3C precision electronic plasma polishing
Specifications
Serial No. | Item | Value | Unit |
---|---|---|---|
1 | Plasma Working Power (Multifunctional) | 399 | Ampere |
2 | Operating Voltage | 380 | Volt |
3 | Maximum Current Setting | 600 | Ampere |
4 | Safe Operating Current | 600 | Ampere |
5 | Control System Power Supply | 220 | Volt |
6 | Single Tube Power of Heating Pipe | 10 | kW |
7 | Total Power of Heating | 60 | kW |
8 | Equipment Dimensions | 2000(L) x 1300(W) x 1900(H) | mm |
9 | Plasma Power Supply Dimensions | 1300(L) x 830(W) x 1250(H) | mm |
10 | Plasma Reaction Chamber Dimensions | 1100(L) x 720(W) x 820(H) | mm |
11 | Effective Stroke of Hanger | 650 | mm |
12 | Maximum Effective Load | 100 | kg |
13 | Total Power Consumption of Equipment | 399 Ampere, 210/270 kW | |
14 | External Power Line for Equipment (Three-box Five-wire) | 150 | square mm |
15 | Human-Machine Interface Size (Large Screen) | 10 | inches |
Feature
plasma polishing,also known as the fourth state of matter, is an electromagnetic gaseous discharge phenomenon that partially ionizes gaseous particles. The ionized gas includes atoms, molecules, atomic clusters, ions, and electrons. Plasma is a layer of gas, namely ozone, generated between the polishing solvent and the processed product under the pressure of electric charge. When the ions in this gas reach a certain quantity, a plasma state is formed. Under the influence of positive ions, ion exchange occurs on the surface of the metal, leading to an enhancement in the smoothness of the product. This results in the desired polishing effect.
Advantages
Parameter | Chemical Polishing | Electrolytic Polishing | Plasma Etching Polishing |
---|---|---|---|
Polishing Liquid Price | Expensive | Expensive | Low |
Toxicity | High | High | None |
Aging | Difficult to regenerate | Difficult to regenerate | Periodic replenishment |
Waste Liquid | Difficult to treat | Difficult to treat | Minimal, non-polluting |
Pre-treatment | Complex | Complex | Not required |
Post-treatment | Hazardous substances | Hazardous substances | Simple rinsing |
Leveling Effect | Poor | Good | Excellent |
Brightness Effect | Good | Good | Very good |
Suitable for Complex Parts | Yes | Yes | Yes |
Automation Feasibility | Yes | Yes | Easy |
Operation Difficulty | Moderate | Moderate | Fast |
Polishing Speed | Slow | Faster | Fast |
Hardness Impact | Not noticeable | Not noticeable | Increased |
This table provides a comparison of these three polishing technologies in various aspects. The choice of the appropriate polishing technology depends on specific application requirements, cost considerations, environmental concerns, and the characteristics of the workpiece.
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