6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems

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Product Details
Customization: Available
Shape: Solid Flat / Rectangular
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  • 6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
  • 6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
  • 6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
  • 6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
  • 6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
  • 6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
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  • Overview
  • Product Description
  • Specification
  • Applications
  • Packaging & Shipping
  • Company Profile
  • FAQ
  • Packing & Delivery
Overview

Basic Info.

Model NO.
6061/6063/6082/6101
Certification
ISO9001, ASTM, JIS, GB, EN
Technique
Extruded
Grade
6000 Series
Temper
T3 - T8
Surface Treatment
Mill Finish
Alloy
Alloy
Product Form
Solid Flat and Rectangular Busbar
Thickness
0.15-40 mm
Width
10-200 mm
Length
up to 6000 mm
Edge
Square / Rounded / R-Rounded
Conductivity
Specify Target Value and Test Method
Tolerance
According to Drawing or Applicable Standard
Processing
Cutting / Drilling / Punching / Bending / Stamping
Surface
Mill Finish / Anodized / Optional Plated or Coated
Insulation
Powder / Epoxy / Paint / Sleeve by Project
Inspection
Conductivity / Dimension / Surface Inspection
Packaging
Matched to Length, Surface and Processing
Transport Package
Export Standard Wooden Pallprotective Woodeet, Box
Specification
Thickness 0.15-40 mm; Width 10-200 mm; Length up t
Trademark
Chalco Aluminum
Origin
Henan China
HS Code
7606119000
Production Capacity
15000mt/Month

Product Description

6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
Aluminum Busbar Overview
Solid aluminum alloy busbars for switchgear, transformers, power distribution units and industrial electrical equipment must be selected as part of the electrical system. Alloy, cross section, temperature rise and connection design should be evaluated together.
Product Form:Solid flat and rectangular busbars in 6061, 6063, 6082 and 6101; the manufacturing route is confirmed according to cross section and length.
Selection Basis:Alloy, temper and section are selected according to conductivity, allowable temperature rise, installation space, mechanical support and connection method.
Processing and Verification:Cutting, drilling, bending, edge finishing, plating and insulation can be discussed, with dimensional, conductivity, temperature-rise or bending verification agreed for the order.
Product Description
Supply Scope and Difference from General Structural Aluminum Bar
This product is a solid flat or rectangular aluminum alloy busbar used for current transmission and distribution. General structural aluminum bar is usually purchased according to mechanical dimensions and load requirements. Electrical busbar selection must also cover conductivity, cross section, temperature rise, connection interfaces and long-term fastening.
Decision Factor
Electrical Aluminum Alloy Busbar
Electrical Aluminum Alloy Busbar
Primary function
Current conduction and distribution with installation support
Structural connection, support or general mechanical use
Material selection
Alloy and temper selected by conductivity, temperature rise, mechanical and connection conditions
Normally selected first by strength, processing and appearance
Design inputs
Current, section, allowable temperature rise, installation and heat dissipation
Dimensions, tolerances, load and subsequent processing
Connection requirements
Hole pattern, contact surface, fastening, Al-Cu transition, plating or insulation
General drilling, tapping, welding or assembly
Specification
Alloy
Available Tempers
Selection Priority
Application Boundary
6101
T6 / T61 / T63 / T64 / T65
Conductivity and creep resistance
Select the temper together with conductivity, temperature rise, fastening and support conditions.
6061
T4 / T6 / T651 / T6511
Balance of electrical, structural and machining requirements
Suitable for projects involving more holes, connections or supports; electrical values must be checked by temper.
6063
T4 / T5 / T6 / T52 / T66
Extrusion, surface quality and heat dissipation
Suitable for equipment where section forming or surface quality matters; appearance alone is not a basis for substitution.
6082
T3 / T4 / T5 / T6
Mechanical strength and installation load
Consider for higher mechanical constraints, while conductivity and temperature rise still require verification.
Representative Electrical and Mechanical Data
Selection note: among the listed 6101 tempers, T61 and T64 provide higher conductivity values but lower yield and tensile strength than T63. 6063-T6 combines approximately 53%-55% IACS with mechanical values subject to the stated thickness condition. 6061-T6 and 6082 place greater emphasis on mechanical performance; the temper for the listed 6082 reference values must be fixed before ordering.
These values are for preliminary selection and are not uniform guarantees for every size or production lot. Final acceptance values must be confirmed by alloy, temper, thickness, applicable standard and the order specification.
No alloy is universally superior outside its operating conditions. Determine current, temperature rise and mechanical load first, then check temper, conductivity and processing performance
Alloy / Temper
Applicable Condition
Conductivity
Yield / Tensile Strength (MPa)
Elongation
6061-T6
Temper-specific value
Confirm to order standard
- / 270-310
10%
6063-T6
Thickness <= 10 mm
Approx. 53%-55% IACS
>= 170 / >= 215
>= 8%
6082
Temper must be fixed in the order
>= 24 MS/m
240 / 295
8%
6101-T61
Temper-specific value
>= 59% IACS
>= 55 / >= 103
-
6101-T63
Temper-specific value
>= 56% IACS
>= 150 / >= 185
-
6101-T64
Temper-specific value
>= 59.5% IACS
>= 55 / >= 105
-
Electrical and Dimensional Parameters to Confirm
Current-carrying capacity is not determined by width and thickness alone. Installation, ventilation, ambient temperature, allowable temperature rise, connection resistance and spacing all affect the result.
When replacing copper busbar, recalculate the aluminum section and installation space. Fastening, thermal expansion, Al-Cu transition and surface configuration must also be reviewed; aluminum should not replace copper at the same cross section without calculation.
Item
Required Confirmation
Alloy and temper
6061, 6063, 6082 or 6101; temper selected from the available options and fixed in the order
Cross-sectional form
Solid flat or rectangular section; extruded route or project-evaluated plate-machining route
Regular custom range
Thickness 0.15-40 mm, width 10-200 mm and length up to 6 m; sizes outside this range or special tolerances require separate evaluation
Edge options
Square, rounded or R-rounded edges selected according to electric field, assembly and subsequent insulation requirements
Electrical design inputs
Working current, allowable temperature rise, installation direction, ambient temperature, ventilation, spacing and connection method
Standards and acceptance
Select applicable ASTM B317/B236, IEC 60105, ISO 209 or DIN EN 755 series requirements by alloy and temper, and fix them in the order
Connection Processing and Surface Configuration
·  Hole pattern and contact surface: provide hole diameter, pitch, slots, datums and contact-area requirements. Burrs, cleanliness and surface fit affect assembly and contact resistance.
·  Bending and edges: cutting, drilling, punching, bending and stamping can be discussed according to drawings. Bend radius must be confirmed against alloy, temper, thickness and direction.
·  Surface and insulation: anodizing, silver/tin/nickel plating, protective coating, powder or epoxy insulation, and insulation sleeves can be discussed. Drawings should distinguish contact areas from insulated areas.
·  Al-Cu connections: evaluate galvanic corrosion, contact pressure and long-term fastening, then select a suitable transition plate or connector for the system.
Finished tin-plated busbars, copper-clad aluminum busbars, flexible busbars and laminated busbars are different product scopes and should be confirmed separately.
Applications
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
Switchgear and Distribution Cabinets
The busbar distributes current through the cabinet main circuit. Confirm current, temperature rise, available space, phase spacing, support and hole pattern. 6101 may be evaluated when conductivity and fastening stability have priority; 6061 or 6082 may be compared when machining or support requirements are greater; 6063 may be evaluated when extrusion and surface quality are important.
Transformers and Power Distribution Units
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
      Solid flat busbars may be used for transformer leads and power distribution connections. Check current, temperature rise, contact area, mechanical force, support and Al-Cu transition. Compare 6101 when conductor efficiency is the priority, or 6061 when drilling, connection and structural requirements must be balanced.
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
Industrial Electrical Equipment
Industrial electrical systems often combine vibration, support and connection requirements. 6061 can be compared for a balanced configuration; 6082 for higher mechanical constraints; 6063 where extrusion, surface quality or thermal management matters; and 6101 where conductivity and creep resistance have priority.
Packaging & Shipping
Quality, Documentation, Packaging and Delivery
Quality control focuses on material identity, electrical requirements, connection dimensions and installation readiness at delivery. Sampling plans and report formats should be agreed in the order.
·  Material and traceability: verify alloy, temper, lot and applicable standard. Inspection documents or third-party inspection can be agreed for the project.
·  Dimensions and surface: inspect width, thickness, length, straightness, hole position, edges, burrs and contact surfaces. Tolerances follow the drawing or applicable standard.
·  Finished Part Inspection: Hole diameter, hole spacing, slot dimensions, bending angle and radius, end faces, and contact areas are checked against the drawing. Full dimensional inspection may be agreed for samples or first articles, while production lots follow the sampling plan specified in the order.
·  Electrical and processing verification: conductivity is a basic inspection item. Temperature-rise and bending tests are agreed by sample, condition, method and acceptance value.
·  Packaging and identification: configure separation, moisture protection, edge/end protection and lot labels according to length, surface, processing and transportation conditions.
·  Delivery confirmation: samples or first articles may be used to confirm section, hole pattern, bends, contact surfaces and inspection. Batch conditions depend on quantity, processing and packaging
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
 Information Required for an Effective Quotation
·  Electrical conditions: working current, allowable temperature rise, ambient temperature, installation direction, ventilation and busbar spacing.
·  Material and dimensions: alloy, temper, width x thickness, length, quantity and critical tolerances.
·  Processing interfaces: hole pattern, slots, bends, edges, contact surfaces and assembly drawings.
·  Surface configuration: plating, insulation, Al-Cu transition and service environment.
·  Acceptance and delivery: applicable standard, conductivity or temperature-rise requirements, documents, samples, packaging and destination port.
Company Profile
Production Capability
Henan Chalco specializes in aluminum solutions for industrial and engineering projects, combining aluminum material production with downstream processing, inspection, and project-based supply support. Our manufacturing capabilities cover rolling, extrusion, forging, precision machining, and surface treatment.
Integrated Aluminum Rolling Capability
For rolled aluminum products, Chalco operates 8 melting and casting lines and a 1+4 hot rolling line, supported by cold rolling, heat treatment, leveling, stretching, slitting, and cut-to-length processing.
The rolling system supports aluminum plate, sheet, coil, strip, foil, and circles, with rolled products available up to 2,650 mm in width and across a thickness range of 0.2–300 mm.
From standard industrial materials to large-size and application-specific aluminum products, different alloys, tempers, dimensions, and finishing requirements can be coordinated through the production route, supporting both batch purchasing and customized project requirements.
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
Customer Cooperation and Feedback
We have established cooperative relationships with customers from different industries and markets. Our product quality, specification consistency, responsive communication and delivery coordination have received positive feedback, helping build trusted and lasting partnerships.
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
FAQ
1. How should I choose among 6061, 6063, 6082 and 6101 aluminum busbars?
Start with conductivity and temperature-rise requirements, then consider load, support, machining and surface condition. 6101 emphasizes conductivity and creep resistance; 6061 provides a balanced option; 6063 emphasizes extrusion, surface quality and heat dissipation; and 6082 emphasizes mechanical constraints. Final selection must be verified by temper and cross section.
2. Can aluminum busbar replace copper busbar?
It can be evaluated, but it should not replace copper at the same cross section without calculation. Current, section, temperature rise, installation space, connection resistance, corrosion, thermal expansion and Al-Cu transition must be calculated, followed by a review of fastening and support.
3. How is the current-carrying capacity of an aluminum busbar determined?
Complete the cross-section calculation using the electrical conditions and installation arrangement, then verify it against the allowable temperature rise. Published ampacity tables are suitable only for preliminary estimation. Project values should be confirmed through system calculation or an agreed temperature-rise test.
4. What sizes and tolerances can be supplied?
The regular custom range is 0.15-40 mm in thickness, 10-200 mm in width and up to 6 m in length. Standard or drawing tolerances must match the alloy, temper and manufacturing route. Sizes outside the regular range require separate evaluation.
5. Can holes, bends, edges, plating and insulation be customized?
Cutting, drilling, punching, bending, square/rounded/R-rounded edges, silver/tin/nickel plating and insulation can be discussed according to drawings. Bend radius, contact areas and insulated areas should be confirmed together with the alloy temper and assembly conditions.
6. How are samples, testing, documents and packaging confirmed?
Samples are confirmed by specification, length and processing requirements. Orders may specify conductivity, dimensions, surface condition, temperature-rise or bending tests, inspection documents or third-party inspection. Packaging, MOQ and lead time are calculated according to product length, stock or production lot, processing, quantity and transportation requirements.
Packing & Delivery
Professional and Reliable Packaging
We take every order seriously and apply careful, well-organized packaging procedures. Each aluminum busbar shipment is packed according to the product specifications, order requirements and agreed transportation conditions. Packaging details, labels and loading arrangements are checked before shipment to support secure and traceable delivery.
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems
6061 6063 6082 6101 Aluminum Alloy Busbar in Flat Rectangular Forms for Power Systems

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