EP1908553A2

Apparatus for generating a high-pressure fluid jet

Abstract

An improved apparatus for generating a high-pressure fluid jet includes an orifice mount (11) having a frusto-conical surface (12) that engages a frusto-conical wall in a cutting head (22), the geometry of the orifice mount (11) and cutting head (22) being selected to increase the stability of the mount and reduce deflection of the mount adjacent a jewel orifice (20), when subjected to pressure. Alignment of a nozzle body (37) and the cutting head (22) is improved by providing pilot diameters both upstream and downstream of threads on the nozzle body (37) and bore (23) of the cutting head, respectively. Accurate placement of a mixing tube (49) in a cutting head is achieved by rigidly fixing a collar (52) to an outer surface of the mixing tube (49), the collar engaging a shoulder (34) and bore of the cutting head downstream of a mixing chamber (33), to precisely locate the mixing chamber (33) axially and radially.

EP1908553A2, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Projected expiry passed 26 August 2022, 4.1 years ago.

  1. Priority
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2 claims: 2 independent, 0 dependent

  1. 1
    A nozzle body (37) for use in a high-pressure fluid jet system, characterized in comprising:a nozzle body (37) having a bore (38) extending therethrough along a longitudinal axis (39), a first region (40) of the nozzle body (37) having a plurality of threads (41) provided on an outer surface of the nozzle body (37), and a first pilot wall (42) is provided upstream of the threads (41) and a second pilot (43) wall is provided downstream of the threads (41).
  2. 2
    Apparatus for forming a high-pressure fluid jet, characterized in comprising:a cutting head (22) having a longitudinal bore (38) extending therethrough along a longitudinal axis (39), a first region of the bore (38) being provided with a plurality of threads (41), and wherein the bore (38) of the cutting head defines a first pilot wall upstream of the threads (41) and a second pilot wall downstream of the threads (41);and a nozzle body (37) coupled to the cutting head, an outer surface of the nozzle body being provided with a plurality of nozzle body threads (41), and with a third pilot wall upstream of the nozzle body threads and a fourth pilot wall downstream of the nozzle body threads, the first and second pilot walls of the cutting head engaging the third and fourth pilot walls of the nozzle body (37), respectively, when the nozzle body threads engage the threads (41) in the bore (38) of the cutting head.