Metal+CNT Composite(A-Metal)
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- Winfred Simon
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1 + Composite(A-) Lowest Cost & High Productivity Excellent Mechanical Properties Low Weight Structure Material Base : Pure & Alloy metal Excellent Dispersibility of in Matrix Improved Strength by -based Nano-crystalline Improved Strength & Toughness by Mechanical Properties of Improved Conductivity by Electrochemical Properties of Improved Abrasion Resistance by Nano-crystalline & Light weight compared with the Existing High-strength Composites Low Cost - Composite compared with High Strength Composite Various Grade can be Manufactured depending on Application Fields + : Al+, Cu+, Fe+, Zn+ etc. Alloy+ : Al Alloy+, STS+, SKD+ etc. Contents : ~10 wt.% Al+ Composite Cu+ Composite Fe+ Composite A- Products Features A-Al6 (600 MPa) Shape Al+ A-Al5 (500 MPa) - Powder : 5~40 um A-Al4 (400 MPa) - Bulk : D50~100mm H50mm Cu+ A-Cu ( 1~10 wt.%) Applications Fe+ A-Fe ( 1~10 wt.%) Strength, Toughness, STS+ A-STS ( 1~10 wt.%) Wear resistance, Others Zn, SKD, Ni, Alloy etc. Conductivity etc. Light Weight Structures with High Strength & Toughness : Aerospace, Automobiles, Vessels and Leisure/Sports Apparatuses Wear resistance-light Weight Materials : Aerospace, Automobiles, Tools and Machine Excellent Thermal and Electric Conductivity : Electronics, Computer, Automobiles, Aerospace and Precision Equipment Comparison of Manufacturing Process ACN Process : Lowest Price & Mass Production Others Method (Mixing between and Micro/Nano Particles) Compression (GPa) SKD11+ 0 SKD11 SKD11 (Non-heat treatment) (950 ) Excellent Mechanical Properties SKD11+ (950 ) Stress (MPa) Fe+ (Density 6.6) Pure Fe (Density 6.6) Al2024+ Fe+ (Density 7.0) Pure Fe (Density 7.0) Wear resistance ACN Process [Insertion of into Matrix : High Strength & Toughness) Al2024+ Various Type of + Composite Powder Short insertion Middle insertion Fully insertion (for Conductivity) (for Coating agent) (for High strength) Yield Tensile Strength strength (MPa) (MPa) Elonga -tion (%) Hard ness (HRB) Specific Electrical strength conduct. (MPa) (IACS%) Wear loss (10-3 cc) 2024 Al Alloy Al Alloy Ti-6Al-4V ~ Pure Al ~ Al
2 Polymer+ Composite(A-Pol) Uniform Dispersibility & Conductivity High Conductivity with Low Loading of Excellent Physical Properties Maintain the Resin Physical Properties Extremely Low of Particle Sloughing Improved Conductivity by Electrochemical Properties of Improved Strength & Toughness by Mechanical Properties of Uniform Dispersibility & Conductivity by using - Composite - Insertion of into particle : Control Length of in - Prevent Segregation of in Extrusion - Role : (Conductivity), (Dispersibility & Conductivity) Realization of High Conductivity with the Minimum Addition of Maintaining the Properties of the Base Material s own Decreased Particle Sloughing Extended Lifetime Solid Paste Type Products Features PC+ A-PC-20 PP+ A-PP-20 Shape : M/B PA66+ A-PA66-20 : ~20 wt.% Others Order base Epoxy+ A-Epoxy-3 Shape : Paste Urethane+ A-Urethane-3 : ~3 wt.% Others Order base Comparison of Manufacturing Process Polymer + Polymer Others Method (Using in Polymer Matrix) ACN Process [Using + in Polymer : Excellent Dispersibility & Conductivity) Shielding Material (ESD & EMI) : Mobile, Cloth, Computer, Glove, Shoes, Matt, Tile, Tray, Tape, Box, Bag, Film etc. Engineering Plastic, Heat sink : Aircraft, Automobile, Aerospace, Electronic, Medical, Vessel Sports equipment, etc.
3 Ceramic+ Composite(A-Ceram) Uniform Dispersibility & Conductivity High Conductivity with Low Loading of Excellent Physical Properties Maintain the Ceramic Physical Properties Manufacturing Process of Ceramic+ Composite Improved Conductivity by Electrochemical Properties of s Improved Strength & Toughness by Mechanical Properties of s Improved Abrasion resistance by Appearance Properties of s Realization of High Conductivity with the Minimum Addition of Maintaining the Properties of the Base Ceramic s Own Decreased Particle Sloughing Extended Lifetime Ceramic Powder Composite Powder Type Products Features Al2O3+ ZrO2+ TiO2+ SiO2+ Others A-OAl ( 1~10 wt.%) A-OZr ( 1~10 wt.%) A-OTi ( 1~10 wt.%) A-OSi ( 1~10 wt.%) Order base Shape : Powder Usage : Sintering, Coating Powder Sintered Ceramic+ Composite Ceramic coating materials with high strength and high toughness Industrial materials requiring electric and thermal conductivity Ceramics for shock absorption Wear resistant ceramics SEM Image Crack Propagation Behavior Excellent Mechanical Properties Fracture toughness (MPa*m1/2) Fracture toughness Wear loss (mg) Wear loss Friction coefficient Surface Resistance (.) Resistivity Friction coefficient (µ)
4 Liquefied (A-Sol) Uniform Dispersibility & Conductivity Highly Electric/Thermal Conductivity Excellent Dispersibility of Highly Photocatalyst Property -used Liquid high conductive paste & ink Low cost for expensive conductive materials Excellent electric and thermal conductivity Environmental-friendly materials Various grade and solutions Usage : Spraying, Printing, Dr.Blade etc. High dispersibility Paste Ink Items Type Products Features Ink Paste MW SW Graphene MW Graphene A-Sol-D3 (DIW) A-Sol-A2 (Alcohol) A-Sol-D01 (DIW) A-Sol-A01 (Alcohol) A-Sol-D3-G (DIW) A-Sol-A2-G (Alcohol) A-Sol-D10 (DIW) A-Sol-A10 (Alcohol) A-Sol-D10-G (DIW) A-Sol-A10-G (Alcohol) Viscosity : ~500 cp Resistivity : 101~104. Transparency : ~ 85% Usage : Spray/Roll/Spin coating, Viscosity : ~35,000 cp Resistivity : 101~104. Usage : Screen printing, Dr. Blade Excellent electric conductivity : ESD, EMI, Heating element High thermal conductivity : Heat dissipation, Heat insulation Dye-sensitized solar cell counter electrode Superior mechanical property of coating layer Adsorption of harmful gas, Pollution decomposition Property Transparency Electrode (SW Ink) Conductive Coating(MW Ink) MW Paste k k Glass Glass DSSC Module( counter electrode) coating Layer Comparison of efficiency(pt:) Pt Electrode Electrode Efficiency
5 Carbon Nanotube(A-Tube) Mass production and Lowest price Excellent mechanical/electrical/ Thermal property High chemical stability Various technological applications New dreamy material in the 21st century Tubular material with hexagonal honeycomb structure Excellent electronic/thermal/mechanical properties Mass production and lowest price Wide use and various technological applications Environmental-friendly materials Typical Properties of MW Elastic Behavior Properties Value Electrical Resistivity(Ω cm) 0.1 Thermal Conductivity(W/m/K) ~2,000 Young s Modulus(MWNT) Tensile strength 1.28 TPa ~100 GPa Electromagnetic interference, Electrostatic discharge Solar cell electrode, Fuel cell electrode Rechargeable battery /Ceramic/Polymer composite paste & ink Removal sick house syndrome, adsorption of harmful gas, pollution decomposition Carbon Nanotube Graphene Graphite Nanofiber Properties and Qualities Products Shape Type Products Features MW A-Tube-M85 A-Tube-M90 A-Tube-M95 A-Tube-M97-P - CCVD - Dia. : 5~20 nm - Length : ~10 um - Purity : 85~97 wt.% MW (Chopped) A-Tube-90-C1 A-Tube-90-C3 - Dia. : 5~20 nm - Length : ~1, 1~3 um - Purity : 90 wt.% Normal MW TW (Thin wall) A-Tube-T95 - Dia. : 5~10 nm - Length : ~10 um - Purity : 95 wt.% Others Graphene, CNF etc. Chopped Before After Dispersion of Graphene MW TW
6 Engine Oil Additive EnginAid Chopped, Nano Pt dispersed in oil Up to engine Power Saving the Fuel Superior thermal behaviors of Oil Can be used in all kinds of cars Nano Pt & Chopped are uniformly dispersed in engine oil Nano materials are coated in scratched part of engine inner surface Nano Pt : Promote perfected combustion, decrease toxic waste gas Chopped in Nano size : Improve Lubrication & thermal conductivity High performance engine oil additive : Decrease fuel consumption, Improve engine performance, Prevent wearing of friction surface of engine, Less noisy Application : Motor, Aircraft, Vessel, Motorcycle, Industrial Engine Patents : 3 (Miso-N, Chopped, Nano Pt) How to Use In common use for Gasoline, Diesel, LPG. After shaking several times, pour Miso-N into engine oil in any time, but after engine oil exchange is better. With one bottle, no need to change engine oil up to 15,000~20,000 km, but we recommend up to 10,000 km in order to get better effects. Decrease noisy Reduce engine oil cost Classification EnginAid Other products Main Materials Function Durability Applying Continuance Increase power Smoother start Economic profit Saving fuel Less toxic waste gas Decrease oil consumption Long life cycle Carbon nanotube(), Nano Platinum (Nano Pt) Recover engine as a optimal situation & help perfect combustion No risk of oxidation and burning in any condition of temperature There is no limit, can be used in all kinds of cars and any time, it can be applied regardless the time of oil change One time using, the effect is lasted till 10,000~20,000 km PTFE, Powder, Mo compound, Graphite, Ceramic powder etc. Improve the quality of engine oil In harsh condition, there is a risk of oxidation in main materials (severe negative effects in engine) There are different applying method according to the kinds of cars, fuels, and it can not be applied in any time In the beginning there is certain effects but in some time, the effects are disappeared Sort 100 ml : Passenger Car, SUV 500 ml : Bus, Truck 4 L : Mass consumption company Gasoline Diesel LPG Classification Saving the fuel(%) K-131 (Jeep, Gasoline) K-311 (5/4T, Diesel) K-511 (2.5T, Diesel) Classification Chopped Excellent electric & thermal conductivity Self lubricant Excellent chemical stability length control (Patent) Nano Platinum(Pt) Excellent Catalyst Evenness of the size Excellent dispersibility (Patent) Interval time RPM at 80km/h Power Noisy to normal engine Temperature 2,800 (300 ) Up Reduce Faster Up Reduce Faster ,300 (200 ) Before (km/l) After (km/l) Up Reduce Faster Classification HC(ppm) CO(%) NOx(ppm) CO2(%) Before After Limited Value Fuel Saving Rate(%) Hyundai, 1500cc DOHC ( 97) Samsung, 2000cc ( 01) Hyundai, 2000cc DOHC ( 99) KIA, 800cc (2000) Daewoo, 1800cc ( 96) Hyundai, 2500cc ( 97) Hyundai, 2000cc ( 99) KIA, SUV 2500cc ( 04) KIA, SUV 2500cc ( 05) Hyundai, 14Ton Truck ( 99) Hyundai, 2000cc ( 04) Hyundai, 2000cc ( 05)
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