แสดงบทความที่มีป้ายกำกับ retaining แสดงบทความทั้งหมด
แสดงบทความที่มีป้ายกำกับ retaining แสดงบทความทั้งหมด

วันพฤหัสบดีที่ 5 มกราคม พ.ศ. 2555

All About Retaining Walls - Concrete Retaining Walls and Decorative Retaining Walls

Introduction to Retaining Walls

First, a retaining wall is a structure that holds back, or "retains," lateral faces of dirt, water, or other materials. Retaining walls are used to prevent erosion or collapse of higher level ground onto a certain building, structure, or general area. The earth that is retained is often referred to as backfill. The word backfill is also used as a verb to describe placing more dirt behind a retaining wall to make the ground more level.

Retaining walls can be the answer if you are blessed (or cursed) to a contoured lot. They can turn a steep slope into a terraced yard, creating a stair step effect instead of a slope.

Retaining walls can be constructed from many different materials using many different techniques. There are several factors that influence which choice will be the best choice for each situation, including cost, height of the wall, soil characteristics, and ground water conditions.

Generally, most municipalities require that any retaining wall over four feet in height be engineered or approved by a licensed engineer. It is important to check local building codes before starting any retaining wall projects, even if it is below four feet tall. After all, retaining walls should be structurally sound before there is any thought of aesthetic appeal. The retaining wall must be able to stand up to the pressure exerted by the backfill, also called lateral earth pressure. This lateral earth pressure is a majority of the force that the retaining wall will need to bear. Lateral earth pressure is determined by studying the weight of the soil unit, slope of the soil, soil type (for plasticity and adhesion purposes with clay soil types), and ground water levels. Engineers do many calculations with these factors to determine what design to implement with the wall. To homeowners and contractors that do not want to go through engineering steps, it is generally a good rule to overdo it. Many structural methods to build retaining walls with withhold earth, at least temporarily, with a height up to four feet, are adequate, which is why most local building codes require engineering if the wall will be over four feet tall.

However, even methods that may seem adequate for retaining earth can fail if they are not built properly. Many times, it is elements below grade that can make (or break) a retaining wall. Problems including bowing, slanting, or cracking are evidence of retaining wall failure because it was not successful in retaining the dirt. Cutting costs with a bad contractor, insufficient materials, or neglecting the below grade elements can turn out to be more expensive over time if replacement or repair is necessary often or if collapse of earth causes damage to nearby structures. For example, erosion can cause foundation issues if dirt erodes from under the foundation. This is just one example how a retaining wall failure can cause expensive problems aside from the cost to repair or replace the retaining wall.

Another aspect that is often neglected or underestimated that can cause failure of a retaining wall is drainage. Inadequate drainage of retaining walls can mean that water is trapped behind the wall, adding to the weight that the wall must hold back. Usually weep holes and/or drainage pipes are used to flush rain water and ground water from behind the wall. It is important that the drainage system, whatever it be, have a filter barrier to keep dirt from clogging the drain or weep hole.

Options for Retaining Wall Materials

· Railroad Crossties - Railroad crossties, also shortened to railroad ties, can be used as a retaining wall material; however, as with most every retaining wall material, it must be installed correctly in order to be a solution. For example, most railroad tie retaining walls will need a substantial footer to tie the crossties to in order to keep the bottom from sliding out. Also, there needs to be perpendicular members placed into the ground behind the wall to keep the wall from overturning. These members, called deadmen, should be at least 1.5 times as long as the wall is high and should be placed at minimum every 6 feet or so. Because railroad ties are wood (even though they are treated most of the time), there is a risk that they may rot over time or be subject to termite infestation, which can lead to a weak wall likely to bulge or break. And, even though there are areas for water to slowly seep though, it is still a good idea to have a filtered drain or weep holes designed into the wall.

· Treated Wood - Treated wood retaining walls offer many of the same risks as retaining walls because over time it is susceptible to rot and termite infestation. It is a labor intensive construction, but it is usually lightweight and decently strong if built correctly. It is recommended to build a concrete footer to attach the wall to in order to keep it from shifting. Construction usually requires a clear area to be backfilled after the wall is built, so it is not always the best material to use if you are replacing an existing retaining wall. This wall still needs weep holes or drains designed into the wall. Standing water behind the wood will only increase risk of rot.

· Concrete - Concrete is a great material to use for retaining walls. Of course, there is a right and a wrong way to build a concrete retaining wall, which makes choosing your contractor a big job. There are many different designs that can lead to a successful concrete retaining wall, but one thing is for sure: there needs to be a footer beneath the wall to ensure success. Concrete is one of the most durable man-made products known to man. Most concrete poured today is engineered to last for over 50 years. Plus, concrete offers many decorative options as well. Aside from a plain, white concrete retaining wall, you can also pour a colored concrete retaining wall, stain a retaining wall after it has cured, pour into a patterned form, apply a vertical stamp material and pattern after poured, etc. Sealing the concrete wall can lead to an easy-to-maintain surface that rinses free of most dirt and grime.

· Blocks or Paver Stones - Engineered blocks that stack together to make a wall must be as simple as building with Legos, right? Nope. These retaining walls should also have a significant footer in order to support not only the weight of the dirt but also the weight of the wall. These blocks can be a unique look, but it may even be necessary to place a concrete retaining wall behind the blocks if there immense lateral earth pressure. In such a case, the concrete would be the structural element, using the blocks as a visual feature.

· Rock or Brick - One of the favorite looks for a retaining wall is natural stone or brick. These materials usually look more permanent and traditionally classy. However, just as we have seen with the other materials, it is necessary to have a concrete footer below grade to carry the weight and ensure success of the retaining wall. Like architectural blocks or paver systems, it may be necessary to back a masonry retaining wall with a concrete retaining wall for structural support.

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วันศุกร์ที่ 4 พฤศจิกายน พ.ศ. 2554

Using Recycled Sidewalks to Build Concrete Stairs and Small Retaining Walls

As recycling becomes a bigger issue in today's society and dump fees continue to rise, anything we can do, to make a difference, we should. Using recycled sidewalks to build concrete stairs is an excellent way for recycling old sidewalks and driveways.

The first time I'd seen one, was outside a restaurant where I lived and they did a pretty good job, using the pieces of an old sidewalk, creatively. I never seen anything like this before and like most of us know, there's a first time for everything. Building concrete stairs with recycled materials got me thinking about other things that we could build with recycled building products.

People aren't just using recycled concrete for stairways, they're using them for small retaining walls. Recycled concrete retaining walls and stairways can be built from small to large sections of broken sidewalks and driveways.

Simply position the broken pieces into decorative designs, until you have something that functions as a stairway. Start from the bottom and work your way up, until you've created a beautiful recycled concrete stairway.

If you're planning on building a retaining wall out of used concrete, simply stack these materials on top of each other, until you've created the retaining wall, you envisioned. I don't recommend building retaining walls higher than 24 inches with these types of materials.

I know I didn't go into a lot of detail, but you probably got the basic idea. Have fun and use your imagination while keeping safety in the back of your mind at all times.

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วันจันทร์ที่ 9 สิงหาคม พ.ศ. 2553

Building a Retaining Wall

Retaining walls are usually used for preserving landscaped areas. Retaining walls serve as purposes for practical construction, from giving vertical edges for sloped areas to supporting level areas. If there is a sloping backyard that risk of getting collapse soon, then a retaining wall is the best option for increasing strength. It will help in preserving the area and utilizing it for functional purposes.

Variety of materials can be used to build retaining walls, the most common are wood, concrete and tiles. Even though basically used as functional elements in a landscape, these walls can also be made of more eye catching elements like colored bricks, stone and timber.

Materials Needed

- Concrete
- Wooden stakes
- Gravel
- Scaping fabric
- Interlocked landscaping stones
- Land
Tools Needed
- Brick chisel
- Framing square
- Pickaxe
- Masonry twine
- Wheelbarrow
- Shovel
- Mattock
- Torpedo level

Procedure

1. Excavation and Layout - The task should be started by excavating the area where the proposed retaining wall needs to be located. It has to be ensured that the soil is graded on the downhill section. The wooden stakes have to be drilled into the downhill side and the masonry twine should be stretched across the stakes.

2. The Footing Trench - A trench has to be dug out on the upper side of the wall. It should be filled with variety of colored stones and then it is to be leveled with the help of a rake. The stones should be compacted together with a tamper.

3. The First Course - The first base of concrete should be laid out on the stones. A torpedo level can be used for this purpose for ensuring that the concrete is in level on all sides. All the remaining concrete units have to be laid out while leveling the stones at the same time. This step can be fairly dangerous, so the protective work gloves should be worn at all times.

4. Cutting the First Block - For ensuring improved grip and placeholders for the vertical joints, the first block of every even numbered row has to be cut into halves with a brick chisel and sledgehammer.
5. The Second Course - When the first block of all the even numbered rows have been cut, the next step is to lay out the second row of concrete units. Each block has to be stepped back by a few inches for ensuring a minor slope backwards.

6. Backfilling - As the height of the wall will increase, it has to be made sure to fill down the soil behind it. While the back portion of the wall has been filled with soil, it is also necessary to support its strength with an additional material such as cement. This additional support is always needed for walls that reach certain heights.

7. Final Grading - The trench has to be filled with crushed stones on the uphill part of the constructed wall. It should be topped with soil until it reaches a few inches above the final level of the wall. Preferably, the gradient of the soil and the crushed stones should be gently sloping downwards.

Caution and Tips

- If you are planning to build the wall by yourself, then ready-made interlocking blocks should be selected.
- The minimum depth of the trench should be ½' and it should be wider than the size of an interlocking block.
- The trench should be refilled immediately after the foundation layer is completed.

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วันอาทิตย์ที่ 11 เมษายน พ.ศ. 2553

Freestyle Skateboarding (TCMP_2_BOUND_TOO_LONG)

This is the second video in "The Crystal Method Project" freestyle skateboarding series. Its all about rhythm and skating to the music with these videos; I felt Bound Too Long was a great track to advance the series forward.



http://www.youtube.com/watch?v=SHqTYfvcZfc&hl=en

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