections, 6 types of column cross-sections, and 4 types of main girder cross-sections ○ Calculation method for composite stress: Shear stress handling can be selected from 4 types (excluding circular pipe column diaphragms) - Use the one with the larger absolute value between τe/τed and τw/τwd - Calculate using τe/τed only - Calculate τe/τed for flanges and τw/τwd for webs - Use the one with the larger absolute value between τe/τed and τw/τed ○ Applicable standards and references: Road Bridge Design Specifications and Commentary I Common Edition (November 2017), Road Bridge Design Specifications and Commentary II Steel Bridges and Steel Members Edition (November 2017) ● For more details, please contact us or download the catalog.
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Since its establishment in 1962 as the scientific and technological division of Nihon Denshi Keisan Co., Ltd., our company has been providing software services, including the development and sales of software related to social infrastructure facilities such as bridges and roads, as well as consulting services. In recent years, the environment surrounding us has significantly changed, with advancements in digital transformation (DX), the realization of a highly information-oriented society such as Society 5.0, and progress towards globalization that includes both the economy and the environment. To be a sustainable development company, we will challenge ourselves to further enhance the scientific and technological and information technologies we have cultivated, detect changes in our customers and the surrounding environment, and engage in efforts for change and transformation, leading to the creation of value for future society. As a partner to our customers, we aim to respond to various solutions while contributing to the international community.