Speaker Embedded Nut

Speaker Embedded Nut

Speaker embedded nut Quick Details Place of Origin:Guangdong, China (Mainland) Brand Name:Pingood, Model Number:PG Head type:Pan Standard:ISO, GB,DIN,ANSI,ASME,ISO Material:Carbon Steel Surface treatment:Zinc Plated Polished/Nickel Plating Certificate:ISO9001:2015 Color:Zinc White/Blue...
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Description
Technical Parameters

Speaker embedded nut

 

Quick Details

Place of Origin:Guangdong, China (Mainland)

Brand Name:Lanejoy,

Model Number:PG

Head type:Pan

Standard:ISO, GB,DIN,ANSI,ASME,ISO

Material:Carbon Steel

Surface treatment:Zinc Plated Polished/Nickel Plating

Certificate:ISO9001:2015

Color:Zinc White/Blue zinc/Black zinc/Blue and white zinc

Size:Customers’Request

Price Terms:FOB,CIF,CRF,EXW and others

Delivery Time:Within 20 workdays after receive payment

Model:Pg18

Delivery Method:by sea,by air,or by express service

Supply Ability:10000000 Piece/Pieces per Day

 

Packaging & Delivery

Packaging Details:opp bag/carton

Port:Shenzhen

Delivery Time:Depending on the order quantity

 

 

Products Show

x1

CNC machining process:

1. Edit the program according to the drawings (manually or automatically generated)

2, the input program

3. Verification procedure

4. Install blanks and tools

5, the knife operation

6, the first trial cut

7. After step 6, the workpiece fails: program modification or tool compensation

8, workpiece processing

Factory and Our Team

x2

Speakers embedded in CNC lathes.jpg

Speaker cover CNC lathe.jpg

 

Our Certificates

Speaker nylon CNC lathe.jpg

Production Process

Loudspeaker K-type CNC lathe.jpg

Test Equipment

Speaker Reed CNC Lathe Parts.jpg

Cooperation Partner

Speaker hydraulic CNC lathe.jpg

Trade Show

Main Markets

Total Revenue(%)

Southeast Asia

20%

South Asia

20%

Mid East

20%

Eastern Europe

18%

Northern Europe

10%

North America

10%

Africa

2%

Speaker stainless steel CNC lathe.jpg

Packaging & Shipping

The accumulator slams the CNC lathe piece.jpg

Accumulator Holds CNC Lathe Parts.jpg

In order to achieve the longest tool life, the cutting edge should be kept in continuous cutting for as long as possible during the milling process. If the tool enters and exits too frequently, the tool life will be significantly shortened. This will exacerbate thermal stress and thermal fatigue on the cutting edge. It is more advantageous for modern carbide tools to have uniform and high temperatures in the cutting area than to have large fluctuations. The profiling milling path is often a mixture of up-cut and down-cut (zigzag), which means that the knife is frequently eaten and retracted during cutting. This tool path also has a bad influence on the quality of the mold. Each time a knife is used, it means that the tool is bent and there is a mark on the surface. When the tool exits, the cutting force and the bending of the tool are reduced, and there is a slight material "overcutting" in the exit portion.

 

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