Showing posts with label Electrocution. Show all posts
Showing posts with label Electrocution. Show all posts

Friday, October 2, 2015

Just like sticking your finger in a light socket - NOT Smart

Fluke, manufacturers of electrical test equipment, has posted a Safety Checklist entitled 10 dumb things smart people do when testing electricity.  This sage advice can save your pork butt from becoming bacon, so download it here:  www.impomag.com/sites/impomag.com/files/newsletter-ads/10 dumb things smart people do when testing electricity.PDF

While you are visiting the Fluke web site, check out their Fluke 1AC-II non-contact voltage detector.  This is the MUST HAVE item in any tool box, as you can place the tip near any stage equipment like microphones, electric guitars, stage lights, etc. and see if maybe the power feed is crossed-up and about to kill some one.  Consider it a pre-emptive strike against death.

Monday, May 18, 2015

It’s a great time to review electrical safety practices.  You know, things like unplugging a lighting instrument BEFORE you try to change the lamp . . .
 
The Electrical Safety Foundation International (ESFI) is dedicated exclusively to promoting electrical safety in the home, school, and workplace, and is the proud sponsor of National Electrical Safety Month each May.
 
In celebration of Electrical Safety Month 2015, ESFI announced the launch of the second edition of its National Electrical Safety Month publication, Electrical Safety Illustrated.
 
In this magazine ESFI addresses timely electrical safety issues to equip the public with the knowledge to better protect their home, family and communities from electrical hazards.

Click here to read the Electrical Safety Illustrated May 2015 magazine.
Click here to visit the ESFI Home Electrical Safety page for more resources and information

Tuesday, July 30, 2013

Blow This! Littelfuse Publishes Electrical Safety Handbook

Littlefuse, a company long known in the electrical and electronics industries for fast-acting circuit protection devices, has published a 76 page Electrical Safety Hazards Handbook that is free to download as a PDF.



This isn't a simple Do This, Don't Do That pamphlet.  This extensive guide explains the history, physics, body physiology, relevant safety codes, hazard analysis, and offers suggestions about how to minimize exposure to a variety of workplace conditions.  It also includes a chapter on Arc-Flash safety.

Numerous Annex Chapters are provided that cover key Electrical Terminology, Arc-Flash calculations and tables, an example Hot Work Permit for those thinking about risking their lives tinkering with energized circuits and equipment, Electrical Safety Resources (with live links), and much more.

The booklet concludes with an Electrical Safety Quiz and an answer guide for checking your knowledge.

Download your copy here:
www.littelfuse.com/data/en/Arc-Flash_Literature/LittelfuseArc-FlashSafetyHandbook-PF339.pdf

Friday, May 10, 2013

6 Ways Small Breaches in Electrical Safety Have Shocking Results

By   Published 05/01/2013
Reposted with permission from DuraLabel's web site:  www.DuraLabel.com

At first it may appear that most commercial facilities are fairly safe. You’ll find OSHA-compliant safety signage, well-marked exits, clear pathways, adequate floor marking, and even a pretty good safety training program in place. But a silent killer lurks at every industrial and office facility, and every year, ignorance of its danger costs hundreds of workers their lives. In fact, industry’s systemic failure to address this hazard results in three of OSHA’s top 10 safety violations every year.

Electricity is the lifeblood that makes industry possible, powering everything from desk lamps to giant machines. Because it is so reliable and ubiquitous, workers—even trained electricians—often take it for granted. Electricity is an instant killer: One tenth of an amp of electricity traveling through a human being for only two seconds is enough to kill. Electrocution isn’t the only hazard, however. OSHA’s regulations concerning use and wiring of electricity are also designed to prevent fires that can result from faulty wiring.

The OSHA regulations related to electricity that most employers are cited for are 29 CFR 1910.147 (Lockout/Tagout), 29 CFR 1910.303 (Electrical General Requirements) and 29 CFR 1910.305 (Electrical Wiring Methods). Let’s put on our compliance officer’s hat and go over six typical electrical hazards. We bet that if you do a thorough review of your facility, you’ll find at least one problem to correct.


1. Extension Cord/Power Strip Issues

For starters, extension cords are meant for temporary use only. OSHA compliance officers commonly cite for this issue. “If it is obvious it has been there for an extended period of time they can cite it as temporary wiring in place of permanent,” said safety consultant Jonathan Brown, of Advanced Safety and Health in Louisville, KY. What’s the threshold between temporary and permanent? Ninety days, and only for temporary holiday décor such as lights. Here are some other extension cord issues:
  • Damaged cords: Nicks, cracks, frays, and shorts can render a cord useless or worse, an electrocution hazard. Destroy damaged cords and purchase new ones. Running them through walls or across walkways damages them. Try stringing them overhead.
  • Daisy-chaining extension cords and power strips: Plugging one extension cord or power strip into another reduces the wattage capacity of each cord and creates a fire hazard. Now that surge-protected power strips with cable lengths of 10-25 feet are commonly available, the need to daisy-chain is eliminated. If you need additional electricity, hire an electrician to install power outlets where they are needed.


2. Amateur Wiring/Grounding Issues

Electricity is simply too dangerous to trust to amateurs. Cutting off the grounding plug to a power or extension cord or splicing together a couple of cords might seem harmless, but doing so can have lethal consequences to an always-unsuspecting worker. Case in point: A Chinese immigrant restaurant owner and his wife were refurbishing their new restaurant, and he had replaced the electrical cord to a glass-fronted cooler by splicing a 10/2 wire to a one-foot length of extension cord plugged into a wall receptacle. He never saw the ground wire on the 10/2 cord come loose and when he contacted the metal frame of the cooler and an adjacent metal stove, he was electrocuted.

In another case, a 20-year-old lifeguard at a large apartment complex was electrocuted when he entered the pump house to adjust the chlorine pump. Tragically, the metal pump motor housing had become energized with 220 volts—it wasn’t grounded properly, and hadn’t been approved for wet locations such as the pump house.


3. Inaccurate Labeling

 10 Tips for Safe Electricity

  1. Always use a licensed, bonded electrician for any electrical work in your facility.
  2. If you have not tested your circuitry, have it analyzed for safety and thoroughly labeled.
  3. Treat all conductors as dangerous until they are locked and tagged out.
  4. Regularly inspect all electrical tools.
  5. Use ground fault circuit interrupters (GFCIs) and overcurrent protection devices.
  6. Review your electrical safety program.
  7. Avoid using ungrounded home appliances and overuse of extension cords in the office environment.
  8. Have fire extinguishers rated for electrical fires easily accessible.
  9. Use non-conductive ladders when doing electrical work.
  10. Never allow workers to do electrical work without the proper personal protective equipment (PPE).
It’s critical that electrical circuits are accurately labeled, and that switches, cabinets, arc flash hazards, etc. leave no room for confusion. How accurate and easy to read is the labeling on your facility’s electrical panels?

The story of a 32-year old maintenance worker illustrates this point: He had been asked to change a broken metal halide bulb in a ceiling fixture and had taken several precautions, including studying the “as-built” plans so that he could de-energize the circuit. However, the plans were not accurate and he was electrocuted when he used an uninsulated tool to remove the broken bulb. He had turned off a breaker, but it was mislabeled and the circuit was still energized.

Labeling switches and other components is critical too. A 43-year-old man testing the insulation on a conduit coil was electrocuted because of a faulty cable repair. However, a coworker was unable to de-energize the coil tester because the power switch was not labeled.


4. Openings in Electrical Enclosures

All the unused openings in an electrical panel have to be closed, including unused slots for breakers and knock-outs. If the opening isn’t replaced with a blank, a shock hazard exists if someone places a finger into an open slot.


5. Lack of Training and Electrical Safety Program

Nearly every electrocution or electrical burn suffered by workers could have been prevented had they been properly trained and followed standard operating procedures.

NFPA 70E (Article 110) and OSHA both spell out training requirements for electrical workers. The standards mandate that electrical workers are considered “qualified” when they know how to use a voltage detector and have specific knowledge and skills. According to these standards, employers must provide a documented electrical safety program that spells out safe work practices for employees. In addition, employees must be periodically retrained and the safety program audited for effectiveness.


6. Look! Up in the Sky!

Many electrocutions occur as a result of contacting overhead power lines. Whenever starting an electrical job, conduct a hazard analysis that takes into account location of nearby power lines. Poles, pipes, ladders, and other lengthy items held aloft are tall enough to convey a deadly jolt to a hapless worker.

Read more at: www.duralabel.com/duranews/2013/may/your-facility-death-trap

Thursday, May 9, 2013

Blast from the past can give you a jolt

Older stage lighting instruments can be quaint, still functional, and educational, however you can run the risk of electrocution and asbestos exposure with many of them.
Classic Century LekoLite
The common hazards with many older lights is that they were only equipped with two power wires and no safety ground conductor.  To further compound the hazard, the connector on the end of the power cord may predate the evolution of polarized grounded connectors.

Polarized Grounded Stage Pin connector (left) and Unpolarized Ungrounded Stage Pin connector (right)
The result is that the lamp socket can have either the outer contact shell or the central contact pin connected to either the hot (live) conductor or the neutral conductor.  As you can see, the two-pin type plus is reversible.


Should you attempt to open the lamp housing while the light is plugged-in, you could potentially expose yourself to lethal voltages. HUGE NOTE:  ALWAYS UNPLUG A DEVICE BEFORE YOU ATTEMPT TO OPEN IT UP OR CHANGE A LAMP.  There are numerous reasons for this:  If the lamp globe is broken you can come in contact with one or more of the inner electrodes, or the electrodes could come in contact with the lamp chassis and energize it.  If the device is not equipped with a safety ground conductor that ties the chassis to the electrical system safety ground, then you could become part of the electrical path.  Other reasons are that the old lamp sockets can become brittle and may have disintegrated due to prolonged high-temperature use.  This leaves the inner electrical parts exposed so you might come in contact with them.

Borderlight Strip with 4 two-conductor Asbestos Insulated Cables
Occasionally you may encounter a lighting instrument that was manufactured just before the use of Asbestos cables was discontinued.  Some of these have tri-color dyed insulation: Green, White, and Black.
 
Fresnel with Tri-color Asbestos Insulation
As you can see in these pictures, it was common practice to clamp-down directly on the asbestos insulation of the cables, so the bending and twisting at the point where the strain relief is applied can cause the insulation to become worn and abraded, which in-turn, can bring the inner conductor in contact with the equipment chassis.

When handling asbestos jacketed cables, always wear latex / nitril gloves, clean-off the loose particles with a damp cloth, and dispose of the contaminated rag in a safe manner.  Equipment like this should be retired from service.  If they are to be kept for historical reference and teaching, store them jumbo plastic bags so that the dust particles do not continue to contaminate the surrounding areas.  Preserving the past does not mean contaminating the future!