One-click install
npx skills add https://github.com/Qiuu2/algo --skill structure-qiuu2
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: structure
Source: https://github.com/Qiuu2/algo/tree/main/.claude/skills/structure
Command: npx skills add https://github.com/Qiuu2/algo --skill structure-qiuu2

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

This skill eliminates the need for manual coordination of complex, interdependent structural, acoustic, and manufacturing requirements when designing ITC column speaker enclosures, reducing design iteration time and avoiding costly redesigns from misaligned cross-domain constraints.

Core Features & Use Cases

  • End-to-end enclosure design: Covers full CAD modeling, acoustic box design (sealed, bass reflex, transmission line), material selection, vibration control, and DFM/DFA analysis for ITC column speakers.
  • Cross-domain collaboration: Includes standardized interfaces to coordinate with acoustic simulation, hardware design, testing, and project documentation agents to ensure all engineering constraints are aligned.
  • Use case: When developing a new flagship ITC column speaker, use this skill to generate a parameterized 3D model that meets acoustic volume requirements, select cost-optimal injection-moldable materials, validate manufacturability via a 100-point DFM checklist, and sync design changes with the acoustic simulation team in real time.

Quick Start

Use the structure skill to design a sealed enclosure for a new ITC column speaker with a target internal volume of 2.5L and 2.5mm wall thickness, then generate a DFM check report for injection molding production.

Frequently Asked Questions about structure

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I design an ITC column speaker enclosure that balances acoustic performance and injection molding constraints?

Yes, sealed, bass reflex, and transmission line acoustic box designs are fully supported. The skill models structural geometry specifically aligned to acoustic volume requirements, ensuring the enclosure geometry matches the acoustic simulation parameters without manual cross-domain recalculation.

What's the best way to select materials for a loudspeaker enclosure that needs vibration control?

The best way to select materials for loudspeaker enclosures is using a weighted decision matrix. This skill evaluates cost-optimal injection-moldable materials and metal processing options while validating vibration resonance avoidance to ensure mechanical robustness and acoustic stability.

Can I use this structural design workflow to coordinate design changes with acoustic simulation teams?

Yes, the workflow includes standardized interfaces to sync design changes with acoustic simulation teams in real time. It coordinates cross-domain constraints across hardware design, testing, and project documentation agents to prevent costly redesigns from misaligned requirements.

Does the DFM analysis validate manufacturability for both injection molding and metal processing standards?

Yes, the DFM analysis validates manufacturability against both injection molding and metal processing standards. The skill generates a comprehensive DFM/DFA check report that identifies potential production issues early, ensuring the structural design is fully compliant before manufacturing.