IP Library Granted Patent US 12,540,592
Granted Patent B2
US 12,540,592 · App. 18/023,128 · Granted Feb 3, 2026

Volume splitter for a fuel delivery system

Inventors: Callisto Genco (Howald, LU); Onur Mehmet Tansug (Izmir, TR); Levent Akin (Izmir, TR); Mehmet Donmez (Izmir, TR); Ceren Ates (Izmir, TR); Tolga Sarman (Izmir, TR)
Assignee: PHINIA Jersey Holdings LLC
F02M55/025F02M25/0228F02M55/04F02M2200/315
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,540,592
App. No.
18/023,128
Granted
Feb 3, 2026
Kind
B2
Abstract

A radially deformable volume splitter of an emulsion injection common rail for a fuel injection system of a spark ignition engine. The volume splitter may be tubular and elongate, extending along a longitudinal axis from a first end to a second end. The volume splitter may comprise: a deformable longitudinal slot operable to radially deform the volume splitter from a first state for insertion into a cavity of the emulsion injection common rail to a second state for use inside the cavity; and a set of grooves, arranged on an outer surface of the volume splitter, for connecting an inlet of the cavity to one or more outlets of the cavity, in use.

Claims (22)

1 . A radially deformable volume splitter of an emulsion injection common rail for a fuel injection system of a spark ignition engine, wherein the volume splitter is tubular and elongate, extending along a longitudinal axis from a first end to a second end; and wherein the volume splitter comprises:

a deformable longitudinal slot operable to radially deform the volume splitter from a first state for insertion into a cavity of the emulsion injection common rail to a second state for use inside the cavity; and

a set of grooves, arranged on an outer surface of the volume splitter, for connecting an inlet of said cavity to one or more outlets of said cavity, in use, the set of grooves comprising:

an inlet groove for connecting to the inlet of the cavity, the inlet groove extending axially from a first end to a second end; and

first and second end grooves for connecting the inlet groove to an interior volume of the volume splitter around the first end and the second end of the volume splitter;

wherein the first end groove extends from the first end of the volume splitter to the inlet groove, the second end groove extends from the second end of the volume splitter to the inlet groove, the first end groove connecting to the first end of the inlet groove and the second end groove connecting to the second end of the inlet groove thereby fluidly connecting the inlet groove to the interior volume of the volume splitter;

wherein a cross-sectional area of the first end groove is greater than a cross-sectional area of the connected inlet groove, and a cross-section area of the second end groove is greater than a cross-sectional area of the connected inlet groove.

2 . The volume splitter according to claim 1 , wherein the deformable longitudinal slot is operable to expand, and/or contract, the longitudinal slot and thereby to radially deform the volume splitter.

3 . The volume splitter according to claim 1 , wherein the volume splitter is formed from a resilient material.

4 . The volume splitter according to claim 3 , wherein the deformable longitudinal slot is operable to radially deform the volume splitter to the first state; and wherein the resilience of the volume splitter is configured to urge the volume splitter to the second state for use inside the cavity.

5 . The volume splitter according to claim 1 , wherein the longitudinal slot is operable to radially deform the volume splitter to the extent that, in the second state, an outer radius of the volume splitter is greater than, or equal to, a radius of the cavity of the emulsion injection common rail so as to form an interference fit between the volume splitter and the cavity, in use.

6 . The volume splitter according to claim 1 , further comprising a locking formation engageable with a complementary locking formation in the cavity of the emulsion injection common rail to inhibit rotation of the volume splitter relative to the cavity of the emulsion injection common rail.

7 . The volume splitter according to claim 6 , wherein the locking formation extends radially from the outer surface of the volume splitter for engagement with a complementary radial formation on a wall of the cavity or the locking formation extends axially from at least one of the first end, and/or the second end, of the volume splitter for engagement with a complementary axial formation in a respective end of the cavity.

8 . The volume splitter according to claim 6 , wherein the locking formation is engageable with the complementary locking formation in the cavity in dependence on the volume splitter being oriented so that the set of grooves connect the inlet of the cavity to the one or more outlets of the cavity.

9 . The volume splitter according to claim 6 , wherein the locking formation is engageable with the complementary locking formation in the cavity when the volume splitter is in the second state.

10 . The volume splitter according to claim 9 , wherein the locking formation is disengageable from the complementary locking formation in the cavity when the volume splitter is in the first state.

11 . The volume splitter according to claim 1 , wherein the cross-sectional area of each end groove is at least twice as large as the cross-sectional area of the connected injector delivery groove.

12 . An emulsion injection common rail for a fuel injection system of a spark ignition engine, comprising the volume splitter of claim 1 .

13 . A method of installing the radially deformable volume splitter according to claim 1 in an emulsion injection common rail for a fuel injection system of a spark ignition engine, the method comprising:

configuring the volume splitter in the first state for insertion into a cavity of the emulsion injection common rail;

inserting the volume splitter into the cavity; and

operating the deformable longitudinal slot of the volume splitter to radially deform the volume splitter from the first state to the second state for use inside the cavity.

Assignments (7)
SECURITY INTEREST Recorded Aug 1, 2024
From: PHINIA JERSEY HOLDINGS LLC
To: BANK OF AMERICA, N.A.
Reel/Frame 068324/0623 →
SECURITY INTEREST Recorded Aug 1, 2024
From: PHINIA JERSEY HOLDINGS LLC
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION
Reel/Frame 068324/0658 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2024
From: PHINIA HOLDINGS JERSEY LTD
To: PHINIA JERSEY HOLDINGS LLC
Reel/Frame 067592/0662 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2024
From: PHINIA DELPHI LUXEMBOURG SARL
To: PHINIA HOLDINGS JERSEY LTD
Reel/Frame 067592/0801 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2024
From: DELPHI TECHNOLOGIES IP LIMITED
To: PHINIA DELPHI LUXEMBOURG SARL
Reel/Frame 067865/0695 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2023
From: GENCO, CALLISTO
To: DELPHI TECHNOLOGIES IP LIMITED
Reel/Frame 065214/0065 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2023
From: TANSUG, ONUR MEHMET; AKIN, LEVENT; DONMEZ, MEHMET; ATES, CEREN; SARMAN, TOLGA
To: DELPHI TECHNOLOGIES IP LIMITED
Reel/Frame 065214/0043 →
Priority Claims (1)
GB 2013363 · Aug 26, 2020 · national
Continuity (1)
Related Publication 20230313769A1 · Oct 5, 2023
References Cited (11)
US 20200340436A1 · Schenck Zu Schweinsberg et al. · 2020 [cited by applicant]
CN 105339717A · 2016 [cited by applicant]
DE 102014205179A1 · 2015 [cited by examiner]
DE 102018212577A1 · 2020 [cited by examiner]
WO 2014175730A1 · 2014 [cited by applicant]
WO 2019185218A1 · 2019 [cited by applicant]
WO 2020157217A1 · 2020 [cited by applicant]
International Search Report for PCT/EP2021/073446 dated Nov. 18, 2021, 2 pages. [cited by applicant]
Machine assisted English translation of DE102018212577A1 obtained from https://patents.google.com/patent on Feb. 23, 2023, 5 pages. [cited by applicant]
Machine assisted English translation of DE102014205179A1 obtained from https://patents.google.com/patent on Feb. 23, 2023, 5 pages. [cited by applicant]
Machine assisted English translation of WO2020157217A1 obtained from <https://patents.google.com/patent> on Jul. 23, 2024, 5 pages. [cited by applicant]