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Ansys' Collaboration With Schrödinger Will Accelerate Materials Development With Unprecedented Multiscale Simulation

Ansys' Collaboration With Schrödinger Will Accelerate Materials Development With Unprecedented Multiscale Simulation

Ansys与薛定格的合作将通过前所未有的多尺度仿真加速材料开发
安斯科技 ·  05/07 00:00

Collaboration enables accelerated materials discovery to optimize product development

协作可以加快材料处理速度s 通过发现来优化产品开发

/ Key Highlights

/ 主要亮点

  • Ansys and Schrödinger are collaborating to develop an integrated computational materials engineering (ICME) approach to product development that infuses virtual materials discovery into the early stages of design
  • The predictive accuracy of Ansys multiphysics solutions combined with Schrödinger's materials solutions help engineers identify suitable materials for their designs before manufacturing begins
  • Ansys和薛定格正在合作开发一种集成的计算材料工程 (ICME) 产品开发方法,将虚拟材料发现融入设计的早期阶段
  • Ansys 多物理场解决方案的预测精度与薛定格的材料解决方案相结合,可帮助工程师在生产开始之前为其设计确定合适的材料

PITTSBURGH, May 7, 2024 /PRNewswire/ -- Ansys (NASDAQ: ANSS) and Schrödinger are collaborating to deliver an ICME approach that bridges the gap between materials discovery and product development. Together, Ansys and Schrödinger will accelerate the discovery of new materials by using a multiscale framework, leading to more optimized materials, components, and manufacturing workflows for customers. The new workflows will empower Ansys customers to make critical decisions earlier in the design process and bring products to market sooner.

匹兹堡,2024 年 5 月 7 日 /PRNewswire/-- Ansys 纳斯达克股票代码:ANSS)和薛定格正在合作提供一种ICME方法,以弥合材料发现和产品开发之间的差距。Ansys和Schroèdinger将共同使用多尺度框架加快新材料的发现,从而为客户提供更优化的材料、组件和制造工作流程。新的工作流程将使Ansys客户能够在设计过程的早期做出关键决策,并更快地将产品推向市场。

Presently, materials discovery and product development are separate processes. While digital engineering tools have been widely adopted, standardizing and accelerating materials engineering tools has been delayed by the complexity of generating detailed data at a small scale. As a result, new products are being developed faster than the discovery of new materials that could improve performance. Computational materials engineering tools that quickly model materials from molecular to macroscopic levels present an opportunity to help customers unlock new levels of innovation and keep pace with industry advancement.

目前,材料发现和产品开发是独立的过程。尽管数字工程工具已被广泛采用,但由于小规模生成详细数据的复杂性,材料工程工具的标准化和加速被推迟了。因此,新产品的开发速度比发现可以提高性能的新材料要快。从分子到宏观层面快速对材料进行建模的计算材料工程工具为帮助客户开启新的创新水平和跟上行业发展的步伐提供了机会。

The Ansys and Schrödinger collaboration delivers a critical solution to address this challenge. The holistic approach of ICME allows customers to first determine what material characteristics are needed to meet specification standards. Once identified, users can generate material properties using Schrödinger's molecular modeling platform and use them in an Ansys simulation tool to evaluate product performance based on predicted materials data — all before prototyping begins. With this collaboration, users can run multiscale simulations to discover new materials, while ensuring products across industries fit performance standards such as weight, size, and efficiency.

Ansys和薛定格的合作提供了应对这一挑战的关键解决方案。ICME 的整体方法允许客户首先确定满足规格标准所需的材料特性。一旦确定,用户就可以使用薛定格的分子建模平台生成材料特性,并在 Ansys 仿真工具中使用这些特性,根据预测的材料数据评估产品性能——所有这些都是在原型设计开始之前完成的。通过这种合作,用户可以进行多尺度仿真来发现新材料,同时确保各行各业的产品符合重量、尺寸和效率等性能标准。

"Designing the next generation of materials starts at the molecular level," said Mathew Halls, senior vice president of materials science at Schrödinger. "Our collaboration with Ansys delivers a dramatic and necessary acceleration in materials discovery that will greatly impact our understanding of their applications. Providing customers with the right materials information before conducting physical tests can significantly reduce costs and shorten project timelines."

薛定格材料科学高级副总裁马修·霍尔斯说:“下一代材料的设计从分子层面开始。”“我们与Ansys的合作极大地加快了材料发现的步伐,这将极大地影响我们对其应用的理解。在进行物理测试之前为客户提供正确的材料信息可以显著降低成本并缩短项目进度。”

For example, when evaluating how a material behaves under force, engineers need to know how much it can stretch and how much force it can withstand before permanently changing or breaking. Schrödinger's platform enables virtual testing of these properties to determine their reactions to stress factors, and the results can be stored and managed in an Ansys materials information database. From there, the materials data can be applied to an Ansys structural simulation workflow to observe the material's behavior in context.

例如,在评估材料在受力作用下的行为时,工程师需要知道它能拉伸多少以及在永久变化或断裂之前能承受多少力。薛定鼎的平台支持对这些特性进行虚拟测试,以确定它们对应力因子的反应,结果可以存储和管理在Ansys材料信息数据库中。然后,材料数据可以应用于 Ansys 结构仿真工作流程,以观察材料在环境中的行为。

"Using the right material for product development is crucial for the success of its intended application," said Shane Emswiler, senior vice president of products at Ansys. "But when it can take up to 20 years to test and validate new materials, the types of products our customers can develop are stymied by the current selection or worse, the most suitable material doesn't exist. Together with Schrödinger, Ansys will provide an accelerated path to discovering new materials that have better performance and longevity for a host of applications, ensuring our customers can stay on the cutting-edge of innovation."

Ansys产品高级副总裁Shane Emswiler表示:“使用正确的材料进行产品开发对于其预期应用的成功至关重要。”“但是,当测试和验证新材料可能需要长达20年的时间时,我们的客户可以开发的产品类型会受到当前选择的阻碍,或者更糟糕的是,最合适的材料不存在。Ansys将与薛定格携手,为发现性能更好、寿命更长的新材料提供一条更快的途径,从而确保我们的客户能够保持创新的前沿。”

To learn more about the collaboration and workflow, register to attend Ansys Simulation World 2024, a free simulation event designed to inspire, equip, and empower innovation, hosted virtually May 14-16.

要了解有关协作和工作流程的更多信息,请注册参加 2024 年 Ansys 仿真世界,一项旨在激励、装备和增强创新的免费模拟活动,于 5 月 14 日至 16 日虚拟举办。

/ About Ansys

/关于 Ansys

Our Mission: Powering Innovation that Drives Human Advancement

我们的使命:推动创新,推动人类进步

When visionary companies need to know how their world-changing ideas will perform, they close the gap between design and reality with Ansys simulation. For more than 50 years, Ansys software has enabled innovators across industries to push boundaries by using the predictive power of simulation. From sustainable transportation to advanced semiconductors, from satellite systems to life-saving medical devices, the next great leaps in human advancement will be powered by Ansys.

当有远见的公司需要知道他们改变世界的想法将如何发挥作用时,他们会利用 Ansys 仿真缩小设计与现实之间的差距。50 多年来,Ansys 软件使各行各业的创新者能够利用仿真的预测能力突破界限。从可持续交通到先进的半导体,从卫星系统到拯救生命的医疗设备,人类进步的下一个重大飞跃将由Ansys提供动力。

Ansys and any and all ANSYS, Inc. brand, product, service and feature names, logos and slogans are registered trademarks or trademarks of ANSYS, Inc. or its subsidiaries in the United States or other countries. All other brand, product, service and feature names or trademarks are the property of their respective owners.

Ansys 和所有的 ANSYS, Inc. 品牌、产品、服务和功能名称、徽标和口号是 ANSYS, Inc. 或其子公司在美国或其他国家的注册商标或商标。所有其他品牌、产品、服务和功能名称或商标均为其各自所有者的财产。

ANSS–C

ANSS—C

/ Contacts

/联系人

Media

Mary Kate Joyce


724.820.4368


marykate.joyce@ansys.com

Investors

Kelsey DeBriyn


724.820.3927


kelsey.debriyn@ansys.com

媒体

玛丽·凯特·乔伊斯


724.820.4368


marykate.joyce@ansys.com

投资者

凯尔西·德比林


724.820.3927


kelsey.debriyn@ansys.com

SOURCE Ansys

来源 Ansys

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