EEFIT Far Infrared Irradiation Equipment with Segmented Conveyor

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Solution Overview

Problem

Existing EEFIT-based electromagnetic wave energy conducting equipment has limitations in penetrating depth of far infrared rays into human tissues, complex structure, high manufacturing and maintenance costs, and is unsuitable for handling fragile products due to simultaneous charging and discharging from the same side.

Innovation Solution

The equipment features a simplified structure with independent conveyor belts, limit rods driven by stepping motors, and a PLC for controlled material flow, allowing separate charging and discharging sides, adjustable guardrails, and an auxiliary emission source device to enhance penetration and stability, using far infrared ceramic emission sources and an infrared induction counter for precise material handling.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Device complexity

If materials are charged and discharged from the same side, then the structure is simpler, but materials are prone to mixing and it is inconvenient for automatic production

Engineering Contradiction:
Improvestructure complexityVSAvoidautomatic production convenience
Core Design Contradiction:
Device complexityVSEase of operation

Solution Approach 1:

The patent divides the material handling into separate charging and discharging sides, with independent conveyor belts for each side. This segmentation prevents material mixing and enables automatic production while maintaining manageable structural complexity through modular design.

Inventive Principle:
Principle #1Segmentation

2Device complexity

If materials are output by dropping onto a conveyor belt, then the output process is simplified, but fragile or crumbly products are damaged

Engineering Contradiction:
Improveoutput device structureVSAvoidproduct integrity
Core Design Contradiction:
Device complexityVSReliability

Solution Approach 1:

The patent replaces the mechanical dropping action with a gentle transfer mechanism where materials are conveyed horizontally onto the output conveyor belt. This substitution eliminates impact damage to fragile products while maintaining a simple output process.

Inventive Principle:
Principle #28Mechanics substitution (Replace mechanical system)

3Ease of operation

If the indexing device structure is complex, then the material handling function is improved, but manufacturing and maintenance costs increase

Engineering Contradiction:
Improvematerial handling capabilityVSAvoidmanufacturing and maintenance cost
Core Design Contradiction:
Ease of operationVSEase of manufacture

Solution Approach 1:

The patent employs universal conveyor belt components that perform multiple functions: material transport, positioning, and gentle output. This multi-functionality achieves effective material handling while using standardized, cost-effective components that are easy to manufacture and maintain.

Inventive Principle:
Principle #6Universality (Multi-functionality)

4Adaptability or versatility

If the same equipment handles different materials, then adaptability is improved, but control precision becomes more difficult

Engineering Contradiction:
Improveproduct application rangeVSAvoidmaterial handling precision
Core Design Contradiction:
Adaptability or versatilityVSManufacturing precision

Solution Approach 1:

The patent incorporates adjustable and independently controllable conveyor belts that can be dynamically configured for different material types. This dynamic adaptability allows the same equipment to handle various materials with appropriate control precision through adjustable speed, position, and transfer mechanisms.

Inventive Principle:
Principle #15Dynamics

Applied Scientific Principles

This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.

Function Achieved in This Case

This design improves the application range and functionality, reduces costs, and enhances the handling of fragile materials, ensuring deeper tissue penetration and improved material processing efficiency with lower failure rates and increased practicality.

Implementation Method 1

Far infrared ray is close to cell molecules in a human body in term of vibration frequency; after coming in a human body, the far infrared ray will promote temperature rise in a subcutaneous deep layer

Methodology Applied
Scientific EffectFar infrared radiation: Infrared Radiation

Implementation Method 2

the far infrared ray has the function of ameliorating and preventing a variety of diseases caused by blood circulation and microcirculation disturbances

Methodology Applied
Scientific EffectThermal radiation: Thermal Radiation

Implementation Method 3

the two limit rods are respectively driven by two independent stepping motors

Methodology Applied
Scientific EffectElectromagnetic induction: Electromagnetic Induction

Implementation Method 4

the conveying device is electrically connected with the PLC

Methodology Applied
Scientific EffectElectrical control:

Data Source

PatentUS9946243B2EEFIT-based electromagnetic wave energy conducting equipment
Publication Date: 2018.04.17 NICK WANG TECH LTD
  • US9946243B2 patent drawing
  • US9946243B2 patent drawing
  • US9946243B2 patent drawing

AI summary

The utility model discloses an EEFIT-based electromagnetic wave energy conducting equipment, having an enclosure, a skeleton, main emission sources, conveying devices and a PLC. The skeleton is arranged in the enclosure, the main emission sources are arranged on the skeleton, the conveying devices are arranged beside the main emission sources, and the conveying devices are electrically connected with the PLC. Each conveying device has a conveyor belt and limit rods. Two limit rods are arranged on each conveyor belt. The limit rods are respectively driven by two independent stepping motors. The EEFIT-based electromagnetic wave energy conducting equipment has the advantages of wider application range, more functions and lower cost, can be applicable to the irradiation of common or fragile materials, and can handle the materials on the same equipment according to different references. The manufacturing and maintenance costs are lower, and the failure rate is smaller as well.