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12th May 2008 10:00, vh
Peugeot Partner (2008) - car introduction
The utility car category is very specific for its requirements. While a passenger car can be quite easily designed for expected usage, an utility car should offer as many as possible ways of cargo space usage, so it can be used even in the most unexpected situations. The new Peugeot Partner offers many interesting solutions simplifying the transport of different cargo and there is also an important advance in the overall car construction and manufacturing. We offer many official photos and long description as the manufacturer itself presents the car.
Chapters
1.Introduction
2.Official photos
3.Exterior appearance
4.Cargo space
5.Availability of cargo space
6.The cabin
7.Safety
8.Handling
9.Engine units
10.Comfort trim

A latest-generation vehicle with optimised safety

The new Partner is manufactured on platform 2 of the PSA Peugeot Citroën group. This platform continuously improves with every new vehicle launch, and its use ensures a high level of safety and road holding.

On the platform the designers and stylists have created a van that is "round" on the outside and "square" on the inside. This is the result of a number of key objects with regards to the structural design: • a cube shaped load area to ensure optimal load volume, • a wide rectangular opening at the rear to guarantee good access and an ergonomically designed load area, • a reinforced ‘C’ post offering maximum protection in the event of a rear or side impact, • a forward positioned front windscreen pillar for good aerodynamics and overall balance of the vehicle’s body shape.

These structural features give the body an excellent load capacity and dynamic qualities of a very high level.

In terms of passive safety the vehicle benefi ts from three impact absorption structures (low, middle and top) ensuring optimal distribution of impact forces. In the event of a frontal impact they combine to preserve the integrity of the passenger compartment.

The lower structure backs up the traditional middle structure through the use of sub-frame extensions, a feature borrowed from the Peugeot 407. Designed in particular to enhance pedestrian safety in the event of front impact, the lower structure dissipates energy from a collision via the sub-frame extensions, then the sub-frame itself and fi nally the under body (fl oor and sills).

The middle structure for its part distributes nonabsorbed energy into the chassis leg, then to the bulkhead, the bulkhead side cross members and lastly the under body.

The addition of a third upper impact structure has been created by reinforcing the area above the front wings. It absorbs and directs any impact forces not yet dissipated towards the front windscreen pillars and the door frame.

These features together reduce the number of components affected in the event of impact, which in turn reduces repair costs and, therefore, overall running costs.

In the event of a side impact, the car’s occupants are protected by the strengthened B-pillar, the diagonal door reinforcements and the internal door padding, as well as by the design of the seat structure designed to absorb some of the impact forces.

At the rear, an impact beam and specifi c parts of the under body have been designed to deform in a controlled manner in the event of a rear impact, thereby limiting repair costs.

Lastly the reinforced B/C post preserves the survival cell within the passenger compartment in the event of rollover.

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