p-e un autre sticky...
INFO TURBOS DE TOUTES SORTES
See the wheel sizes
http://www.mjmturbos.com/images/9g12...gBIG18g20g.jpg
Td-05 18g
http://www.mjmturbos.com/images/TD0518G.jpg.jpg
Modified Td05
http://www.mjmturbos.com/images/16G20GProcess.jpg
Td05 20g
http://www.mjmturbos.com/images/EVO20G.jpg
Some turbine for Mazda and Fords
http://www.mjmturbos.com/images/ihi-t3.jpg
Td05-16g Small
http://www.mjmturbos.com/images/16gREGULAR.jpg
Td05-16g Big
http://www.mjmturbos.com/images/16gBIG7CM.jpg
Td-05 + Garrett
http://www.mjmturbos.com/images/TD05GARRETT.jpg
http://www.mjmturbos.com/images/Td05...04e%20copy.jpg
Td05 and td06 comparison
http://www.mjmturbos.com/images/Td06-Td05.jpg
A few TD turbines
http://www.mjmturbos.com/images/MULTIMITSU.jpg
Are you sure no turbine for 1200hp ?
see this hehe
http://www.mjmturbos.com/images/THEBLACK.jpg
1200hp where got enough lar , 3800hp ?
http://www.mjmturbos.com/images/RUSSIANRED.jpg
NEW INFO tht i got
HKS Turbo Specs
http://cherrypicker.tripod.com/siteb.../hksturbos.jpg
HKS Turbo Displacements
http://cherrypicker.tripod.com/siteb.../gt-turbos.jpg
Turbo Short Info
Mitsu turbos:
Mitsubishi uses TD04, TD05, TD06, TD07, TD08...to designates turbo housing.
For example, TD05H-16G 7cm^2 is a turbo with,
*
TD05 turbine housing with 'H' style turbine wheel. There are S, SH, H... style of turbine wheel/housing.
*
16G compressor wheel. 16 is the size of the wheel, 1.83 inducer, 2.37 exducer. There is no direct correlation between MHI designation and actual physical size of the compressor wheel. G is the style of wheel (uneven height of blades). C, B, T style wheel's blades have the same height. Blades are equally spaced, but the number and pitch of the blades vary between models.
*
8cm^2 is referring to exhaust discharge area in the turbine housing. More specifically, it is the smallest cross-sectional area of the scroll, turbine housing. Very similar to Garrett turbo's A/R. The smaller number means faster spool-up but more back pressure at higher rpm. Bigger number means longer spool up but less back pressure, thus more top end power.
Greddy modifies Mitsu turbos. I don't have any published specs for Greddy turbos and i have not taken any time to measure them. It's possible some of turbos have different specs from Mistubishi. Also, both Greddy TD05 and TD06 use 3 bolt turbine flange where as Mistubishi's uses 4 bolt flanges.
Bisides the TD04, TD05, TD06, TD07 and TD08 turbos, Greddy also makes hybrid turbo, T67 is TD07 compressor and TD06 turbine, same turbo as TD06SH-25G. T78 is the compressor of TD08 and turbine of TD07, T88 uses compressor and turbine from TD08.
Garrett Turbos:
Garrett basically has two lines of turbos. The ancient, inefficient T series turbos and the new, modern, ball bearing GT series turbos.
*
T family has T22, T25, T3, T350, To4B, To4E, TS04, To4R ...These are 50 year old, WWII generation turbos.
*
The newer line of GT turbos are ball bearing on journal and thrust bearing. The turbine and compressor wheels are improvely aerodynamically to flow more air. GT20, GT22, GT25, GT30, GT35, GT40, GT45, GT50... GT turbos produce slightly more hp then older T series turbos with the same number designation. A GT Garrett turbine wheel wil flow more air than similar sized Greddy turbine wheel. Thus GT turbos are able to boost higher and flow more.
Turbonetics and many domestic makers turbos based on T series turbos. A T3/To4E 60 T .63A/R is a hybrid turbo with T3 turbine, To4E compressor, 60 Trim compressor wheel and .63 A/R turbine housing.
Wheel "trim" refers to the squared ratio of the smaller diameter divided by the larger diameter times 100. Generally, the larger the trim number the more flow the wheel has.
For compressor wheels , larger trim tends to mean slightly lower efficiency.
For "families" of turbine wheels (those with the same inducer diameter), larger trim usually means better flow with less backpressure but longer spool time.
A/R is a ratio of the exhaust discharge area vs the distance from the center of turbine wheel to the center of the cross sectional area. Smaller A/R housing has faster spool up. Bigger A/R housing has less back pressure, more flow for the top end.
The so called "T-series': T60, T61, T66, T70, T72, T76... are T4 turbos as well. The number means the compressor inducer size. ie: T76 means it has 76mm compressor inducer.
HKS uses Garrett turbos. HKS GT series turbos use Garrett GT's turbine with GT's compressor.
For example, HKS GT 2835 is GT28 turbine with GT35 52 trim compressor.
The newer line of Garrett GT-R turbos are hybrid turbos. For example, GT30R is a hybrid of GT30 turbine mated to 56 trim GT37 compressor.
Twin Entry Turbines
http://www.turbodriven.com/en/turbof...turbine_32.jpg
Water Cooled Turbine Housing
http://www.turbodriven.com/en/turbof...turbine_27.jpg
How turbo works
http://www.turbocalculator.com/turbo-parts.gif
The Turbo Build
http://www.turbodriven.com/en/turbof...erklaerung.jpg
Bearing Turbo Build
http://www.turbodriven.com/en/turbof...turbine_16.jpg
TD05 Compressor Map
http://cherrypicker.tripod.com/image...H-16G-flow.jpg
TD06 Compressor Map
http://cherrypicker.tripod.com/siteb...6h-20g-cfm.gif
http://turbobricks.com/resources.php?content=turbodata
INFO TURBOS DE TOUTES SORTES
See the wheel sizes
http://www.mjmturbos.com/images/9g12...gBIG18g20g.jpg
Td-05 18g
http://www.mjmturbos.com/images/TD0518G.jpg.jpg
Modified Td05
http://www.mjmturbos.com/images/16G20GProcess.jpg
Td05 20g
http://www.mjmturbos.com/images/EVO20G.jpg
Some turbine for Mazda and Fords
http://www.mjmturbos.com/images/ihi-t3.jpg
Td05-16g Small
http://www.mjmturbos.com/images/16gREGULAR.jpg
Td05-16g Big
http://www.mjmturbos.com/images/16gBIG7CM.jpg
Td-05 + Garrett
http://www.mjmturbos.com/images/TD05GARRETT.jpg
http://www.mjmturbos.com/images/Td05...04e%20copy.jpg
Td05 and td06 comparison
http://www.mjmturbos.com/images/Td06-Td05.jpg
A few TD turbines
http://www.mjmturbos.com/images/MULTIMITSU.jpg
Are you sure no turbine for 1200hp ?
see this hehe
http://www.mjmturbos.com/images/THEBLACK.jpg
1200hp where got enough lar , 3800hp ?
http://www.mjmturbos.com/images/RUSSIANRED.jpg
NEW INFO tht i got
HKS Turbo Specs
http://cherrypicker.tripod.com/siteb.../hksturbos.jpg
HKS Turbo Displacements
http://cherrypicker.tripod.com/siteb.../gt-turbos.jpg
Turbo Short Info
Mitsu turbos:
Mitsubishi uses TD04, TD05, TD06, TD07, TD08...to designates turbo housing.
For example, TD05H-16G 7cm^2 is a turbo with,
*
TD05 turbine housing with 'H' style turbine wheel. There are S, SH, H... style of turbine wheel/housing.
*
16G compressor wheel. 16 is the size of the wheel, 1.83 inducer, 2.37 exducer. There is no direct correlation between MHI designation and actual physical size of the compressor wheel. G is the style of wheel (uneven height of blades). C, B, T style wheel's blades have the same height. Blades are equally spaced, but the number and pitch of the blades vary between models.
*
8cm^2 is referring to exhaust discharge area in the turbine housing. More specifically, it is the smallest cross-sectional area of the scroll, turbine housing. Very similar to Garrett turbo's A/R. The smaller number means faster spool-up but more back pressure at higher rpm. Bigger number means longer spool up but less back pressure, thus more top end power.
Greddy modifies Mitsu turbos. I don't have any published specs for Greddy turbos and i have not taken any time to measure them. It's possible some of turbos have different specs from Mistubishi. Also, both Greddy TD05 and TD06 use 3 bolt turbine flange where as Mistubishi's uses 4 bolt flanges.
Bisides the TD04, TD05, TD06, TD07 and TD08 turbos, Greddy also makes hybrid turbo, T67 is TD07 compressor and TD06 turbine, same turbo as TD06SH-25G. T78 is the compressor of TD08 and turbine of TD07, T88 uses compressor and turbine from TD08.
Garrett Turbos:
Garrett basically has two lines of turbos. The ancient, inefficient T series turbos and the new, modern, ball bearing GT series turbos.
*
T family has T22, T25, T3, T350, To4B, To4E, TS04, To4R ...These are 50 year old, WWII generation turbos.
*
The newer line of GT turbos are ball bearing on journal and thrust bearing. The turbine and compressor wheels are improvely aerodynamically to flow more air. GT20, GT22, GT25, GT30, GT35, GT40, GT45, GT50... GT turbos produce slightly more hp then older T series turbos with the same number designation. A GT Garrett turbine wheel wil flow more air than similar sized Greddy turbine wheel. Thus GT turbos are able to boost higher and flow more.
Turbonetics and many domestic makers turbos based on T series turbos. A T3/To4E 60 T .63A/R is a hybrid turbo with T3 turbine, To4E compressor, 60 Trim compressor wheel and .63 A/R turbine housing.
Wheel "trim" refers to the squared ratio of the smaller diameter divided by the larger diameter times 100. Generally, the larger the trim number the more flow the wheel has.
For compressor wheels , larger trim tends to mean slightly lower efficiency.
For "families" of turbine wheels (those with the same inducer diameter), larger trim usually means better flow with less backpressure but longer spool time.
A/R is a ratio of the exhaust discharge area vs the distance from the center of turbine wheel to the center of the cross sectional area. Smaller A/R housing has faster spool up. Bigger A/R housing has less back pressure, more flow for the top end.
The so called "T-series': T60, T61, T66, T70, T72, T76... are T4 turbos as well. The number means the compressor inducer size. ie: T76 means it has 76mm compressor inducer.
HKS uses Garrett turbos. HKS GT series turbos use Garrett GT's turbine with GT's compressor.
For example, HKS GT 2835 is GT28 turbine with GT35 52 trim compressor.
The newer line of Garrett GT-R turbos are hybrid turbos. For example, GT30R is a hybrid of GT30 turbine mated to 56 trim GT37 compressor.
Twin Entry Turbines
http://www.turbodriven.com/en/turbof...turbine_32.jpg
Water Cooled Turbine Housing
http://www.turbodriven.com/en/turbof...turbine_27.jpg
How turbo works
http://www.turbocalculator.com/turbo-parts.gif
The Turbo Build
http://www.turbodriven.com/en/turbof...erklaerung.jpg
Bearing Turbo Build
http://www.turbodriven.com/en/turbof...turbine_16.jpg
TD05 Compressor Map
http://cherrypicker.tripod.com/image...H-16G-flow.jpg
TD06 Compressor Map
http://cherrypicker.tripod.com/siteb...6h-20g-cfm.gif
http://turbobricks.com/resources.php?content=turbodata
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