SUS304 Spiral Three-Blade Propeller Wide-Blade For Liquid With Suspended Solids
Description:
Here is an introduction to knives designed for cutting suspended solids in food liquids:
1,Material Safety:
- The blade material must meet food-grade standards and be free of toxic or harmful substances.
- Common food-safe materials include stainless steel, ceramic, and food-grade plastics.
2,Corrosion Resistance:
- The blades need to resist chemical corrosion from acids, alkalis, fats, and other food-related substances.
- Some blades may feature special coatings or surface treatments to enhance corrosion resistance.
3,Hygienic Design:
- The blade surface is smooth and seamless to facilitate cleaning and sanitization, minimizing bacterial growth.
- Certain blades are made with a one-piece, seamless construction for improved hygiene.
4,Cutting Performance:
- The blade geometry is optimized for cutting through suspended solids in food liquids, providing precise and efficient slicing.
- Some blades feature specialized tooth patterns that better grip soft or sticky food materials.
5,Safety Features:
- To prevent injuries, some blades incorporate protective components such as safety finger guards.
- The handle design is ergonomic, enhancing grip stability and overall safety.
6,Maintenance and Cleaning:
- The blades are designed for easy disassembly, allowing thorough periodic cleaning to maintain good hygiene.
- Some blades come with specialized sanitizing storage containers to extend their usable lifetime.
Food Processing Blade Specifications:
Product Name | Three-Blade Propeller Wide-Blade |
Material | SUS 304 |
Hardness | HRC 48-75 |
Size | 20*20*5mm |
Height range | 0.1mm-6mm |
Precision | ±0.03mm |
Grade | Food |
Application | Liquid With Suspended Solids |
More details about the features of knives designed for cutting suspended solids in food liquids:
1,Optimized Blade Structure:
- The blades typically feature an elongated design to increase the cutting surface area and leverage, improving cutting efficiency.
- Some blades are designed with dual or multiple edges, allowing them to slice across a wider area simultaneously.
- The blade backs are often thickened or serrated to better grip and cut through solid particles.
- To reduce weight, the blade backs may have perforations or grooves.
2,Specialized Material Selection:
- In addition to food-grade safety, the materials need to have high hardness, wear resistance, and corrosion resistance.
- Common high-quality materials include medical-grade 304 stainless steel, ceramics, and titanium alloys.
- Some blades also utilize specialized coatings or surface treatments to further enhance their performance.
3,Hygienic Design Principles:
- Streamlined exterior with seamless surfaces and corners, facilitating thorough cleaning and sanitation.
- Some monolithic blade designs can even be sterilized under high-temperature, high-pressure conditions.
- Removable components allow for regular disassembly and internal cleaning.
4,Safety and Ergonomics:
- Protective components, such as safety finger guards, help reduce the risk of injury during use.
- Ergonomic handle designs improve grip stability and overall operational safety.
- Some blades come with dedicated sanitizing containers to protect the cutting edges and extend their service life.
5,Broad Application Scope:
- These specialized knives are widely used in the food, pharmaceutical, and chemical industries for solid-liquid separation processes.
- Common cutting targets include suspended fruits, vegetables, meats, and pharmaceutical raw materials in various liquids.
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