Sliding floor with side loading doors
7595 kg
Technical specifications
The hot-dip galvanised outer frame and hot-dip galvanised cross members ensure long-lasting corrosion protection and high operational reliability. Bolted connections and a special plain bearing system ensure maximum stability and a long service life. The high-quality premium paint finish provides additional long-lasting protection.
- Fifth-wheel height
- 1,130 mm
- Total height
- 4,000 mm
- Inseam
- 13,520 mm
- Internal width
- 2,490 mm
- Internal height of side panel (front)
- 2,692 mm
- Internal height of side panel (rear)
- 2,692 mm
- Volume
- 91.00 m³
- Net weight
- 7,595 kg
The lightest sliding floor with side doors on the market
Maximum payload, uncompromising stability and complete flexibility when loading. The side-door model is designed for heavy loads and the rigours of daily use, setting new standards in terms of weight, load-bearing capacity and cost-effectiveness.
- Lowest kerb weight in its class at just 7,595 kg for maximum payload and maximum return per journey.
- Extremely robust side doors for rapid loading with a forklift or pallet truck across the entire side of the vehicle.
- A continuous steel chassis combined with a reinforced side door construction for lasting stability.
Lightweight construction that generates a measurable profit every year
A PEISCHL reduces the vehicle’s kerb weight, thereby permanently lowering fuel consumption. Every tonne saved translates to around 1 litre less diesel per 100 kilometres. With an annual mileage of 180,000 kilometres, this adds up to 1,800 litres less fuel consumption per year. Technical efficiency thus translates into a clearly measurable economic benefit.
- €2,880 less in fuel costs per year at a diesel price of €1.60
- €23,040 in savings over eight years per tonne of weight reduction
- Greater permissible payload per journey and thus higher returns over the same distance
Revolutionary chassis design
The PEISCHL system, featuring an extremely robust structure and a continuous steel chassis, is designed to withstand the highest levels of continuous stress in demanding transport applications. Rather than a self-supporting design, it offers maximum stability, a long service life and reliable performance when handling waste, recycled materials, timber and bulk goods.
- Extremely robust outer frame and roof strap construction for aggressive continuous operation.
- Light and Strong chassis construction made from high-strength S700MC steel for maximum payload with the highest stability.
- Unique bolted connection between the body and chassis for optimal force distribution and a structurally stable construction.
Innovative bodywork design
The body is designed as a solid trough structure for universal and heavy-duty use. Reinforced side walls, a sturdy end wall construction made from hollow sections, and extremely robust corner posts ensure high durability, even when handling heavy and abrasive materials. Specially developed aluminium profiles enable a weight-optimised design whilst maintaining high structural stability.
- Extremely robust body and sidewall construction for refuse, recycling, timber and bulk goods.
- Reinforced end wall and solid corner posts for maximum load-bearing capacity in continuous operation.
- Specially developed aluminium profiles for an optimal combination of stability and low weight.
New rear portal
The newly developed rear portal is designed to withstand extreme loads and ensure a smooth unloading process. Its robust construction and well-thought-out details ensure reliability in demanding, continuous use.
- Specially developed aluminium profiles using PEISCHL profile technology, together with reinforced corner posts, ensure maximum stability and load-bearing capacity.
- A solid double-jointed hinge allows for unobstructed through-loading without any hindrance during unloading.
- Newly designed rear door seals and external stainless steel twist locks with special fasteners ensure long-lasting performance even under harsh operating conditions.
The differences at a glance
The reduced kerb weight is not achieved by cutting back on materials or compromising on quality, but through the targeted use of high-strength steels such as S700MC and a comprehensively optimised chassis design. This saves weight without compromising on stability and durability.
The result is a design that combines high stability with low kerb weight. This means you benefit from reduced fuel consumption and a higher payload per journey in day-to-day use.
In the long term, this leads to measurable cost savings, greater transport efficiency and improved economic performance throughout the vehicle’s entire service life.
manufacturers
; not a self-supporting design
Highest payload on the market More profit per journey
40 mm thick rear doors Maximum side loading height
Video showing a sliding floor with side loading doors
The video shows the PEISCHL sliding floor with side loading doors in practical use. It demonstrates the flexible side access, the high loading height and the robust construction, which ensures efficient loading and unloading. This clearly illustrates how payload, stability and easy access work together in day-to-day transport operations.
Free download: Brochure “Sliding floor with side loading doors”
This brochure provides you with all the key information at a glance. Technical specifications, features and design details are presented clearly and concisely.
Lightweight construction, quality and innovation
in Austrian sliding-floor transport
As Austria’s leading sliding floor specialist, Peischl sets new standards with ease and precision. Our vehicles combine robust design with innovative technology to create solutions that make freight transport more efficient and cost-effective. For smooth operations and hassle-free scheduling.
200 years of experience
A tradition of vehicle manufacturing dating back to 1820 and a large number of satisfied customers
Tailor-made solution
The right customised sliding floor vehicle for every requirement
Innovative technology
Efficiency and precision through modern systems for cost-effective transport