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Aluminum Die Cast Angle Adjustment Bracket

A Huabo manufacturing example for adjustable machinery, instruments and positioning assemblies, combining an angled support body with a pivot feature, mounting bosses and local ribs. The quotation and control plan are developed from the customer drawing, with special attention to pivot-to-mounting geometry, angular relationship, hole position and distortion after casting.

Aluminum Die Cast Angle Adjustment Bracket product photograph from Cixi HuaboAluminum alloy; grade confirmed from drawing
Huabo reference#205
ApplicationAdjustable machinery, instruments and positioning assemblies
Material basisAluminum alloy; grade confirmed from drawing
Critical controlPivot-to-mounting geometry, angular relationship, hole position and distortion after casting

Manufacturing basis

Review the component geometry before defining tooling and process controls.

Huabo engineering evaluates functional surfaces, datum relationships, wall transitions, machining stock, finish zones and inspection access against the current 3D model and controlled 2D drawing. The photographed component provides a relevant production reference; the customer specification defines the dimensions, tolerances and performance requirements.

Review areaComparable Huabo experienceCurrent project input
Comparable componentHuabo manufacturing reference #205 and the photographed production exampleControlled drawing revision and current sourcing requirements
Observed geometryAn angled support body with a pivot feature, mounting bosses and local ribsEnvelope, wall thickness, weight and all controlled dimensions
Application contextAdjustable machinery, instruments and positioning assembliesActual assembly, loads, exposure and regulatory requirements
Material basisAluminum alloy; grade confirmed from drawingCustomer material standard, certificate and approved alternatives
Manufacturing routeDFM, tooling, high-pressure die casting, trimming and secondary operationsMachine, tool and fixture selection, annual volume and validation package
Critical characteristicsPivot-to-mounting geometry, angular relationship, hole position and distortion after castingNumeric tolerances, test method, sampling level and report format

Part-specific engineering control

The control plan starts from the component’s functional relationships.

For this aluminum die cast angle adjustment bracket, the photographed geometry and recorded application point to the control areas below. Numeric limits remain governed by the current customer drawing and purchase specification.

Control areaManufacturing concernEvidence or input to define
Functional datumThe production route must start from how the part locates in the final assembly.Controlled drawing datums, mating features and inspection setup
Casting geometryWall transitions, ribs, bosses and parting affect filling and ejection.3D model, wall/draft review and restricted gate/ejector zones
Secondary operationsMachining and finishing can change final relationships and appearance.Machining stock, setup sequence, finish specification and masking
Critical quality characteristicsThe generic product name cannot define acceptance.Customer CTQ list, tolerance, test method and sampling plan
Production releaseRepeat supply follows the approved evidence package.Material record, first-piece report, approved sample and revision control

Component assessment

Engineering priorities for this geometry and application.

The observations below identify the relationships that should be closed during DFM, quotation and sample approval. Numeric limits remain governed by the controlled drawing and purchase specification.

Part-specific engineering review

Geometry and functional interfaces

The photographed bracket combines an angled load path with a pivot or adjustment interface. Tooling and machining review should preserve the angular relationship between the pivot feature and mounting faces, while avoiding clamp or ejection forces that can move the open side of the casting.

Mounting function to confirm

Adjustable machinery, instruments and positioning assemblies. Loads, mating surfaces, adjustment direction and the features that locate the assembly should be marked on the drawing. The part name alone does not reveal whether a bore, plane, slot or bolt pattern is the primary functional reference.

DFM focus for the structural path

An angled support body with a pivot feature, mounting bosses and local ribs. Ribs and bosses are reviewed as a load and metal-flow system rather than isolated features. The tool and fixture concepts should avoid forcing flexible areas, protect locating surfaces and leave practical access for any bore, face, slot or thread machining.

Release evidence that answers the risk

Pivot-to-mounting geometry, angular relationship, hole position and distortion after casting. First-piece reporting should reproduce the functional datum setup and record the geometric relationships that affect fit. Load, pull-out, torque or assembly validation is added when the customer supplies a defined condition and acceptance level.

Component manufacturing profile

Part geometry
An angled support body with a pivot feature, mounting bosses and local ribs
Application context
Adjustable machinery, instruments and positioning assemblies
Critical controls
Pivot-to-mounting geometry, angular relationship, hole position and distortion after casting
Supply basis
Made to customer drawing and approved sample
Huabo reference
#205

Controlled production route

From drawing review to repeat shipment.

The exact route is confirmed only after alloy, volume, tolerance, finish, validation and packaging requirements are known.

  1. Drawing and DFM reviewConfirm revision, wall transitions, draft, parting, slides, projected area, machining stock, CTQs and annual demand.
  2. Tooling and trialBuild the agreed die route, record trial conditions and correct filling, distortion, trimming or appearance issues before sample approval.
  3. Casting and secondary operationsDFM, tooling, high-pressure die casting, trimming and secondary operations. Fixtures reference agreed datums, while sealing, thermal, cosmetic and machined surfaces receive the required protection.
  4. Inspection and production releaseVerify pivot-to-mounting geometry, angular relationship, hole position and distortion after casting. Link the material record, first-piece results, approved sample and any functional test to the controlled revision.
  5. Repeat shipmentMaintain traceability, monitor agreed characteristics and package the component to protect machined, threaded, sealing and visible surfaces.

RFQ and validation package

Information needed for an accurate, comparable quotation.

Send a STEP or native 3D model together with a controlled 2D drawing. State the material specification, prototype and annual quantities, critical dimensions and datums, surface finish, assembly function, test conditions, documentation and packaging requirements.

For this component, mark the features connected to pivot-to-mounting geometry, angular relationship, hole position and distortion after casting. If sealing, bearing, thermal, threaded, load-bearing or cosmetic performance is involved, name the test method, acceptance criteria and sampling level instead of relying on a general “high quality” note.

A complete RFQ lets tooling, casting, machining, finishing and inspection be quoted as one traceable scope. Any assumption or exclusion should appear in the quotation before commercial comparison or tool authorization.

Request a quotation for this type of component.

Reference “Aluminum Die Cast Angle Adjustment Bracket” and attach your drawing, annual demand, finish and quality requirements.

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