Trying to decide on a new cam for my 4.6L. While I found the post with the quad carbs interesting its above my level of knowledge.
With a stock 4.6L (9.35 CR) with 28cc heads and FI cam from a 3.9L, I find the idel fine but the cam runs out of steam too early for a sports car. This is with a Buick manifold and Edelbrock 500 cfm carb. I plan to install 14CUX FI this winter and change the cam while I am at it. Appears from my searches that anything above 0.430" lift will cause interference with th valve guides etc. As long as the heads need to come off might as well port them etc. I have read about the V8 Development's "Warrior" heads and am interested in something along those lines. Larger valves, port and polish. Can anyone recommend a shop in US or CDN for this? Idea of $$.
http://www.v8developments.co.uk/products/heads/warrior/index.shtml
Back to the cam. What lift can be used before the piston tops require cutting? How far can one go on lift and duration before the Rover FI throws a fit? I have an upgraded ECU from Randall Smith, if that helps. With MS I assume we can go much farther, again any limits? Keep coming back to a Crower 50232 or maybe 233 but will it run with FI? Not interested in a loppy idle and want it to pull strongly to 6000 rpm. Basically I want 300 ft/lb and 300 hp. Maybe I am asking too much here I don't know. Woddy's roller cam looks nice but is it really needed for a street driven car. Car is an MGB with T5 and 3.27 Ford 8".
Don't beat me up too bad here! Am I dreaming or can this be done without TA Performance heads, HR cam etc?
Mike, I'm running 10.6 pistons in my 340 with 300 heads and a .500 lift cam and valve to piston clearance clayed out to a quarter inch. Pistons are zero decked so I doubt you have any worries about piston clearance. You can also get light weight springs to use in checking clearance.
Some of the cam grinders have a tool you can rent that chucks up in an electric drill and you use it to cut down your valve guides without removing the heads. That'll let you get enough lift from your cam.
Jim
Mike, I had the Crower 50232 in a 215 years ago. A little big for the small motor and a little small for 4.6. Be about right for the 3.9/4.0. The 50233 would be just right. Cutting the guides down for Viton seals is no big deal. The 4.0 pistons used in the 4.6 block will raise compression to over 10 to 1. Smaller dish. The 86-93 GM 2.8 and 93-95 GM 3.4 V6 valves (1.72 IN and 1.42 EX)are a size up and would need new seats. Alex's Parts has seats cheap and Vortex Chevy beehive springs also. The Vortex Chevy has the same guide problem. For the fuel injection Glenn Towery recommends at least 112 LSA which the 50233 has. I would call Delta Cams and get a similar regrind off your old cam with 114 LSA. Hap and Dave Headley use Delta Cams and Bill Jacobsen uses one in his beautiful Supercharged B.
Jim N,
Thanks. Are you saying do a similar grind to the 50233 on my 3.9L cam with the wider LCA? With shipping and all might be easier to have Crower do a new one. I assume they can create the 114 or is that formed in the blank when cast?
I will have to look up the vortex beehive springs.
Anyone know a good porting guy?
Thank,
Mike
Crower can do it but, about twice as much as their stock grinds. Call Delta and compare price. The wider LSA helps idle and vacuum. I would still advance the cam 4 degrees to move power band down.
Mike,
Excuse my ignorance here if you have already thought of this but be warned that the14CUX prefers a stock cams, or very close to stock. I have a 112 degree lobe separation on my grind and am getting idle fluctuations and slight surging under acceleration (timing, etc. has all been checked). Glenn Towery is convinced it's because of my cam because the 14CUX system seems to like cams with less than 112 degree lobe separation. Here is a link to the thread that talks about cams for the 14CUX system:
http://www.mgexp.com/phorum/read.php?40,2236284,page=7
Chris,
I think you mean 112 deg or more, not less LSA (hence the 114 as Jim mentioned). Also you must consider that I am 4.6L not 3.5L, this should make a large difference. I am no expert either when it comes to cams etc, hence why I looking for advice from Jim x2 and Dan Jones etc. I also do not have a stock 14CUX ecu but one that has been chip which I hope helps. In the end if this does not work I will stay with my edlebrock 500 CFM or use the FI hardware with MS III.
Did you ever find you cam data card? Would be interesting to see it.
Oops, yes Mike you are correct! I don't have the card in front of me but I am pretty sure I eventually posted all the specs on the MGE thread.
How would a difference in displacement solve this issue out of curiosity?
Cheers,
Chris
Chris, I think Mike means the same cam that would be too big in a smaller engine would be milder in a larger one. Hey did you score on the parts? Going to work now and the plant blocks this site but allows the Mgexperience.
Ah, I see. This is still all pretty new to me. I just didn't want Mike to run into the same issues I have.
Yes, I bought that crank and rods. Next is pistons and then it's off to the machine shop.
> Can anyone recommend a shop in US or CDN for this? Idea of $$.
Jon Carls of JDC Engineering in Minonk, IL hand ported my Buick 300 heads and did a good job. To properly port the Rover and Buick heads, the guides need to be removed to make room for the cutter. Depending upon the valve diameters chosen, you may also need to install larger seats. When I had mine done several years back, cost was $1050 for the complete Stage III porting, machine work, guides, valve job, etc. Valves, seats, guides and seals were extra. Last time I tlked to him, his labor cost for Stage III porting was still $1050.
> looking for advice from Jim x2 and Dan Jones etc.
I happen to have flow data for a set of 3.9L Rover heads that were treated to several levls of porting. I ran those through Dynomation (HP scale is on the right, torque on the left):
(http://i1127.photobucket.com/albums/l621/danielcjones2/Buick%20Olds%20Rover%20Aluminum%20V8/Rover_46L_ported_heads_Rover_EFI_Crower_Cams_zps1acfe62e.jpg) (http://s1127.photobucket.com/user/danielcjones2/media/Buick%20Olds%20Rover%20Aluminum%20V8/Rover_46L_ported_heads_Rover_EFI_Crower_Cams_zps1acfe62e.jpg.html)
The bottom curve reflects the prediction for unported heads, Rover EFI intake manifolds, long tube headers, 10:1 compression and a Crower 50232 cam. Total intake tract length assumed is 15 inches. 10.5 inches of that comes from the EFI manifold (manifold face to stack bellmouth opening) and 4.5" comes from the head (manifold face to valve head). Note torque prediction is generally optimistic (20 to 50 ft-lbs) in Dynomation but HP is fairly close. I don't have any real dyno data for this configuration to fine tune the simulation so it's best to use the results for comparison value, not absolute numbers. The second curve from the bottom is for a set of lightly ported heads and the third curve is for a set of heavily ported heads. The top curve is for the heavily ported heads and a Crower 50233 heads. I did a quick cut at a custom cam for the ported heads an it was worth another 10+ HP above 4500 RPM:
(http://i1127.photobucket.com/albums/l621/danielcjones2/Rover_46L_ported_heads_Rover_EFI_custom_cam_zpsb3dd6f80.jpg) (http://s1127.photobucket.com/user/danielcjones2/media/Rover_46L_ported_heads_Rover_EFI_custom_cam_zpsb3dd6f80.jpg.html)
Note the ported head numbers also assume the lower EFI manifold has been ported and the throttle body flows 600 CFM at 1.5 inches of Hg.
I happen to have a new-old-stock 4.2L Rover long block, along with a 3.9L Rover EFI system and Crower 50232 and 50233 cams on hand. I've thought about porting the lower intake and a set of Rover heads, along with a pair of steel shim head gaskets to up the compression ratio. When you start talking about 300 HP, you're going to be well off the assumptions used in the Rover EFI tables, even if you use a cam with 114 degree lobe centers, so I assume I'll need to use a different programmable ECU (Megasquirt, Ford EEC, etc.).
Dan Jones
Just a note which could be important. The guides in at least some BOPR/Buick heads as they come from the factory are not concentric because the blanks are pressed in and then machined in place. So if you press out the guides you lose registration with the seat. This may not be a problem if you plan to cut the heads for oversize seats anyway, and especially if you intend to modify the centerline spacing. But if you want to keep the original seats the preferred renewal process seem to be to sleeve the guides rather than replacing them.
Jim
Dan,
Great information, thanks very much.
Now to differentiate all the data! Interesting the Torque of the 50232 vs 50233 with the Stage 4 heads.
Not sure on the FI upgrade ECU I have. Not been able to contact Randall Smith who performed the upgrade so can't know what it will be capable of. Likely MS will be needed to get above 250 HP.
Great info as always, Dan!
Both Crower cams are good but I thought there would be more difference between the two. The 50232 looks slightly better under 4000 RPM and very close to 5000. Evidentaly you don't gain much with the higher lift. Probably limited with the smaller ports and valves on the Rover heads. Dan, could you do a similar graph comparing the 300 heads ported,bigger valves. Maybe one for Chris's 300 stroker(350 crank and rods).To me looks like Mike would be happy with the 50232, but Chris's larger displacement would like the 50233 or equivilant. Also,WOW, look at the difference the porting made!
> Interesting the Torque of the 50232 vs 50233 with the Stage 4 heads.
Remember the peak torque values are likely optimistic but the differences between the two should be realistic.
> Both Crower cams are good but I thought there would be more difference between the two. The 50232 looks slightly better under 4000 RPM and very close to 5000. Evidentaly you don't gain much with the higher lift
These heads peak (flatten out) at around 0.450" lift so a bunch of lift isn't necessarily a beneficial as it might be. The duration and lobe centers are more important here. When comparing cams, I like to look at the area under the power curve between shift points. That's what maximizes acceleration. Below that you're mostly at part throttle and more interested in how well the engine behaves.
> Dan, could you do a similar graph comparing the 300 heads ported,bigger valves. Maybe one for Chris's 300 stroker(350 crank and rods).
(http://i1127.photobucket.com/albums/l621/danielcjones2/Buick%20Olds%20Rover%20Aluminum%20V8/Rover_46L_and_Buick_300_stroker_zps8d80c161.jpg) (http://s1127.photobucket.com/user/danielcjones2/media/Buick%20Olds%20Rover%20Aluminum%20V8/Rover_46L_and_Buick_300_stroker_zps8d80c161.jpg.html)
Bottom HP line is the Rover 4.6L with Stage 4 ported Rover heads and Crower 50233 cam. Note that it is a bit different from the previous plot as I found an error in simulation. Next line up is the 4.6L Rover with Crower 50233 cam and Buick 300 aluminum heads (Stage 3 hand porting by Jon Carls). Both assume a ported EFI lower and throttle body of 600 CFM. Next up is Buick 350 cubic inch Buick 300 stroker (3.8" bore by 3.85" stroke) with the ported Buick 300 heads and Crower 50233 cam. The top line is the same engine with a cam I designed to give best power between 4000 and 6500 RPM. Both Buick 300 strokers assume 11:1 compression, a ported Buick 300 dual plane intake (Extrude Honed with spacer) and 800 CFM of carb flow.
Dan Jones
Thanks Dan! Is your custom cam straight up? What LSA?
Very interesting Dan! Thank you.
It looks like some porting is in my future...
Mike,
In Europe the Tornado camshaft (grinded by Comp Cams) of Real Steel is quite popular for the RV 4.6 in light weight cars, such as the MGB.
Duration of the Tornado is @ 0.050" 224/231, lift 0.508"/0.512", LSA 110 so its more or less a compromise between the Cowler 50233 and 50234.
I used this cam on a 4.6 with standard 4.0 pistons, stage 3 RV 4.6 heads with CR 10.3, Edelbrock performer inlet manifold and Edelbrock/Weber 500CFM carb, and got 298 bhp at 5750 rpm on the dyno.
Now it will be build up with Merlin heads and EFI manifold to see if there are any improvements.
Pistons are the standard 4.0 Rover pistons without valve cutouts, which will increase compression ratio with about 0.5 CR.
The tuning of the ECU 14CUX is very restrictive so I will probably use the Mega Squirt stuff.
Seeing the dyno graphs of Dan Jones it seems that the Cowler 50233 would be the best choice as it would give good performance and at the same time you will be able to cruise around.
Cheers
Rik
Interesing Rik, I have a Tornado cam that I want to try with the Merlin heads. I am currently using the Typhoon cam with the practically same setup as you (except single plane intake and Merlin heads). I have had the Tornado for 3 or 4 years but never got around to swap the cam. Will swap it during the winter :-)
Another one to consider: 11:1 compression 5.0L Rover with ported Buick 300 heads, Huffaker low rise single plane intake manifold, 750 CFM carb flow:
(http://i1127.photobucket.com/albums/l621/danielcjones2/Buick%20Olds%20Rover%20Aluminum%20V8/Rover_50L_different_benches_zps3f8d17b0.jpg) (http://s1127.photobucket.com/user/danielcjones2/media/Buick%20Olds%20Rover%20Aluminum%20V8/Rover_50L_different_benches_zps3f8d17b0.jpg.html)
The lower (red) HP line is a Schneider 284-F solid flat tappet cam of specs:
284/284 degrees advertised duration
240/240 degrees @ 0.050"
0.512"/0.512" lift with 1.6:1/1.5:1 rocker ratios (less 0.012" lash)
110 LSA (108 degrees intake centerline)
64 degrees overlap
The brown line is a custom hydraulic roller of similar overlap. The top green line is the same simulation with flow bench numbers of the same heads on a different bench. The bench I usually test on is the most conservative and we typically match or exceed the simulation HP prediction using those numbers. We'll be doing some dyno testing over the winter on this engine to establish a baseline that I can use to finalize the cam design.
Dan Jones
Dan, Have you considered testing your TA heads, without porting ? Cheers, rovrerman
Rik,
Thanks for sharing your setup.
Was speaking with D&D yesterday and they feel the later HRC 2479 heads flow better than most and that the flow bench shows its easy to damage this flow. For an all out race motor sure port and polish the heck out of it, but for the street he thought I may be better off port matching the manifolds but leaving the valves and throats etc stock. Apparently with this level of head work, 50232 cam, 4.6L with 4.0 pistons, Edlbrock intake, 500 cfm and tri-y headers made 338hp.
Needles to say I am very confused now. Anyone have a copy of Des Hammill's Rover V8 book? It's not available now but apparently shows what needs to be opened to get the most flow for the least amount of porting. Amazon shows a preview that shows part if it but......
I do not want a race motor, just a tractable 275-300 HP that revs and idles!
Mlke, Here is a pic of a Rover head cutaway. And idealized porting with bulleted guide. Clean up the bowl under the seat,the valve guide boss, the hump on the floor by the short turn and gasket match. I'm a believer in the larger valves and unshrouding the chamber also. I use a large tip marker for intake gasket and head gasket. Just port to the line, not all the way to the gasket.
port2.jpg
porting001.jpg
Mike,
The heads on my 4.6 are ported HRC 2479 heads with standard size valves and waisted valve stems.
Over the years I used several cams and shared dyno info with close friends whom are running the same engine configuration on the same car and we had following dyno results :
Piper 285, LSA 104, 276/276 advertised, 277 bhp with JWR Offenhauser dual port manifold, Holley carb
Crane/Kent H218, LSA 112, 278/284 advertised, 286 bhp with Edelbrock performer, Edelbrock carb
Crane/Kent H224, LSA 111, 284/304 advertised, 292 bhp with JWR Offenhauser dual port manifold, Holley carb
We also used a Crane/Real Steel 234, LSA 112, 298/308 on a EFI manfold and idle was still acceptable but a bit lumpy, nice sound though....
None of these engines were race engines and had a normal operating range of 800-5750 rpm.
If heads would be maximum ported with big valves the bhp outcome would significantly improve.
Therefore I think the Cowler 50233 would give you the power you are looking for and still will idling at 800 rpm.
Jukka,
How did you set up the push rods on your Merlin heads ?
Real Steel advises not to use the adjustable push rods but JE says it is not problem.
We measure different lenghts for inlet and exhaust when lifter is off the the cam.
Dan,
What is the duration of the roller cam at 0.050" for the 5.0 engine/Buick 300 heads?
Seems the roller is not keepting up with the solid or is significantly duration shorter.
Rik
Rik,
Great information again, thanks! Your Stage 3 heads only used stock valves and seats? How much of the area behind the valves did you port?
Still waiting to hear back from Crower about making a 50232 or 50233 with 114 LSA.
Jim N,
Thanks for the photos. My book on Rover V8 from David Hardcastle shows post SD1 heads to have a different track than your photos show. Need to pull my heads to see what is actually there for restrictions etc.
Mike
Mike, I think those are earlier Land Rover heads, just give an idea. If you stay with the stock valve size do a 30 degree back cut on intake valve only. You always smooth the transition below the valve seat and taper the valve guide boss. You will need to cut the upper valve guides down for Viton seals and get better valve springs for that cam. I don't know Rover specs but, 300 Buick were 60lbs closed and about 120lb at .400. I like the Alex's Parts beehive springs for Vortex chevy, 105lbs closed and 260lb at .550. The retainers are cut down for more clearance and are smaller and lighter. They have a hardened shim kit also for setting the installed height at 1.75. My guess is you will give up about 30HP with the smaller stock valves.
I have pushrod length checkers, similar to these http://www.summitracing.com/int/parts/cca-7901-1/overview/
I bought a set of Comp Cams pushrods, 3/8" thick I believe based on the dimensions measured. I also use lash caps and have got quite a nice geometry with this setup.
I also swapped the valve springs to Comp Cams beehives and matching caps.
Check the intake vs. Exhaust seats, appears that they are machined at different height, resulting in different valve tip location and thus different length in pushrods. Re. The adjustable pushrods, I dont like the idea of extra "loose" parts compared to solid one. I think I have a set of new adjustables in case you want to use them.
Jukka, The pushrod length checker is always a good idea, especially if the block is decked, heads milled, and longer valves are used. You are probably right on different lengths with stock valves in 4.0 and 4.6. Buick 300 were the same length. Why didn't you go with hollow 5/16 pushrods and Chevy lifters? Lighter and more resistant to bending than solids. More even metering of oil to rockers. Simple to plug oil holes in heads. If you have to shim the rocker stands just use shim with no oil hole.
Jim, with solid I meant one piece vs. Adjustable. Mine are Magnum series for SBC. I was wrong, they are 7,900" and CC number is 7963. The lifters are also SBC by Crane so I could have used Chevy style oliling. The Merlin heads I have are not exactly blueprinted, there was some variation in valve heights. My block and heads have ben skimmed, add ht Merlins into equation and you definitely need to check everything.
> Thanks Dan! Is your custom cam straight up? What LSA?
This one is +4 degrees advanced. 110 degrees LSA. The ideal LSA is a
generally function of intake valve diameter (relative to displacement).
Smaller diameter intake valves on a Rover 4.6L would make better power
with a narrower LSA.
> Dan, Have you considered testing your TA heads, without porting ?
That would be the plan. Baseline the heads as delivered then see what
they do with porting.
> but for the street he thought I may be better off port matching the manifolds
> but leaving the valves and throats etc stock.
Rover heads are woefully under-sized. The minimum cross-sectional area of the
port, located just under valve seat is the major restriction. I'd at least bowl
port (blending the area just under the seats) the heads. That is inexpensive
and yields a meaningful improvement.
> Apparently with this level of head work, 50232 cam, 4.6L with 4.0 pistons,
> Edlbrock intake, 500 cfm and tri-y headers made 338hp.
That seems very optimistic to me.
> What is the duration of the roller cam at 0.050" for the 5.0 engine/Buick 300 heads?
> Seems the roller is not keepting up with the solid or is significantly duration shorter.
Are you looking at the red and brown lines? They are very close to each other with
the hydraulic roller being slightly better. This was a first cut at a hydraulic roller
and the specs were:
286/286 degrees seat duration
232/232 degrees @ 0.050"
0.560"/0.500" lift
110 LSA
Lift is artificially high in my first round of custom cam design. Subsequently, it is reduced
to see if how it affects the power output. Also, this is a single pattern cam that I designed
to compare to a Schneider 284-F solid flat tappet that I happened to have on hand. The Schneider
284-F is a single pattern cam and I wanted to keep the comparison on an equivalent basis. For
shorter durations, a flat tappet cam can make more power than a roller due to better initial
acceleration. A roller has better velocity and will make better power as duration is increased.
Vizard has done some testing which indicates the cross-over is around 270 to 278 degrees of
off-the-seat duration.
Dan Jones
Jukka,
Thanks will measure as well the rod length with the adjustable pushrod.
Dan,
Seeing the RV8 5.0 green dyno line you would get amazing BHP ( about 370+) numbers with the Schneider 284-F or the proposed HR cam when the Wildcat heads or TA heads would be used on this setup.
Seems Schneider is no longer producing this cam, otherwise would be an interesting choice for my next project.
Rik
> Seeing the RV8 5.0 green dyno line you would get amazing BHP (about 370+) numbers with the Schneider 284-F or
> the proposed HR cam when the Wildcat heads or TA heads would be used on this setup.
Yes. I should have some dyno data available in a month or two that will allow me to calibrate the Dynomation
simulation prediction. Over the weekend, I dropped off a Rover 5.0L (cross-bolted Rover block, 3.5" stroke
crank, 12:1 compression, solid lifter, modified Rover cylinder heads, Extrude Honed Edelbrock Performer Rover
intake manifold) at the dyno, along with my ported Buick 300 heads, a Huffaker single plane intake, a couple
of sets of headers and a few other bits. Plan is to test engine then swap on the Buick heads and Huffaker
intake and re-test. I'll use that data to tweak the simulation and do the final cam designs for several
engines. In the meantime, I need to get my TA Rover heads out for porting. We'll also have a stroked Olds
215 (Buick 300 crank and heads) on the dyno over the winter.
> Seems Schneider is no longer producing this cam, otherwise would be an interesting choice for my next project.
It appears that it was a custom order cam. It came with a bunch of parts I purchased a while back.
I see on the small block Buick cams section of the Schneider website that "Schneider has roller cams
available on request, call for details."
Dan Jones
Rik and clan, perhaps Schneider is no longer producing, as he is in an "exclusve" arrangement with TA Performance ? Perhaps TA can/will sell you this cam ? Cheers, roverman.
Dan, do you have any data how much the stock TA heads flow ?
Julkka
> Dan, do you have any data how much the stock TA heads flow ?
No I don't. I ordered my heads bare but have not had them ported or on
the flow bench yet. TA claims they flow approximately 225 CFM intake and
140 exhaust out-of-the box for the assembled heads but it's not clear if that
includes any finish work like bowl blending. The guy at TA Performance said
their Level II porting ($800 in hand labor, no CNC at this time) flowed 250/180
CFM with 1.94"/1.6" SBC valves but he didn't have the lift reference. TA claims
with additional porting they will go 270 CFM intake and 190 CFM exhaust.
I've verified a set of 1.94"/1.6" diameter valves from a set of AFR 165cc SBF
heads fit in the combustion chamber. AFR 165cc heads are some of the best
small block Ford smaller port (still larger than Rover) heads. With a 1.9"/1.6"
diamater valves, at 0.500" lift, the AFRs flow in the neighborhood of 238 CFM
on the intake side and 182 CFM on the exhaust.
I'll be pleasantly surprised if they will out flow a set of AFR's.
Dan Jones
I've long been curious just how good these TA heads really are. From all accounts the V6 heads are exceptional. I really look forward to hearing what your testing shows.
Jim
IMHO, The Ford head has the advantage of a 4" + bore ? 2.02" intake fits the standard valve centerlines, of a TA head. As to how well it works with a 3.7" bore ? I would like to run a 3.9" bore,(Ford tractor sleeve), and perhaps an LS piston. Onward, roverman.