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ROTATING EQUIPMENT / INTERACTIVE 3D

External gear pump cutaway

Explore an original twin-cavity pump section with two separate twelve-tooth gear silhouettes, real side passages, shaft bores, wear-plate locations and a removable-view cover.

Static preview of the external gear pump cutaway schematic
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HOW TO READ THIS MODEL

The system, explained.

KSB describes a gear pump as a rotating positive-displacement pump in which meshing gear teeth are the displacement elements. Parker describes an external pump family with distinct driving and driven gears, a surrounding housing, front/back covers, inlet/outlet connections and shaft sealing. This invented static section separates those roles so they can be inspected. The two cavity bores and side ports are real openings in the original mesh; the complete front cover remains in the interactive model, while only the studio still hides it. The tooth silhouettes are intentionally simplified and do not establish a correct involute mesh, displacement or operating direction.

Model scope and limits

Original static teaching assembly with two invented twelve-tooth annular gear silhouettes, independently bored housing cavities and side connections, separate drive/idler shafts, four wear-plate-region cues, four bearing-bush cues, front/rear covers with actual shaft openings, display feet and fastening markers. Gear teeth are simplified and not proved to mesh correctly. No selected product, displacement, flow, direction, pressure, efficiency, shaft load, seal performance, material, clearances, lubrication, relief, containment, coupling, driver, guard, service or regulatory qualification is supplied.

Source links support further study; no affiliation or endorsement is implied.

CHECK YOUR UNDERSTANDING

What does the model establish about the two gears?

Choose an answer

GUIDED COMPONENT STUDY

Trace the system.

Read each explanation, then focus its component in the explorer. This is a learning route through the model, with no operating or maintenance sequence.

  1. Begin at the inlet opening

    The left neck and drilled housing side passage are genuinely open. They identify an inlet boundary, not measured suction conditions.

  2. Inspect the complete twin cavity

    Two large overlapping bores form a static teaching space around the gears. The model does not qualify the chamber profile, wall thickness or pressure integrity.

  3. Find the driving gear

    A distinct gold annular silhouette has twelve broad teeth and a true shaft opening. Its outline is invented, not a manufactured involute or certified gear mesh.

  4. Compare the driven gear

    The silver gear is separately selectable and shown near the driver. Their frozen pose cannot prove timing, clearance, torque or displacement.

  5. Trace the drive shaft

    A separate shaft passes through the first gear and cover bore. The upper boundary stops before a selected motor and guard.

  6. Locate wear-plate regions

    A thin annular marker identifies where a plate role might sit. This is not an engineered pressure-loaded plate or leakage-control system.

  7. Compare bearing regions

    The independent ring marks one shaft-support location. Loads, lubrication, clearances and life are not calculated.

  8. Check the cover opening

    The interactive model retains a complete front cover drilled for both shafts. The studio still alone hides it to reveal the gears.

  9. Finish at the outlet

    A second bored neck and housing passage identify an outlet boundary. The drawing makes no pressure, flow or relief claim.

ACCESSIBLE COMPONENT REFERENCE

Every part, in plain language.

Search all components ↗Model provenance ↗
Pump display base

Display base, not an installation foundation. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Complete twin-cavity housing wall

Full housing with two actual overlapping gear cavities and separately drilled side passages. The poster alone lifts its top cover. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Inlet open neck

Open inlet connection role; the port is cut into the housing, without a measured flow path. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Inlet bored flange marker

Unrated connection marker with an actual bore. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Outlet open neck

Open outlet connection role; the port is cut into the housing, without a measured flow path. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Outlet bored flange marker

Unrated connection marker with an actual bore. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Drive twelve-tooth gear

Twelve-tooth annular gear silhouette with a true open shaft bore. Tooth form and mesh are not engineered. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Drive solid shaft

Separate static shaft passing through the gear bore. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Drive rear wear-plate location

Annular location cue, not a selected pressure-loaded wear plate or clearance. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Drive front wear-plate location

Annular location cue, not a selected pressure-loaded wear plate or clearance. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Drive rear bearing-bush location

Separate plain-bearing region cue; no load or lubrication design. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Drive front bearing-bush location

Separate plain-bearing region cue; no load or lubrication design. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Idler twelve-tooth gear

Twelve-tooth annular gear silhouette with a true open shaft bore. Tooth form and mesh are not engineered. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Idler solid shaft

Separate static shaft passing through the gear bore. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Idler rear wear-plate location

Annular location cue, not a selected pressure-loaded wear plate or clearance. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Idler front wear-plate location

Annular location cue, not a selected pressure-loaded wear plate or clearance. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Idler rear bearing-bush location

Separate plain-bearing region cue; no load or lubrication design. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Idler front bearing-bush location

Separate plain-bearing region cue; no load or lubrication design. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Rear cover with two shaft openings

Complete closure plate with two actual shaft bores. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Front cover with two shaft openings

Complete facing closure plate. Removed in the poster only to reveal the two gears. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Drive-end shaft-seal location

Shaft-seal location only; no actual seal, leakage or barrier plan. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Drive coupling location

Uncoupled driver boundary; no motor or guard. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Pump support pedestal 1

Display support only. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Pump bored support foot 1

Bored display foot, not an anchor design. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Pump support pedestal 2

Display support only. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Pump bored support foot 2

Bored display foot, not an anchor design. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt cue 1

Visible fastening location without joint preload or pressure qualification. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt 1 rear head

Unrated fastening cue. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt 1 front head

Unrated fastening cue. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt cue 2

Visible fastening location without joint preload or pressure qualification. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt 2 rear head

Unrated fastening cue. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt 2 front head

Unrated fastening cue. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt cue 3

Visible fastening location without joint preload or pressure qualification. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt 3 rear head

Unrated fastening cue. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt 3 front head

Unrated fastening cue. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt cue 4

Visible fastening location without joint preload or pressure qualification. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt 4 rear head

Unrated fastening cue. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.

Cover tie-bolt 4 front head

Unrated fastening cue. Invented static display proportions; no tooth profile, clearance, displacement, rotation, pressure, seal, material or service qualification.