Wayground logo

Free Printable Worksheets

Font size

S
M
L
XL
Worksheets

BRAKES WORKGROUP - QUIZ 1

Total questions: 10

Worksheet time: 3mins

Name
Class
Date
1.

EN 13452 -Part 1 is a standard for

a)

Brake system Performance Requirements

b)

Brake System -Design Principles

c)

Brake System - Methods of Test

d)

Brake System - Techniques of Braking functions

2.

EN 13452 applies to vehicles operating on

a)

Tramways

b)

Metros on rubber tyred wheels

c)

Metros on Steel Wheels

d)

Mainline

3.

As per EN 13452 - 1, Principle means of Initiation are

a)

Driver vigilance, or ATO

b)

Authorised person via control separate from brake controller

c)

Passenger Alarm

d)

Driver via dedicated position on brake controller or ATP system

4.

As per EN 13452 -1 , which of the following braking function shall have the highest level of integrity

a)

Emergency Brake

b)

Service Brake

c)

Security Brake

d)

Parking Brake

5.

As per EN 13452-1, "When braking current is fed into a resistor, it is called ____________"

a)

Eddy current Braking

b)

Rheostatic Braking

c)

Regenerative Braking

d)

Magnetic Track Braking

6.

As per EN 13452-1, If a load is defined as "EL 6" , what does "6" stands for

a)

All fixed seats occupied

b)

Train fully equipped for service operation but with No passenger on board

c)

Number of standing passengers at a density of X/m2

d)

Empty train with drained air

7.

As per EN 13452-1, for any brake system which of the following are braking fundamentals

a)

Payload

b)

Stopping distance

c)

Gradient

d)

Adhesion

8.

As per EN 13452 -2, The parking brake shall keep the train in position for____________________hours

a)

1 Hour

b)

12 Hour

c)

Indefinitely

d)

1.5 Hours

9.

As per EN 13452-1,Which of the following is a braking technique

a)

Service Braking

b)

Adhesion dependent braking

c)

Wheel Slide Protection (WSP)

d)

Drag Braking

10.

As per EN 13452-1, Response time corresponds to

a)

Delay time - Buildup Time

b)

Buildup time + Stopping distance

c)

Delay time + Buildup Time

d)

Buildup time / (Delay time+ Stopping distance)