billconner
Well-known member
I see Owens Corning has introduced Pink Rebar, fiberglass rebar. At Lowe's, same as price as steel. Nice to have options.
Probably not the approved method, but I bet an abrasive cut off saw works well. Plus you get the benefit of fiberglass dust floating in the air.Wonder what it looks like after you cut it with bolt cutters.
Lots of applications that don't need bending. Raises the question can you mix it with steel rebar? I'd guess it's OK but don't know.My first thought is, what happens when it's bent into a nice smooth 90 degree sweep and you let go of it?
I think it's unlikely that it will stay bent, and more likely that it will go "WHAP" and smack someone in the head when it straightens out.
Parking garages with metal rebar exist all over the place without issue. Not saying that fiberglas is a bad idea, but metal can work fineI was at a corrosion seminar at Purdue years ago, and the professor leading the class got pretty animated about a parking garage replacement on campus. The rebar in the decks had corroded causing spalling of concrete, to the point they were replacing the whole structure.
His concern was they were building the new garage to the the same spec with the same concrete and rebar as the failed garage. Sounds like non-metallic might be the way to go if it works.
Huh?no no no fiberglass rebar is so you can drive into the ground and tie your regular rebar to. you cant drive metal rebar into the ground
no no no fiberglass rebar is so you can drive into the ground and tie your regular rebar to. you cant drive metal rebar into the ground
I've been on jobs where the concrete guy pounded u-shaped stirrups of metal rebar into the earth to then support the footing rebar. Third party inspector made them remove all the bars in the earth as he said they would lead to corrosion that would migrate inward; wanted all steel fully concrete encased.Huh?
I get not putting rebar in the ground, but that is not the only application for FG barI've been on jobs where the concrete guy pounded u-shaped stirrups of metal rebar into the earth to then support the footing rebar. Third party inspector made them remove all the bars in the earth as he said they would lead to corrosion that would migrate inward; wanted all steel fully concrete encased.
Doubt a 20' continuous fiberglass rebar will suffice as a UFER!![]()
no no no fiberglass rebar is so you can drive into the ground and tie your regular rebar to. you cant drive metal rebar into the ground
Huh?
I thought you were challenging @bb29520 's comment; the fiberglass pounded into the earth might work as a standoff to then tie metal bars to. Not sure if water will wick up fiberglass from earth contact to then corrode the encased steel bars.I get not putting rebar in the ground, but that is not the only application for FG bar
I am challenging that pounding it into the ground is its purpose. That may be a use, but it isn't what it was designed forI thought you were challenging @bb29520 's comment; the fiberglass pounded into the earth might work as a standoff to then tie metal bars to. Not sure if water will wick up fiberglass from earth contact to then corrode the encased steel bars.
composite rebar has been around a long time and lately GRP has been upstaged by BRP (Basalt Reinforced) that considerably outperforms glass. For both types, however, you have to order bent sections from factory, same with rings. Just to put things into perspective: Basalt rebar is something like 8x the strength/weight ratio of steel. You can easily replace 1/2" steel with 3/8" basalt and have a much stronger, much lighter and totally corrosion free structure. Also same coefficient of thermal expansion as concrete.My first thought is, what happens when it's bent into a nice smooth 90 degree sweep and you let go of it?
I think it's unlikely that it will stay bent, and more likely that it will go "WHAP" and smack someone in the head when it straightens out.
Around here parking structures are lucky to last 40 years and bridge decks 20. Here in the prairies we are considered "low salt" winter roads!I am curious about something related - if you pour concrete at freezing temperatures with rock salt in it, does that affect the rebar corrosion? My shop has a beautiful slab on the second floor which contains salt, but it can never rain on this floor. It's 20 years old, and it's pretty obvious already it's okay, but I have always wondered about that. Up north, in a parking garage, you are importing salt all the time, so you don't necessary see the difference.
Very cool--this is my new nugget of information for the day...composite rebar has been around a long time and lately GRP has been upstaged by BRP (Basalt Reinforced) that considerably outperforms glass. For both types, however, you have to order bent sections from factory, same with rings. Just to put things into perspective: Basalt rebar is something like 8x the strength/weight ratio of steel. You can easily replace 1/2" steel with 3/8" basalt and have a much stronger, much lighter and totally corrosion free structure. Also same coefficient of thermal expansion as concrete.
If you (or anyone else on GJ) wants to make far better concrete, you can buy made in USA stuff here: https://www.fiberglassrebar.us/basalt-rebar/ Nick (the guy in your link) is a wealth of knowledge and experience but the guys over in TX are the ones who got it into the marketplace by using existing rules (meant for glass fiber - that they also make) to test and accept under same standards when using basalt fiber. There is another company on the East Coast that sells out of FL who draw their own fiber offshore and are trying to do that inside of USA. Bright future for bonded tendon construction.Very cool--this is my new nugget of information for the day...
There's a pretty good general summary about this material here: https://www.basalt-rebar.com/
That's the whole deal with the concrete/construction/civil eng world - put steel rebar bonded tendons into your work and it pretty much guarantees you a complete replacement in 40 or 50 years. Concrete made with Portland Cement will shrink forever but the steel embedded in it wont. Eventually, micro cracks feed moisture to the steel, that then corrodes and the exfoliating oxide cracks the concrete some more.I was at a corrosion seminar at Purdue years ago, and the professor leading the class got pretty animated about a parking garage replacement on campus. The rebar in the decks had corroded causing spalling of concrete, to the point they were replacing the whole structure.
His concern was they were building the new garage to the the same spec with the same concrete and rebar as the failed garage. Sounds like non-metallic might be the way to go if it works.
You can attach the plastic ground wire to either the pinkbar, or your PEX water main.I wonder if you'd still need to attach the electrical UFFER ground to it.............
A section of interstate freeway in the Minneapolis area was rebuilt with stainless rebar and other corrosion resistant technologies. The highway is supposed to last 70 years. The thing is, they already had to do the same twenty year concrete repairs to that section of highway that all concrete highways seem to need in Minnesota.That's the whole deal with the concrete/construction/civil eng world - put steel rebar bonded tendons into your work and it pretty much guarantees you a complete replacement in 40 or 50 years. Concrete made with Portland Cement will shrink forever but the steel embedded in it wont. Eventually, micro cracks feed moisture to the steel, that then corrodes and the exfoliating oxide cracks the concrete some more.
Most of that is now e-glass. There is a TX company making basalt bar alongside their glass line, but mostly a lack of fiber production capacity in USA severely limits basalt (a far, far better fiber) in our market. There are plans (read bux) in place to fix that problem.The concrete contractor who redid my detached garage apron, and did the slab for my new garage, used composite rebar. Composite rebar is his standard unless there is a reason to use steel rebar.
Parking garages with metal rebar exist all over the place without issue.
coef thermal exp x 10to-6/degF A615=All the properties have to be taken into consideration including strength, stiffness, ductiltity, fatigue life, creep and relaxation, development length and bond, coefficient of thermal expansion, cost, and durability. Grade 60 rebar is a natural match for reinforced concrete, and is still easily the best choice in most all cases.
Corrosion of steel rebar is usually an indication of poor concrete. Just look at a good bridge deck concrete, which is nothing special and inexpensive. It takes between 125 and 350 years for chlorides to penetrate 2.5" of cover to reach the rebar and start corrosion in a modern bridge deck.
I would argue that is not the case, as both Florida and Quebec have banned coated rebar. Some studies show epoxy coated steel actually corrodes faster than bare steel.The use of epoxy coated, stainless, and non-ferrous rebar is solving a problem that we do not have in most design cases.
You call materials with VERY different coefficients of thermal expansion and difference in dimension over time giving a guarantee of failure in tension from the concrete matrix a "natural match"?Grade 60 rebar is a natural match for reinforced concrete, and is still easily the best choice in most all cases.
As I am sure you actually know but for some reason do not want to deal with is that the route of water into the rebar to corrode quickly is a function of the dimensional incompatibility of concrete vs. steel that WILL result in compressive failure due to poor modulus of elasticity of the matrix. It is easy to make relatively impervious concrete mixes and coatings, but clearly from the real world a lot more difficult to make a self-healing crack.Corrosion of steel rebar is usually an indication of poor concrete. Just look at a good bridge deck concrete, which is nothing special and inexpensive. It takes between 125 and 350 years for chlorides to penetrate 2.5" of cover to reach the rebar and start corrosion in a modern bridge deck.
