Skip to content
Sendot Technology

5-Axis CNC Machining Robot Joint Holes: Buyer Checklist

Mr. Liu· Engineering DirectorJuly 28, 2026

This video connects a robot-joint drawing with the finished machined component and its multi-orientation hole features. For buyers, the central question is how the supplier will preserve the relationship between bearing or shaft interfaces, mounting faces and fastener patterns. A useful RFQ identifies functional datums, fit requirements, material, finish sequence and the inspection evidence required for acceptance. Sendot's CNC and quality routes support that drawing-led review for custom joint components used in robotics or automation assemblies and related equipment. Inspection planning belongs in that review.

Video frame showing a machined robot-joint component held over its engineering drawing
Frame captured from this Sendot Technology video.

Watch the original video on Facebook

Direct answer

What should buyers define for robot-joint CNC machining? Define the interfaces that control motion and assembly, then connect them through a functional datum scheme. The supplier needs the model, drawing, material, finish sequence, fits, hole and thread requirements, quantity and inspection deliverables to plan machining and verify the relationships between bores, faces and mounting patterns.

What the robot-joint video shows

The Reel shows the drawing, a finished joint-shaped component and machining of features around the part. That sequence connects design intent to a physical component without assigning an unlisted model or SKU. The most useful buyer takeaway is the relationship between hole axes, faces and central interfaces. Buyers sourcing similar joint housings or structural parts can continue to the custom robot parts machining page.

Control interfaces through functional datums

A joint drawing should establish datums from the surfaces and axes used in assembly. Fits, hole position, perpendicularity or coaxial relationships can then reference that structure. Discuss the geometry through CNC machining and establish the report scope through quality assurance.

Explore similar manufacturing options

For custom robot-joint components, compare the closest machining, design-review and inspection routes:

Technical specifications and sourcing inputs

AttributeCurrent video or sourcing definitionSource and scope
Component shownRobot-joint componentOriginal Reel description and footage
Video-specific
Process shown5-axis CNC machiningOriginal Reel description and footage
Video-specific
Feature familyMulti-orientation holes and interfacesVideo footage
Video-specific
Material and finishDefine on the controlled drawingCustomer drawing
Project input
Datums, fits and geometric controlsDefine on the controlled drawingCustomer drawing
Project input
Inspection and samplingDefine in RFQ or purchase orderBuyer quality requirement
Project input

One-reference machining vs transferred setups for joint interfaces

Decision factorOne-reference multi-axis planTransferred setup plan
Oriented featuresAccess several directions in a common setupReorient the part for separate directions
Interface relationshipsReference one established setupTransfer datums between fixtures
Best fitInteracting bores, faces and angled patternsSeparated features with clear locating surfaces
Inspection focusVerify the common datum alignmentVerify both transfer and final relationships

Robot-joint sourcing process

  1. Map interfaces: Identify every bearing, shaft, motor, gearbox and mounting relationship.
  2. Control the drawing: Apply functional datums, fits and geometric requirements.
  3. Review the route: Evaluate setup access, workholding, finish sequence and measurement.
  4. Machine: Produce features with the approved orientation and setup plan.
  5. Verify: Measure the agreed relationships and issue the required results.

Robot-joint RFQ and inspection checklist

  • Identify bearing, shaft, motor, gearbox and mounting interfaces.
  • Define the datum reference frame and relationships between hole axes.
  • State fits, thread standards, inserts, protected surfaces and finish sequence.
  • Provide material, quantity and revision-controlled model and drawing.
  • List the characteristics and report format required for supplier acceptance.

Frequently asked questions

What should a robot-joint drawing control?
Control bearing or shaft interfaces, mounting faces, hole position, axis relationships, fits and the datum structure that connects them.
Can 5-axis machining reduce robot-joint setups?
It can provide access to features on several orientations from a common setup. The final route still depends on geometry, workholding and inspection access.
Which files support a reliable robot-joint quote?
Provide the 3D model, controlled drawing, material, finish, quantity and requested inspection package.
How are joint-hole relationships inspected?
The inspection plan should align the part to drawing datums and measure the specified position, orientation, size or runout characteristics with suitable equipment.
Can Sendot quote a custom joint without a catalog SKU?
Yes. Sendot's route is drawing-based custom manufacturing; submit the project files so the team can review manufacturability and reporting needs.

Technical references

+86 15818870852LUKE@sendottech.com+86 15818870852