V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley

Product Details
Customization: Available
Pulley Sizes: Type A
Manufacturing Process: Casting
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Manufacturer/Factory, Trading Company
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  • V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
  • V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
  • V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
  • V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
  • V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
  • V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
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  • Overview
  • Product Description
  • Product Parameters
  • Our Advantages
  • Packaging & Shipping
  • FAQ
Overview

Basic Info.

Model NO.
SPZ SPA SPB SPC
Surface Treatment
Oxygenation
Application
Chemical Industry, Grain Transport, Mining Transport, Power Plant
Transport Package
Wooden Box
Specification
Custom
Trademark
Custom
Origin
China
HS Code
8483600090
Production Capacity
500000

Product Description

 
Product Description
 
V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
Big Size Cast Iron V Belt Pulley
- High technology
- Wear resistance
- Smooth transmission
Product Parameters

V Belt Pulley Spz SPA Spb Spc Taper Bush PulleyV Belt Pulley Spz SPA Spb Spc Taper Bush PulleyV Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
Our Advantages

Production workshop
V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
Packaging & Shipping

V Belt Pulley Spz SPA Spb Spc Taper Bush Pulley
 
FAQ

Handbook 
Method of Belt Tensioning using BeltTension indicator
Calculate the deflection in mm on a basis of 16mm per meter of center distance Centre distance(m)*16=deflection(mm)
Set the lower marker ring at the deflection distance required in mm on the lower scale
Set the upper market ring against the bottom edge of the top tube
Place the belt tension indicator on top of the belt at the centre of span and apply a force at right anles to the belt deflecting it to the point where the lower market ring is levei with the top of the adjacent belt
Read off the force value indicated by the tope edge of the upper market ring
If a Fenner Belt Tension Indicator is not available a spring balance and rule will suffice.
NOTE:For single belt drives a straight edge shoude be placed across the two pulleys to act as a datum for measuring the amount of defection If the measured force falls within the values given,the drive shoule be satisfactory
A measured force below the lower value indicates undertensioning
A new drive should be tensioned to the higher value to allow for the normal drop in tension during the running-in period.
After the drive has been running for 30 minutes, the tension should be checked and re-adjusted to the higher value, if necessary
TROUBLE SHOOTING
Small cracks on v-Belt side and base
Generally caused by shortage of belt tension but excesscive heat and/or chemical fumes can also be given same failure.
V-Belt swelling or softening
Caused by excessives contamination by oil, certain cutting fluids or rubber solvent.
Whipping during running
Usually caused by incorrect tensioning, principally on long centre drives.If a slightly higher(or lower)tension does not cure the problem there may be a critical vibration frequency in the system which requirew.
Calculate ONE SHOT TENSIONING
Belts are built right form the start to ensuer totally precise inherent length, to stay matched during storage and on the drive, Now, after extensive field tests, our claim of genuine "one shot" tensioning has been endorsed by satisfied customers all over the world on all belt sections.
Simply put the belts around the pulleys, set them to the appropriate tension value stated in the "Tensioning Force" table below(using the Belt tension indicator as shown),run the drive under load for 30 minutes, stop the drive, check the tension, resetting to catalogue value if necessary On a properly designed drive for the application there will be no need for any further attention during the life of the drive.
TENSI ONING FORCES
Belt
section
Force required to deflect belt 16 mm per metre of span
Small Pulley Diameter(mm) Newton(N) Kilogram-force(kgf)
SPZ 56 to 95 13 to 20 1,3 to 2,0
100 to 140 20 to 25 2,0 to 2,5
SPA 80 to 132 25 to 35 2,5 to 3,6
140 to 200 35 to 45 3,6 to 4,6
SPB 112 to 224 45 to 65 4,6 to 6,6
236 to 315 65 to 85 6,6 to 8,7
SPC 224 to 355 85 to 115 8,7 to 11,7
375 to 560 115 to 150 11,7 to 15,3
8V 335 & above 150 to 200 15,3 to 20,4
Z 56 to 100 5 to 7.5 0,5 to 0,8
A(&HA banded) 80 to 140 10 to 15 1,0 to 1,5
B 125 to 200 20 to 30 2,0 to 3,1
C 200 to 400 40 to 60 4,1 to 6,1
D 355 to 600 70 to 105 7,1 to 10,7
 

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