Custom Sand Casting for Industrial Components

LANJIAN manufactures custom sand castings for machine bases, equipment housings, structural supports and other industrial machinery components based on customer drawings.

Before production, we review the material, casting geometry, pattern and core requirements, machining allowances and inspection criteria. The approved route is then followed through molding, pouring, cooling, shakeout, cleaning and as-cast inspection.

Scope: Custom sand-cast industrial components—not standard stock parts or complete machines.

MANUFACTURING CAPABILITIES AT A GLANCE

Manufacturing Capabilities Matched to Your Component

LANJIAN supports drawing-based production of custom cast, machined, and fabricated industrial components. Available capabilities include sand casting, lost foam casting, CNC machining, welding and fabrication, surface treatment and finishing, and assembly. These processes can be used separately or coordinated according to the confirmed component and project requirements.

Drawing-Based Manufacturing

Projects can begin with customer drawings, 3D models, samples, or confirmed technical requirements.

Primary Manufacturing Routes

The primary route—sand casting, lost foam casting, or welding and fabrication—is selected according to the material, geometry, and structural requirements.

Secondary Process Integration

CNC machining, surface finishing, and assembly can be added when required by the drawing and intended delivery condition.

Standalone or Combined Processes

A project can use one capability or connect several processes within an agreed manufacturing route.

CORE MANUFACTURING CAPABILITIES

What Each Manufacturing Capability Does

Some processes create the basic component shape, while others add functional features, surface protection, or final assembly. Explore what each capability does and where it may fit within your manufacturing route.

Sand Casting

Molten metal is poured into a sand mold formed around a pattern. Separate sand cores can also be used to create holes or internal cavities.

TYPICAL USE

Large or heavy cast components such as machine bases, housings, equipment supports, and structural parts.

Lost Foam Casting

A coated foam pattern shaped like the component is embedded in sand. During pouring, molten metal replaces the foam and forms the casting.

TYPICAL USE

Complex cast shapes where conventional parting lines or separate core arrangements would be difficult.

CNC Machining

Computer-controlled cutting tools remove material from a workpiece to create accurate surfaces and functional features.

TYPICAL USE

Mounting faces, bores, bearing seats, holes, threads, and other features that must meet drawing dimensions.

Welding & Fabrication

Metal plates and structural sections are cut, formed, positioned, and welded together to create a complete structure.

TYPICAL USE

Machine frames, equipment chassis, conveyor supports, skid bases, and other welded structural assemblies.

Surface Treatment & Finishing

Cleaning, preparation, and finishing processes are applied after casting, welding, or machining to achieve the agreed surface condition.

TYPICAL USE

Components requiring corrosion protection, a specified finish, or a defined surface appearance before delivery.

Assembly

Separately manufactured parts are fitted together according to the confirmed drawing, interfaces, and assembly requirements.

TYPICAL USE

Subassemblies or assembled components that need to be supplied as a coordinated unit rather than as separate parts.

MANUFACTURING ROUTE SELECTION

Which Manufacturing Route Fits Your Component?

The route is selected from how the component can be formed and which features must be completed—not from the product name alone. The table below shows the drawing characteristics that usually trigger each manufacturing capability.

What We See in the Drawing
Route to Evaluate
What Must Be Checked
A large or heavy one-piece casting with a workable parting line and internal cavities that can be supported by sand cores
Sand Casting
Pattern removal, core positioning, wall transitions, locating surfaces, and machining allowance
A complex one-piece casting where conventional parting lines or multiple separate cores would make molding difficult
Lost Foam Casting
Foam-pattern feasibility, section changes, tooling, expected quantity, and later machining areas
A frame, chassis, base, or support that can be built from plates and structural sections
Welding & Fabrication
Joint access, fit-up, welding distortion, critical interfaces, and machining required after welding
Bearing seats, bores, mounting faces, holes, or threads that must maintain controlled dimensions and positions
Add CNC Machining
Machining datums, available allowance, tool access, related feature positions, and inspection points
Surfaces requiring corrosion protection, a specified finish, or a defined appearance
Add Surface Treatment & Finishing
Surface preparation, finish specification, areas requiring masking, and effects on mating surfaces
Several parts that must fit and be delivered as a subassembly or coordinated unit
Add Assembly

Mating interfaces, accumulated tolerances, supplied parts, assembly sequence, and final verification

Any issue that could affect the approved drawing, critical features, or final acceptance should be reviewed before the affected parts move into the next manufacturing stage.

How These Capabilities Work Together

Combined Manufacturing Routes for Finished Components

A custom component may require more than one manufacturing process before it is ready for installation or assembly. The primary process creates the basic shape, while subsequent operations establish critical functional features, provide surface protection, or combine multiple parts.

The required stages are selected from the drawing—processes are included only when they contribute to the component’s function or required delivery condition.

Cast and Machined Housings

Manufacturing Route

Sand Casting or Lost Foam Casting
→ Casting Cleaning
→ CNC Machining
→ Surface Finishing
→ Final Verification

How the Capabilities Work Together

Casting forms the main component geometry, including walls, ribs and internal cavities. CNC machining then produces the features that must meet controlled dimensions, such as bearing seats, bores, mounting faces, flange faces and bolt-hole positions. Surface finishing is completed after machining, with sealing faces, threads and fitted areas protected when required.

Critical Handover

Machining allowance, locating references and surfaces requiring machining must be identified before the casting is produced—not after the casting blank is completed.

Typical Components

Welded and Machined Frames

Manufacturing Route

Cutting and Forming
→ Fit-Up and Welding
→ Dimensional Verification
→ CNC Machining of Critical Interfaces
→ Surface Finishing

How the Capabilities Work Together

Cut plates and structural sections are positioned and welded to create the main load-carrying structure. The completed fabrication is then checked for flatness, alignment and key dimensions. Where the drawing requires tighter control, mounting faces, guide surfaces and connection holes are machined after welding.

Critical Handover

Welding heat can affect flatness and alignment. For this reason, critical interfaces are evaluated after fabrication and machined afterward when the required accuracy cannot be maintained by welding alone.

Typical Components

Finished or Assembly-Ready Components

Manufacturing Route

Casting or Fabrication
→ CNC Machining Where Required
→ Surface Finishing
→ Component Fitting or Assembly
→ Final Verification

How the Capabilities Work Together

Individual cast, fabricated or machined parts are prepared according to their common interfaces. Surface treatment is completed with specified mating areas, threads and fitting surfaces protected. Parts can then be supplied separately, prepared for customer assembly, or fitted together as an agreed subassembly.

Critical Handover

Mating dimensions, hole alignment, coating exclusions, part orientation and assembly interfaces must remain consistent across machining, finishing and assembly.

Typical Components

Not every component requires every capability. Some projects are supplied as casting or fabrication blanks, while others continue through machining, finishing and assembly according to the drawing and required delivery condition.

Combined Manufacturing Routes for Finished Components

Components can be supplied at the stage required for your production workflow, depending on the drawing and agreed manufacturing scope.

The required machining, finishing, inspection and assembly scope is confirmed before quotation.

WHY BUYERS COORDINATE WITH LANJIAN

Multiple Capabilities, One Connected Manufacturing Route

When a component moves from casting or fabrication to machining, finishing and assembly, each handover can affect the final result. LANJIAN coordinates the required stages around the same confirmed drawing, critical features and delivery condition.

01 — Downstream Work Planned Early

Machining allowance, locating references and critical interfaces are considered before casting or fabrication begins—not after the blank is completed.

02 — Requirements Stay Connected

Critical dimensions, datums, bores, mounting faces, coating exclusions and mating areas remain connected as the component moves between processes.

03 — Problems Reviewed Across the Route

If a dimensional or fitting issue appears, the blank condition, locating method, machining setup and finishing stage can be reviewed together.

04 — Fewer Supplier Handoffs

Buyers can include casting, fabrication, machining, finishing or assembly in one agreed scope instead of managing each operation separately.

MANUFACTURING ROUTE REVIEW

Need the Right Process Combination for Your Component?

Send your drawing, 3D model, sample information, or available technical requirements. LANJIAN will review the primary process, required secondary operations, critical features and intended delivery condition before quotation.

Privacy note:
Your drawings and technical information are kept confidential and used only for project review and quotation.

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Send what you have. We’ll review the likely manufacturing route and identify what still needs to be confirmed for quotation.