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廣泛的行業(yè)應(yīng)用
3D ACIS Modeler除了能提供CAD/CAM/CAE開發(fā)的功能要求,金屬加工自動化等領(lǐng)域的應(yīng)用也受益于此技術(shù)。造船和電子設(shè)計自動化(EDA)等行業(yè)依賴3D ACIS Modeler來生成、導(dǎo)入和修改模型。
降低開發(fā)成本和風(fēng)險
3D ACIS Modeler為全球數(shù)百個應(yīng)用程序的開發(fā)提供了支持,結(jié)合嚴(yán)格的測試程序,確保它能夠應(yīng)對最復(fù)雜的挑戰(zhàn),使開發(fā)團隊降低開發(fā)成本和風(fēng)險。
獲得競爭優(yōu)勢
3D ACIS Modeler提供了準(zhǔn)確的建模操作和強大的數(shù)據(jù)處理,用于構(gòu)建應(yīng)用程序的基礎(chǔ)結(jié)構(gòu)和標(biāo)準(zhǔn)功能。讓開發(fā)人員可以把精力集中在產(chǎn)品的獨特功能開發(fā)上。
強大的技術(shù)和團隊支持
慧都擁有10余年3D建模經(jīng)驗,為數(shù)家知名企業(yè)/軍工研究院提供服務(wù),具有豐富經(jīng)驗。與慧都合作可以幫助您克服技術(shù)難題,降低開發(fā)風(fēng)險并更快地將產(chǎn)品推向市場。
——Tim Fabian(Flow 全球營銷經(jīng)理)
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30多年來,3D ACIS Modeler引領(lǐng)著3D建模內(nèi)核市場,在工業(yè)化過程中為數(shù)百萬的用戶提供了功能的改進和增強。在與客戶的合作中,擴展了3D ACIS Modeler的功能,解決了核心行業(yè)用例,同時創(chuàng)造了新的工作流程。
3D ACIS Modeler是3D幾何建模的標(biāo)準(zhǔn)。為了加快應(yīng)用程序交付,各行各業(yè)的開發(fā)人員都依賴于高質(zhì)量的3D建模軟件技術(shù)來滿足各種需求。作為3D ACIS Modeler核心的現(xiàn)代B-rep建模器支持廣泛的建模方法,包括直接、基于歷史、多維和多面體建模。
使用3D ACIS Modeler,開發(fā)人員可以將精力集中在開發(fā)產(chǎn)品的特色功能上。3D ACIS Modeler為您的產(chǎn)品創(chuàng)新提供了強大的支持。
通過提供高質(zhì)量3D組件,ACIS 3D Modeler可簡化開發(fā)工作并減少資源需求,從而加速應(yīng)用程序交付。
3D ACIS Modeler是一種經(jīng)過驗證的解決方案,已在350多個應(yīng)用程序中得到成功運用,在全球范圍內(nèi)擁有超過300萬最終用戶。3D ACIS Modeler可為您降低開發(fā)風(fēng)險,縮減開發(fā)成本,獲得更高的投資回報率!
無論是簡單模型還是復(fù)雜裝配,3D ACIS Modeler都支持使用多種建模方法創(chuàng)建、修改和查詢模型。不管是需要直接建模功能來支持無歷史記錄的CAD應(yīng)用,還是需要實現(xiàn)基于歷史記錄的特征樹,3D ACIS Modeler廣泛的解決方案在各個行業(yè)中都是值得信賴的。
由于模型來源不同,用途不同,因此修改3D模型的能力非常重要。3D ACIS Modeler通過其廣泛的布爾、混合、直接編輯、增厚、偏移等一系列強大的操作,支持應(yīng)用程序自定義數(shù)據(jù)準(zhǔn)備。
3D ACIS Modeler為特征建模應(yīng)用程序提供了完整的支持,并通過幾何操作為拓?fù)涓櫶峁┳⑨尅A硗?,?yīng)用程序可以利用屬性機制將自定義數(shù)據(jù)附加到拓?fù)鋵ο笊希员阃ㄟ^建模操作對其進行跟蹤。
3D ACIS Modeler在性能和內(nèi)存管理方面保持了最高標(biāo)準(zhǔn),在其數(shù)十年的工業(yè)應(yīng)用基礎(chǔ)上不斷進行改進。它是線程安全的,并支持多線程API。
在不需要創(chuàng)建或修改模型的情況下,利用模型拓?fù)?、幾何和元?shù)據(jù)進行只讀工作流,例如xR應(yīng)用的可視化。
通過添加附加功能為您的客戶提供增值服務(wù)。Spatial可提供和維護與3D Precise Mesh,CGM HLR,CDS等附加組件的集成,使開發(fā)人員專注于競爭優(yōu)勢開發(fā)。
關(guān)鍵功能 | 好處 |
---|---|
邊界表示(B-rep)建模 | 3D ACIS Modeler通過復(fù)雜的B-rep模型提供對簡單幾何圖形精度和性能的創(chuàng)建、修改和查詢功能。 |
多線程的平臺支持 | 3D ACIS Modeler允許多線程應(yīng)用程序利用多核硬件獲得性能提升。 |
直接編輯 | 直接編輯可以在沒有約束的情況下創(chuàng)建和修改幾何圖形。這允許在管理周邊拓?fù)浣Y(jié)構(gòu)的同時操縱模型的局部區(qū)域。 |
基于歷史的建模 | 3D ACIS Modeler的bulletin-board功能和模型更改跟蹤支持功能,可捕獲設(shè)計意圖。 |
Non-Manifold建模 | 為了處理薄板對象(如復(fù)合材料),3D ACIS Modeler在同一功能中同時支持流形和非流形區(qū)域。 |
用戶定義的幾何 | 3D ACIS Modeler允許創(chuàng)建自定義方程式,以輕松定義復(fù)雜的表面。如模擬緊固件和機床的螺旋線等復(fù)雜形狀。 |
屬性管理 | 為了簡化數(shù)據(jù)管理,3D ACIS Modeler允許應(yīng)用程序數(shù)據(jù)(如PMI)與任何模型實體關(guān)聯(lián)并與其他應(yīng)用程序交換。 |
模型分析工具 | 3D ACIS Modeler提供了一套全面的工具來查詢和分析給定的模型。CAM和CAE系統(tǒng)大量使用點體距離、碰撞檢測、光線發(fā)射、質(zhì)量特性和模型質(zhì)量測試。 |
裝配建模 | 3D ACIS Modeler為操作人員提供裝配、操作、查詢和保存/恢復(fù)一組裝配和部件模型。一組函數(shù)提供了運動學(xué)、有限元分析、干涉檢查和物料清單生成的分組結(jié)構(gòu)和特性。 |
ACIS Modeler is Thread-Safe
ACIS Modeler thread-safe capabilities enable multi-threaded applications to take advantage of multi-core hardware platforms for compute intensive operations. CAD, CAM, and CAE and related applications that support assembly models can achieve significant performance gains in areas such as regeneration of models in an assembly, assembly loading and faceting, and generating section views of assembly parts, and global operations that affect multiple parts, such as an assembly cut. ACIS as a thread-safe 3D modeler provides benefits which include near linear performance gains on multi-core hardware platforms.
Applications must be multi-threaded to achieve performance gains with thread-safe ACIS. In most cases incremental development work is required. Spatial development and professional service resources are available to assist in the development effort.
3D ACIS Modeler allows you to:
3D ACIS Modeler Key Features:
PHL V5
The Spatial PHL V5 product enables rapid development of 2D documentation and drawing features for use in a myriad of solutions including engineering, architecture, and manufacturing by providing easy access to proven hidden line removal technology (HLR). HLR improves the quality of product documentation by allowing the creation of images where only the edges of the model visible from a given perspective will be displayed. In industries such as CAD/CAM, accurate HLR renderings are required. Inclusion of HLR in your toolset enables a comprehensive solution to produce accurate documentation and drawings of any 3D design.
PHL V5 has a reputation for accuracy and speed, proven through heavy use under the most demanding conditions. This technology is readily integrated into applications via an easy to implement set of robust APIs, enhancing the functionality of traditional 3D modeling and visualization tools. PHL V5 will help reduce development time, achieve quality results, and improve time to market. The combination of performance, reliability, and precision delivered by Spatial’s PHL V5 makes it an excellent choice for any modeling or visualization package.
Key Features of PHL V5:
Advanced Covering
Advanced Covering is a feature of Deformable Modeling that is now available as a standalone add-on for the 3D ACIS Modeler. This single API uses sophisticated algorithms to create high-quality n-sided surfaces that meet user-specified tolerances for position and tangency on boundaries and on optional internal guiding geometry. Advanced Covering allows a surface to be fit onto circuits (collections of edges that form closed loops) in solid or wire bodies. Many of our customers use Advanced Covering for post-translation surface replacement or re-covering, non-planar end-capping, and surface definition from curve data.
Key Features of Advanced Covering:
Defeaturing
Defeaturing automatically identifies and removes small features that CAE analysts typically want to eliminate from a 3D model prior to meshing. Increasingly CAE analysts work from the same models that are used for design and manufacturing, but these models often carry much more detail than is appropriate for simulation or analysis purposes. By removing unnecessary detail, Defeaturing simplifies the model, a process that typically is done manually at a significant cost. The feature recognition parameters of Defeaturing are easily configured to achieve the level of detail desired by the analysis engineer. Exposed as a single API, Defeaturing can be implemented in a single day by an experienced programmer.
Key Features of Defeaturing:
Original model | Holes and fillets less than R2.5 automatically recognized | Recognized features removed |
Deformable Modeling
3D Deformable Modeling is a unique interactive sculpting tool for shaping 3D models while maintaining high-quality, manufacturable surfaces. 3D Deformable Modeling provides local and global editing features that allow for the easy creation and manipulation of free-form B-spline curves and surfaces. With this product, you can interactively sculpt shapes that automatically adhere to rich sets of constraints. It allows you to perform manipulations on curves and surfaces that would otherwise be extremely difficult or impossible to accomplish using control point manipulation, saving significant end-user time and resources.
Due to its precise shape and surface definition capabilities, 3D Deformable Modeling is ideal for complex mechanical jobs that require the rapid development of innovative surface and curve features, such as industrial design, aircraft skin and foil design (aerospace), automotive styling, prototype development, simulation, product design, shipbuilding, and free-form surface design for CAD/CAM/CAE and AEC applications.
Key Features of Deformable Modeling:
更新時間:2021-01-05 17:11:17.000 | 錄入時間:2009-08-10 11:50:16.000 | 責(zé)任編輯:吳秋紅
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