Thursday, 19 January 2012

Black & Decker LPP120 20-Volt Lithium-Ion Cordless Pole Saw

!: discounted Black & Decker LPP120 20-Volt Lithium-Ion Cordless Pole Saw purchase

Brand : Black & Decker
Rate :
Price : $159.69
Post Date : Jan 19, 2012 04:48:16
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Friday, 13 January 2012

Top Seven Common Riding Lawn Mower Problems and Solutions

!: Top Seven Common Riding Lawn Mower Problems and Solutions

Riding lawn mowers are valuable and incredibly useful tools that can save time and energy spent on yard work. However, riding lawn mowers can have problems and need maintenance. Listed below are seven (7) common riding lawn mower problems along with trouble shooting tips. If a problem cannot be solved from the advice laid out in this article, contact a repair shop.

NOTE: These materials are prepared for use by trained technicians who are experienced in the service and repair of equipment of the kind described in this publication, and are not intended for use by untrained or inexperienced individuals. Such individuals should seek the assistance of a service technician or dealer.

Problem 1: Engine Will Not Crank

Sometimes the simplest solution may fix this riding lawn mower problem. Confirm that all the safety features of the riding lawn mower are functioning correctly. Make sure the mowing deck is not engaged, the parking brake is on and the operator is seated on the riding lawn mower. If one of the safety switches has not been properly activated the riding lawn mower will not start.

The next potential issue to check is the riding lawn mower's battery. In rare cases, the battery cable leads can work loose from the battery terminals. The black negative battery cable must be attached securely to the negative battery terminal. The negative terminal will be marked with a "NEG", "N", or "-" notation. The red positive battery cable should be connected securely to the positive battery terminal and will be marked with a "POS", "P", or "+" notation.

IMPORTANT WARNING: electrolyte is diluted sulfuric acid. Use extreme care to avoid spilling. It can destroy clothing and burn your skin. Test the battery to determine its condition. This can be accomplished by checking the specific gravity of each cell with a hydrometer. A fully charged cell will measure 1.250 specific gravity. Verify that the fluid level in the battery is adequate. If the fluid level is low, fill with distilled water so that it rests just below the split rings; then charge the battery at 5 amps maximum charge for 30 minutes until all cells measure 1.250 specific gravity. If all cells are unable to reach 1.250 specific gravity, replace the battery.

If the battery is in working order, locate the fuse holder(s) and inspect to see if a fuse is blown. Refer to the operator's manual to find the fuse holder(s) location. Check for loose, bare, or pinched wires and replace any blown fuse with the proper amperage automotive fuse. Finally, ensure the engine ground wire is in fact grounded. There should be a black ground wire running from the engine to a non-painted metal surface on the frame or a mounting bolt.

NOTE: Not all riding lawn mowers are equipped with an engine ground wire to frame.

Problem 2: Engine Cranks, But Does Not Start

If the riding lawn mower will not start, check the fuel level. The engine will not fire if there is not enough fuel in the carburetor. It is also possible the fuel line is clogged or blocked. Clean the line and replace the fuel filter to solve this problem.

Make sure the throttle and/or choke is in the proper position. This position can vary from model to model of riding lawn mower. Consult the operator's manual for the proper positioning of the choke and throttle for the riding lawn mower in question.

Faulty spark plugs or disconnected wires can also cause the engine to crank but not start. Run a diagnosis on the spark plug wire connection by using a spark plug tester to see if any plugs are faulty. Clean the gap, making sure it is set properly or replace any faulty spark plugs.

Problem 3: Engine Is Smoking

The most common cause of an engine smoking is having too much oil. Examine the oil level and remove any excess oil if overfilled. The problem should go away once the excess oil burns off. If the smoking persists, it could be possible the engine is losing its crankcase vacuum. Loss of crankcase vacuum can be caused by a broken or improperly seated dipstick, dipstick tube, or valve cover as well as a defective engine breather assembly or other internal engine damage. Replace any defective parts to restore crankcase vacuum pressure.

Problem 4: Unusual and Excessive Vibration

Blades, pulleys and spindles should not be bent or damaged. Mowing over a large object such as rocks, roots, sewer lids etc. can cause damage to the parts. Any damaged parts should be replaced.

A twisted or damaged belt may also be the culprit. All belts should be in good shape and properly routed. Replace the belt if it's torn or shows signs of wear.

Vibrations can also be caused by loose or missing mounting bolts, running the engine at a low RPM, or an improperly adjusted cutting deck.

Problem 5: Bagging, Discharging, or Mulching Poorly

There are a few actions that can be taken to minimize problems with the bagging, discharging and mulching. First, check the engine speed. The engine must be operating at full throttle for the bagging, discharging or mulching functions to work properly. Proper set-up of the deck is critical to the quality of cut. The deck should be level side to side and always lower in the front than the back by 3/8 of an inch. If that does not solve the problem, sharpen or replace the mower blades.

NOTE: Make sure the proper blade is being used for the correct application.

Operating conditions such as wet or exceptionally tall grass can cause poor functionality. To remedy these situations, always allow the lawn to dry prior to cutting, and if the grass is too tall, mow with the deck at a higher setting before mowing at the normal level. Try mowing at a slower rate to get a better and cleaner cut. Lastly, clean out any dirt and debris that has built up on the underside of the deck.

Problem 6: Mower Will Not Cut In Reverse

This is not a problem at all -- it is a safety feature. The cutting deck must be disengaged before the tractor can be shifted into reverse. However if the riding lawn mower was produced in 2005 or later it may be equipped with reverse mowing technology. This allows the operator to mow in reverse. Refer to the operator's manual for instructions.

Problem 7: Tractor Will Not Move Freely In Neutral

Check the operating manual to ensure the transmission relief valve is in the proper position. If it does not move in neutral, make sure the brake is fully releasing.


Top Seven Common Riding Lawn Mower Problems and Solutions

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Saturday, 31 December 2011

8 6 Amp 2-in-1 Electric Chain/Pole Saw Combo

!: New 8 6 Amp 2-in-1 Electric Chain/Pole Saw Combo Decide Now

Brand : Earthwise | Rate : | Price :
Post Date : Dec 31, 2011 21:59:56 | Usually ships in 1-2 business days


  • 2 in 1: 8 Chain Saw or Pole Saw
  • Adjustable Handle Length (overall length, fully extended 9.6-Feet)
  • Two Section Lightweight Fiberglass Pole with Soft Grip
  • Telescoping Handle
  • 8 Oregon Chain and Bar

  • More Specification..!!

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    Sunday, 25 December 2011

    The Black & Decker NPP2018 18-Volt Cordless Electric Pole Chain Saw - A Review

    !: The Black & Decker NPP2018 18-Volt Cordless Electric Pole Chain Saw - A Review

    When I first got my hands on the Black & Decker NPP2018 18-Volt Cordless Electric Pole Chain Saw I jumped to a few conclusions. The first, there is no way that a cordless electric pole chainsaw will have the power to chop through the tree limbs I had set up for it. The second, This chainsaw is going to be heavy and uncomfortable. The third thing I thought was that this electric chainsaw will be broken before my review day was over. Well, I was pleasantly surprised with this little guy!

    Lets discuss the power of the Black & Decker NPP2018 18-Volt Cordless Electric Pole Chain Saw. It comes uses a 18 - volt Nicad battery to power the 8 inch cutting bar. I followed the instructions and made sure the battery was fully charged first. Then I took it to work. I had a lot to cut and I was really trying to test the limits of this chainsaw. I got through about 30 limbs that ranged between 1 inch and 3 inches before the battery started showing any signs of letting up. At no point did the saw seem to be strained or working over time. It just kept powering away.

    Now on to the weight of the saw. It can extend to 14 feet and it is listed as weighing 7.6 pounds. The heaviest part is by far the battery which is good because that's usually at the base when you are working with it. The saw did not become flimsy as I expected when it was fully extended. The motor near the top of the saw is not overly heavy and it does not get in the way either. I think the fact that this day was close to 90 degrees made it seem a little heavier to me but yard work is yard work.

    The Black & Decker NPP2018 18-Volt Cordless Electric Pole Chain Saw turned out to be a lot more durable that I had originally expected. After it was doing so well with the limbs I was cutting I tried to push it a little. I found a big branch that needed to come down. This was about 4 and a half inches. This was the only time that the saw ran into some trouble. Like I said I was pushing this electric chainsaw to its limits.

    Overall, the Black and Decker electric pole chainsaw far exceeded my expectations. The one thing I did not like was feeling a little bit of a lack of control when cutting in fully extended mode. This could have been my fault though. Everything else this saw claims it can do was not fluff at all. If you have a few small to medium sized tree limbs that need pruning this electric chainsaw is the perfect addition to your garage.


    The Black & Decker NPP2018 18-Volt Cordless Electric Pole Chain Saw - A Review

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    Friday, 25 November 2011

    What's Up (or Down) With Texas Electricity Rates?

    !: What's Up (or Down) With Texas Electricity Rates?

    Since deregulation began within the state of Texas at the turn of the millennium, Texans have learned as much or more about how electricity works than people in any other place in the world. Some of the lessons learned were great for the foundation of understanding how the market would affect customers in principle. Some of the lessons learned could be considered more symptomatic of the times than as part of the bedrock of how the market will always function.

    One of the lessons that we've all learned and been taught to expect is that electricity rates will always go up, sometimes way up, during the summer heat season. The notion of the rate increasing and the bills increasing seems almost intuitive. And frankly, why wouldn't it? Since the days before deregulation, Reliant's rates jumped each summer from May - November.

    Was the seasonal rate increase a product of additional expenses during that period? Greed? State mandate?

    The reality of it is that it was almost exclusively a product of the companies incurring additional expenses in the summer time. But shouldn't the cost of generating electricity more or less remain constant between the winter and the summer? The simple answer is usually "no".

    Why?

    Given that it is much hotter in the summer within the state of Texas, more air conditioners are run, for both homes and businesses. It takes more A/C power to heat the same room at the same temperature as the outside heats up, too. The A/Cs have to run longer and later to keep homes and businesses cooled off. As more electricity is needed on a household by household basis, and a business by business basis, more electricity has to be generated and placed onto the state's electricity grid. As that happens, more electricity generators need to be run to keep up with demand than in other times of the year. The generators that are forced to come on line during this period are usually more expensive to run for the provider - which is why they're not the first generators online each day. When the generation becomes more expensive, the price increase is spread down the supply chain. The Retail Electricity Provider has to pay more and the customer, ultimately, has to pay more as well.

    That makes it seem as though electricity rate increases really should be part and parcel to each year's heat season. But should this always be the case? Perhaps not.

    Often times, experts will speak about this cause and effect relationship and then divert on a tangent in regard to natural gas prices. Natural gas prices affect the price of electricity in a place like Texas because many of the less-used generators run on natural gas as fuel for generating the electricity. Natural gas, as opposed to coal, nuclear, or various other products also used to generate electricity within the grid, is a much more expensive and volatile product on the price side. As a for instance, last summer saw record electricity prices that correlated almost symmetrically with record natural gas prices. Heading into this summer, however, we find that as a market, natural gas prices have basically collapsed to points that we haven't seen in more than half a decade. With that as a given, can't we basically assume that prices won't rise significantly? Yes, as part of the equation, as long as natural gas prices are lower, electricity prices will be lower. This is a foundational principle to how the market functions.

    But that's not the entirety of the story. Another variable within the equation is often ignored and typically, by the average trader and forecaster within the Texas market, dismissed as relevant because it is assumed to be a relative constant, is market demand for electricity. And why wouldn't it be? It's always a hot summer in Texas, right? Homes will always need to be cooled, right? Businesses will always be booming and consuming more and more energy to create more products, right?

    Well, the truth to one of those questions is, it's often a hot summer in Texas, so that assumption is ok.

    On the question about home being cooled, well, homes always do need to be cooled, too. And so do apartments. But what happens if the mix of homes using electricity versus apartments using electricity ever dramatically shifts? Can less people living in homes drive the overall demand for electricity within the market down? Let's think about it.

    On average, home dwellers use about 1.5 times the amount of energy that is used by apartment dwellers. Overall, the residential demand within the Texas grid, in aggregate, is roughly 40% of the total electricity used. If the mix of home dwellers to apartment dwellers is historically 55% to 45% of the population within Texas, this would indicate that almost 70% of the residential electricity demand traditionally comes from home dwellers. That also means that home dwellers generally impact about 27-30% of the total demand within the Texas electricity market as whole. Let's assume the 27-30% consumed by home dwellers within the market works for the summer, which is the most likely.

    Now consider the possibility that a migration within the marketplace occurs from people living in homes to people living in apartments. In recessionary times, this is usually a reality and this recession is no different. Apartment communities are nearing capacity throughout Houston and Dallas, just as foreclosures rise and people move out of homes after layoffs and payroll decreases as an act of reducing expenses. Publicly available data on this is scarce, but we can use some of the information provided recently by http://HAR.com, which covers Houston real estate sales. This shows that more than 30% less new homes were sold in the Houston area over the first quarter this year and last. They've also released data disclosing that roughly 25% less existing homes were sold in the same time period. Meanwhile, foreclosure rates continue to increase, as do apartment occupancy rate. Extrapolate that across to Dallas as well and the numbers and demand within the overall market starts to look considerably different than years past. Specifically, a shift of that nature on the residential side of electricity usage translates into a relevant decrease in overall market demand for usage. The market clearing price for electricity within the market is based on what the last electricity generator selling electricity to the market has to charge to cover its costs. If the more expensive generators are impacted by that "demand destruction", and given that since those generators are the last to be used, they are impacted, the prices are not going to see the potential exponential increase that those generators would create.

    That portrays what role something as simple as a shift in dwelling type for Texas residents could do to the market.

    What happens if demand destruction also exists on the business side of the market? Are businesses using less electricity today than they were a year ago in Texas?

    The answer is that if demand destruction occurs on the business side, the need for excess, more expensive electricity capacity within the market would see an even sharper decrease than what we looked at on the residential end. Business usage is demonstrably higher than residential usage within the Texas market, as whole.

    So are businesses using less electricity today than this time last year? Well, yes. For one, any business that has gone out of business is using less, to be sure. It is a simple fact that the market is contracting right now, which means we're experiencing negative growth today. A classic and directly related example of this situation is what's occurring on the Houston Ship Channel. As a group, this set of businesses uses more electricity than any other specific group of businesses within the state. They have to use enormous amounts of electricity to create the products, such as plastics and tires for automobiles, that they ship throughout the rest of the world. When orders for new products weaken or dry up, these businesses are forced to take action, such as extended shut downs or flat out closures of production lines or the businesses themselves. These events have occurred within the last 12 months, and they've happened across multiple plants with few plants being unscathed.

    With business usage for electricity on the whole representing a net decline within the market, coupled with less residential usage for the same reasons, demand destruction is a very real part of the overall prices reflected within the market at the beginning of this summer. If the demand remains depressed compared to the past 7+ years, this often dismissed potential variable within the equation for electricity prices to the public will continue to play a big role. The end result may be so significant that prices throughout the summer don't actually rise much at all, and could ultimately wind up lower at the end of the summer than when the heat season began. With that as a possibility, if not a probability, Texans can count on continuing to see some of the lowest electricity prices within the entire country for the duration of 2009. For every Texas resident within these recessionary times, that should be considered good news.

    from May 24, 2009


    What's Up (or Down) With Texas Electricity Rates?

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