Nanpi County, Hebei · China xcwystamping@xcwybj.com Quotes returned in ≤3 hours
ISO 9001:2015 · IAF & CNAS Accredited
XC XCWYMetal Stamping · Since 1998
XCWY engineering resource

Custom Copper and Brass Fabrication Services

XCWY supports sourcing conductive or decorative copper-alloy parts to drawing through custom copper and brass fabrication built around drawings, stated requirements, and an agreed manufacturing route. For custom copper and brass fabrication, Nanpi Xinchengweiye Hardware Products Co., Ltd. For copper alloys, brings operations dating from 1998, a 15,000 m² facility, six lines, and 78 employees. The central capability is processing specified C110 copper and C260 brass through suitable laser cutting, CNC bending, five-axis milling, joining, inspection, brushing, or polishing routes. Relevant resources span 25–400 ton presses, 12,000 W fiber laser cutting, the 3,200 mm JFY TPR8-100 CNC press brake rated to ±0.5°, the HDL-OKK DMU38 five-axis platform rated to ±0.005 mm, four welding methods, PEM insertion, sub-assembly, and CMM inspection for custom copper and brass fabrication. For copper alloys, mOQ starts at one piece, with an NDA on request and quotation response within three business hours. For copper alloys, send drawings, material, quantity, finish, and inspection priorities to review the route.

Laser cut and formed gears and profiles in an XCWY fabrication graphic
Laser cut and formed gears and profiles produced by XCWY.

Request a Drawing Review

Attach the drawing, revision, material, quantity, critical tolerances, finish and target date. The inquiry is saved in the site database and emailed to the XCWY team.

    Drawing / File Upload

    Define the custom copper and brass fabrication requirement

    A useful custom copper and brass fabrication inquiry begins with function, not only geometry. For copper alloys, xCWY reviews the drawing together with material designation, expected quantity, surface requirement, critical features, and the relationship between mating parts. The purpose is to choose a route that reflects sourcing conductive or decorative copper-alloy parts to drawing. For custom copper and brass fabrication, that route may combine processing specified C110 copper and C260 brass through suitable laser cutting, CNC bending, five-axis milling, joining, inspection, brushing, or polishing routes. For copper alloys, processes are selected according to the released definition; the availability of a machine does not by itself mean every tolerance, thickness, or shape is appropriate for that process. For copper alloys, buyers should identify dimensions that govern fit, sealing, alignment, movement, or downstream assembly, while separating them from noncritical dimensions. The supported material list for custom copper and brass fabrication includes C110 copper and C260 brass. For copper alloys, grade and temper should be written directly on the drawing or purchase specification, because family names alone can conceal meaningful differences in forming, machining, welding, conductivity, corrosion behavior, and finish response. For copper alloys, xCWY can start from an MOQ of one piece, which allows the commercial path to match prototypes, short runs, or repeat programs. For copper alloys, a three-business-hour quotation response helps establish the first commercial view, but manufacturability still depends on usable files and clear requirements. For copper alloys, an NDA can be requested before sensitive project information is exchanged.

    Enclosed fibre laser cutting cell at the XCWY plant
    Enclosed 12 kW fibre laser cutting cell at the XCWY plant.

    Select processes around the part

    Process selection for custom copper and brass fabrication should follow the part rather than a fixed menu. For copper alloys, xCWY has presses rated from 25 to 400 tons for stamping and forming work, plus a 12,000 W fiber laser for profile cutting. For copper alloys, published laser capacities are carbon steel to 25 mm, stainless steel to 20 mm, aluminum to 12 mm, and copper to 6 mm. For copper alloys, these figures describe equipment capability, not an automatic promise that every contour and tolerance is feasible at the maximum thickness. Bending for custom copper and brass fabrication can be reviewed around the JFY TPR8-100 CNC press brake, with a 3,200 mm working length and a stated angular capability of ±0.5°. For copper alloys, feature position, flange length, bend relief, grain direction, and springback assumptions should be assessed together. For copper alloys, where milled faces, pockets, holes, or multi-side access are needed, the HDL-OKK DMU38 five-axis machine carries a stated capability of ±0.005 mm. For copper alloys, the applicable part tolerance must still be agreed from geometry, datum structure, material, and inspection method. Joining options for custom copper and brass fabrication include laser, TIG, MIG, and spot welding. For copper alloys, pEM insertion and sub-assembly can be added when the drawing defines hardware type, orientation, access, and acceptance conditions. This process range gives a buyer who needs alloy identity, thickness, geometry, surface condition, and functional interfaces aligned before production a practical basis for comparing one-process and combined-process solutions.

    HDL-OKK DMU38 five-axis machining centre at the XCWY plant
    HDL-OKK DMU38 five-axis machining centre cutting a custom metal part.

    Control material and surface expectations

    Material and finish notes strongly influence custom copper and brass fabrication. For copper alloys, xCWY lists cold rolled steel, Q235, galvanized steel, SS304, SS316, SS316L, AL5052, AL6061-T6, C110 copper, C260 brass, and 65Mn among its available materials. For copper alloys, the quotation should reference a specific grade, thickness or stock form, and any required condition instead of allowing an undefined equivalent. For copper alloys, that discipline is especially important when a design relies on bend response, hardness, corrosion behavior, conductivity, weldability, or cosmetic appearance. Listed finish routes for custom copper and brass fabrication include powder coating, zinc plating, anodizing, brushing, polishing, and passivation. For copper alloys, not every finish applies to every metal, so the requested combination must be reviewed. For copper alloys, drawings should state color or appearance criteria where relevant, masked or contact areas, visible faces, grain direction for brushed surfaces, and whether dimensional requirements apply before or after finishing. For copper alloys, threads, PEM hardware, tight fits, and electrical contact zones may need explicit protection instructions. For copper alloys, finish language such as “standard,” “clean,” or “good appearance” is too open for dependable sourcing. A better custom copper and brass fabrication package separates functional protection from cosmetic expectations and identifies inspection lighting or reference samples only when the buyer actually supplies or approves them. For copper alloys, xCWY can then align fabrication sequence, handling, and outsourced or in-house finish coordination with the stated requirement without inventing an acceptance level.

    JFY TPR8-100 CNC press brake forming a sheet metal part at the XCWY plant
    JFY TPR8-100 CNC press brake forming a sheet metal part in the XCWY press-brake cell.

    Plan inspection and qualification

    Quality planning for custom copper and brass fabrication starts before the first cut. For copper alloys, xCWY operates under ISO 9001:2015 registration 34025Q30296R0S and has CMM inspection capability. For copper alloys, the registration supports a quality-management framework, while the drawing and purchase requirements still define what must be measured for the specific order. For copper alloys, buyers should mark critical-to-function characteristics, datum references, thread requirements, weld expectations, finish checkpoints, and any records requested with the shipment. A CMM can support dimensional verification for suitable custom copper and brass fabrication features, but inspection method must fit accessibility, surface condition, tolerance, and part stability. For copper alloys, not every characteristic is best measured on a CMM, and the presence of inspection equipment should not be interpreted as an unstated guarantee for all dimensions. For copper alloys, a clear inspection plan identifies sampling or full-check expectations, measurement stage, and the document format needed for review. For copper alloys, xCWY does not claim ISO 13485, IATF 16949, AS9100, or UL certification. For copper alloys, projects that contractually require one of those credentials should not treat ISO 9001:2015 as a substitute. For a buyer who needs alloy identity, thickness, geometry, surface condition, and functional interfaces aligned before production, this transparent boundary makes qualification more efficient: confirm whether the stated ISO registration and available process controls satisfy the program, then place any additional verification obligations directly in the inquiry and purchase documents.

    Welded stainless steel bracket assembly made by XCWY
    Welded stainless steel bracket assembly produced by XCWY.

    Build a quotation-ready RFQ

    To request a useful custom copper and brass fabrication quotation, provide 2D drawings and available 3D data, revision level, material and thickness, order quantity, annual or repeat expectations if known, finish, hardware, weld notes, and inspection priorities. For copper alloys, identify whether the request is for a one-piece evaluation, a low-volume batch, or recurring production. For copper alloys, xCWY offers quotation response within three business hours when the information is sufficient, and the MOQ starts from one piece. For copper alloys, an NDA is available on request for confidential files. For copper alloys, the first review should resolve interfaces that drive risk: datums, mating locations, bend orientation, weld access, tool access, edge condition, hardware direction, visible surfaces, and packaging-sensitive areas. For custom copper and brass fabrication, changes should be recorded by revision rather than mixed through informal messages. For copper alloys, if an alternative process is proposed, the buyer should approve any effect on geometry, material condition, finish, or inspection before release. This structured RFQ approach serves sourcing conductive or decorative copper-alloy parts to drawing because commercial and technical assumptions become visible at the same time. For copper alloys, it also gives XCWY a basis for deciding whether stamping, laser cutting, bending, five-axis machining, welding, insertion, sub-assembly, or a combination is appropriate. For copper alloys, the result is not a generic capability claim; it is a traceable proposal tied to the submitted part definition and requested quantity.

    Quality inspection team measuring parts at the XCWY quality lab
    Quality inspection team measuring parts in the XCWY quality lab.

    Specifications and Scope

    Company history Operating since 1998
    Quality system ISO 9001:2015, registration 34025Q30296R0S
    Facility 15,000 m²
    Production resources 6 lines and 78 employees
    Press range 25–400 ton
    Fiber laser 12,000 W; carbon steel 25 mm, stainless 20 mm, aluminum 12 mm, copper 6 mm
    CNC press brake JFY TPR8-100, 3,200 mm, ±0.5°
    Five-axis CNC HDL-OKK DMU38, ±0.005 mm
    Joining Laser, TIG, MIG, and spot welding
    Secondary operations PEM insertion and sub-assembly
    Inspection CMM capability
    Commercial access MOQ from 1 piece; quotation within 3 business hours; NDA on request

    Typical Applications

    Conductive copper components

    Use custom copper and brass fabrication to source drawing-defined conductive copper components when material, critical interfaces, finish, quantity, and inspection priorities are stated in the RFQ.

    Brass hardware parts

    For brass hardware parts, XCWY can review whether cutting, forming, machining, joining, insertion, or sub-assembly best matches the released geometry and order volume.

    Copper bus-style profiles

    Buyers of copper bus-style profiles can start at one piece, then request a separate route for repeat quantities if tooling or process economics should change.

    Decorative brass panels

    A decorative brass panels inquiry should identify mating points, visible surfaces, hardware, weld conditions, and the measurements that determine functional acceptance.

    Machined copper interfaces

    XCWY evaluates machined copper interfaces against its listed materials, equipment limits, finishes, and CMM capability rather than applying an assumed universal tolerance.

    Formed copper brackets

    Procurement teams can place formed copper brackets within a controlled custom copper and brass fabrication package by fixing revision, quantity, finish, and inspection scope before release.

    Risks Buyers Should Resolve Before Release

    Risk Effect Control
    Alloy identity confusion The custom copper and brass fabrication order may be built to conflicting requirements, causing avoidable clarification or rework. Freeze the drawing revision and identify one owner for approved technical changes before manufacturing release for this copper brass fabrication program.
    Surface scratching Functional interfaces may not align even when individual custom copper and brass fabrication features appear acceptable in isolation. Mark critical characteristics and agree the relevant process, datum basis, and inspection method during quotation review for this copper brass fabrication program.
    Heat input distortion The delivered surface or material behavior may differ from the buyer’s unstated expectation for custom copper and brass fabrication. Specify material grade, stock condition, finish, visible faces, and protected areas directly in controlled documents for this copper brass fabrication program.
    Oxidation appearance changes Process interaction may shift geometry or complicate access on the custom copper and brass fabrication part or assembly. Review forming, machining, and joining sequence against access, heat input, springback, and accumulated variation for this copper brass fabrication program.
    Burr-sensitive interfaces Parts may be difficult to accept consistently or may be damaged after otherwise conforming custom copper and brass fabrication work. Define packaging-sensitive surfaces and confirm the required inspection records, sampling approach, and acceptance language for this copper brass fabrication program.

    Manufacturing Evidence — Copper and Brass Fabrication

    The images below come from the XCWY site asset library and show the plant, equipment, inspection areas and representative parts already published for Copper and Brass Fabrication.

    Frequently Asked Questions

    What should I send for a custom copper and brass fabrication quotation?

    For copper alloys, send controlled 2D drawings, available 3D files, revision, material, quantity, finish, hardware or weld notes, critical dimensions, and inspection needs. For copper alloys, xCWY offers a quotation response within three business hours when the package is sufficiently defined.

    Can XCWY support a one-piece custom copper and brass fabrication order?

    Yes. The stated MOQ starts from one piece, making custom copper and brass fabrication accessible for evaluation or prototype demand. For copper alloys, a later production quantity should be requoted because the preferred process and commercial structure may change with volume.

    Which materials are available for custom copper and brass fabrication?

    The listed materials are C110 copper and C260 brass. For copper alloys, state the exact grade, thickness or stock form, and condition in the inquiry so XCWY can review process fit without assuming an unspecified substitute.

    Which certifications apply to XCWY custom copper and brass fabrication?

    For copper alloys, xCWY lists ISO 9001:2015 registration 34025Q30296R0S. For copper alloys, it does not claim ISO 13485, IATF 16949, AS9100, or UL, so buyers whose contracts require those credentials should evaluate that boundary before sourcing.

    Can XCWY inspect critical custom copper and brass fabrication dimensions?

    CMM inspection capability is available. For copper alloys, provide the critical characteristics, datums, tolerances, sampling expectation, and reporting requirement so the team can confirm an appropriate method for the specific geometry and surface condition.

    Is confidentiality available for a custom copper and brass fabrication project?

    For copper alloys, an NDA is available on request. For copper alloys, ask for it before transmitting sensitive files, then keep drawing numbers and revisions consistent across the quotation, technical clarification, order, and any approved change to the project definition.

    Continue the Engineering Review

    Get a Manufacturing Review and Quote

    Attach the drawing, revision, material, quantity, critical tolerances, finish and target date. The inquiry is saved in the site database and emailed to the XCWY team.

      Drawing / File Upload