CHAPTER 3: USING PROGRAMMING FUNCTIONS
HF25 DC RESISTANCE WELDING SYSTEM
990-333
3-19
Section III. Weld Functions
Welding Applications
Most welding applications require the use of
specialized weld functions. A weld function is a
unique heat profile created by weld current,
voltage, or power that is applied over a fixed
time period, to resistance weld different parts.
An example of a fully programmed weld profile
is shown at the right.
Applications include parts that:
•
Are plated with cadmium, tin, zinc, or nickel
•
Have heavy oxide coatings such as aluminum
•
Are round or not flat
By programming the appropriate weld period time and weld energy amplitudes for the weld period
segments, you can program an appropriate weld schedule profile to perform the above applications.
Typical applications and recommended weld schedule profiles are defined in the table below. For more
information about resistance welding, see
Appendix D, The Basics Of Resistance Welding
and
Appendix
E, Quality Resistance Welding Solutions, Defining The Optimum Process
Welding Applications
Weld Function
Typical Application
Basic Weld
Make single spot welds on simple flat parts without plating, or on conductive parts such as
those made of copper or brass.
Quench/Temper
Spot-weld flat or round parts that have minimum plating thickness.
Up/Downslope
Weld round parts, parts that are not flat, spring steel parts, or heavily plated or oxidized parts
such as aluminum.
Dual Pulse
Use for best control of miniature and small parts spot welding with or without plating.
Run
State
Squeeze
0-999ms
Up1
0-9.9ms
Weld 1
0-9.9ms
Cool
0-9.9ms
Up2
0-9.9ms
Weld 2
0-9.9ms
Down 2
0-9.9ms
Hold
0-999ms
Run
State
Up
Up
Down
Weld current
Weld head position
Down 1
0-9.9ms
Weld current
Summary of Contents for HF25A
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