Replicating the New High Performer Equipping Autodesk’s Sales Force to Drive Growth!

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1 Autodesk Simulation Day 最新開発動向とユーザー利用技術紹介 岩本康栄 APAC シミュレーション 製造ソリューションオートデスク株式会社

2 Autodesk Simulation Community ASUG (Autodesk Simulation User Group) 日本の Autodesk Simulation 製品ユーザー様ならびに CAE に関心のあるユーザーが自由に入会可能 シミュレーション利用技術共有のためのオフサイトイベントの実施 メーリングリストおよび会員向けメール配信 AU 2012 (Autodesk University) in Las Vegas WW の Autodesk ユーザーが集まる年に 1 回の学びの場 約 8,500 人の参加者で過去最大 シミュレーション関連トラックも約 50 セッション (Moldflow パワートラックあり ) 今年は Cloud と Simulation に大きくフォーカス

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4 Using Simulation to Beat Your Competition 競合に勝つためのシミュレーションの活用 Russell Speight Ph.D Senior Manager, Simulation Technology, Autodesk ラッセルスペイド, 工学博士シニアマネージャー, シミュレーションテクノロジー, オートデスク

5 Agenda Introduction イントロダクション The need for simulation シミュレーションのニーズ Barriers to adoption of simulation シミュレーション利用における障害 What Autodesk is doing Autodesk は何ができるのか Our product offerings 我々の製品オファー Product examples 製品適用事例

6 Simulation Technology Team Innovation シミュレーションテクノロジーチーム イノベーション Solver Team (Moldflow, CFD & Mechanical) ソルバーチーム (Moldflow, CFD & Mechanical) Emerging Product & Technology 新生の製品 & テクノロジー Simulation Validation シミュレーション検証 Simulation Material Laboratory シミュレーション材料ラボラトリー

7 Simulation Technology Team Innovation シミュレーションテクノロジーチーム イノベーション World Leading Engineers / Specialists 世界トップレベルのエンジニア / スペシャリスト Global Development Team グローバル開発チーム 20+ International Ph.Ds. 20 人以上の国際的な Ph.D

8 Emerging Products & Technology Innovation 新生プロダクト & テクノロジー イノベーション Innovate, Partner & Collaborate イノベーション, パートナー & コラボレーション

9 Simulation Technology Team Validation シミュレーションテクノロジーチーム 検証 Formula 1 Wind tunnel Validation フォーミュラ 1 風洞検証テスト Architectural Validation

10 Local Collaboration 現地のコラボレーション

11 Focus on mechanical properties メカニカルプロパティのフォーカス Elastic Modulus, Shear Modulus, Poisson s Ratio 弾性係数, せん断係数, ポワソン比 Multiple Samples for each measurement 各計測における複数のサンプル

12 Mechanical Testing メカニカルテスト Range of physical extensometers 物理伸縮計のレンジ Linear and Non-linear data 線形および非線形データ Latest technology 最新テクノロジー

13 Simulation Testing Laboratory Innovation シミュレーションテストラボラトリー イノベーション True Material Processing History 正確な材料プロセスヒストリー Experienced Polymer Technicians 経験のある樹脂技術者 Real-Time Process Monitoring リアルタイムプロセスモニタリング

14 Simulation Technology Team Innovation シミュレーションテクノロジーチーム イノベーション

15 Agenda Introduction イントロダクション The need for simulation シミュレーションのニーズ Barriers to adoption of simulation シミュレーション利用における障害 What Autodesk is doing Autodesk は何ができるのか Our product offerings 我々の製品オファー Product examples 製品適用事例

16 Every Manufacturer Needs Simulation すべての製造業においてシミュレーションが必要 Focusing On Our Customer s Problems お客様の問題にフォーカス Pause Delay Static Stress 線形応力解析 Lightweighting 軽量化 Plastic Flow & Fill プラスチック充填 Motion & Dynamics 機構解析 Vibration 振動解析 Fluid Flow 熱流体解析 Aerospace & Defense Automotive & Transportation Building Products & Fabrication Thermal Efficiency 熱効率 Industrial Machinery Optimization 最適化 Drop Test 落下テスト Consumer Products Fatigue 疲労解析 Package Cooling パッケージ冷却 Non-linear Stress 非線形応力解析 Frame & Truss Life Sciences Strength Equipment フレーム & トラス解析

17 Simulation has Become Mission Critical シミュレーションは極めて需要に Business Challenges ビジネスチャレンジ Failure, Performance & Warranty ( 故障, 性能 & 保障 ) Regulatory Compliance, CO2 Reduction, Recycling, Toxicity ( 規制遵守, CO2 削減, リサイクル性, 有毒性 ) Risk Mitigation & Customer Satisfaction ( リスク軽減 & 顧客満足度 ) Innovation & Differentiation ( イノベーション & 差別化 ) Optimization, Light Weighting & Cost ( 最適化, 軽量化 & コスト ) Time to market ( 市場投入の期間短縮 )

18 Simulation Early and Often シミュレーションを早期に, 頻繁に Upfront Design Decisions Matter アップフロントの意思決定 70-85% References: "Breaking Down the Barriers to Simulation: Autodesk Broadens Simulation Offerings," CIMdata

19 Simulation Early and Often シミュレーションを早期に, 頻繁に Changing Your Process Effectively 効率的なプロセス変更 2 1 Simulation Ability to impact functional capabilities Cost of design changes Traditional design process Preferred design process Conceptualization Design and Engineering Testing Manufacturing Field Time

20 Agenda Introduction イントロダクション The need for simulation シミュレーションのニーズ Barriers to adoption of simulation シミュレーション利用における障害 What Autodesk is doing Autodesk は何ができるのか Our product offerings 我々の製品オファー Product examples 製品適用事例

21 The Right Tool at the Right time 正しいツールを正しいタイミングで Different users 異なるユーザー対象 Designer 設計者 Engineer エンジニア Analyst 解析専任者 Creative ( クリエイティブ ) CAD Generalist ( ジェネラリスト ) Expert ( エキスパート ) CAD and Engineering tools 100% Simulation

22 Historical Barriers to Simulation Adoption シミュレーション利用におけるこれまでの障害 Combination of Market and Technology マーケット & テクノロジーの融合 Ease of Use 使いやすさ Hardware Requirements ハードウェア環境 Total Cost トータルコスト

23 Agenda Introduction イントロダクション The need for simulation シミュレーションのニーズ Barriers to adoption of simulation シミュレーション利用における障害 What Autodesk is doing Autodesk は何ができるのか Our product offerings 我々の製品オファー Product examples 製品適用事例

24 Autodesk Technology Investments Autodesk におけるテクノロジー投資 Simulation & Analysis Acquisitions シミュレーション & 解析ツールの買収 $500M+ Simulation Investment ECOTECT 2005 Today Note: Graphic reflects both technology and company acquisitions, ownership of parent company is not implied

25 Building a Simulation Platform シミュレーションプラットフォームの構築 Autodesk Simulation Cloud クラウド Geometry ジオメトリ Visualization ビジュアリゼーション Data Management データ管理

26 Delivering the Right Solution, At the Right Time 正しいソリューションを正しいタイミングで Different Personas Require Different Solutions それぞれのユーザーで異なったソリューションが必要 Simulation

27 Use The Data That Matters To You ご利用中のデータをそのまま利用可能 Multi-CAD and Multi-CAE マルチ CAD およびマルチ CAE

28 Moving from Ownership to Access ソフトウェア所有からアクセスへの移行 Pay As You Go Simulation シミュレーション使用ベースでの支払

29 Empowering Design Optimization 設計最適化の提供 Infinite Compute Power via the Cloud クラウドにおける無限の計算パワー Autodesk Inventor Optimization Autodesk Green Building Studio Autodesk Moldflow Insight WS

30 What is GPU (Graphical Processing Unit)? GPU とは? NVIDIA Quadro 6000 and AMD FirePro V9800 CUDA and OpenCL both are supported 30

31 Elapsed Time [Sec] Some GPU Speed-up Results GPU スピードアップ結果 AMI 3D Flow Matrix only speed-up using GPU AMI 3D 流れ計算マトリックスのみ GPU のスピードアップ対応 GPU:NVIDIA GTX 280: 1GB Memory and 240 cores The average speed-up was 6.4 (min. 3.6 and Max. 7.2) 平均スピードアップは 6.4 倍 ( 最低 3.6 倍, 最大 7.2 倍 ) The maximum result discrepancy between CPU and GPU was 0.002% CPU と GPU の解析結果に対する最大相違は 0.002% Note: All the data were in double precision. すべてのデータは倍精度 CPU Matrix Solution Time [Sec] GPU No. of Terms 31

32 Speed-up Over All Speed-up Results 全体を通したスピードアップ結果 AMI 3D Flow Matrix only speed-up using GPU AMI 3D 流れ計算マトリックスのみ GPU のスピードアップ対応 Westmere dual Six Core Intel XeonX5680: 12GB RAM The average speed-up was 2.46 (min and Max. 2.72) 平均スピードアップは 2.46 倍 ( 最低 2.01 倍, 最大 2.72 倍 ) There was no result discrepancy among threads スレッド間の解析結果の相違はなし Note: All the data were in double precision. すべてのデータは倍精度 D Flow Speed-up with 12 Threads Number of Tetrahedral Elements 32

33 Agenda Introduction イントロダクション The need for simulation シミュレーションのニーズ Barriers to adoption of simulation シミュレーション利用における障害 What Autodesk is doing Autodesk は何ができるのか Our product offerings 我々の製品オファー Product examples 製品適用事例

34 Desktop Standalone Products デスクトップスランドアロン製品 Mechanical Moldflow CFD Robot Structural

35 Embedded Simulation Products CAD 統合シミュレーション製品 Design for Manufacturing (DFM) Inventor Professional & Optimization Revit Structural Analysis

36 Mobile Apps モバイルアプリケーション

37 Free Apps (labs.autodesk.com) 無償テクノロジープレビュー製品 Project Scout Project Scandium Project Falcon Project Simulus

38 Agenda Introduction イントロダクション The need for simulation シミュレーションのニーズ Barriers to adoption of simulation シミュレーション利用における障害 What Autodesk is doing Autodesk は何ができるのか Our product offerings 我々の製品オファー Product examples 製品適用事例

39 Disclaimer 免責事項 We may make statements regarding planned or future development efforts for our existing or new products and services. These statements are not intended to be a promise or guarantee of future delivery of products, services or features but merely reflect our current plans, which may change. Purchasing decisions should not be made based upon reliance on these statements. The Company assumes no obligation to update these forwardlooking statements to reflect events that occur or circumstances that exist or change after the date on which they were made.

40 Desktop Standalone Products Mechanical Moldflow CFD Robot Structural

41 Autodesk Simulation w/ AMSA Autodesk Simulation for Injection Molding and Stress Analysis are seamlessly connected with point-based mapping technique ポイントベースマッピングテクニックを使った射出成型及び構造解析のシームレスな連成 The anisotropic and non-uniform nature of the molded fiber-filled polymer composites can be captured and mapped to stress analysis 繊維配向プラスチックにおける異方性および非均一特性を応力解析にマッピング Both residual stress and thermo-mechanical properties are mapped and the examples indicate that the mapping approach adopted is effective and in good agreement across different analysis packages 残留応力および熱的メカニカル特性のマッピング

42 Customer Scenario ユーザー適用事例 Design Insight ( 設計の見識 ) Fast Solve Times ( 高速な計算時間 ) Accurate Reliable Results ( 正確で信頼性のある結果 ) Flexible Implementation Options ( 柔軟な組込環境 )

43 Interoperability 相互運用性

44 Demonstration デモンストレーション

45 Desktop Standalone Products デスクトップスタンドアロン製品 Mechanical Moldflow CFD Robot Structural

46 3D Compression Molding Simulations 3D 圧縮成型シミュレーション 3D Mesh Simulation for: Injection-compression molding 射出圧縮成型 Cavity is partially filled by injection Compression molding 圧縮成型 Initial charge placed into open cavity Thermoplastics or Thermoset. 熱可塑および熱硬化材料

47 3D Inj-Compression Fill Pattern Comparison 3D 射出圧縮シミュレーション充填パターン比較 Experiment Simulation

48 3D Inj-Compression Fill Pattern Visualization 3D 射出圧縮シミュレーション充填パターン可視化

49 Only one cavity has compression 片側のみ射出圧縮における比較 Volumetric Shrinkage is lower in the cavity with compression 体積収縮はキャビティ圧縮に対してより小さいことがわかる

50 3D Pure Compression Molding 3D 完全圧縮成型 Pure compression molding 完全な圧縮成型 Material: Thermoset ( 熱可塑 ) Process conditions Press open distance at the start of compression: ~ 50 mm Initial charge: Rectangular plate shape (approximate size: 155 x 71 x 31 mm) Initial Charge Case-study courtesy of Schneider Electric

51 3D Pure Compression Fill Pattern Comparison 3D 完全圧縮成型における充填パターン比較 Experiment Simulation

52 Rapid Temperature Cycling (RTC ) / RHCM / Variotherm 急速温度サイクル (RTC) / RHCM / 可変温度 Heat Mold for Filling 充填における金型加熱 Eliminate visible weld-lines Increase flow length High (uniform) gloss finish Eliminate Gate Marks (Cold slugs) Typically only the cavity side is heated Heat by: Steam,Water, Electrical or Induction Cool Mold during Packing 保圧中の金型冷却 Reduce cycle time ABS Conventional Molding With RTC Images courtesy of Gas Injection World Wide

53 Example: Heating and Cooling Cycle 例 : ヒート & クールサイクル

54 Component Modelling of Hot Runners ホットランナーのコンポーネントモデリング Hot Runner (Polymer) New Hot Runner Property: Use Heater Element Mold Heater Elements Mold Insert (Manifold)

55 Component Modelling of Hot Runners ホットランナーのコンポーネントモデリング

56 Newly Integrated Autodesk Simulation 新しい Autodesk Simulation Mechanical との連成 Ejection Force Calculation 突出力計算 Consider: Friction of part sliding on core Residual stress / pressure in the part Temperatures of the part Ejector position and direction Ejector speed profile Predict: Deformation of plastic part during ejection 突出中のプラスチックパーツの変形 Force required to eject 突出に必要な力 Use to: Minimize part deformation パーツ変形の最小化 Avoid excessive force (damage ejectors) 過度の力を避ける ( エジェクター破損 ) Optimize placement of ejectors エジェクターの位置最適化

57 Mold Fatigue Analysis with lifetime prediction 金型耐久期間を含めた疲労解析 Cost Saving Estimate Saving one set ($550,000) Saving repair ($65,000 +) Cost for CAE ($10,000-) Net Saving ($605,000) Not include the shut-down cost Autodesk Simulation Tools Moldflow Transient Cool ( 非定常冷却 ) Flow w/ Core-shift ( コアシフト ) Mechanical Thermal Stress ( 熱解析 ) Linear Static Stress ( 線形応力 ) Fatigue Wizard ( 疲労ウィザード ) Image from Li et al: Applied Thermal Engineering, Vol 31, Dec 2011

58 Simulating Conformal Cooling Channels 冷却チャネルの連成シミュレーション Complex 3D cooling channels 複雑な 3D 冷却チャネル Temperature control follows part shape May not be suited to simulation with beam elements Image from Pôle Européen de Plasturgie

59 Use Autodesk Simulation CFD for Coolant 3D meshing and Flow Solver Autodesk Simulation CFD による 3D メッシュおよび流体ソルバー Meshing is optimized for low viscosity water flow Boundary layer meshing (Enhancement layer) Mesh refinement in areas of high curvature

60 Use Autodesk Simulation CFD Powerful Computational Fluid Dynamics simulation of coolant flow in 3D cooling channel Identify dead-zone Eliminate hot-spots Integrate this CFD solution into Moldflow Insight Cool (FEM)

61 Coolant Solution from CFD CFD にて冷却シミュレーション Coolant Flow Dead zone Coolant Temp Hot Spot Mold Temperature Hot Spot

62 Integrate 3D Coolant CFD into Moldflow CFD の 3D 冷却シミュレーションを Moldflow に統合 Cavity surface temperature Coupled Mold, Coolant and Part Temperature solutions

63 Desktop Standalone Products デスクトップスタンドアロン製品 Mechanical Moldflow CFD Robot Structural

64 Free Surface Modeling Overview 自由表面 概要 Models the dynamic boundary of liquid volume Key applications Mixing and agitation in partially filled containers Tank sloshing due to acceleration Pouring, spilling Flow through culverts, dams, spillways

65 Free Surface Modeling Setup 自由表面モデリング セットアップ CAD preparation If liquid region is partially full initially, model the liquid region in CAD Materials Assign a single fluid material (ie. Water) everywhere the liquid could occupy Boundary conditions If filling or drawing from a tank, assign BCs as you normally would. Starting fluid height Within Initial Conditions, specify the initial Height of Fluid on the starting liquid volume Meshing Mesh all fluid parts and areas the fluid could occupy Solving Hit Free Surface button on physics tab Turn on free surface solver Specify constant gravity vector If tank is accelerating (ie. sloshing analysis) specify accel Use default transient solver options (set automatically)

66 Free Surface Modeling Results Processing 自由表面モデリング 結果表示 VOF (Volume of Fluid) = 0.5 = liquid boundary Right click to turn on the Free Surface visualization of the liquid volume. Textures can be applied as needed. Iso surface with vectors shows movement of liquid

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70 Customer Scenario ユーザー適用事例 Design Insight ( 設計の見識 ) Fast Solve Times ( 高速な計算時間 ) Accurate Reliable Results ( 正確な信頼性のある結果 ) Flexible Implementation Options ( 柔軟な組込環境 )

71 Workflow Demonstration ワークフローデモンストレーション

72 Showcase and Mobile Results Autodesk Showcase およびモバイルアプリケーション

73 Showcase and Mobile Demonstration Autodesk Showcase およびモバイルアプリケーション

74 Desktop Standalone Products デスクトップスタンドアロン製品 Mechanical Moldflow CFD Robot Structural

75 Robot Structural Analysis Link Revit と Robot Structural の連携

76 The Right Tool at the Right time 正しいツールを正しいタイミングで Product Development Workflows 設計開発ワークフロー Bid & Quote Report & Documentation 3D Part Model Visualize & Validate Data Management Predict Performance Mold Optimize 3D Mold Design Final Part Design Optimize

77 Simulation Early and Often シミュレーションはさらに早期に 頻繁に Right Tool. Right Time. Right User. 正しいツールを 正しいタイミングで 適切なユーザーに

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