MCP HubMCP Hub
スキル一覧に戻る

abaqus-interaction

majiayu000
更新日 Today
119 閲覧
58
9
58
GitHubで表示
デザインai

について

このスキルは、Abaqusの接触相互作用および接触ペア、タイ拘束、コネクタなどの機械的拘束を定義します。開発者が表面接触、摩擦、接合部品、またはアセンブリ部品間の接続をモデル化する必要がある場合に使用します。設定を処理しますが、完全な解析ワークフローや荷重・境界条件の適用は、他の専用スキルに委ねます。

クイックインストール

Claude Code

推奨
プラグインコマンド推奨
/plugin add https://github.com/majiayu000/claude-skill-registry
Git クローン代替
git clone https://github.com/majiayu000/claude-skill-registry.git ~/.claude/skills/abaqus-interaction

このコマンドをClaude Codeにコピー&ペーストしてスキルをインストールします

ドキュメント

Abaqus Interaction Skill

Define contact pairs, tie constraints, coupling, and connectors between parts in an assembly.

When to Use This Skill

Route here when user mentions:

  • "Contact between surfaces"
  • "Friction", "sliding contact", "frictionless"
  • "Tie constraint", "bonded surfaces", "welded"
  • "Parts touching", "parts can separate"
  • "Coupling", "connector", "spring element"
  • "Join different meshes"

Route elsewhere:

  • Complete contact analysis workflow → /abaqus-contact-analysis
  • Fixed supports or displacements → /abaqus-bc
  • Applied forces or pressures → /abaqus-load

Key Decisions

1. What Type of Connection?

User DescribesInteraction TypeKey Feature
Welded, glued, bondedTie constraintPermanent, no relative motion
Parts can slide and separateSurface-to-surface contactFriction, gap allowed
Load from point to surfaceCouplingReference point control
Spring, damper, hingeConnectorStiffness/damping behavior
Adhesive, delaminationCohesiveDamage initiation criteria

2. Contact Formulation

FormulationWhen to Use
Surface-to-surfaceGeneral contact (recommended default)
Node-to-surfaceLegacy compatibility, special cases
General contactAutomatic detection (explicit dynamics)
Self-contactFolding, buckling, large deformation

3. Typical Friction Coefficients

Surface PairFriction Coefficient
Frictionless0.0
Lubricated metal0.1 - 0.3
Dry metal-to-metal0.3 - 0.5
Rubber on surface0.5 - 0.8
No slip (rough)Use ROUGH formulation

What to Ask User

If unclear, ask:

  1. Bonded or sliding?

    • Bonded (no relative motion) → Tie constraint
    • Sliding allowed → Contact with friction
  2. Friction coefficient?

    • If not specified, suggest typical value for material pair
    • Frictionless is valid for lubricated or normal-dominant cases
  3. Which surface is master/slave?

    • User may not know - guide them (see below)
  4. Can surfaces separate?

    • Yes → allowSeparation=ON
    • No (always in contact) → allowSeparation=OFF

Master/Slave Selection Guidelines

CriterionMaster SurfaceSlave Surface
StiffnessStiffer bodySofter body
Mesh densityCoarser meshFiner mesh
SizeLarger surfaceSmaller surface
GeometryFlat/convexCurved/concave

When in doubt: The coarser mesh should be master.

Workflow: Setting Up Interactions

Step 1: Identify Contact Pairs

List all surfaces that interact. For each pair determine:

  • Type (contact vs tie)
  • Master and slave assignment
  • Friction requirements

Step 2: Create Surfaces

Surfaces must be defined on assembly instances before creating interactions.

Step 3: Define Contact Properties

For contact interactions, define:

  • Normal behavior: Hard contact, allow separation
  • Tangential behavior: Friction formulation and coefficient

Step 4: Create Interaction

Assign contact property to surface pair in appropriate step.

Step 5: Verify Setup

Check for:

  • Correct master/slave assignment
  • Appropriate initial gap/overclosure
  • Contact pair is active in correct step

Common Gotchas

SymptomLikely CauseSolution
Contact not detectedSurfaces too far apartUse adjust=ON or reduce initial gap
Severe discontinuity warningsContact chatteringAdd stabilization, use smaller increments
Negative eigenvalueWrong master/slaveSwap master and slave surfaces
Overclosure too largeInitial interferenceUse shrink fit option or adjust geometry
Tie not workingSurfaces not close enoughIncrease position tolerance

Validation Checklist

Before running analysis:

  • All contacting surface pairs identified
  • Master/slave correctly assigned
  • Contact properties defined (normal + tangential)
  • Interaction assigned to correct step
  • Initial gaps/overclosures within tolerance
  • Friction coefficient appropriate for materials

Code Patterns

For API syntax and code examples, see:

GitHub リポジトリ

majiayu000/claude-skill-registry
パス: skills/data/abaqus-interaction

関連スキル

evaluating-llms-harness

テスト

This Claude Skill runs the lm-evaluation-harness to benchmark LLMs across 60+ standardized academic tasks like MMLU and GSM8K. It's designed for developers to compare model quality, track training progress, or report academic results. The tool supports various backends including HuggingFace and vLLM models.

スキルを見る

sglang

メタ

SGLang is a high-performance LLM serving framework that specializes in fast, structured generation for JSON, regex, and agentic workflows using its RadixAttention prefix caching. It delivers significantly faster inference, especially for tasks with repeated prefixes, making it ideal for complex, structured outputs and multi-turn conversations. Choose SGLang over alternatives like vLLM when you need constrained decoding or are building applications with extensive prefix sharing.

スキルを見る

langchain

メタ

LangChain is a framework for building LLM applications using agents, chains, and RAG pipelines. It supports multiple LLM providers, offers 500+ integrations, and includes features like tool calling and memory management. Use it for rapid prototyping and deploying production systems like chatbots, autonomous agents, and question-answering services.

スキルを見る

cloudflare-turnstile

メタ

This skill provides comprehensive guidance for implementing Cloudflare Turnstile as a CAPTCHA-alternative bot protection system. It covers integration for forms, login pages, API endpoints, and frameworks like React/Next.js/Hono, while handling invisible challenges that maintain user experience. Use it when migrating from reCAPTCHA, debugging error codes, or implementing token validation and E2E tests.

スキルを見る