Implement lead Free Wave Soldering
Implement lead Free Wave Soldering _uacct = "UA-286605-9"; urchinTracker(); Home About Contact Most Read Articles Our Authors Archive Advertise Author Area Category: Computer Hardware Topics Arts-and-Entertainment Automotive Baby & Child Beauty Blogs Book Reviews Business Career Communications Computer Hardware Computer Software Cooking & Recipes Dating Diet Directories Divorce Domain Names E-Marketing Environment Ezines Family Fashion Fertility Finance Food-and-Drink Forums Frugal Living Health & Healthcare Health-and-Fitness Home Business Home-and-Family Internet Kids & Teens Legal Money Music News-and-Society Pay Per Click Pets Politics Pregnancy & Childbirth Press Releases Product Reviews Real Estate Recreation-and-Sports Reference-and-Education Relationships Religion Sales and Marketing Search Engines Self-Improvement SEO Shopping Site Promotion Taxes Technology Travel-and-Leisure Web Design Web Hosting Webmasters Wedding & Marriage Women Writing & Speaking Implement lead Free Wave Soldering 16th August 2008 Author: shaun.clarke
With the move toward lead-free electronic products, an increasing number of manufacturers are preparing to implement lead-free soldering processes in compliance with pending regulations. A great deal of effort has been placed on converting the reflow soldering process to lead-free due to the dominance of SMT components. Wave soldering must also be changed to lead free to avoid mixing of lead bearing and non-lead bearing alloys on the same assembly.
Implementing lead-free wave soldering involves more than replacing one solder alloy with another because no ?drop-in? replacement strategy exists. A common notion is that one can simply switch from tin-lead (Sn Pb) to lead-free by dropping lead-free solder into an existing wave machine. Another general misunderstanding is that you need to buy a new wave machine for lead-free processing. Neither of these tactics is correct because there are alternative ways to minimize the cost of implementing lead-free wave soldering.
For lead-free wave soldering to be successful in a production environment, necessary changes to the entire process must be considered. The majority of lead-free solder alloys possess good solder ability but exhibit decreased wetting characteristics compared to tin lead solders. Since wetting is a critical factor affected by solder temperature, contact time, flux, use of nitrogen and wave configuration, changes are required that will affect the majority of machine parameters.
Introducing lead-free wave soldering generally involves two major process changes because lead-free alloys have a significantly higher tin content than tin lead solder and require higher processing temperatures. Many products will be converted to lead-free over a gradual phase-in, however numerous manufacturers are forging ahead by making their wave soldering machines lead-free compatible now.
It is common practice to change the characteristics of the laminar wave solder nozzle since a longer contact time may be required due to the lower wetting properties of lead-free alloys. Often the distance between the chip wave and laminar wave may be reduced to minimize any temperature drop between contact points. Increasing the length of the chip wave improves wetting while increasing the preheat output produces a similar effect. Reducing the fall height of the wave to decrease the distance of overflowing solder reduces the amount of dross with lead-free alloys.
Compared to tin-lead solder, most lead-free alloys oxidize more rapidly when the solder is liquid us due to their increased tin content. Tin oxide, consisting of tin-oxygen (SnO) and (SnO2), forms at a higher rate because of the higher processing temperature and results in more oxidation and dross. Nitrogen inserting of the solder pot is recommended and minimizes exposure of the liquid us solder to oxygen and decreases the amount of dross. Needless to say, reducing the rate of oxidation and the resulting dross build-up significantly improves the performance of the wave soldering process
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With the move toward lead-free electronic products, an increasing number of manufacturers are preparing to implement lead-free soldering processes in compliance with pending regulations. A great deal of effort has been placed on converting the reflow soldering process to lead-free due to the dominance of SMT components. Wave soldering must also be changed to lead free to avoid mixing of lead bearing and non-lead bearing alloys on the same assembly.
Implementing lead-free wave soldering involves more than replacing one solder alloy with another because no ?drop-in? replacement strategy exists. A common notion is that one can simply switch from tin-lead (Sn Pb) to lead-free by dropping lead-free solder into an existing wave machine. Another general misunderstanding is that you need to buy a new wave machine for lead-free processing. Neither of these tactics is correct because there are alternative ways to minimize the cost of implementing lead-free wave soldering.
For lead-free wave soldering to be successful in a production environment, necessary changes to the entire process must be considered. The majority of lead-free solder alloys possess good solder ability but exhibit decreased wetting characteristics compared to tin lead solders. Since wetting is a critical factor affected by solder temperature, contact time, flux, use of nitrogen and wave configuration, changes are required that will affect the majority of machine parameters.
Introducing lead-free wave soldering generally involves two major process changes because lead-free alloys have a significantly higher tin content than tin lead solder and require higher processing temperatures. Many products will be converted to lead-free over a gradual phase-in, however numerous manufacturers are forging ahead by making their wave soldering machines lead-free compatible now.
It is common practice to change the characteristics of the laminar wave solder nozzle since a longer contact time may be required due to the lower wetting properties of lead-free alloys. Often the distance between the chip wave and laminar wave may be reduced to minimize any temperature drop between contact points. Increasing the length of the chip wave improves wetting while increasing the preheat output produces a similar effect. Reducing the fall height of the wave to decrease the distance of overflowing solder reduces the amount of dross with lead-free alloys.
Compared to tin-lead solder, most lead-free alloys oxidize more rapidly when the solder is liquid us due to their increased tin content. Tin oxide, consisting of tin-oxygen (SnO) and (SnO2), forms at a higher rate because of the higher processing temperature and results in more oxidation and dross. Nitrogen inserting of the solder pot is recommended and minimizes exposure of the liquid us solder to oxygen and decreases the amount of dross. Needless to say, reducing the rate of oxidation and the resulting dross build-up significantly improves the performance of the wave soldering process
This article is free for republishing
Source: http://www.a1articles.com/article_601261_10.html Related Articles Acer Aspire One Netbook Review Laptop: Top Tips Laptop: Top Tips Save Money by Investing in Printer Supplies Etiquettes to follow at bingo chat rooms Buying Computer Memory Online ? Why All the Great Deals? Buying a Netbook? 5 Things To Know Before You Buy Fixing Jams and Replacing the Foil Cartridge on the Fastback PowisPrinter Where To Shop For Computer Hardware Where To Buy a Motherboard For Your Computer Tips On Where To Buy a Word Processor For Your home Or Office The Computer Graphics Card ? Know Your Facts Before You Buy The Benefits Of a Four Processor Core Computer How To Shop For Computer Parts At a Computer Parts Store Hard Drives For Sale ? Where To Buy Them Desktop Processors Explained Choosing the Optimal PCI Graphics Cards Buying Computer Memory Online ? Why All the Great Deals? Innovative Approach Used In VXA Backup Tape Format Aztek Computers - Computer Hardware at Factory Prices-? Online Dealers for Computer Hardware, Soft Buy Kindle 2 Wireless Reader Kindle 2 eBook Learning Device Watching TV On PC For Free Compaq Presario B1255TU Finding an Affordable Laptop Approach patrons with smart websites Approach patrons with attractive websites How to Buy Computer Equipment Internet services now available with wi-fi hotspot software How to perform a clean installation of Windows XP View More Similar Articles Copyright © 2009 A1Articles - Internet articles and article directory service All rights reservedPrivacy Policy | Codes of Conduct | Sitemap | Archived articles Our Network:
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