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Hard Locking Bearing Nuts (HLB45)

Número da peça:

HLB45
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Desenho de contorno e tabela de especificações

Back to the Category Groove Nuts/Shaft Nuts

Technical drawing - Locknuts

Hard Locking Bearing Nuts:Related Image

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Available dimensions and tolerances can be found under the tab More information.

Basic properties (e.g., material, hardness, coating, tolerance) - Locknuts

TypeMaterialHardnessSurface Treatment
StandardThin Type
HLB-EN 1.0038 Equiv.-Parker
HLBM-Electroless Nickel Plating
HLBCHLBUEN 1.1191 Equiv. Thermal Refined22~28HRCParker
HLBS-EN 1.4301 Equiv.--
For further specifications please see the More information tab.

Composition of a product code - Locknuts

Part Number
HLB35

General Information - Locknuts

Thread lock groove nut - groove nut - self-locking nut - square shaft nut with thread lock - hexagon shaft nut

 

Selection Details of - groove nut/shaft nut

- Material: stainless steel, steel

- Coatings: burnished, phosphate conversion coating

- Thread diameter (metric): M3 to M60

- Thread diameter (in inches): 0.391” to 12.562”

- Thread pitch (metric): fine thread, control thread

- Locking method: with adjusting screw, with clamping screw, with locking plate

- Drive form: grooves, hexagon, square

 

Description/Basics - groove nut/shaft nut

Groove nuts and shaft nuts are used to secure ball bearings and roller bearings to a shaft.
Using a shaft nut, a ball bearing can be clamped against a shoulder, for example on a rotary shaft. The inner ring of the bearing is thus firmly positioned on the shaft pin and the bearing is fully secured against axial displacement.

 

MISUMI offers various drive forms for shaft locknuts. The hexagon socket, which is the most common drive form for nuts in general, is also available for shaft nuts. This allows the locknut to be tightened and loosened without a complicated special tool.
The bearing lock nut with external hexagon can be secured by using either a set screw, a clamping set screw or a bearing lock nut. In the case of the locking plate, there must be a keyway in the shaft or in the shoulder of the shaft. The keyway ensures that the inner tab of the locking plate can lock into it. The outer tabs are turned over after tightening the shaft nut and thus secure the nut against loosening and at the same time against improper tightening.
In addition, there is also a bearing nut in square form. The anti-rotation lock is optionally done via an adjusting screw or a locking plate. The square serves as a drive and has a common wrench width.

 

In contrast to a shaft nut with a hexagon or square drive, a hook wrench was required to tighten nuts. The articles MISUMI offers are similar to those of DIN 981 for groove nuts and DIN 1810 for spanner wrenches.
The key is inserted with the hooks into the grooves of the shaft nut and moved clockwise or in the opposite direction. The lever rotates the thread of the nut on the thread of the shaft pin and the nut clamps or secures the bearing.

 

The size of the hook wrench is not based as usual on the width of a conventional nut. The underlying value here is the shaft diameter suitable for the nut (shaft Ø, see Table), which is referred to as number (for no., see Table) at MISUMI.
Thus, the hook wrench with the article number MFK16 is suitable for the shaft diameter 16 mm and 18 mm, which corresponds to a thread diameter of M8 or M10 respectively.

 

Another type of locking is the self-locking bearing nut. This variant of a bearing lock nut is a two-part nut. One half of the nut has an outer cone that fits into the inner cone of the second half. If the two halves of the nut are tensioned against each other, friction develops in the area of the cone, which inhibits self-loosening. This type of shaft nut is also driven by a hook wrench.
This type of bearing locking does not need a keyway compared to the locking plate, with the same number of assembly parts. As a result, the design requires less effort, which in turn reduces development costs and production costs.

 

Application Examples - Locknuts

Application example: groove nut ball bearing - rotary shaft

Application example: groove nut
(1) Ball bearing, (2) Shaft nut, (3) Rotary shaft

Application example: self-locking shaft nut - rotary shaft

Application example: self-locking shaft nut
(1) Upper part shaft nut, (2) Lower part shaft nut, (3) Rotary shaft

 



Industrial applications

3D printer industry
Automotive industry
Pharmaceutical industry
Packaging industry

Lista de números de peça

Número de itens
Número da peça
HLB45

Thread Nominal M

Material

Surface Treatment

RoHS?Quantidade mínima de encomenda
M45x1.5
[Steel] EN 1.0038 Equiv.
Surface Treatment Provided
10
1 unidades
Preço unitário (excluindo IVA)(Preço unitário incluindo IVA)
Data de envio standard
11.97 €
( 14.24 € )
5 dias úteis

Informações detalhadas

Informações básicas

Compared to a normal bearing nut, it is not necessary to machine the keyway on the lock washer and the shaft.

Contorno e especificações

Back to the Category Groove Nuts/Shaft Nuts

Technical drawing - Locknuts

Hard Locking Bearing Nuts:Related Image

Open the technical drawing in the new window

 

Available dimensions and tolerances can be found under the tab More information.

Specification Tables - Locknuts

Part NumberMxPitch (Fine)No. 1 Nut (Lower Nut)No. 2 Nut (Upper Nut)Common to No. 1 and 2Setting Height ℓPerpendicularity of End Face (Max.)Mass per Set (g)
TypeMD1D2BeD1e1bSTStandardThin
StandardThinStandardThinStandardThinStandardThinStandardThinMinMaxMinMaxStandardThin

HLB (M10~50)
HLBM (M12~50)
HLBC (M10~50)
HLBS (M12~50)


HLBU (M25~50)
1010x0.7518136-2.7-186-2.5-3.5-32.09.510.5--0.0515-
1212x1.022172217
1515x1.0252172574.5411.512.523
1717x1.028242829
2020x1.0322683285.513.514.543
2525x1.538321074.23.7381074.0463516.017.51011.57245
3030x1.545384510363
3535x1.552441184.2521184.07418.019.51213.5150100
4040x1.5585012958995562.517.018.51415.5170140
4545x1.5655613106510106619.020.51617.5240201
5050x1.5706114117011117721.022.51819.5285250
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