Product Details


+
  • DNL-WD.jpg

DNL-WD

Shaft diameter: φ11 to φ420 mm
Torque: 50 to 315,000 N.m
Rotational speed: 500–16,000 rpm
Our company is capable of manufacturing various non-standard diaphragm couplings. If you have any customized requirements, please feel free to contact us!

Product Details


Specification Parameters

Model Type Number of holes Shaft diameter
mm
Nominal
Torque
N.m
Permissible
Rotational Speed
r/min
Shaft extension
L1 & L2
mm
A
Phi
mm
Rotational speed rpm / Power kW Maximum Permissible Compensation Amount
300015001000750600500 Angular to Axial
2P4P6P8P10P12P Angle Axial
80428501600060821264   1 ±2.2
9043280160008092191065  1 ±2.5
100438200140008010148241612  1 ±3.0
1204422501400011012060302015  1 ±3.5
1254484001300011012597483224  1 ±3.7
13045545013000110130109543627  1 ±3.9
14046063012500140140152765138  1 ±4.1
15046580012500140150193976448  1 ±4.2
1804751400100001401803381691138568561 ±4.6
1954852000950017019848324216112197811 ±5.0
215495280090001702156773382261691351131 ±5.5
170675180088801401704352171451098772 Two-thirds ±2.8
19068528008000170190677338226169135113 Two-thirds ±3.0
20069531508000170200761381254190152127 Two-thirds ±3.1
220610040007800210228967483332242193161 Two-thirds ±3.3
2406110500067002102451208604403302242201 Two-thirds ±3.5
2606120600062002102651450725483362290242 Two-thirds ±3.7
27561309000589025027521751087725543435362 Two-thirds ±3.8
2906140125005580250295302115101007755604503 Two-thirds ±3.9
3208160280004500300322676633832255169213531128 1/2 ±2.8
3508180355004250300350857842892859214517161430 1/2 ±3.0
37082005600038803503761353267664511338327062255 1/2 ±3.3
4201022090000358035042521748108747249543743503625 1/4 ±2.4
49012250100000355041049524164120828055604148334027 1/4 ±2.8
5501428018000035004105554349621748144991087486997249 1/4 ±2.6
6101432020000034004106104832924164161101208296668055 1/4 ±2.8
715163602500003300410715604113020520137151031208210068 1/4 ±3.0
820164203150003200450820761183805925373190291522412686 1/4 ±3.1

 

Product Code Description

 

Selection Steps

Determine the calculated torque Tc (N·m) using the formula: Tc = 9550 × K × Pw / n Where: K - Working condition coefficient, selected according to Table 2; Pw - Drive power, in kW; n - Operating speed, in r/min.
Based on the TC value, determine the basic coupling model from Table 1, ensuring that Tc ≤ Tn.
Based on the operating speed and the shaft diameter dimensions at the transmission ends of the prime mover and working machine, verify from the data table whether these values fall within the range of the selected basic model. If they exceed the specified range, a new selection should be made. Determine the distance between the two shaft ends of the prime mover and the working machine.

 

Request a Quote Now

Please leave your phone number or email address, and we will contact you within 24 hours