Red M6 Stainless Steel Extension Shaft For Car Rotary Polisher
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Red M6 Stainless Steel Extension Shaft For Car Rotary Polisher

Packaging Details
1. Plastic film & kraft paper packing
2. Plastic bag packing
3. Plywood board packing
4. Wood box packing
5. Pallet packing
6. Bundle packing
7. As per customer's requirement
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Description

Technical Parameters

Quick Detail


CNC Machining or Not:

CNC Machining

Type:

Drilling, Laser Machining, Milling, Rapid Prototyping
Material Capabilities:Aluminum, Brass, Bronze, Copper, Hardened Metals, Precious Metals, Stainless Steel, Steel Alloys
Micro Machining or Not:Not Micro Machining
Place of Origin:Guangdong, China
Drawing Format:.pdf/.dwg/.igs./.stp/x_t. etc

Product Scope:

Custom spare parts,CNC ptototype,Mobilephone case,hardware accessories
Surface Treatment:Zinc plating,Anodization,Powder,Passivation,Brushing & ploshing etc.
Services:CNC machining, Milling, Turning, Grinding etc, and assembly
QC System:100% inspection before shipment, Third Party inspection available
Lead time:3-5 workdays for samples, 10-20 days for bulk order
Trade Terms:EXW, FOB

Shipment Terms:

express,air freight,sea freight
Supply Ability:10000 Piece/Pieces per Month cnc machining automobile parts manufacturer
Packaging Details:1 PC per PE Foam for standard packing,or depanding on your requset for cnc machining automobile parts manufacturer
PortFOB Shenzhen



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Red M6 Stainless Steel Extension Shaft for Car Rotary Polisher7

Red M6 Stainless Steel Extension Shaft for Car Rotary Polisher8

Red M6 Stainless Steel Extension Shaft for Car Rotary Polisher9



Contact Us


fay@pride-cnc.com
Block D, Dianlian Science Park, Matian St., Guangming District, Shenzhen 518106, China

+8613477665385


 13477665385


Our Equipment


Red M6 Stainless Steel Extension Shaft for Car Rotary Polisher14

Red M6 Stainless Steel Extension Shaft for Car Rotary Polisher16



Latest News


In the process of using rolling bearings due to improper operation, inadequate lubrication, rust and corrosion, and some other factors such as current, external materials, eccentricity, etc. caused the life of bearings greatly reduced, so it is necessary to use bearings in the process of preventive measures to have sufficient understanding and understanding.

 

A. Bearing current.

Power on when the bearing is turned may result in grooves or inscriptions. Improper electrically operated grounding can cause minor burns when bearings are stationary.

Precautions: Reduce or prevent current from passing through the bearings through an appropriate ground connection before welding components other than bearings.

 

B. Bearing external material.

Wear particle contamination and debris intrusion can cause wear, abrasions and dents in the bearing work surface.

Precautions: Remove invasive particles and debris, replace lubricants, and check the sealing system.

 

C. Bearing eccentricity.

Eccentricity, tilting or overburdening can result in geometric stress concentration or surface peeling Precautions: The operating temperature of rolling bearings can be monitored at any time using precisionly machined housings and shoulder heaters, and automatic alarm or stop preventing shaft accidents when the temperature exceeds the specified values. High temperatures often indicate that the bearing is in an abnormal condition.

 

High temperatures are also harmful to the lubricant of bearings. Sometimes bearing overheating can be attributed to the lubricant of the bearing.

 

Reduce bearing life if the bearing is transferred over a long period of time at a temperature above 125 degrees C. Causes of high temperature bearings include: insufficient or excessive lubrication, impurities in lubricants, excessive load, bearing loss rings, insufficient clearance, and high friction from oil seals, etc.

Continuous monitoring of rolling bearing temperature is therefore necessary, whether the bearings themselves or other important parts. If the operating conditions remain the same, any temperature change can indicate that a fault has occurred. Regular measurements of bearing temperature can be assisted by thermometers, such as digital thermometers, which can accurately measure bearing temperature and display it in temperature-determined units of degrees C or Fahrenheit.

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