5 Things to Know Before Buying Super Capacitor Laser Welding Machine

Author: victor

Mar. 17, 2025

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Tags: Machinery

Fail Of The Week: Supercapacitor Spot Welder - Hackaday

[Julian] needed to weld a bit of nickel to some steel and decided to use a spot welding technique. Of course he didn&#;t have a spot welder sitting around. Since these are fairly simple machines so [Julian] set out to build a spot welder using a charged supercapacitor. The fundamentals all seem to be there &#; the supercap is a 100 Farad unit and with a charge of 2.6V, that works out to over 300 joules &#; yet it simply doesn&#;t work.

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The problem is in how the discharge energy is being directed. Just using the capacitor would cause the charge to flow out as a spark when you got near the point to discharge. To combat this, [Julian] put a microswitch between the capacitor and the copper point he expected to use as the welding tip. The microswitch, of course, is probably not the best for carrying a large surge of current, so we suspect that may be part of why he didn&#;t get great results.

The other thing we noticed is that he used a single point and used the workpiece as a ground return. Most spot welders use two points near each other or on each side of the workpiece. The current from the capacitor is probably just absorbed by the relatively large piece of metal.

The 5 Most Critical Factors to Consider When Buying a Wire EDM ...


Wire EDM (electrical discharge machining) is a CNC machining technology that uses a thin metal wire as an electrode to cut electrically conductive materials with high precision and accuracy. Wire EDM is ideal for creating small, intricate, and complex shapes that are difficult or impossible to achieve with other machining methods. Wire EDM can also cut hard materials, such as tungsten, stainless steel, and titanium, without affecting their mechanical properties or causing thermal distortion. As long as it's conductive, Wire EDM can cut it. Wire EDM is widely used in industries such as aerospace, medical, automotive, Tool & Die and Mold making.

However, buying a wire EDM machine is not a simple decision. There are many factors that affect the performance, quality, and efficiency of wire EDM machines. In this article, we will discuss the five most critical factors you need to consider when buying a wire EDM machine for your manufacturing needs.

Wire Type and Diameter

The wire type and diameter are important factors that determine the cutting speed, accuracy, surface finish, and cost of wire EDM machining. The most common wire types are brass, coated brass, zinc-coated brass, and stratified wire. Brass wire is the most economical and versatile option, suitable for general-purpose cutting. Coated brass wire has a thin layer of copper, zinc, or tungsten on the surface, which improves the conductivity and wear resistance of the wire. Zinc-coated brass wire has a higher melting point and lower resistivity than brass wire, which increases the cutting speed and reduces the wire consumption. Stratified wire has alternating layers of different metals, such as brass and copper or zinc and copper, which create sparks with different intensities and frequencies, resulting in a finer surface finish.

The wire diameter ranges from 0.002" - 0.013" (0.05 mm to 0.33 mm), depending on the application and material. The smaller the wire diameter, the higher the accuracy and surface finish, but the lower the cutting speed and stability. The larger the wire diameter, the higher the cutting speed and stability, but the lower the accuracy and surface finish. Therefore, you need to choose the right wire type and diameter according to your specific requirements.

Power Supply and Generator

The power supply and generator are essential components of a wire EDM machine that provide the electrical energy for the cutting process. The power supply converts the AC input voltage into DC output voltage, which is then modulated by the generator to create electrical pulses that generate sparks between the wire and the workpiece. The power supply and generator affect the cutting efficiency, quality, and reliability of wire EDM machining.

There are two main types of power supply and generator for wire EDM machines: transistor-controlled (TR) and capacitor-discharge (CD).

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TR power supply and generator use transistors to switch on and off the electrical pulses, which can be adjusted in terms of pulse duration, frequency, peak current, gap voltage and duty cycle. The TR power supply and generator offer more flexibility and control over the cutting parameters, resulting in higher accuracy, surface finish,
and productivity.

CD power supply and generator use capacitors to store and release electrical energy in short bursts,which can be adjusted in terms of discharge energy, discharge time & discharge interval. CD power supplies and generators offer higher cutting speeds, power and stability but lower accuracy, surface finish and flexibility.

Axis Control and Motion System

The axis control and motion system are responsible for moving the wire and the workpiece along the desired cutting path with precision and accuracy. The axis control and motion system consist of servo motors, linear guides, ballscrews (or linear drives), encoders (or glass scales) and controllers that work together to ensure smooth, accurate, and consistent movement.
The axis control and motion system affect the cutting quality, complexity, and efficiency of wire EDM machining.

There are two main types of axis control and motion system for wire EDM machines: linear motor (LM) and ballscrew (BS). LM axis control and motion system use direct-drive linear motors to move the wire and the workpiece without any mechanical transmission components,such as ballscrews or belts. LM axis control and motion system offer higher speed,
acceleration, precision, repeatability and reliability but usually at a higher cost & power consumption.

BS axis control and motion system use ballscrews to convert rotary motion into linear motion, which are driven by servo motors through belts or gears. BS axis control and motion system offer lower cost and power consumption, but lower speed,
acceleration, precision, repeatability, and reliability (in general).

Wire Tensioning and Feeding System

The wire tensioning and feeding system are responsible for maintaining the optimal tension and feed rate of the wire during
the cutting process. The wire tensioning and feeding system consist of tension rollers, wire guides, wire choppers, wire spools and sensors that work together to ensure the wire is properly aligned, stretched and fed. The wire tensioning
and feeding system affect the cutting stability, accuracy and quality of wire EDM machining.

There are two main types of wire tensioning and feeding system for wire EDM machines: closed-loop (CL) and open-loop (OL). CL wire tensioning and feeding system use sensors to measure the actual tension and feed rate of the wire and adjust them accordingly using feedback control. CL wire tensioning and feeding system offer higher accuracy, stability and quality,
but higher complexity and cost.

OL wire tensioning and feeding system use preset values to control the tension and feed rate of the wire without any feedback or adjustment. OL wire tensioning and feeding system offer lower complexity and cost, but lower accuracy, stability and quality.

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