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The production process
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The production process
Copper Pipe Production Process
01
Step
01
Cathode Raw Materials The manufacturing process begins with the use of pure cathode raw materials, ensuring the high quality of the final product—free from impurities and recycled copper.
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02
Step
02
Melting and Forming Copper is melted at high temperatures and poured into special molds, creating blanks for further processing.
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03
Step
03
Drawing and Rotation At this stage, the blanks pass through shafts and rollers, acquiring the required dimensions and shapes.
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04
Step
04
Primary Drawing The pipes undergo primary drawing, reducing their diameter and increasing their strength.
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05
Step
05
Final Drawing The final stage of pipe shaping, which imparts the final parameters such as wall thickness and diameter accuracy.
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06
Step
06
Defectoscopy and Reel Winding Quality control is performed using eddy current testing technology, which detects potential defects in the material's structure.
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07
Step
07
Annealing The pipes undergo annealing in specialized furnaces, making them more flexible and resistant to mechanical stresses.
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08
Step
08
Coiling The pipes are wound into coils of the required size, ready for packaging and transportation.
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09
Step
09
Quality Inspection Each batch undergoes rigorous quality control in accordance with international standards ASTM B280, GOST 617-2006, and EN 12735-1.
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10
Step
10
Packaging The finished pipes are packed in protective materials to ensure their safety during transportation.
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11
Step
11
Finished Products After all inspections, the products are shipped to clients worldwide, providing high-quality copper pipes for construction, industrial, and engineering projects.
Copper Pipe Production Process
Copper Pipe Production Process
Step
01
Cathode Raw Materials The manufacturing process begins with the use of pure cathode raw materials, ensuring the high quality of the final product—free from impurities and recycled copper.
Step
01
Cathode Raw Materials The manufacturing process begins with the use of pure cathode raw materials, ensuring the high quality of the final product—free from impurities and recycled copper.
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Step
02
Melting and Forming Copper is melted at high temperatures and poured into special molds, creating blanks for further processing.
Step
02
Melting and Forming Copper is melted at high temperatures and poured into special molds, creating blanks for further processing.
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Step
03
Drawing and Rotation At this stage, the blanks pass through shafts and rollers, acquiring the required dimensions and shapes.
Step
03
Drawing and Rotation At this stage, the blanks pass through shafts and rollers, acquiring the required dimensions and shapes.
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Step
04
Primary Drawing The pipes undergo primary drawing, reducing their diameter and increasing their strength.
Step
04
Primary Drawing The pipes undergo primary drawing, reducing their diameter and increasing their strength.
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Step
05
Final Drawing The final stage of pipe shaping, which imparts the final parameters such as wall thickness and diameter accuracy.
Step
05
Final Drawing The final stage of pipe shaping, which imparts the final parameters such as wall thickness and diameter accuracy.
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Step
06
Defectoscopy and Reel Winding Quality control is performed using eddy current testing technology, which detects potential defects in the material's structure.
Step
06
Defectoscopy and Reel Winding Quality control is performed using eddy current testing technology, which detects potential defects in the material's structure.
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Step
07
Annealing The pipes undergo annealing in specialized furnaces, making them more flexible and resistant to mechanical stresses.
Step
07
Annealing The pipes undergo annealing in specialized furnaces, making them more flexible and resistant to mechanical stresses.
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Step
08
Coiling The pipes are wound into coils of the required size, ready for packaging and transportation.
Step
08
Coiling The pipes are wound into coils of the required size, ready for packaging and transportation.
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Step
09
Quality Inspection Each batch undergoes rigorous quality control in accordance with international standards ASTM B280, GOST 617-2006, and EN 12735-1.
Step
09
Quality Inspection Each batch undergoes rigorous quality control in accordance with international standards ASTM B280, GOST 617-2006, and EN 12735-1.
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Step
10
Packaging The finished pipes are packed in protective materials to ensure their safety during transportation.
Step
10
Packaging The finished pipes are packed in protective materials to ensure their safety during transportation.
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Step
11
Finished Products After all inspections, the products are shipped to clients worldwide, providing high-quality copper pipes for construction, industrial, and engineering projects.
Step
11
Finished Products After all inspections, the products are shipped to clients worldwide, providing high-quality copper pipes for construction, industrial, and engineering projects.
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Copper Pipe Production Process
Copper Pipe Production Process
01
Step
01
Cathode Raw Materials The manufacturing process begins with the use of pure cathode raw materials, ensuring the high quality of the final product—free from impurities and recycled copper.
01
Step
01
Cathode Raw Materials The manufacturing process begins with the use of pure cathode raw materials, ensuring the high quality of the final product—free from impurities and recycled copper.
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02
Step
02
Melting and Forming Copper is melted at high temperatures and poured into special molds, creating blanks for further processing.
02
Step
02
Melting and Forming Copper is melted at high temperatures and poured into special molds, creating blanks for further processing.
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03
Step
03
Drawing and Rotation At this stage, the blanks pass through shafts and rollers, acquiring the required dimensions and shapes.
03
Step
03
Drawing and Rotation At this stage, the blanks pass through shafts and rollers, acquiring the required dimensions and shapes.
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04
Step
04
Primary Drawing The pipes undergo primary drawing, reducing their diameter and increasing their strength.
04
Step
04
Primary Drawing The pipes undergo primary drawing, reducing their diameter and increasing their strength.
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05
Step
05
Final Drawing The final stage of pipe shaping, which imparts the final parameters such as wall thickness and diameter accuracy.
05
Step
05
Final Drawing The final stage of pipe shaping, which imparts the final parameters such as wall thickness and diameter accuracy.
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06
Step
06
Defectoscopy and Reel Winding Quality control is performed using eddy current testing technology, which detects potential defects in the material's structure.
06
Step
06
Defectoscopy and Reel Winding Quality control is performed using eddy current testing technology, which detects potential defects in the material's structure.
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07
Step
07
Annealing The pipes undergo annealing in specialized furnaces, making them more flexible and resistant to mechanical stresses.
07
Step
07
Annealing The pipes undergo annealing in specialized furnaces, making them more flexible and resistant to mechanical stresses.
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08
Step
08
Coiling The pipes are wound into coils of the required size, ready for packaging and transportation.
08
Step
08
Coiling The pipes are wound into coils of the required size, ready for packaging and transportation.
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09
Step
09
Quality Inspection Each batch undergoes rigorous quality control in accordance with international standards ASTM B280, GOST 617-2006, and EN 12735-1.
09
Step
09
Quality Inspection Each batch undergoes rigorous quality control in accordance with international standards ASTM B280, GOST 617-2006, and EN 12735-1.
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10
Step
10
Packaging The finished pipes are packed in protective materials to ensure their safety during transportation.
10
Step
10
Packaging The finished pipes are packed in protective materials to ensure their safety during transportation.
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11
Step
11
Finished Products After all inspections, the products are shipped to clients worldwide, providing high-quality copper pipes for construction, industrial, and engineering projects.
11
Step
11
Finished Products After all inspections, the products are shipped to clients worldwide, providing high-quality copper pipes for construction, industrial, and engineering projects.