Compressed Air for the Casting/Forging Shed
Posted: Wed Jan 01, 2025 12:36 pm
Hey, I havnt posted anythiing in a little while, Ive been working on compressed air lines for the casting and forging shed, and I figured I'd show what Ive been working on, lol.
Ive been working on making air tools and modifying them to use at the sand molding bench for a while now, but since I only had a little 3 gallon pancake compressor that was horribly slow at pumping up, I just kinda wrote most of it off, and just kept ahold of all of the tools. Well, for christmas, I got a pair of new toys, which are air tools, so I figured what better time than to upgrade everything and do everything up, lol. The air tools are a pair of riveting guns, like the old ones they used to use to build bridges, ships, and steam boilers with, which the one is the actual probably 1920s-1930s riveter's gun, and the other is a rivet buster, so one to put the hot rivets in, and the other to remove them. Needless to say, these are jackhammers in every sense, and need a massive volume of air really quickly, so I set out to design a compressed air system to handle those in at least short bursts.
Well, I was out and about the one day over at my grandparent's house and driving up her driveway, her neighbor had an old air compressor setting out on the curb for someone to just take, the compressor itself had blew up (litterally), so I tore all of that off and hooked it up at the side of the sand molding bench as a buffer tank. It's a 20 gallon tank, and the air compressor Ive been using for the furnace and such has another 20 gallon tank on it.
Ive been casting out these blocks for a while out of aluminum, which I just machine up to make manifold blocks for compressed air, bases for lamps/lights, etc and hooked one up over the sand molding bench with a large pressure gauge so I can easily see how much pressure is in the system when turned on. The gauge is an old steam pressure gauge from a huber steam traction engine, which was made not too far from where I live, so it adds a bit of character to it too, lol.
Well, I found some air hoses that my dad had gotten at local auctions and had just been left in the back of the garage, so I started plumbing that in and getting it all routed in so that I could have compressed air running all throughout the shop, used one of the manifold blocks and put another pressure gauge on it out in the forging area for the riveter's gun, and ran it up and around the walls. I figured that going from the 3/8" hose to the 1/2" hose on the riveter's gun wouldnt work out so well, so I put the block in the middle of the shop, so both air tanks would supply it at once and give enough air to feed the larger hose all at once. It worked pretty well, but any other time, the ball valve just shuts that hose off and keeps it air tight, and plumbs all compressed air up to the buffer tank in the front of the shed next to the sand molding bench for the air tools at the molding bench.
I ran out of manifold blocks, but the hose runs up and around, and will come down by the door there, and be screwed to the side of the stud there with a quick connect sticking out the side of it so I can hook up air tools like die grinders when Im working at the post vise there, and also makes easy access for the hose to run out to run my oil burner for the foundry furnace too. There's a hole in the stud already drilled through that will have a hole drilled in the manifold block for it, and that runs out to a moisture/water seperator, and from there, out to the air compressor which will be outside in a dedicated air compressor cubby/enclosure on the end of the shed. I have sound deadening boards for that also to cut down on the noise from it. too.
But now instead of 3 gallons of compressed air, I have 40 gallons and it opens alot of options that were previously closed to me since I already cast out the matchplate vibrators and knee valve stuff from chastain's books, and have a homemade pneumatic sand rammer using a chipping hammer like Ive seen on here done, but it is straight through body vs the pistol grip style everyone else uses, so it's more like a conventional style pneumatic sand rammer, but with a 1" stroke instead of the 1 1/2" that normal ones have. I now have the capacity that I can just hit the trigger and leave it running for 10 mins and it'll only drop 20 psi on the pressure gauge and compressor would have to kick on again, so for doing up sand molds, it shouldnt need to kick the compressor on all but once or twice the whole time Im making up sand molds, lol. you can kinda see it hanging up on the wall in the pic over the sand molding bench. The blow gun has a mig tip in the end of it to restrict air flow and gives the perfect amount of volume and pressure to blow out sand molds easily without blowing them apart, so it really uses no real air at all tbh.
Ill need to machine up the knee valve still and attach it to the molding bench, but it looks pretty easy to do and shouldnt take more than a few hours to do tbh. Ill probably just go into town and get some rubber washers for a sink to use in it rather than cutting custom ones out and using his setup he had tho, which Ive heard many people say that the valves leak air, so thats why Im modifying a few things on the design of it, lol. I need to get some hose/pipe clips/clamps to hang the hoses up around the building also while Im there, I hit the ball valve on the wall with nothing connect to it and it shocks the hoses so hard that it'll throw the one off of the wall, so it really needs to be clamped in place on the wall, lol.
Other than that last manifold block and plumbing it out to the compressor shed, most of the compressed air system is done in the shed and I can already start using it. I do have a tiny tiny leak in the manifold block over the molding bench, but that manifold block/system is on a ball valve that gets shut off when Im done for the night anyways, and it usually takes a few hours for what's left in the lines to bleed off. Im pretty sure the leak is in the one air hose, so it should be easy enough to fix hopefully.
After all of this is done it's time to start on compressed air lines in the machine shop,which will be a piece of cake to say the least, but I have no manifold blocks left since Ive used them all, so I plan on just casting out a half a dozen of them when it gets nice out again.
Ive been working on making air tools and modifying them to use at the sand molding bench for a while now, but since I only had a little 3 gallon pancake compressor that was horribly slow at pumping up, I just kinda wrote most of it off, and just kept ahold of all of the tools. Well, for christmas, I got a pair of new toys, which are air tools, so I figured what better time than to upgrade everything and do everything up, lol. The air tools are a pair of riveting guns, like the old ones they used to use to build bridges, ships, and steam boilers with, which the one is the actual probably 1920s-1930s riveter's gun, and the other is a rivet buster, so one to put the hot rivets in, and the other to remove them. Needless to say, these are jackhammers in every sense, and need a massive volume of air really quickly, so I set out to design a compressed air system to handle those in at least short bursts.
Well, I was out and about the one day over at my grandparent's house and driving up her driveway, her neighbor had an old air compressor setting out on the curb for someone to just take, the compressor itself had blew up (litterally), so I tore all of that off and hooked it up at the side of the sand molding bench as a buffer tank. It's a 20 gallon tank, and the air compressor Ive been using for the furnace and such has another 20 gallon tank on it.
Ive been casting out these blocks for a while out of aluminum, which I just machine up to make manifold blocks for compressed air, bases for lamps/lights, etc and hooked one up over the sand molding bench with a large pressure gauge so I can easily see how much pressure is in the system when turned on. The gauge is an old steam pressure gauge from a huber steam traction engine, which was made not too far from where I live, so it adds a bit of character to it too, lol.
Well, I found some air hoses that my dad had gotten at local auctions and had just been left in the back of the garage, so I started plumbing that in and getting it all routed in so that I could have compressed air running all throughout the shop, used one of the manifold blocks and put another pressure gauge on it out in the forging area for the riveter's gun, and ran it up and around the walls. I figured that going from the 3/8" hose to the 1/2" hose on the riveter's gun wouldnt work out so well, so I put the block in the middle of the shop, so both air tanks would supply it at once and give enough air to feed the larger hose all at once. It worked pretty well, but any other time, the ball valve just shuts that hose off and keeps it air tight, and plumbs all compressed air up to the buffer tank in the front of the shed next to the sand molding bench for the air tools at the molding bench.
I ran out of manifold blocks, but the hose runs up and around, and will come down by the door there, and be screwed to the side of the stud there with a quick connect sticking out the side of it so I can hook up air tools like die grinders when Im working at the post vise there, and also makes easy access for the hose to run out to run my oil burner for the foundry furnace too. There's a hole in the stud already drilled through that will have a hole drilled in the manifold block for it, and that runs out to a moisture/water seperator, and from there, out to the air compressor which will be outside in a dedicated air compressor cubby/enclosure on the end of the shed. I have sound deadening boards for that also to cut down on the noise from it. too.
But now instead of 3 gallons of compressed air, I have 40 gallons and it opens alot of options that were previously closed to me since I already cast out the matchplate vibrators and knee valve stuff from chastain's books, and have a homemade pneumatic sand rammer using a chipping hammer like Ive seen on here done, but it is straight through body vs the pistol grip style everyone else uses, so it's more like a conventional style pneumatic sand rammer, but with a 1" stroke instead of the 1 1/2" that normal ones have. I now have the capacity that I can just hit the trigger and leave it running for 10 mins and it'll only drop 20 psi on the pressure gauge and compressor would have to kick on again, so for doing up sand molds, it shouldnt need to kick the compressor on all but once or twice the whole time Im making up sand molds, lol. you can kinda see it hanging up on the wall in the pic over the sand molding bench. The blow gun has a mig tip in the end of it to restrict air flow and gives the perfect amount of volume and pressure to blow out sand molds easily without blowing them apart, so it really uses no real air at all tbh.
Ill need to machine up the knee valve still and attach it to the molding bench, but it looks pretty easy to do and shouldnt take more than a few hours to do tbh. Ill probably just go into town and get some rubber washers for a sink to use in it rather than cutting custom ones out and using his setup he had tho, which Ive heard many people say that the valves leak air, so thats why Im modifying a few things on the design of it, lol. I need to get some hose/pipe clips/clamps to hang the hoses up around the building also while Im there, I hit the ball valve on the wall with nothing connect to it and it shocks the hoses so hard that it'll throw the one off of the wall, so it really needs to be clamped in place on the wall, lol.
Other than that last manifold block and plumbing it out to the compressor shed, most of the compressed air system is done in the shed and I can already start using it. I do have a tiny tiny leak in the manifold block over the molding bench, but that manifold block/system is on a ball valve that gets shut off when Im done for the night anyways, and it usually takes a few hours for what's left in the lines to bleed off. Im pretty sure the leak is in the one air hose, so it should be easy enough to fix hopefully.
After all of this is done it's time to start on compressed air lines in the machine shop,which will be a piece of cake to say the least, but I have no manifold blocks left since Ive used them all, so I plan on just casting out a half a dozen of them when it gets nice out again.