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Linear Shaft One End Tapped/Both Ends Tapped, Full Length Case Hardened (Part Numbers)

Linear Shaft One End Tapped/Both Ends Tapped, Full Length Case Hardened

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  • Linear Shaft One End Tapped/Both Ends Tapped, Full Length Case Hardened
  • Linear Shaft One End Tapped/Both Ends Tapped, Full Length Case Hardened
 
Product Overview
 
Linear guide shafts are high-precision shaft products that can be used with linear bushings and other bushing-type products. They not only offer excellent wear resistance, but also provide a variety of additional machining options.
 
Dimensional Drawing
 
MISUMI Guide Shaft Full Length Hardened Type Product Introduction
Specification Overview
 
TypeD tolerance Material Hardness Surface TreatmentD(mm)L(mm)
One end tapped typeBoth ends tapped type
E-SFATE-SFAWg7S45C or GCr15High-frequency quenching
For effective hardened layer depth, please click Surface Hardness Standard
S45C or GCr15 55HRC~
SUS440C or high-hardness corrosion-resistant steel 53HRC or more
-6 to 2020 to 150
E-SSFATE-SSFAWSUS440C or high-hardness corrosion-resistant steel
  
 
 
Alterations
 
AlterationsCodeSpec.
MISUMI Guide Shaft Full Length Hardened Type Product IntroductionLKCChange L dimension tolerance (Precision grade)
Specification method LKC
When using LKC, the unit for specifying the L dimension can be 0.1 mm
L<150 →L±0.03
MISUMI Guide Shaft Full Length Hardened Type Product IntroductionMSC
NSC
Change internal thread to fine thread
Applicable for D ≥ 12
Specification Method MSC14 (change M to MSC)
NSC14 (change N to NSC)

The M(N) size and MSC(NSC) size have become the same.
DMSC·NSC
12·138  
15·16810 
1881012
2081012  14
Thread Pitch1.01.251.5
 
Specification Table
Part NumberL
can be specified down to 1 mm increments
M (Coarse Thread) ·N (Coarse Thread)
Select
TypeD
One end tapped type

E-SFAT
E-SSFAT
Both ends tapped type

E-SFAW
E-SSFAW
620 to 1503      
820 to 150345    
1020 to 1503456   
1220 to 150 4568  
1325 to 150 4568  
1525 to 150 456810 
1630 to 150 456810 
1830 to 150 45681012
2030 to 150 45681012
 
D tolerance
Dg7
6-0.004
-0.016
8-0.005
-0.020
10
12-0.006
-0.024
13
15
16
18
20-0.007
-0.028
 
Product Features
 
Feature 1: Has high-precision dimensional tolerances and is widely used in various precision equipment.
Feature 2: Uses bearing steel (S45C or GCr15) with excellent wear resistance and SUS440C or high-hardness corrosion-resistant steel, which are high-frequency quenched to enhance wear resistance while maintaining original toughness.
Feature 3: Various additional processing options are available to meet different usage environments.
Feature 4: Usually used in combination with linear bushing products, it provides excellent linear guidance. Compared to general shaft and bushing structures, even during high-speed reciprocating motion, there is minimal wear.
 
Example of Use
 
Standard Linear Motion MechanismFunctions of Standard Linear Motion Mechanisms
(1) Using two guide shafts in parallel effectively prevents workpiece rotation
(2) Improves the accuracy and load capacity of linear motion.
(3) High-speed reciprocating motion can be achieved through the combination of guide shafts and linear bushings.
(4) Lower running resistance, resulting in less wear on the corresponding workpiece.
Sample Image
MISUMI Guide Shaft with Stepped Ends and Internal Thread Type - Complete Selection of Stepped Ends Types
  
Actual Product ImageFunction of Key Components in the Mechanism
Linear Guide Shaft: Supports components and, when used with linear bushings, provides guiding functionality.
Click for details Linear guide shaft

Linear Bushing: Uses a ball circulation structure to move the workpiece along the guide shaft.
For details, click Linear Bushing

Guide Shaft Support: Supports and secures the guide shaft, effectively adjusts shaft spacing, and enhances equipment stability.
For details, click Guide Shaft Support

Stopper: Serves as a limit, used to adjust the effective stroke of the mechanism
For more details, click Stopper
Factory Direct Sale MISUMI Guide Shaft with Stepped Ends and Internal Thread on Both Ends - Large Image of Stepped Ends Product
 
Application Industries
 
Medical Semiconductor Electronic & Electrical Appliances
MISUMI High-Frequency Quenched Shaft with Stepped Internal Thread on Both Ends - Manufacturer Selection for Both-End Stepped Type MISUMI Guide Shaft Both Ends Stepped Internal Thread Type Both Ends Stepped Type Product Details Introduction Factory Direct Sale Linear Shaft for Sliding, Both Ends Stepped with Internal Thread, Both Ends Stepped Type, MISUMI Model
Smart phone Food Automotive
LINEAR SHAFT Hard Shaft Both Ends Stepped Internal Thread Type Both Ends Stepped Custom Drawing Dimensions Chrome Plated Rod Dimensional Drawing - Both Ends Stepped with Internal Thread / Both Ends Stepped Comprehensive Selection of Dedicated Linear Shaft with Stepped Ends and Internal Thread, Stepped Ends Type, Bearing Steel, Stainless Steel
 
Related Products
 
Linear Bushing Standard type Straight type Bearing housing set T-type Shaft Collar Slit
Stainless Steel Hard Shaft Chrome-Plated Rod with Internal Threaded Steps on Both Ends, Both Ends Stepped Machining MISUMI Linear Shaft with Stepped Ends and Internal Thread Type, Stepped Ends Type Sales, MISUMI Guide Shaft Product Introduction Linear Guide Shaft Both Ends Stepped Internal Thread Type Both Ends Stepped Component Mechanism Design Selection
Typical model: LMU6 Typical model: BGHFS6000ZZ-30 Typical model: PSCS10-10
Advantages: High quality, low price, short delivery time Advantages: full range, high precision and high quality Advantages: full range of matching shaft products
 
Related Documents
 
Anti-rust performance of metal materials and surface treatment  Click Anti-rust performance table

Part Number 

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Part Number
Part NumberMinimum order quantityVolume DiscountDays to ShipEnd Shape (Right) Material Shaft Dia. D
(Ø)
Length L
(mm)
Internal Thread M (Coarse Thread)
(mm)
MD Change internal thread to fine thread [MSC]
(mm)
N
(mm)
ND Change internal thread to fine thread [NSC]
(mm)

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Basic Information

Basic Shape Solid End Shape (Left) Tapped Shaft End Perpendicularity Perpendicularity (0.2)
Heat Treatment Induction Hardened Surface Treatment Not Provided Shaft Fit Tolerance g7

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