Showing posts with label Scalextric Formula Junior. Show all posts
Showing posts with label Scalextric Formula Junior. Show all posts

Monday, 7 May 2018

Magnets in Scalextric motors

Keeping the Scalextric motors at their best by keeping the magnet strong

Introduction
The electric motor in all Scalextric cars produced to date uses a 3 pole wire wound armature and a permanent magnetic field. Over the years 3 general types of magnet has been used, in the 1960 a ferrous (Iron based) block magnet was used then from the 1970s two shaped magnets have been used. More recently some high performance motors have been produced using the stronger shaped neodymium magnet.
This article relates to the earlier ferrous block magnet as fitted to the RX motor, Powersledge motor and the Formula Junior motor.

How a motor works
A motor works by having two magnetic fields attract / repel one another, just like two block magnets do. In a motor one magnetic field comes from the ferrous block magnet and one from the electrical current flowing in the wire windings. Therefore the stronger the magnetic field from the ferrous block magnet the more torque the motor will produce. The electric current is switched from winding to winding by the commutator as the armature rotates.

Magnetism
In any non magnetic ferrous material the spins of the electrons in the atoms of the material are randomised giving equal numbers of "up spin" and "down spin". It's the spin of the electrons that create the magnetic field. When the ferrous material is placed in a strong magnetic field the electrons all align so they spin in the same direction producing an overall magnetic field. The material has become magnetised.
However, the magnetised material is in a higher state of energy compared to non magnetic material. This means a ferrous block magnet will lose its magnetic effect when it can. To maintain the magnetic effect of a ferrous block magnet the magnet must be kept in a tight magnetic loop. This is why magnets when not being used use a "keeper". A "keeper" is a piece of magnetically conductive material that keeps the magnetic field in a fixed ferrous loop.

Magnets in motors
In a Scalextric motor the ferrous block magnet is kept in a tight magnetic loop using the steel motor frames and the ferrous core of the armature. In this way an assembled motor will retain its magnetism for many, many years. Each of the Scalextric motors that use the ferrous block magnet are magnetised as an assembled motor.
The problem with the Scalextric motors that use a ferrous block magnet is that if the magnet is removed from the motor, for any reason, it will immediately lose some of its magnetic field strength. Basic tests show that the magnet will be 20 to 30 percent weaker. There is no gain in magnetic field strength when the magnet is refitted to the motor. Do this enough times and the magnetic field will diminish to the point where the motor will not operate.

Conclusion
To maintain a healthy magnetic field strength the ferrous block magnet must be magnetised with the motor assembled. Specialists, like Scalextric Car Restorations, have the equipment to do this. Completely "dead" magnets can be brought back to life and the magnetic field can even be reversed in just a second. Reversing the magnetic field will change the direction of rotation of the motor.

Saturday, 4 June 2016

New Scalextric rear tyres tires for Vintage Scalextric Formula Junior cars


These Scalextric tyres were used extensively during the late 1960s.


The new hand made MAX Grip tyres are unique to Scalextric Car Restorations and give the absolute maximum in performance at all times. Cornering and acceleration will all be at their maximum with these tyres. They give the very best performance possible on all track surfaces at all times. Simply put we have not yet discovered a better tyre for grip and race performance.
The MAX Grip tyres are hand moulded from 29 Shore A hardness rubber which is a very high grip material.
The tyres are smooth treaded and have no writing on the tyre sidewall.
Dimension
Size (mm)
Outside Diameter
22.0
Inside Diameter
12.0
Overall Width
7.5
http://www.scalextric-car.co.uk/Parts/Tyres/Tyres_Rear_Formula_Junior/Tyres_Rear_Formula_Junior.htm

Ref.
Description
Fitment
C58 Spanish Cooper Climax with Disc Wheels Front  
C62 Spanish Ferrari 156 V6 with Disc Wheels Front  
C63 Lotus 21 Front  
C63 Spanish Lotus 21 Front  
C72 BRM   Rear
C73 Porsche 804   Rear
C77 Ford GT40   Rear
C79 Offenhauser front engine Front  
C80 Offenhauser rear engine Front  
C81 Cooper   Rear
C82 Lotus 25   Rear
C85 BRM   Rear
C86 Porsche 804   Rear
C87 Vanwall Race Tuned Front  
C88 Cooper Race Tuned Front  
C89 BRM P25 Race Tuned Front  
C90 Ferrari 156 Race Tuned Front  
C91 D type Jaguar Race Tuned Front Rear
C92 Porsche Spyder Race Tuned Front Rear
C97 Aston Martin DB5 007 set Front Rear
C098 BRM P25 Power and Glory Front Rear
CF1 Spanish Cooper Front  
CF1 Spanish Ferrari 156 Front  

 MAX Grip Scalextric tyres from Scalextric Car Restorations.