It's up to you but I personally would use the less dense stuff...and I would use a denser core such as ply or chipboard instead of the homasote unless weight is an issue. PaulHello, I’m thinking about switching my back wall from 24” of 6000 GFR to hangers. I have a bunch of Armstrong ceiling tiles that are essentially 1” 703 or 705 with some sort of decorative binder on the front and notched edges. Could I glue this to homasote 440 to make effective hangers, or should I use thicker less dense insulation like Roxul 60 (I have some of this too). Thanks!
Acoustic hangers
Originally posted at johnlsayers.com, topic 12365.
Thanks Paul! So R-13 and OSB would work better than 703 or Roxul 60 and homasote? Score one for the cheapskates! To attach the R13 to the OSB, I guess I would just drape the R13 over the OSB and staple fabric around it to keep it in place without compressing. I’m still on the fence really. Getting kind of burnt out on acoustic testing.It's up to you but I personally would use the less dense stuff...and I would use a denser core such as ply or chipboard instead of the homasote unless weight is an issue.
OSB is ok, chipboard is what Newell recommends. The way I do it is use large circular washers and screws to attach the insulation to the boards, it doesn't matter too much if it compresses a little. As far as I can tell, this is also the way Hidley did it. If you want to spend a little more then thick Dacron (polyester wadding) can be used either in place of or wrapped over the insulation, which makes working with them a little nicer since it's less itchy and suffocating. To hang them you could use chains but I have found using eyelet hooks in the top of the cores with another hook in the beam where they are to be hung and then a carabiner to join the two works well, and pretty cheap. This makes them easy to take down if ever you need to. PaulThanks Paul! So R-13 and OSB would work better than 703 or Roxul 60 and homasote? Score one for the cheapskates! To attach the R13 to the OSB, I guess I would just drape the R13 over the OSB and staple fabric around it to keep it in place without compressing. I’m still on the fence really. Getting kind of burnt out on acoustic testing.It's up to you but I personally would use the less dense stuff...and I would use a denser core such as ply or chipboard instead of the homasote unless weight is an issue.
Chipboard = Particleboard?
After some googling, it looks like it is the same thing.
I can't find 1/2" particle board anywhere at the big box stores. I guess I could order it from a place that specializes in sheet goods, or I could use 3/4". That would be very heavy. 3/4" 4x8 are $22 USD.
Does the width and rigidity of the panels matter or just the mass? I'd use 1/8" hardboard if it doesn't really matter.
A 4x8 sheet of:
1/8" hardboard weighs 28 lbs.
1/2" particle board weighs about 72 lbs.
3/4" particle board weighs 85 lbs
1/2" Homasote 440 weighs 38 lbs
I could save money by using a combination of materials, since I already have some 8' pieces of 1/2" and 3/4" plywood, MDF, Hardboard, and Melamine.
WTB lab test results with different cores and insulation!
Hello, I am interested in this answer, how do you think this can be calculated? in relation to the hangerI just want to bring it up Does anyone have technical infos about how Rachat de crédit trésorerie travaux a basshanger work? Is it just a porous absorber with high destiny? Why hanging? And when hanging what effekt would be used for absorption? Why wrap it with insulation? damping vibrations? Or does anyone know a book about these topic? Please help me to bring light into the dark. cheers Mikai still don`t understand the way hangers work. i another forum i read something about a variable impedance trap. Is a hanger something like this? how does it work, and how can you calculate it? cheers Mika
technically "hangers" are a type of broadband absorber - the low density fiberboard provides both absorption and waveguide functions. the waveguide effect lengthens the path the energy needs to travel (thus approximating a deeper cavity) while also interfering because of the incident angle on the absorptive nature of the fiberboard. obviously lined cavity and insulation attached to the panels provide velocity absorption, and on the panels also damping action for any resonance.
i have somewhere in my archive some papers that were the results of some limited examination on the details of how all this work - pressure gradients, etc but it's buried somewhere. as far as i know, Jeff Cooper (genius/recording studio designer/acoustician) has a fairly straight forward formula to estimating the effect of these assemblies. he has an excellent book on the overall subject which includes the design. https://www.amazon.com/Building-Recordi ... 0916899004
Homasote Soundboard 440 is the ideal panel product, however, there are not many options to obtain it outside of the North America. similar density products seem to be in short supply elsewhere in the world. sometimes the right fiberboard can be found in older style thumbtack boards or cubicle partitions. also, a dense triple layer 15mm cardboard approximates the mass of the fiberboard but not the gas flow rate.
Hello all
Bit newbie on this forum but it impressed me when I've read few thread so far.
I'm building a big listening room in my basement (36' x 20' x 7,5'). I know, I miss ceiling height but I can't do much to change that.
I'm reviving this thread for 2 questions
1- is there somebody that went from let say: between 16 to 24 inchs with 10inch airgap rearwall broadband absorber to those acoustic hung DIY panel?
comments or better yet, measurement?
2- I'm from Canada and we have a product that seem similar to Hemasote 440. it is lighter and serve the same purpose. only come in 3/4" thick tho. Sonopan.
https://sonopan.com/
Any though on this should I go the hanger option.
Thanks,
Homasote is not needed or even advisable (despite the numerous claims on this forum of it being some sort of acoustic gold dust) the way which the hangers works means that the core should be as dense and damped as possible. 18mm (~3/4") plywood or chipboard with a bitumen dead sheet (or similar) stapled to it, wrapped in fibre will work much better as a wave guide. You want them to be as wide and long as possible, if you want them to have a significant effect for low frequencies then we're talking 1.2m wide and as long/high as your room.Hello all Bit newbie on this forum but it impressed me when I've read few thread so far. I'm building a big listening room in my basement (36' x 20' x 7,5'). I know, I miss ceiling height but I can't do much to change that. I'm reviving this thread for 2 questions 1- is there somebody that went from let say: between 16 to 24 inchs with 10inch airgap rearwall broadband absorber to those acoustic hung DIY panel? comments or better yet, measurement? 2- I'm from Canada and we have a product that seem similar to Hemasote 440. it is lighter and serve the same purpose. only come in 3/4" thick tho. Sonopan. https://sonopan.com/ Any though on this should I go the hanger option. Thanks,
There is a paper done on the hangers, it tells you how to approximate the frequency range of absorption, I've posted this numerous times: https://www.academia.edu/27385637/A_Stu ... GqXDhZmvhk the reason they need to hang is so that the vibrations don't transmit into the room shell. the reason for the insulation is because that's what does the absorption, not the panel core itself. The panel cores act like wave guides. there is also a small horn effect. But, the panel cores without insulation have almost no effect on reducing decay rates, will only offer some reflection control via deflection. the hangers are only part of the whole system, they work best when used in front of a diaphragmatic inner shell. they work in a similar manner as lined ducts, or baffled silencer boxes, just on a larger scale and for a different purpose. the best book on the subject is Philip Newell's "Recording Studio Design" where they are mentioned in various chapters as well as a whole appendix written on them. But, the linked paper will tell you all you need to know.Hello, I am interested in this answer, how do you think this can be calculated? in relation to the hangerI just want to bring it up Does anyone have technical infos about how Rachat de crédit trésorerie travaux a basshanger work? Is it just a porous absorber with high destiny? Why hanging? And when hanging what effekt would be used for absorption? Why wrap it with insulation? damping vibrations? Or does anyone know a book about these topic? Please help me to bring light into the dark. cheers Mikai still don`t understand the way hangers work. i another forum i read something about a variable impedance trap. Is a hanger something like this? how does it work, and how can you calculate it? cheers Mika
Thanks for the quick reply.
I'll build few prototype for my first side reflection and go from there.
3/4'' chipboard it will be :)
If they work great, I'll start the rear wall project.
For the side walls they are typically not as wide, and angled at approx 20 degrees with the leading edge towards the speakers. The width of the panels depends on how low you want to absorb, so work out your width mode and go from there. Let us know how you get onThanks for the quick reply. I'll build few prototype for my first side reflection and go from there. 3/4'' chipboard it will be :) If they work great, I'll start the rear wall project.
I created a dynamic Sketchup component based upon John's design in the second post of this thread.
In Sketchup's 3D Warehouse search for "Acoustic Hanger" or alternatively go to https://3dwarehouse.sketchup.com/model/e3438d42-a810-47f8-8ec4-3b7f7a82d2df/Acoustic-Hanger
or you could use mine which creates an array of them plus supports angling depth.
Update:
Did 9 Newell style absorber on my ceilling. (a tad more than the first 1/3 of my room)
Room is 19' wide by 39' long
Ceiling is 8' (floor height, bottom of the joist are more like 7'9'')
Used the staplegun to attach R12 on my main floor.
All of the ceiling has been treated this way even if no airgap between the fiberglass and the ceilling was possible.
this single layer of fiberglass start to be really effective above 400hz.
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For the trap, I used 5/8 chipboard covered with R12 insolation batt on both side (fluffy).
spaced 16'' appart and the whole width of my room (about 17' since I can't put trap where my HVAC duct are passing)
panel are 24'' long and disposed at an angle of about 30degree.
Can't really post good measurement since the room is still in construction.
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https://drive.google.com/file/d/18eH73S ... sp=sharing
this first pic show the room from the rear before the trap where installed
https://drive.google.com/file/d/18fRdT6 ... sp=sharing
this pic show the R12 fiberglass between joist across all of the room
https://drive.google.com/file/d/18kOy-I ... sp=sharing
this pic show the panel from the side. Yes, I do miss 8'' to complete the fiberglass layer, will be added later.
https://drive.google.com/file/d/18rXQT4 ... sp=sharing
more panel view.