Order No. 1211
A diaphragm spring clutch is mounted
so that it can be turned on a stable tubular steel frame. When
engaged, power is able |
|
Order No. 1265
As a result of the wear and tear on
the driving disk, the position of the diaphragm spring alters,
which means that the pressure from the diaphragm spring on the
ramp shaped setting rings drops. |
|
Order No. 1266
Design of a multi-disk clutch
(without disengaging gear). This clutch has a number of internal
and external disks in its basket, which means that a large torque can
be transmitted despite a small diameter. |
Order No. 1139
- all externally toothed discs are fixed to the housing |
Order No. 1160
Also called fluid clutch |
Order No. 1155
Interaction of piston, connecting rod, |
Order No. 1157
Structure of a dual-mass flywheel: |
Order No. 1293
- Rotation of the secondary fly wheel mass against the primary flywheel |
Order No. 1226
- hydraulic clutch control mechanism |
Order No. 1166
Function and interaction of the
master cylinder and slave cylinder of a hydraulically-operated
clutch. |
Order No. 1002
- the transmission is cut wide open at the front and back |
|
Order No. 1089
Demonstration: - shifting all gears |
|
Order No. 1132
Demonstration: |
|
Order No. 1054
Possible demonstrations: |
Order No. 1121
- power flow and power distribution in the transfer case |
Order No. 1133
- layout of the entire transmission |
- function of the spur-gear differential - function of the synchromesh |
Order No. 1199
(Daimler Benz A Class) |
Locking device to prevent the selection of reverse gear from fifth gear. Control of the hydraulic clutch mechanism. |
Order No. 1055
Functions: |
- measuring the torque in all the gears - measuring and calculation of the gear-ratios in all gears using a graded scale |
Order No. 1285
An electric motor drives a segment of
a worm wheel via a worm. The worm wheel presses the release
pin forwards, |
|
Order No. 1255
This new construction is an
equal-axle three-shaft transmission with 6 forward and one
synchronised reverse gear. The shift elements are distributed on 2
shafts. Operation of the clutch is done automatically via central
disengaging gear. The transmission can easily be turned neutral.
All the gears can be shifted and the flow of force shown. |
|
Order No. 1282
The automated, sequential
six-gear transmission developed from the classical six-gear manual
transmission is controlled by the engine management. With
the help of a hydraulic piston, 2 gears can be shifted on each shift
level. To change to another shift level, a gate sleeve, which had
been able to rotate loosely up to then, is arrested by
a second hydraulic piston. In this way, the old gear is
firstly removed and then the selector shaft turned onto a different
shift level by a pin in the arrested gate sleeve when the inlet
selector shaft is displaced by the first hydraulic piston. Now,
shifting into the next gear is possible. The installation of a
gearshift rod with a button and a mechanical clamping lever
means that all the gears can be shifted and the function
of the hydraulic controls demonstrated. |
|
Order No. 1238
The new construction from the firm of
GRETAG is a mechanical shift gear with 6 forward and one
reverse gear. The shifting of the gearbox is done by an electric
motor via a gear wheel transmission onto a gear selector drum. The
slide shoes of the gearshift rods engage into the groove tracks
of the gear selector drum. For the differential, 2 differing
transmission ratios can be shifted, which means that 6 forward
gears result from the 3 forward gears of the main shaft. In
shifting, an automatic clutch actuator takes over the clutch
engagement and de-clutching. The gearbox is supplied as a
semi-automatic or fully automatic gearbox. All the gears can be
shifted by turning the electric motor. The function of the differential
is also easily visible. |
|
Order No. 1169
Function of the drive shaft, main shaft, |
Shifting of all gears, power distribution. Calculation of the different transmission ratios. |
Order No. 1248
Function of the drive shaft, main shaft |
Switching of all the gears. Calculating of the gear ratios in all gears. Extensive operating instructions with worksheets for pupils and teachers. |
Order No. 1273
Design of a two-shaft transmission
for vehicles with front-wheel drive. Pushing together of the
transmission shafts. Shifting of all gears, observation of flow of
force in the individual gears. Reading and calculation of the
various transmissions. |
|
Order No. 1278
- Set-up of a equal-axle three-shaft transmission |
|
Order No. 1212
This assembly model is well-suited to pupils own use. |
the shifting of all gears including reverse gear, the function of the gearshift rods and the gearshift forks. |
Order No. 1101
Main shaft stub, mounted on stands, for dismantling and assembly of |
The gears can be shifted easily. |
Order No. 1102
Main shaft stub, mounted on stands, for dismantling and assembly of |
The gears can be shifted easily. |
Order No. 1100
A complete main shaft with drive shaft has been prepared so that it can |
The tool is supplied. The correct assembly can be checked with the aid of the countershaft. The gears can be shifted easily. |
Order No. 1147
includes the following: |
|
Order No. 1148
includes the following: |
|
Order No. 1218
Four-speed transmission with drive shaft, main shaft and |
Order No. 1219
Four-speed transmission with drive shaft and |
Order No. 1220
Four-speed transmission with drive shaft and |
|
Order No. 1090
Parts cut in this model: |
|
Order No. 1127
A newly developed automatic transmission form Daimler Benz. |
|
Order No. 1283
A transmission with superlatives, a latest-generation transmission. |
|
Order No. 1260
DB A Class without torque converter |
|
Order No. 1261
DB A Class with torque converter |
|
Order No. 1223
This transmission designed for high performance has the following parts cut away: |
|
Order No. 1222
The cut away parts are: |
|
Order No. 1198
The complete power flow within the CVT automatic transmission |
|
Order No. 1158
- function of the input and output rotors |
Order No. 1159
- function of the input and output rotors |
Order No. 1193
- function of the impeller and turbine |
Order No. 1164
Function of a simple planetary gear train with ring gear, |
Order No. 1163
interaction of the components of the planetary gear train. |
Order No. 1162
Interaction of the components of the planetary gear train. |
Order No. 1161
Contains the most important automatic transmission components |
Order No. 1156
-Dismantling of the planetary gear train |
Order No. 1294
This model gives an insight into the
complicated interior of a modern shift valve body. In the
cutaway housing, one sees the control plunger and control springs.
An electro-solenoid valve has also bee cutaway so that its interior
can be studied. |
|
Order No. 1049
Possible demonstrations: |
Order No. 1092
Demonstrations: |
Order No. 1201
Demonstrations: |
Order No. 1046
Possible demonstrations: |
Order No. 1129
- function of the wheel-drive assembly (bevel gear, differential ring gear) |
Order No. 1136
All components of the differential are closely visible, they are mounted on |
Order No. 1043
Possible demonstrations: |
|
Order No. 1272
Intermediate axle differentials are
fitted in vehicles with four-wheel drive. They permit a balance
between the front and the rear axle and automatically block if
the wheels of one axle spin. They can be installed directly on the
transmission outlet for the rear axle. |
Order No. 1286
The differential used is a Torsen
centre differential from an Audi Quattro. Drive shafts have
been installed in both outlets of the differential and
provided with lever arms at their ends. The levers are held by
an infinitely adjustable balance. If the differential housing
is turned with the help of a rotary lever, the levers of the
axle shafts contact the lever arms of the balance. Depending
on the setting of the lever arms on the balance, the
differential blocks until the balance has been adjusted in such
a way that the differential slips lever arms. The locking
figure of the differential can be determined immediately
by reading off the lever arms (law of levers!). |
Order No. 1146
includes the following: |
|
Order No. 1105
The housing has been prepared so that simple assembly and dismantling |
|
Order No. 1106
The housing has been prepared so that simple assembly and dismantling |
|
Order No. 1241
- Parts cut in this model: solenoid switch, housing and windings |
|
|
|
Order No. 1052
All demonstrations same as Order No.1050 |
|
Order No. 1050
Possible demonstrations: |
Order No. 1120
- turning of the steering spindle |
Order No. 1051
possible demonstrations: |
Order No. 1098
4 similar or different steering gears prepared for dismantling |
Order No. 1142
- movement sequence in steering gear |
Order No. 1053
Possible demonstrations: |
Order No. 1228
Sequence of movement in the steering gear. Transmission ratio in the |
Order No. 1229
Sequence of movement in the steering gear. Transmission ratio in the |
Order No. 1202
- Function of the suspension strut with spring and cutaway shock absorber |
|
Order No. 1246
In the Daimler Benz S class, 4 spring
legs are used on the front and rear axle as function elements
of the Airmatic. They are connected with one another via a data
bus. The following can be clearly seen on the model: Air suspension
with inlet valve for level control and lowering of the chassis,
damper with bottom valve and gas area, solenoid valves for the
regulation of the damping strength. |
|
Order No. 1275
Active suspension and attenuation
system with hydraulic cylinder, helical spring and attenuator.
Behind the cutaway spring, the hydraulic cylinder (plunger) for
level regulation, the attenuator and, in the hollow piston rod, the
suspension strut control device are easily visible. |
|
Order No. 1270
A wheel at an angle no longer moves
on a straight line, but on a circular track. If the wheels are
pushed forwards, the wheels make efforts to move apart at the front
as a result of the rolling taper. |
Thanks to a precisely coordinated selection of the track, the wheel moves straight ahead and the wheel flutter is prevented. |
Order No. 1225
This axle comes complete with: |
|
Order No. 1224
The construction of the axle with its
5 links is easily distinguished by the use of colour markings.
The axle is complete with brake calipers, brake |
|
Order No. 1234
The shock absorber is cut away to such an extent that the inside and |
Order No. 1235
The shock absorber is cut away to such an extent that the separating |
Order No. 1213
cutaway ball-and-socket joint with wide angle of movement. |
|
Order No. 1262
Design of a ball and socket joint (constant-velocity or homo kinetic joint) |
Order No. 1263
Design of a tropoid joint with tropoid star with pinions and idlers. |
Order No. 1011
- the wheel axle, which hangs on two chains, is pulled down by springs |