Three models, and eleven code positions
The T6 through-drive single pump is a fixed-displacement vane pump built from one cartridge, with one difference that changes its model code: the rear of the shaft carries a second drive, so a second pump can be bolted to the back of the first one.
Three models are built this way: T6CR, T6DR and T6ER. They cover 10.8 to 227.1 cm³/r, and they are written in eleven positions rather than the eight the standard single pumps use.
The three extra positions are exactly the ones the rear drive needs: an adaptor that sets the mounting face for the second pump, a coupling that connects the two shafts, and a porting adaptor for the second pump’s ports.
The eleven positions at a glance
| # | What it sets | Values |
|---|---|---|
| 1 | Model, and the port threads | T6CR · T6DR · T6ER, with (Y) for metric threads on the port flanges |
| 2 | Displacement (cam ring), written as delivered flow | 003–031 on T6CR · 014–050 on T6DR · 042–072 on T6ER |
| 3 | Shaft | By model: 1 to 5 on T6CR, 1/2/3/5 on T6DR, 1/3/4 on T6ER |
| 4 | Rotation | R clockwise · L counter-clockwise, seen from the shaft end |
| 5 | Porting combination | 00 standard · 01 · 02 · 03 |
| 6 | Adaptor for the driven pump | 0 none · A SAE A · B SAE B · C SAE C |
| 7 | Coupling | 1 SAE A · 2 SAE B · 3 SAE BB · 4 SAE C · 5 SAE J498b, 16/32, 11 teeth |
| 8 | Porting adaptor | 0 · 1 · 2 · 3, keyed to SAE A, SAE B and SAE C faces |
| 9 | Design letter | A in the ordering examples for all three models |
| 10 | Seal class | 1 mineral oil · 4 fire-resistant fluids · 5 both |
| 11 | Modification | A position of its own; the ordering examples leave it open |
Positions 6, 7 and 8 are what separate this code from the standard single pump: they describe the second pump that will be driven, not the first one. A pump ordered without them is a T6CR, T6DR or T6ER whose rear end carries nothing.
Position 1: the model, and the (Y) that follows it
The first position names the model, and it also carries an option written in brackets: (Y) means the port flanges are tapped with metric threads instead of the imperial threads used when it is left out.
| Model | Frame | Cam rings | Shaft codes | Mounting flange | Weight |
|---|---|---|---|---|---|
T6CR |
C | 13 | 1 · 2 · 3 · 4 · 5 |
SAE B two-bolt J744, ISO 3019/1 | 20.4 kg |
T6DR |
D | 11 | 1 · 2 · 3 · 5 |
SAE C two-bolt J744, ISO 3019/1 | 32.3 kg |
T6ER |
E | 7 | 1 · 3 · 4 |
SAE C two-bolt J744, ISO 3019/1 | 42.5 kg |
The weights are the through-drive versions, and they are heavier than the standard single pumps on the same frames, because of what is inside the rear end.
Position 2: the displacement code
The cam ring decides the displacement, and on this range the code is written as the flow the ring delivers at 0 bar and 1500 r/min, so the values are litres per minute.
| Code (C frame) | Delivery (l/min) | Code (C frame) | Delivery (l/min) |
|---|---|---|---|
003 |
16.2 | 014 |
69.0 |
005 |
25.8 | 017 |
87.4 |
006 |
31.9 | 020 |
95.7 |
008 |
39.6 | 022 |
105.4 |
010 |
51.1 | 025 |
118.9 |
012 |
55.6 | 028 |
133.2 |
031 |
150.0 |
| Code (D frame) | Delivery (l/min) | Code (D frame) | Delivery (l/min) |
|---|---|---|---|
014 |
71.4 | 035 |
166.5 |
017 |
87.3 | 038 |
180.4 |
020 |
99.0 | 042 |
204.0 |
024 |
119.3 | 045 |
218.5 |
028 |
134.5 | 050 |
237.0 |
031 |
147.4 |
| Code (E frame) | Delivery (l/min) | Code (E frame) | Delivery (l/min) |
|---|---|---|---|
042 |
198.5 | 062 |
295.0 |
045 |
213.6 | 066 |
319.9 |
050 |
237.7 | 072 |
340.6 |
052 |
247.2 |
The C frame covers 10.8 to 100.0 cm³/r, the D frame 47.6 to 158.0 cm³/r and the E frame 132.3 to 227.1 cm³/r. One code appears on more than one frame with a different delivery: 014 is 69.0 l/min on the C frame and 71.4 l/min on the D frame, so the code is read together with the model.
Position 3: the shaft
The shaft code is read across the model, not on its own: the same digit is a different shaft on each of the three.
| Code | T6CR |
T6DR |
T6ER |
|---|---|---|---|
1 |
Keyed, SAE BB | Keyed, SAE C | Keyed, SAE CC |
2 |
Keyed, non-SAE | Keyed, SAE CC | — |
3 |
Splined, SAE B | Splined, SAE C | Splined, SAE C |
4 |
Splined, SAE BB | — | Splined, SAE CC |
5 |
Keyed, non-SAE | Keyed, non-SAE | — |
This is the input shaft, the one the motor or engine drives. The rear end that drives the second pump is not chosen here; it is set by the coupling at position 7.
Position 4: rotation, seen from the shaft end
R is clockwise and L counter-clockwise, both judged from the shaft end. That is also the viewpoint for the porting diagrams, so rotation and porting are settled together against the machine drawing.
Position 5: the four porting combinations
The outlet stays on the upper side of the housing and the inlet moves around it in 90° steps:
| Code | Outlet and inlet |
|---|---|
00 |
Outlet on the upper side, inlet on the lower side, opposite each other — the standard combination |
01 |
Outlet and inlet both on the upper side, one behind the other along the axis |
02 |
Outlet on the upper side, inlet on the far side, 90° apart |
03 |
Outlet on the upper side, inlet on the near side, 90° apart |
Positions 6 to 8: adaptor, coupling and porting adaptor
These three positions describe the rear drive, and they are what makes this code eleven positions long. The adaptor is the mounting face bolted to the back of the pump, and it is chosen in the same SAE letter sizes as a pump flange:
| Code | Adaptor |
|---|---|
0 |
No adaptor: the rear end is closed |
A |
SAE A face |
B |
SAE B face |
C |
SAE C face |
The adaptor face takes the second pump; the two are joined by the coupling, which is chosen at position 7:
| Code | Coupling |
|---|---|
1 |
SAE A |
2 |
SAE B |
3 |
SAE BB |
4 |
SAE C |
5 |
SAE J498b, 16/32 pitch, 11 teeth |
The third of the group, the porting adaptor, sets how the driven pump’s ports are finished, on the same letters:
| Code | Porting adaptor |
|---|---|
0 |
Standard |
1 |
Keyed to SAE A |
2 |
Keyed to SAE B |
3 |
Keyed to SAE C |
The three positions travel together with the second pump’s size: an SAE A driven pump takes an A adaptor and an A coupling, and the porting adaptor follows the same letter. Where nothing is bolted to the rear, all three are written as zero or left as the standard value.
Positions 9 to 11: design letter, seal class and modification
The design letter stands at position 9 and is A in the ordering examples for all three models. Position 10 is the seal class:
| Code | Class | Fluid | Shaft seal limit |
|---|---|---|---|
1 |
S1 | Mineral oil | NBR, 0.7 bar maximum |
4 |
S4 | Fire-resistant fluids | EPDM, 7 bar maximum |
5 |
S5 | Mineral oil and fire-resistant fluids | FKM, 7 bar maximum |
Position 11 is a modification slot. The ordering examples leave it open, and a value there belongs to that build and is carried over as written.
Two torque limits: the pump shaft, and the coupling drive
A through-drive pump carries torque on two shafts, and the catalogue prints a limit for each. The first is the input shaft, read by its shaft code:
| Shaft code | T6CR (Vi × p) |
T6DR (Vi × p) |
|---|---|---|
1 |
21420 | 43240 |
2 |
14300 | 66036 |
3 |
20600 | 61200 |
4 |
32670 | — |
5 |
34180 | 55600 |
The second limit belongs to the coupling that drives the second pump, and it is read by the coupling code rather than by the pump model:
| Coupling | Coupling drive (Vi × p) |
|---|---|
| SAE A | 11000 |
| SAE B | 20600 |
| SAE BB | 22050 on T6CR · 32670 on T6DR and T6ER |
| SAE C | 22050 on T6CR · 37390 on T6DR · 66480 on T6ER |
| SAE J498b, 11 teeth | 15850 |
The two limits are checked separately, because they are used separately: the input shaft carries the whole drive, while the coupling carries only what the second pump absorbs. When the two pumps are sized so that the second one is small, the coupling limit is rarely the deciding figure; when both are large, it is.
Tandem assemblies: what the rear end drives
A second pump on the rear adaptor makes a tandem assembly, and the catalogue names the combinations by what the second unit is: a vane pump, a piston pump, a gear pump or a hybrid unit. The rear face is bolted with four screws, and the tightening torques are printed by adaptor size:
| Adaptor | Screw | Tightening torque |
|---|---|---|
| SAE A | M10 × 30 | 49 N·m |
| SAE B | M12 × 35 | 88 N·m |
| SAE C | M16 × 40 | 190 N·m |
Two things follow from the arrangement. The second pump’s ports are oriented on the rear face, which has its own set of positions in addition to the four at the shaft end. And the two cartridges work independently, so a tandem can be sized for low flow at high pressure on one section and high flow at lower pressure on the other.
Speed, pressure and weight
The ratings are published per frame, with the top speed and pressure falling as the rings get larger:
| Model | Displacement | Speed | Pressure, intermittent / continuous | Weight |
|---|---|---|---|---|
T6CR |
10.8–100.0 cm³/r | 600–2800 r/min, 2500 r/min on 025 to 031, 400 r/min minimum with HF-3, HF-4 and HF-5 fluids |
275 / 240 bar with HF-0 and HF-2 · 210 / 175 bar with HF-1, HF-4 and HF-5 · 175 / 140 bar with HF-3 · 210 / 160 bar on 028 to 031 |
20.4 kg |
T6DR |
47.6–158.0 cm³/r | 600–2500 r/min, 2200 r/min on 042 to 050, 400 r/min minimum with HF-3, HF-4 and HF-5 fluids |
240 / 210 bar with HF-0 and HF-2 · 210 / 175 bar with HF-1, HF-4 and HF-5 · 175 / 140 bar with HF-3 · 210 / 160 bar on 045 and 050 |
32.3 kg |
T6ER |
132.3–227.1 cm³/r | 600–2200 r/min, 400 r/min minimum with HF-3, HF-4 and HF-5 fluids | 240 / 210 bar with HF-0 and HF-2 · 210 / 175 bar with HF-1, HF-4 and HF-5 · 175 / 140 bar with HF-3 | 42.5 kg |
The intermittent figure is a time-weighted average that may not exceed the continuous rating. The minimum speed is written as two numbers because it moves with the fluid: 600 r/min on mineral oil, 400 r/min on the fire-resistant fluids.
Mounting flange, ports and adaptor screws
The through-drive pump keeps the mounting face and the port sizes of the single pump it is built from, and the rear adaptor adds its own tightening torque:
| Model | Mounting flange | Mounting torque | Suction port | Pressure port | Adaptor screws |
|---|---|---|---|---|---|
T6CR |
SAE B two-bolt J744 | 159 N·m | 1.1/2 in, Ø 38.1 mm | 1 in, Ø 25.4 mm | 72 N·m |
T6DR |
SAE C two-bolt J744 | 187 N·m | 2 in, Ø 50.8 mm | 1.1/4 in, Ø 31.8 mm | 72 N·m |
T6ER |
SAE C two-bolt J744 | 187 N·m | 3 in, Ø 75 mm | 1.1/2 in, Ø 37.1 mm | 72 N·m |
Port sizes do not change because the pump is a through-drive version: they are the ones the same frame uses on the standard single pump. The 72 N·m figure belongs to the two M14 screws that hold the SAE C adaptor.
One selection example, worked through
The catalogue prints an example for this range, and it shows how the two cartridge figures are used together. The requirement is 60 l/min at 1500 r/min and 150 bar:
| Step | Figure |
|---|---|
| Displacement needed | 40 cm³/r |
| Model chosen | T6CR 014, at 46 cm³/r |
| Theoretical flow at 1500 r/min | 69 l/min |
| Internal leakage at 150 bar | 5 l/min |
| Effective flow | 64 l/min |
| Theoretical power | 17.3 kW |
| Hydraulic power loss | 1.5 kW |
| Effective input power | 18.8 kW |
The ring is chosen above the calculated displacement, not at it, and the difference between theoretical and effective flow is the leakage of that ring at that pressure. Both figures come from the tables printed for each model.
One model number, decoded
Six strings from the shelf, read position by position:
| Model code | Reading |
|---|---|
| T6CR 003 1L00 A10 A1 | Model T6CR, SAE B two-bolt mounting, imperial port threads; cam ring 003 = 16.2 l/min, the smallest ring; shaft 1, keyed SAE BB; rotation L; porting 00; adaptor A (SAE A face), coupling 1 (SAE A), porting adaptor 0; design A; seal 1, NBR |
| T6CR 006 1L00 C40 A1 | The same model and shaft with cam ring 006 = 31.9 l/min, and a rear end for a larger second pump: adaptor C (SAE C face) with coupling 4 (SAE C) |
| T6CR 008 1L00 B20 A1 | Cam ring 008 = 39.6 l/min; adaptor B with coupling 2 (SAE B); porting adaptor 0 |
| T6DR 014 1L00 C40 A1 | Model T6DR, D frame; cam ring 014 = 71.4 l/min; shaft 1, keyed SAE C; adaptor C with coupling 4; seal 1 |
| T6DR 020 1L00 C42 A1 | Cam ring 020 = 99.0 l/min; adaptor C, coupling 4, and porting adaptor 2 for the driven pump’s ports |
| T6ER 042 1L00 C42 A1 | Model T6ER, E frame; cam ring 042 = 198.5 l/min; shaft 1, keyed SAE CC; adaptor C, coupling 4, porting adaptor 2 |
Read together, the strings show how the last three positions move as a group: an A adaptor with an 1 coupling on the small frame, and a C adaptor with a 4 coupling when a larger pump is driven off the back.
T6 through-drive: what to confirm before ordering
- Settle what will be driven. The adaptor, the coupling and the porting adaptor describe the second pump, not the first.
- Keep the three letters matched. An SAE A driven pump takes the
Aadaptor with coupling1. - Read the displacement code with the model.
014is 69.0 l/min onT6CRand 71.4 l/min onT6DR. - Check both torque limits: the input shaft by its shaft code, and the coupling by its coupling code.
- Say whether the ports are metric. That is the
(Y)after the model. - Confirm rotation and porting together, both read from the shaft end.
- Match the seal class to the fluid, and take the speed and pressure from the ring rather than the frame.
- Order the rear screws for the adaptor size: M10 for SAE A, M12 for SAE B, M16 for SAE C.
Ordering
Send the complete code from the nameplate, or the combination you need: model, cam ring, shaft, rotation, porting, adaptor, coupling, porting adaptor, seal class and modification. Where a cartridge kit is wanted instead of a complete pump, say so as well and we will confirm the cartridge against the code before the order is placed.
All pumps are supplied as new replacement units, inspected individually before dispatch.
Browse the T6 single vane pumps, the cartridge kits for the T series, or the wider T6 · T67 · T7 series.
Related
- T6 Mobile Single Vane Pumps: M and P, One Shaft Seal Apart
- T6 Single Vane Pumps: T6C, T6D and T6E in Eight Code Positions
- T7 Single Vane Pumps: T7AS to T7ES, and What the S Decides
- T67B Single Vane Pumps: Nine Code Positions, B02 to B15
- T6 single vane pumps
- Cartridge kits for the T series
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