Vespa Si Carburettor Pilot Idle Jet 9892 Dellorto

Vespa Si Carburettor Pilot Idle Jet 9892 Dellorto

Product code: BD01740
Sale price$11.00 Regular price$13.00
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Jet Size:38-120
Quantity:
In stock
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Pickup available at 2QL Pyewipe Road Usually ready in 4 hours

Vespa Si Carburettor Pilot Idle Jet 9892 Dellorto

38-120

2QL Pyewipe Road

Pickup available, usually ready in 4 hours

2QL Pyewipe Road
Unit 1
Grimsby DN31 2QL
United Kingdom

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Beedspeed Ltd
Unit 1, Pyewipe Road
Grimsby
DN31 2QL
United Kingdom
 
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Vespa Si Carburettor Pilot Idle Jet 9892 Dellorto

Used as Idle Jet in Dellorto Si & FHB Carburettors
M5 Diameter / Thread Size
Length of Thread - 6.5mm
Total Length 29mm

Shorter than 11868 to suite the shorter in height H type carburettor

Range from 48/100 to 55/160 Replaces most older 6935 idle jets

Please select size from drop down list.

The side jet of the SI carburettors does not have the simple function of a conventional jet, i.e. the pure quantity regulation of the fuel quantity. With the introduction of the PX 1977 the SI carburettor type and its side jets were modified. The old carburettor types, such as those still used in Rally engines, had a separate air duct for the side jets. These were therefore equipped with nozzles which could only regulate the amount of fuel (simply named nozzles, e.g. Rally 200 ND=50)

DOPPLE FUNCTION
The new carburettor types have a closed air hole for the side jet. Piaggio has been using mist nozzles with a double function since then, recognizable by the double designation (e.g. 55/160). For this purpose, the side jets are hollow drilled from above and thus themselves ensure the appropriate premixing of petrol with air.
This means that the mixture preparation in the side jet area works in the same way as in the main jet section via an air jet and a main jet, here only combined in one part.

AIR Nozzle VS FUEL BORING
The air nozzle comes into play as a corrective element. As the engine speed increases, the engine receives more and more fuel from the fuel hole of the air nozzle. The air nozzle then mixes in air proportionally to keep the ratio of air to fuel always linear.
A 120 air nozzle has a bore of only 1.2mm, thus provides very little air and is greasing accordingly. A 160 air nozzle provides a lot of air and is therefore rather lean.

example case br /> A 200cc engine should have a fatter side nozzle. According to the old system a 52/140 was chosen instead of the standard 55/160.
The nozzle with 52/140 (2.69) has a smaller hole for the gasoline (52) compared to a 55/160 (2.91), but at the same time a smaller air nozzle (140). The smaller air nozzle greases massively from the middle speed range, but the smaller petrol hole becomes thinner from idling. Thus one receives a nozzle which behaves more leanly up to the center of revs, but greases clearly afterwards. This means that a ringing in the middle of the rev range can usually not be cured with such a nozzle. A 58/160 would be better here, but such sizes are only covered by Pinasco with nozzles that are only available in expensive sets.

INFLUENCE RANGE
It is important to know that the influence of the secondary nozzle extends over almost the entire speed range. At higher speeds and full slide valve stroke, the proportion of mixture of the secondary nozzle in the total mixture is relatively low but still clearly measurable.
If the proportion of air nozzles is reduced (i.e. instead of 160 a 140) the engine will run richer on top and vice versa. Likewise, with a smaller gasoline hole in the side nozzle, the engine will run significantly leaner when pushing and accelerating out.





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