Composites United, one of the world's largest networks for composites-based multi-material lightweight construction, is celebrating its 20th anniversary today and tomorrow. We at Biesterfeld would like to extend our warmest congratulations and best wishes and look forward to continuing our successful partnership and contributing to the future of the composites industry. Here's to many more years of success and shared achievements! If you'd like to learn more about the composites business at Biesterfeld, feel free to reach out to our colleague Dr. Johannes Martin, who will be on site on both days.
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In the realm of construction, where tradition often reigns supreme, a new wave of talent is emerging, challenging stereotypes, and reshaping the industry’s landscape. Among these rising stars stands Ellsie Mead, a beacon of inspiration whose journey embodies resilience, determination, and a relentless pursuit of excellence. Read Ellsie's story at the link below! https://lnkd.in/gBSQmGxT
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Today is a milestone in my journey of innovation and sustainability. As I celebrate the presentation of my paper, 'A Framework for Measuring Environmental Sustainability of Urban Road Landscape in the Indian Context,' at the prestigious International Conference on Advances in Mechanical, Civil, and Construction Engineering, organized by IRAJ, I rejoice in the triumph of ideas that harmonize development with environmental stewardship. This achievement underscores my dedication to shaping greener, more resilient urban landscapes for future generations. Here's to forging a path of progress and sustainability together!
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DTC LAB AND AUGSBURG UNIVERSITY REVEAL RECIPROCAL SHELL 2023 The Digital Timber Construction Lab (DTC) and Augsburg University of Applied Sciences have recently unveiled a pioneering research demonstrator: a timber grid shell that forgoes the need for steel nodes or special connectors. This innovative structure supports catenary cross-section shells and free-form shapes that were previously unattainable. The project, supported by StadtSparkasse Augsburg, was developed for the Stadtgewaechs summer event at Moritzplatz, Augsburg, promoting sustainability in the city center. The ReciproFrame Timber Gridshell is an advanced construction system designed for rapid, cost-effective, and material-efficient assembly and disassembly of reusable structures. This hybrid system combines trivalent and reciprocal frame construction methods, leveraging digital technologies to transform short solid timber elements into efficient framed timber systems. These systems facilitate quick assembly and disassembly, enhancing both economic and material efficiency. https://lnkd.in/gXQWv5f3
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Growth impacts industry differentiation by enabling companies to invest in innovation, enhance their unique value propositions, and better meet customer needs. This leads to a stronger competitive edge and recognition in the industry, as demonstrated by Visaman Infra Projects' recent accolade. Stakeholders are crucial in achieving industry recognition because they provide support, resources, and credibility. Their involvement enhances a company's reputation and facilitates the attainment of accolades, as seen with Visaman Infra Projects' recent award. Engaging stakeholders effectively can lead to significant industry acknowledgments and advancements.
Congratulations to Team Visaman Infra Projects for receiving the certificate of appreciation from Corporate Connect! This prestigious recognition as a "Highly Acclaimed Manufacturer of Steel Structural Pipes & Pre-Engineering Building to Watchout-2024" certainly adds a significant feather to our cap, showcasing the admirable growth and differentiating factors in the industry. We are thankful to all stakeholders.
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Exciting news! We wrote an article for SIG Building Solutions in the latest edition of RCI Magazine about their innovative Gemello Revive System. 💡 Check out the full piece for insights on this groundbreaking solution in construction products here: https://lnkd.in/gBbHv55a #ConstructionProducts #Innovation #IndustryInsights
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Building the Future: Combining Innovation, Modern Tools, and Professional Expertise for Superior Construction Solutions.
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Let’s talk about increasing efficiencies before the build stage! If you’d like to receive 1.5 AIA LU credits, please reach out to schedule a lunch and learn for your office!
Brivo's new research report finds "security-by-design" aims fall short, adding up to 20% to construction costs. Read the press release and download the report: https://hubs.li/Q02l33xk0
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It is possible! Through collaboration already at an early stage, the carbon footprint can be lowered considerably.
Consolis Green Spine Line ® precast concrete elements play an essential role in reducing CO2 emissions by 36% of the Hestur apartment building in Stockholm. Further climate wins were reached through an optimized design and conscious product choices. The results, which were presented at an event in Stockholm today, are verified through the Mistra Carbon Exit program. “The results demonstrate that our climate-optimized precast concrete elements and Green Spine Line®, with a reduced proportion of cement, have played a significant role in reducing the project's total carbon footprint," says Mikael Stöhr, CEO Consolis. We are pleased to have collaborated with our customer ByggVesta AB to meet increased environmental requirements using available solutions. By working together with our customers, we can make a strong impact and contribute to more sustainable construction both now and in the future.” Read the press release about the Consolis Strängbetong project here: https://lnkd.in/eUcZDJ4H #WellBuiltForWellBeing
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New round of Live Labs road trials gets going https://lnkd.in/eSbFu_xF New materials, new machines and new methods are all being put to the test in a second round of trials aimed at making roads less ecologically damaging. Read Full Article: The Construction Index
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I would like to share insights from our project of the course 'Geotechnical Engineering for the Sustainability of Building' at Politecnico di Torino. The team conducted the design of a reinforced soil system, using geogrids and tie rods in combination with compacted soil layers. This proposal emerges as an ecologically sustainable alternative to more conventional solutions based on the use of reinforced concrete. The focus was on the detailed analysis of soil stability under fixed and variable loads, examining the collapse mechanisms: sliding, tilting and bearing capacity. The implementation of the technological solution was guided to ensure the verification of all these parameters, guaranteeing structural safety.
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