SM 20 E-CSTR, SKF, Enhanced Vibracon SM 20 Carbon Steel Treated
EAN code: 7316581282562
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Despatch date information is on request.
SM 20 ELP-ASTR, SKF, Enhanced Vibracon SM 20 Low Profile Alloy Steel
EAN code: 7316581282579
SM 24 E-CSTR, SKF, Enhanced Vibracon SM 24 Carbon Steel Treated
EAN code: 7316581282616
SM 30 E-CS, SKF, Enhanced Vibracon SM 30 Carbon Steel
EAN code: 7316581282647
SM 30 ELP-ASTR, SKF, Enhanced Vibracon SM 30 Low Profile Alloy Steel
EAN code: 7316581282661
SM 36 E-CSTR, SKF, Enhanced Vibracon SM 36 Carbon Steel Treated
EAN code: 7316581282692
SM 36 ELP-ASTR, SKF, Enhanced Vibracon SM 36 Low Profile Alloy Steel
EAN code: 7316581282708
SM 42 E-CS, SKF, Enhanced Vibracon SM 42 Carbon Steel
EAN code: 7316581282722
SM 42 E-CSTR, SKF, Enhanced Vibracon SM 42 Carbon Steel Treated
EAN code: 7316581282739
This item is not currently available from our stocks.
Despatch date information is on request.
SM 42 ELP-ASTR, SKF, Enhanced Vibracon SM 42 Low Profile Alloy Steel
EAN code: 7316581282746
SM 42 E-SS, SKF, Enhanced Vibracon SM 42 Stainless Steel
EAN code: 7316581282753
SM 48 E-CSTR, SKF, Enhanced Vibracon SM 48 Carbon Steel Treated
EAN code: 7316581282777
TMAS 125-010, SKF, Stainless Steel Shims, for accurate vertical machinery alignment
EAN code: 7316570945904
TMAS 125-020, SKF, Stainless Steel Shims, for accurate vertical machinery alignment
EAN code: 7316570376456
TMAS 125-025, SKF, Stainless Steel Shims, for accurate vertical machinery alignment
EAN code: 7316571101231
TMAS 125-040, SKF, Stainless Steel Shims, for accurate vertical machinery alignment
EAN code: 7316570171211
TMAS 125-070, SKF, Stainless Steel Shims, for accurate vertical machinery alignment
EAN code: 7316570601640
TMAS 125-300, SKF, Stainless Steel Shims, for accurate vertical machinery alignment
EAN code: 7316571838335
TMAS 200-025, SKF, Stainless Steel Shims, for accurate vertical machinery alignment
EAN code: 7316570997767
TMDR 2, SKF, Demonstration/Training Rig for Shaft Alignment
EAN code: 7316574642526
About shaft alignment
Shaft misalignment breakdowns increase unplanned machinery downtime, resulting in higher maintenance costs and loss of production. Additionally, misaligned shafts can increase vibration levels and friction, which can significantly increase energy consumption and can cause premature bearing failures.
Traditional alignment methods, although very common, do not often produce the exacting degree of accuracy required by today’s precision machinery. The rough alignment methods still used nowadays, such as using a straight edge and feeler gauge, may be quick, but they can be inaccurate. Another traditional method employing dial indicators offers a higher degree of accuracy, but it requires specialist operators and can be time consuming.
- Find out more about SKF’s range of Shaft Alignment Tools