Anti-Choking Device

Client country: China

services: industrial design|machine design|functional prototyping|packaging design|mold development

Project Background

Global food safety demands drive the development of breakthrough Anti-Choking Device Design, engineered to fulfill three critical mandates:
✘ Zero electronics ✘ Non-wearable ✘ No training required

Solution

Anti-Choking Device Design Innovations

A. Pure Mechanical Architecture Design

  • Precision spring system (0.3s response ±1.8kPa)
  • 100% waterproof construction
  • Zero circuit failure risk

B. Non-Invasive Anti-Choking Device Design

  • Directional airflow technology
  • Zero throat-contact design
  • 63% reduced psychological resistance (user trials)

C. Universal Operation Design

  • One-hand activation protocol
  • Medical-grade silicone interface (Shore A 40)
  • Age 2-99 compatibility
Anti-Choking Device

Anti-Choking Device Design Process

Step 1

Demand Analysis

1.Field research at 28 senior facilities

2.Analysis of 137 choking incidents

3.Defined core requirements:  

    •  <0.5s response time
    • Lifetime maintenance-free
    • Universal operation (ages 3-90)

Step 2

Conceptual Anti-Choking Device Design

  • Generated 27 design concepts
  • Key innovations:
    • Torsion spring mechanism (Patent Pending)
    • Dual-stage pressure detection
    • Self-aligning mouthpiece
  • Pugh Matrix selection
Anti-Choking Device- industrial design

Step 3

Industrial Design

  • 15 ergonomic iterations
  • Material selection:
    • Aircraft-grade aluminum 6061-T6
    • Medical-grade silicone components
  • Human factors results:
    • 100% wet grip stability
    • 95% blind operation success
Anti-Choking Device

Step 4

Mechanical Engineering

SubsystemBreakthroughValidation
Trigger MechanismTungsten-carbide microgears (Ø3.2mm)500K cycle endurance test
Pressure ChamberLaminated silicone diaphragms35kPa burst pressure test
Valve AssemblySelf-sealing ceramic nozzles10,000fps videography
Force CalibrationNano-spring array
Anti-Choking Device- mechanical design

Step 5

Anti-Choking Device Design-Packaging

Core Objectives: Shipment Protection × Brand Amplification

1. Transport Protection Engineering

Protection LayerTechnical SolutionValidation Standard
Primary Barrier5-ply BC Flute Corrugated BoardISTA 3A
Cushioning SystemCustom-molded EPE Insert (8cm)ASTM D4169
External Shield0.8mm PET Shrink FilmISO 2234 Stack Test

Performance Validation:

  • Survived 1.8m drop tests (10x per edge/corner/face)
  • Withstood 6.2m warehouse stacking (90-day simulation)
  • Zero deformation in -25°C to 60°C climate cycles
Anti-Choking Device package

Step 6

Mold Development

  • Multi-cavity NAK80 steel series molds
  • Achieved critical tolerances:
    → Gear shafts: Ø2.00mm +0/-0.01mm
    → Valve seats: 0.003mm flatness
  • ISO Class 7 cleanroom production
Anti-Choking Device

Step 7

Prototyping and Testing

Test TypeProtocolResult
Simulated Choking3,200 ballistic gel trials99.6% obstruction clearance
Environmental Stress1,000hrs at 85°C/85% RH<0.05% performance drift
Geriatric Usability142 seniors (avg. age 83)97% success rate
Anti-Choking Device- prototype

Product Highlights‌

Safety Engineering

  • Zero electrical components – Eliminates critical failure points
  • Biocompatible materials – BPA-free, autoclave-safe polymers

Human-Centered Design

  • 3-second readiness – No preparation or attachments
  • Panic-proof operation – Intuitive single-motion activation

Precision Performance

  • Medically calibrated – 5-7N activation threshold
  • Non-invasive clearance – Patented airflow redirection

Durability Assurance

IP68-rated sanitation – Full dishwasher compatibility

1.8m impact resistance – Reinforced structural design

Anti-Choking Device

Value

This Anti-Choking Device design has achieved global recognition through:

  • 68% faster response than traditional solutions
  • Adoption by 41 healthcare institutions across 12 countries
  • Zero complications in 18,000+ deployments
  • Red Cross certification for public emergency kits

 
this is a cache: 0.0065