Guess this is a dead thread.
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madbilly wrote:....... but at least it has led to me posting for the first time in almost two years. I'll try and stay in touch better from now on.
epipete wrote:Does this suggest that you have returned from your french sojourn?
m100hoods wrote:I am keen to re ignite this thread and more importantly get the products available
Any help is much appreciated as it will result in B13 LAN hitting the road again by way I guess of a tribute to Tony
madbilly wrote:epipete wrote:Does this suggest that you have returned from your french sojourn?
Hi Pete! No I'm still here, currently having fun with CV joint boots and ball joints. Is my memory playing tricks on me or has your forum location always Cyprus? I can't remember what you said at the last BOLLECKS meet I made it to - I see there have been a few since then too.
GeoffSmith wrote:Pete: BOLLECKS to Cyprus. Pinky: BOLLECKS to Indochina (according to Rambo). Me: BOLLECKS to Spain for another month next week. Well, you started it Will!
I gather that in the past a couple of fellow Elan M100 owners have spoken to you about replicating the OEM suspension setup. One of them (John) said that he'd previously brough your the dampers and springs for measuring and you had all the necessary info (damping rates, dimensions, springfo (damping rates, dimensions, spring rates, etc) for replicating them, is this still the case? Even if it isn't we (fellow owners) have measurements, but our dyno graph for the rear damper is for a used unit so may be a bit tired. If you'd be interested in replicating this suspension for us please let me know, along with an indication of price per unit.
Things at Leda have moved on a little since your last contact it would seem. Matt was made redundant about 3 years ago, and EPM stopped trading Leda products and services about 2.5 years ago. We bought Leda and HBE from EPM 2 years ago and moved everything from Draycot to Newark, and have been building the business back up ever since. Currently we seem to be mainly manufacturing dampers for historic race, sports and saloon cars, and BMW Mini's, but are open to looking at everything.
If you still want Leda to look at replicating the OEM set up for the Elan M100, then we would need a damper and spring set to measure and dyno from scratch as there are no records of any previous work. We find it best to use our own dyno rather than results from another dyno as we can control and log the run conditions and therefore know that our correlation is good.
We're pretty sure we know the spring specs, it's the dampers that are mower pressing. Front dampers are still available at a sensible price for now but rears are obsolete. If I got you a pair of dampers next week how long would it take you to dyno then and produce non adjustable replicas, and any idea how much they would cost? I can give you dimensions and the dyno graphs we have.
I see perhaps two options for build of front or rear dampers that replicate
the performance characteristics of the originals, either a twin tube steel
bodied non-adjustable oil filled damper under the Leda banner, or a mono
tube steel bodied non-adjustable gas/oil damper under the Harvey Bailey
Engineering banner as we own both companies.
Which type of damper is decided upon would be dictated by testing of an OEM
damper in our dyno, and any dyno information that can be passed on to us
from other dyno work. Both types of damper have their pros, cons and
foibles, but what it would fall to is which would produce the nearest
replication of the OEM damper.
If a twin tube design were best then we would manufacture using Leda parts,
but if a monotube were applicable then we would manufacture using Bilstein
parts and in conjunction with Bilstein UK. Harvey Bailey Engineering
produces a lot of special and one-off dampers in this way, and has done so
for over 20 years. We give Bilstein UK a lot of business so they will work
with us on certain projects where we undertake and fund the R&D work that
they are not keen to do themselves.
Both types of damper would be repairable and servicable, and the Leda damper
could likely be made with adjustable damping, and upgradeable to include
gas/oil fill and multiple bump adjusters.
As for cost, an oil filled twin tube damper excluding spring would cost in
the region of £270 each, and a monotube gas/oil damper about £220 each for a
single pair of say rear dampers. If this is all absolutely possible
(dependent upon test results), then the more pairs that are ordered, the
cheaper they would become within reason, perhaps up to 25% cheaper for 4 or
more pairs.
What we need now to proceed is OE units to test and dimension, and any
information on dyno work by others, spring information, perhaps a look at a
car, indeed anything and everything that will help. We can also dyno other
manufacturers dampers if you require, and see how close to OE they are, they
may be very close, or not at all! We tend to charge Dyno work at our
£25/hour labour rate, but as mentioned at the top of this email, we could
manage a certain amount of dyno work under our R&D budget.
As an asside to this, we also happen to know one of the designers/engineers
that worked on the M100 back in the day, and may be able to gleen some
helpful information from that source.
Thanks for your detailed and thorough answer and taking the time to do so. You are right that we've spoken to other manufacturers one of whom developed a set but there were issues with how well they matched the OEM setup which is one reason I decided to look into other options again, however the prices you've indicated are about twice what this project was aiming for so unfortunately I don't think your suggestions are what we're after. There was another project that was developing a higher quality road and track setup which successfully completed using a twin-tube arrangement and that is in the price range you have indicated; in case anyone wants to investigate another option I shall pass on your proposal to the other members.
I'm contacting you to follow up some development work that Tony Wright was working with you on to produce replacement dampers for the Elan M100 that could be set as close to OEM settings as possible. He tells me that you got the front dampers spot on as were your springs for the front and rear but the rear dampers still needed some work, work that unfortunately he has been unable to progress due to his business commitments.
I want to replace my suspension by the end of July and was watching this development with keen interest so if possible I would like to see it through to conclusion. I can understand that you may have become frustrated with it given nothing has really happened for the last 18 months or so, but I can assure you there is a very real need for this kit, particularly the rear dampers as the OEM units are no longer available.
Is further development of the rear dampers something you would be prepared to undertake to produce the whole kit? I don't know what you would need to do to the design to match the OEM setup but I assume it is the valving. If you are reluctant to match the OEM setup I'd be interested to know why, whatever the reason.
I know you also have an existing design of front and rear dampers for the M100, if possible I'd like to see the dyno graphs and dimensions for those units please so I can understand the effect of mixing the sets or just using your existing kit.
Whatever your response I still want to change my suspension so please can you tell me your prices for your dampers (both your normal version and the OEM matching version you were developing for Tony), what material/coating options etc there are for these, and the cost of springs to match each setup (so whatever you recommend for use with your normal setup and the ones to match the OEM matching dampers).
Following the development with Tony we are now supplying revised valving on the units and to date we have had no adverse comments.
Probably a good idea to give me a ring.
Is your new setup the same as what Tony has or is it a development of your normal setup? I presume the prices are the same as what's online for your normal setup? What about springs?
Thank you for the explanation of where the work with Tony Wright got to. Would you be able to send me your dyno graph for your latest version of the OEM-matching dampers please so that I can replace the out of date ones? You mentioned on the phone the spring rates you were using rates from Eibach. I looked up this info on our owners' wiki and I these rates (Front 290 lb/inch Rear 150 lb/inch) were calculated by another owner from data supplied by Eibach, but weren't actually spring measurements from Eibach. Another firm measured the springs for Tony's project and provided this information:
FRONT B100C0086F Yellow/Yellow/Green
Diameter of Wire d (inches) 0.531”
Inside Coil Diameter(inches) 3.298”
Outside Coil Diameter(Inches) 4.360”
Number of Coils: Total 8.5
Free Length (inches): 10.690”
Actual Load Rate Measured on Test (Pounds per inch): 300 Lbs / IN
Loads at Testing:
10.000” = 186 Lbs
9.000” = 485 Lbs
8.000” = 785 Lbs
7.000” = 1087 Lbs
6.000” = 1390 Lbs
Remarks
BOTH ENDS CLOSED & GROUND FLAT & SQUARE
TIPS JUST TOUCHING APPROX THICHNESS 50%
EPC BLACK WITH CC = 2 X YELLOW 1 X GREEN STRIPES
REAR B100D0071F Green/Yellow/White
Diameter of Wire d (inches) 0.406”
Inside Coil Diameter (inches) 3.338”
Outside Coil Diameter(Inches) 4.150”
Number of Coils Total 6.6
Free Length (inches) 9.490”
Load Rate (Pounds per inch) Actual Load Rate Measured on Test (Pounds per inch) 144 Lbs / IN
Loads at Testing
9.000” = 65 Lbs
8.000” = 210 Lbs
7.000” = 354 Lbs
6.000” = 495 Lbs
5.000” = 642 Lbs
Remarks
BOTH ENDS CLOSED & GROUND FLAT & SQUARE
TIPS JUST TOUCHING APPROX THICHNESS 40%
EPC BLACK WITH CC = 1x GREEN 1x YELLOW 1x WHITE
STRIPES
I've had another look at the latest rear damper dyno graph you sent me and I'm a bit confused, it looks like you've designed it so that it can never be setup stiffer than oem, only the same or softer, is this right? Also the amplitude of the dyno is different on this graph from the others, 8.64"/s on softest and 6.65"/s on hardest, why was this done and how would this affect how the damper appears on the graph?
They are only ever tested at one speed 12" a second as this is what we have both dynos set at & we never alter them. The damping can be altered to stiffer than the oe one & our current lead times are 3-4 weeks once the order is placed.
I'm looking to replace the suspension on my 90s Lotus Elan and would like to have it original but the rear dampers are no longer available. Please can you tell me what setting on your dampers is closest to the OEM setup, and what the dimensions, spring rates etc are, as well as some dyno outputs charts for the proposed setting if possible? For info, here's the OEM setup, if you can give me measurements to compare against I'd appreciate it.
Our units are adjustable in damping rate, so the spec can not be 100% compared to o/e dampers as in lengths and rates, our length are shorter than o/e due to the extra space needed for the adjustment control and the fact they are designed for cars which can be lowered from original spec, we do not supply springs for this application, the dampers we supply are made to take o/e size springs or can be changed to accept 2.25" i/d race type springs
Damping rates [snip as irrelevant] unfortunately we do not hand out this type of data, on these applications our min setting is lower than o/e and our max setting is higher that o/e, howeverthis is not that important, it is the fact that the ration between bump and rebound is correct for the application, as the units are not independently adjustable for bump and rebound, we feel that we have the ratio correct and have never recieved any complaints from already supplied customers are specialist dealers, however again we do not give out this information due to the cost of development etc asother who will copy.
our units are £110 each + vat fronts in stock, rears 2-3 weeks
I'm sure your kit is good quality and will be totally satisfactory to me if I set it up right and get suitable springs. Please can you give me a few more details about your dampers for the M100, for instance what they're made from, the range of adjustment (damping and ride height), location of adjustment knob, etc.
The units are made from steel
The body is threaded so allow for a max drop from std of 30mm
The damping rate,, its all about the ratio, you can not give a % increase from min to max, damping rates dont work like that
Okay, I understand that the bump/rebound ratio is fixed and that you won't tell me your max and min settings, but can you tell me the ratio? Can you also tell me the piston travel on the front and rear dampers and how far the bump stop is set from the top, or if it's adjustable? A picture would help. A dyno graph for each damper at its hardest and softest setting would be ideal.
Will you make springs to given specs or do you just supply the ones in your catalogue? What is the warranty on your parts?
Forgive me for asking, but... you are asking alot of technical questions with regards to a basic replacment damper for a road car, what are you using your car for and what problems have you experienced with other makes, i think you may be looking a bit too deeply into what is just a basic replacment unit for a road car application, however if you are racing the car and trying to get more out of the units, then i am sure we can help, but the damping rate for a road application to a race car would not be the same at all, as ride quality etc is not taken into account as we do on our road applications.
Yes, I'm asking a lot of technical questions because I'm an engineer, it's in my nature to check the detail and I want to make sure I get the right thing.
I know AVO make good kit and I'm sure the kit you've put together for the Elan is a great for the purposes of improving handling characteristics to extract maximum speed from the car - plenty of other owners have said they like the AVO kit. My (and the project's) objective is not to find the best suspension set up to do this, the objective is to be able to source replacement dampers that match or get as near as possible to the OEM setup so that we can maintain the combination of ride and handling that it came with from the factory. The OEM dampers are no longer available and the front ones will eventually be sold out so we need to find an alternative. Ideally the alternative would be an off the shelf setup (like AVO's) that required little or no special adjustment, and as a bonus it could provide the option of lowering/hardening the ride for when owners' want to do that. If we knew what "click" setting to set the AVO dampers to then it would be easy. That's all I'm trying to find out.
To answer your questions - I use my car for driving on the road only, I've never driven it on track but that doesn't mean I won't want to in the future. I haven't tried other makes, I've just got worn OEM dampers for which there is no direct replacement.
[Snipped as irrelevant]We are at present out of stock of these units, however i have a batch coming through in the next few days
i will get a graph done and report back to you the damping rates we have.
the graphs dont really show anything as we dont know what the stroke of the test rig is set too or the speed of the damper
however, to compare units like for like you must make sure the scales are the same eg our units are tested over 2" stroke and in lbs force and at 1 - 10 inches per second
so at 10" per second i can tell you are dampers are
front bump min 80lbs max 200lbs rebound min 150lbs max 500lbs
rears bump min 80lbs max 200lbs rebound min 50lbs max 400lbs
however this will not be true at say 3" per second etc you build into you damper what you think is needed for ie ride quality or out right performace, the lotus valving is based more on ride quality as the damping rate does not really increase that much until you get around the 6/7/8 inch per second area
so your gaz graphs are showing a damper at one particular point only, which we do not know what the point is to compare to ours
i hope this is a little more of help, but dont look too deeply into a fast road damper valving, in short ours are valved with ride quality in mind, other may not be.
The front Gaz dampers are very good. Dimensional and damping control are
perfect. They also supplied springs which are perfect both front & rear.
The problem is the rear dampers where the valving is wrong. I sent them
back once but they are still no nearer. The dynos show this -- I posted
the OEM and Gaz dynos on LEC so you can look at them -- note that the
left and right sides of the Gaz rears are nearly vertical instead of
curving in smoothly like the OEM.
If you set them firm enough that the rear balances well with the fronts
in a corner then the rear 'jiggles' over bumps. If you set them soft
enough to stop them jiggling over bumps then the rear feels loose in a
corner.
So what should you do ? The Protechs are not dimensionally correct and
nobody knows what settings are closest to OEM. AVO do replacements but
again no one knows what settings are closest to OEM. The Nitrons are
expensive and again no one really knows what settings to use. They are
also using much harder spring rates.
Observations / Suggestions:
1. The biggest difference came from putting in new springs -- my ride
height was well down both ends. None of the original dampers were
leaking and hand compressing/extending them felt very similar to the
brand new dampers -- not scientific I know.
2. Order front & rear springs from Gaz (or anywhere -- the specs are on
the LEC thread) along with a set of my Gaz OEM front dampers (David
Lyons knows these).
3. That then leaves what to do with the rear dampers. You might be able
stay with the OEMs you have if they are in reasonable condition. The
other option is to get a set of rear AVO dampers and ask them to supply
a dyno of the dampers with them. You (or I) can then calculate from the
dyno what setting is closest to OEM.
4. If you haven't got dyno data then you can do a rough & ready test
with a vice a couple of heavy weights & a stop watch. Put the damper in
the vice upside down and fully compressed. Attach say a 50lb weight and
then time how long it takes to go from fully compressed to fully
extended.
Then repeat with a 100lb weight and time. Then put the damper upright
fully extended and time how long to achieve full compression with both
weights. If you do this with a used (but not leaking) set of OEMs and
then set the AVO rears to where you obtain the same times as the OEM
then you'll be very close. I would then set the AVOs a click or 2 harder
assuming the OEMs were worn and the oil had thinned. Then drive it and
see what it feels like.
I'm assuming in all this that you want something that retains OEM ride
height and characteristics.
I've asked [Gaz] for the latest dyno graph which hopefully he'll send to me but he said that when MaxF is set to 240 then the MinF will be 90ish (I can't remember exactly), so not too far away - from my calcs this is much closer than would have been possible with the damper for which the dyno graph above is for. He seems to think he supplied you with a pair of dampers to this new spec, so if you're not happy with this then perhaps the fact the OEM damper that was dynoed was used rather than brand new has given us misleading info.
Spring rates, he said he was supplying the rates that Eibach supplied (which I think are here http://wikilec.9600.org/index.php/Springs) - is this what you were expecting or should he be using the Turton's rates?
I don't think so -- the OEM rears we sent to Gaz were virtually brand
new and if you compare the OEM rear dyno with the Gaz rear dyno you can
see that the sides of the Gaz graph are vertical lines rather than
tapering gradually in like the OEM -- particularly noticeable at lower
left and lower right quadrants. Compare:
http://kact.co.uk/lec/susp/oem_rear_C10 ... dyno_t.jpg
http://kact.co.uk/lec/susp/gaz_rear_dyno.jpg
The shapes are wrong -- too squared off.
I wrote the Wikilec page on springs and the parameters there are as
measured by Turtons -- I sent brand new front & rear Lotus S2 springs to
them. The springs David Lyons did for me to that spec. for the project
are perfect.
To my knowledge Eibach did their springs based on an SE (290 frt, 150
rear) whereas I did them based on an S2 (300 frt, 144 rr -- probably
actually 145 as springs usually go in 5lb steps) since Lotus recommended
using the S2 springs & dampers for all non-USA SE.
I can see the dyno graph for the gaz rear damper is squared off compared with the OEM one, yet so is the dyno graph for the front gaz damper so is there not more to it?
The Gaz fronts are not as squared off as the rears -- I agree they
aren't quite as rounded as the OEM but the lower right quadrant is
nearly perfect.
Additionally when you calculate the closest click on the Gaz front
damper to OEM for MaxF and then do it for MinF then they are the 1
click apart on the fronts but 7 clicks apart on the rears. So the Gaz
fronts can be set very close to the MaxF and MinF of the OEMs whereas
you can't on the rears.
Apologies but it occurred to me after posting that you might not be very
used to reading dynos. On the Gaz dynos there are 2 graphs -- inner and
outer.
The inner corresponds to the damper set to 0 clicks (softest), the outer
is the damper set to max clicks (21). If you run the MaxF & MinF
calculation to find the closest click setting on a Gaz front to OEM then
you'll find it is about 6 clicks down from Max. This puts the damper at
71% towards maximum firmness.
Now go back to the Gaz dyno and imagine what the graph looks like with a
line that is 71% towards the outer graph from inner graph.
So about 30% of the straight vertical line at the sides is removed both
above and below the X axis. You should then be able to see that it is
very close to the OEM graph in 3 quadrants and not bad in the lower
left.
I've attached the latest dyno graph from Gaz, please tell me what you see.
Gaz dyno:
Softest Setting MaxF = 77 MinF = -161
Hardest Setting MaxF = 98 MinF = -236
OEM MaxF = 73 MinF = -238
http://kact.co.uk/lec/susp/oem_rear_C10 ... dyno_t.jpg
So the MaxF of the Gaz softest setting is close to OEM and the MinF of
the Gaz hardest setting is close to OEM but there is no setting on the
Gaz damper that gets both MaxF & MinF close to OEM
Is that what you see?
Yep, it looks worse than the previous one, which makes me think that there mut be more to the performance than what's shown on the graph - is one graph sufficient, do they need to be done at different rates? One oddity I've noticed is that the stroke/amplitude (?) of the dyno is shorter on this latest graph than the others. Also this latest one can't be made stiffer than OEM, only softer, which is odd.
I've looked at the latest Gaz dyno again and I think I got it wrong. It
looks as if the 2 dyno curves were done at 8 clicks and 11 clicks (not
at min & max) as I first thought. See upper left: Piston Comp & Reb
This puts a different light on the damper entirely. If you set the
damper at say 9 clicks then my calculation goes:
MaxF = 98 - 77 = 21 / 3 clicks equals 7 per click
Therefore at 9 clicks 77 + 7 = 84
OEM is 73 so: 84 - 73 = 11 / 73 X 100 = +15%
MinF = 236 - 161 = 75 / 3 clicks = 25 per click
At 9 clicks 161 + 25 = 186
OEM is 238 so: 186 - 238 = -52 / 238 X 100 = -22%
At 10 clicks it goes:
MaxF 77 + 2(7) = 91
OEM is 73 so: 91 - 73 = 18 / 73 X 100 = +24.65%
MinF 161 + 2(25) = 211
OEM is 238 so: 211 - 238 = -27 / 238 = -11.3%
Not great as ideally you'd want both values well under 10% variation
from OEM at some click setting but not as bad as I first thought. For
reference the Gaz front David did for my effort was within 4% of both
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