Anglin's Racer Build and History

Documenting your big project with photos/videos? Have photos/videos to share of anything Merkur related? Place your links to photos and videos here. Please - Merkurs and Merkur-related pictures only. Cosworths welcome!!
Carlisle and event related pictures are to be placed in the relevant section under 'Events'.
Merkur Club web site
anglin
Level 7
Level 7
Posts: 2456
Joined: Thu Apr 22, 2004 3:20 pm
Location: Hartford, CT

Post by anglin »

yottabit wrote:I'm in machining 2 at my school and I often take our machines for granted. Lightening that strut brace made me laugh. Too bad you don't have power feed!
Yeah, that job sucked. The slots were long and the mill table travel was short. It was more to learn about running the machine than it was about actually reducing the weight. It was a good task because I did learn a lot and reduced the weight of the car by 1.04 lbs!
You're use of lightweight stuff is ridiculous. I feel stupid making my exhaust out of aluminized steel now. I think maybe I should make the turbo-back titanium with an aluminum tailpipe... :P
You can't use titanium with that much exhaust heat at the turbo. It has to be under about 600 degress F before you should use Ti because the temperature will start to cause the material to break down. With that in mind, I have thoughts floating around in my head about a 3-section exhaust system that starts with 321 stainless, then switches to titanium and then the back half is aluminum. Or, I could just make a side-exhaust stainless exhaust and forget about all of that!
Any clue when you get to come back from overseas? Good luck anyways, I look forward to seeing more of your work!
I'll be home at the end of this year, if all goes well. If things get stupid, it may be next year.

I'm looking forward to doing more work and taking more pictures!
Anglin email: - anglin at mc2racing.com
www.mc2racing.com
anglin
Level 7
Level 7
Posts: 2456
Joined: Thu Apr 22, 2004 3:20 pm
Location: Hartford, CT

Post by anglin »

All,

I'm back again with updates. I don't know that this one applies perfectly to the topic, but it is a project I am working on. In spite of the fact that I am 6400 miles from my home, I can still work on this project because I did a lot of the physical work at home prior to leaving. Now I have to order a few parts and pick out the correct epoxy.

I've been working on these carbon fiber shock tower braces for a while. This is just about the blingy-est I could ever make a part since it has carbon fiber, machined stainless steel and rod ends. When I mentioned this project previously Ray used the popping-eyes emoticon so I had to take this picture.

Image

Here are the raw tubes prior to being machined to proper length.

Image

It took me forever to figure out how I was going to get the ends square to my satisfaction without paying some one. So, I poked around in my mill fixtures and discovered an old V-block. It worked so well. Figuring this one out added a new skill to my fabrication skillz toolbox. Check the flying carbon shavings! (This will kill a sharp tool in a hurry, BTW.)

Image

With the tubes prepped, the inserts had to be completed. The 304 stainless inserts should have plenty-o-surface area to react all the forces they will be seeing. I had machine shop take the extra measure of hollowing the pieces out to keep weight to a minimum.

Image

After everything was machined a test fit was completed just to be sure everything was going to work out well.

Image

With the test fit complete, the insert was epoxied into place.

Image

So, why am I bringing this thread up again right now? Well, I was considering having the rod ends and epoxy sent from the supplier right to my address in Iraq and having Connie send over the inserts and the carbon tubes and assembling them right here in the desert. I don't know how sensible that really is, but it the idea of it is definitely entertaining. At the very least, I'll have everything waiting on me when I get home in November (or whenever).
Anglin email: - anglin at mc2racing.com
www.mc2racing.com
JediTalen
Level 3
Level 3
Posts: 266
Joined: Tue Sep 13, 2005 6:56 pm
Location: Bummertown, Washington

Post by JediTalen »

:notworthy
No-really I can stop bringing home XR4's whenever I want....

I um......sorta.....um.....like....have seven now.....and a couple Scorpios....
User avatar
Ray
Level 7
Level 7
Posts: 4338
Joined: Sun Oct 24, 2004 10:40 am
Location: CT, USA

Post by Ray »

Anglin what are the chances that i could use one of these rods on the front of my car with spherical rod ends threaded into the inserts? i'd have to weld up the tabs to fit on my custom strut tops but i think it's doable.
-Ray
1985 Ford F150 - Tow Missile
1985 Merkur XR4Ti -#141 CP "Miss Daisy"
2005 Subaru LGT
http://www.cartct.com
anglin
Level 7
Level 7
Posts: 2456
Joined: Thu Apr 22, 2004 3:20 pm
Location: Hartford, CT

Post by anglin »

demonfire wrote:Anglin what are the chances that i could use one of these rods on the front of my car with spherical rod ends threaded into the inserts?
The problem would be the engine, I'm sure. The aftermarket shock tower brace design has a couple bends in it that allow it to pass the intake manifold. My straight tube won't work. If you had a completely different intake setup, it might work fine. If I had an XR4Ti nearby I would check if it would work for certain with nothing above the level of the valve cover.

At any rate, you have me thinking. I think I am going to have to email a carbon supplier tonight...
Anglin email: - anglin at mc2racing.com
www.mc2racing.com
anglin
Level 7
Level 7
Posts: 2456
Joined: Thu Apr 22, 2004 3:20 pm
Location: Hartford, CT

Post by anglin »

anglin wrote:At any rate, you have me thinking. I think I am going to have to email a carbon supplier tonight...
The carbon fiber supplier is apparently on a long hiatus. I've emailed multple times and haven't received a reply.

I'm back at home, as you know, and I'm back at it. I've spent the last 58 days working hard on house projects and I've whittled that list down to nothing. I got so far along with them that I finally felt okay to go get my road car running which I did today for the second time. It should stay running this time. I gotta get a bunch of miles under its belt in the next few weeks to get some proof of reliability before school starts up again in January. Once I'm satisfied with the progress on my road car (no small task, I've got quite a to-do list for that car if it is going to be track-worthy for this summer), then it is on to the racer projects.

Now that I am home, I feel like I can better plan my moves for the racer. I get to complete the Cosworth bumper installation and prototyping of the bumper "adapter" which I was in the middle of when I left for southwest Asia. After that I'll be moving on to the next revision of the suspension. It hasn't been revised since 2000 and we've come a long way with availabilty since then. I've got a few tricks up my sleeve for those projects too.

So, that's all I have for now; just post whoring this thread back to the top. There are pictures coming soon enough.
Anglin email: - anglin at mc2racing.com
www.mc2racing.com
MerkXRTurbo
Level 7
Level 7
Posts: 4612
Joined: Mon May 17, 2004 11:08 pm
Location: Vancouver, WA

Post by MerkXRTurbo »

anglin wrote:This will kill a sharp tool in a hurry, BTW.
Really? I wasn't aware that CF was like that, as I've never worked with it. Will it kill carbide bits quickly, too? Could you use a water jet?
3" mandrel bent exhaust, Ported/Polished head, 1.89/1.57 valves, Gutted uppper/Knife edge lower intake, T3/T4, LA3, Big VAM, Cold air intake, 40bob header, Gillis valve, Forge BOV, Mustang SVO T5, Conquest intercooler, 20psi.
anglin
Level 7
Level 7
Posts: 2456
Joined: Thu Apr 22, 2004 3:20 pm
Location: Hartford, CT

Post by anglin »

MerkXRTurbo wrote:Really? I wasn't aware that CF was like that, as I've never worked with it. Will it kill carbide bits quickly, too? Could you use a water jet?
I was cutting carbon fiber sheet with my bandsaw some time ago and then later switched back to cutting aluminum sheet. Cutting aluminum before the carbon was just fine but cutting it after cutting the carbon was miserable. The bandsaw normally cuts through 0.0625" aluminum as if it were soft butter, but it was practically bouncing off of it after the carbon. As it is now, if I need to cut carbon, I just change to a different blade. The blade that now hates to cut aluminum still cuts carbon just fine.

That's a good question about carbide bits. The end mills I use are cheapos. The carbide bits would probably wear faster than under normal circumstances but not as quickly as the titanium nitrate coated high-speed steel end mills I have.

A water jet should kick ass when cutting carbon with absolutely zero wear on the cutting edge. :D
Anglin email: - anglin at mc2racing.com
www.mc2racing.com
anglin
Level 7
Level 7
Posts: 2456
Joined: Thu Apr 22, 2004 3:20 pm
Location: Hartford, CT

Post by anglin »

I'm waking this thread up a little bit because I've been doing some web page work and had to make some changes to picture locations. Some of those pictures were in this thread, so I edited the posts to point to the right location. That's all. I've been busy with my road car, getting it ready for daily driver use again, so I don't have anything new to add here right now.
Anglin email: - anglin at mc2racing.com
www.mc2racing.com
anglin
Level 7
Level 7
Posts: 2456
Joined: Thu Apr 22, 2004 3:20 pm
Location: Hartford, CT

Post by anglin »

In spite of my school work, I have been able to continue on with the carbon shock tower brace project. It's been on hold since the stainless inserts were machined sometime during the summer of 2006. Now that I can mess around with this project again, I am able to make some progress.

carbon brace versus the Anglin-modified Debaker shock tower brace
Image

inserts and rod ends prior to being bonded (left- and right-hand threaded for infinite length adjustment)
Image

cheese shot
Image

I still have to make some aluminum spacers and select new, longer bolts. Other than those two projects which will only take about an evening, I am nearly done with this, which is excellent because it allows me to move onto my next project. Stay tuned!
Anglin email: - anglin at mc2racing.com
www.mc2racing.com
User avatar
Ray
Level 7
Level 7
Posts: 4338
Joined: Sun Oct 24, 2004 10:40 am
Location: CT, USA

Post by Ray »

can you just send me the carbon bar, in a specific length, with threaded inserts?
-Ray
1985 Ford F150 - Tow Missile
1985 Merkur XR4Ti -#141 CP "Miss Daisy"
2005 Subaru LGT
http://www.cartct.com
CV12Steve
Level 7
Level 7
Posts: 1473
Joined: Tue Oct 30, 2007 3:57 pm
Location: Sacramento, CA area

Post by CV12Steve »

Has anyone ever measured the amount of flex at the shock mounts over different surfaces? Inches or degrees of movement and the loading ± in pounds from static?
The reason I ask is because c/f does relatively poorly in compression (as well as abrasion). The failure modes I‘d be worried about are buckling under compression and the adhesive joints at the ends under repeated compression/tension shock loads. (Similar concern with the 2011-T3 bars as it’s not the ideals alloy for threaded applications; experiences anyone?).
If the loads are low enough they should be easy to design around.
Stephen
anglin
Level 7
Level 7
Posts: 2456
Joined: Thu Apr 22, 2004 3:20 pm
Location: Hartford, CT

Post by anglin »

demonfire wrote:can you just send me the carbon bar, in a specific length, with threaded inserts?
Ray, the short answer is "no" but the long answer is "shoot me an email."
CV12Steve wrote:Has anyone ever measured the amount of flex at the shock mounts over different surfaces? Inches or degrees of movement and the loading ± in pounds from static?
Yes but. Allan Slocum did this several years ago and posted the results on the Merkur Encyclopedia. It's difficult to take his results and pull meaningful data out of it for this discussion. From the way I read his test he put loads on opposite ends of the rear bumper and measured the resultant deflection between the shock towers. Of course, this isn't how the chassis is loaded in real life. Additionally, there should be no force being applied to the chassis by the shocks when there is no motion (ideally). The shocks only generate force when there is motion. (We know this is "mostly true" because, once compressed, a shock will tend to move very slowly back to an equilibrium position.) So, assuming Allan's load on the chassis puts everything into (a new) equilibrium, the only forces deflecting the shock towers should be related to the load put on the bumper. This is just chassis flex, not reaction to the dampers.

Allan's test effectively proved that there is movement at the shock towers due to loadings elsewhere on the chassis but doesn't show deflection from the forces put out by moving shocks. Is this a problem? No, unless we want to know the magnitude of deflection from the loads generated by the moving shocks. Then his test only tells us that there will be motion, not how much motion there will be.

Here is a link to the Encyclopedia and then a direct link to the article:

http://www.merkurencyclopedia.com/
http://www.merkurencyclopedia.com/Suspe ... _data.html

He concluded that the rear chassis spring rate is 15,400 lb/in. Again, this is going to include things like the stiffness of the bumper in the equivalent spring rate of the car. It's difficult to tell how this impacts test data because the car isn't typically loaded through the bumper. How much of an impact does the stiffness of the bumper have on the chassis when the car is normally loaded at the springs in the STAs?

Here's an additional teaser to translating Allan's data. When sketching the free-body diagram of the loads applied in his test load, it seems as though the loads on the shock tower from the damper and the loads on the shock tower from the weight on the bumper would be opposing each other. The bumper loads would tend to pull the shock towers apart and the damper loads would tend to push them together. This further confounds the data he provided.

I really appreciate Allan for posting this test data. It would be VERY difficult to get better test data. A chassis stiffness test rig usually involves the chassis rigidly fixed at one end and being torqued about the axis of the chassis, not bent along the front-to-rear midline. It gets worse, since one 22 year old chassis will not give the same result as a different 22 year old chassis, given rust and other factors. Yay.

So, that was a short question and a long answer.
The reason I ask is because c/f does relatively poorly in compression (as well as abrasion). The failure modes I‘d be worried about are buckling under compression and the adhesive joints at the ends under repeated compression/tension shock loads.
The cross sectional surface area of the carbon fiber tube is nearly 0.5 in². There is a lot of material to react the forces. The OD is 1.25" so it's got plenty of diameter to prevent buckling (diameter is primary dimension for calculating the resistence to bending). The wall is very thick (0.125") so delamination isn't likely going to be a problem.

The shock tower brace is an "ideal pinned column" so the hardest part of calculating its buckling load is finding the right values of the elastic modulus of the carbon fiber. The following web page covers critical forces in ideal pinned columns.

http://www.engineersedge.com/column_buc ... _ideal.htm

Image

In this case, the variables are as follows:

E = 18,000,000 lb/in² (mimimum value of Young's Modulus for carbon fiber loaded on the axis of the fibers)
I = .07076 in^4 (second moment of area/moment of inertia)
L = 40 in (length of column)

I comes from the following formula:

Image

Where D_O is the outside diameter and D_I is the inside diameter.

The calculation gives a critical force of 7850 lbs for the carbon brace. That should be well over the maximum loading that the brace will see by about a factor of 10.
The failure modes I‘d be worried about are buckling under compression and the adhesive joints at the ends under repeated compression/tension shock loads.
I agree. The adhesive joints are going to be the most highly stressed components of this design. I designed the inserts to have a very large area to react these forces and I chose a structural adhesive appropriate for highly loaded applications. This ain't the crap you get at Wal-Mart.
(Similar concern with the 2011-T3 bars as it’s not the ideals alloy for threaded applications; experiences anyone?).
If the loads are low enough they should be easy to design around.
The inserts are made of 304 stainless.

I hope that I've convinced you that I've planned this out fairly well. This is quite an expensive project (certainly the highest $/unit to produce mc²racing has done to date) and I've been exceptionally careful to avoid problems. The only problem that I've run into is rod end selection. That's why I bothered to post pictures of the recently-purchased rod ends in my previous post in this thread.

Graphics have been snagged from Wikipedia and "Engineer's Edge" (even though Engineer's Edge tried to keep me from snagging their image).

Another one of "Anglin's Retarded Engineering Posts" has now come to an end.

Edit: I proofread the whole thing twice for technical errors but somehow managed to miss "most highest." The error has now been removed.
Last edited by anglin on Sat Feb 23, 2008 10:22 pm, edited 1 time in total.
Anglin email: - anglin at mc2racing.com
www.mc2racing.com
CV12Steve
Level 7
Level 7
Posts: 1473
Joined: Tue Oct 30, 2007 3:57 pm
Location: Sacramento, CA area

Post by CV12Steve »

The ideal measurements would be from a strain gauge mounted between the towers of cars being operated over different surfaces (Autocross, Road Course, Rally Tarmac, etc.) along with linear measure (change in distance between towers).
Actually, your bars look plenty stout with decent bonding area on the inserts. The only improvement that springs-to-mind would be my towers attached to either end. :wink:
Stephen
anglin
Level 7
Level 7
Posts: 2456
Joined: Thu Apr 22, 2004 3:20 pm
Location: Hartford, CT

Post by anglin »

anglin wrote:The calculation gives a critical force of 7850 lbs for the carbon brace. That should be well over the maximum loading that the brace will see by about a factor of 10.
Looking back through my old posts I noticed something interesting. The critical force which I calculated in my previous post was 7850 lbs. This is the load the shock tower brace should take under compression. In a previous post I mentioned that the structural adhesive joints should be able to withstand about 8000 lbs of force in tension. Funny how that worked out.
CV12Steve wrote:The ideal measurements would be from a strain gauge mounted between the towers of cars being operated over different surfaces (Autocross, Road Course, Rally Tarmac, etc.) along with linear measure (change in distance between towers).
That would definitely be ideal. I certainly have such a measurement on my list of things to test (along with spring rates of available stock-replacement springs, damping rates of available shocks and struts, skid pad testing of multiple suspension combos, etc. I just wish my list of challenging things to test wasn't so long!)
Actually, your bars look plenty stout with decent bonding area on the inserts. The only improvement that springs-to-mind would be my towers attached to either end. :wink:
You speak the truth. If the shock towers aren't allowed to flex relative to each other any more, the forces are going elsewhere. The good news is that the dampers are going to be more effective at damping.
Anglin email: - anglin at mc2racing.com
www.mc2racing.com