IP Library › Granted Patent US 12,151,253
Granted Patent B2
US 12,151,253 · App. 17/775,702 · Granted Nov 26, 2024

Down-lock bellows pump

Inventor: Raffaele Zandonà (San Pietro in Gu, IT)
Assignee: TAPLAST s.r.l.
B05B11/0005B05B11/0044B05B11/1001B05B11/1023B05B11/1035B05B11/1047B05B11/1059B05B11/106B05B11/1074B05B11/1077F04B19/04F04B43/0009
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Quick Facts
Patent No.
US 12,151,253
App. No.
17/775,702
Granted
Nov 26, 2024
Kind
B2
Abstract

An all-polymer reciprocating pump ( 100 ) is contemplated. The pump body ( 160 ) receives a sliding insert ( 170 ) that may be locked in a down position to minimize the extension and profile of the actuator ( 120 ) while the pump ( 100 ) is not in use (e.g., for purposes of shipping in e-commerce). Projections ( 171 ) slide within guides ( 181 ) formed on an insert housing ( 180 ). Even in this down locked position, minimal compression is applied to the biasing members ( 130 ) so as to avoid fatigue, wear, and/or failure of the plastic components.

Claims (27)

1. A dispenser pump capable of being locked in operational and stocking positions without unwanted compression of components, the pump comprising:

an actuator defining a fluid flow path having an outlet and attached to a top end of a biasing member;

a closure body including a cylindrical skirt and a central aperture which allows for reciprocating motion of the actuator therethrough;

a pump body having a sliding insert received within an outer housing fixed to the closure body, the outer housing coaxially receiving portions of the actuator within a pump chamber formed inside the outer housing, the sliding insert positioned above the pump chamber and having an insert housing fixed to the outer housing and a sliding member attached to a bottom end of the biasing member and fitted coaxially within the insert housing; and

wherein guides and stoppers formed on an inner facing of the insert housing cooperate with projections extending radially outward from an outer facing of the sliding member so as to allow the actuator to be selectively locked upwardly in an operable position and locked downwardly in a stocked position without substantial compression of the biasing member.

2. The pump of claim 1 , wherein the biasing member comprises a bellows.

3. The pump of claim 2 , wherein the bellows have a tapered or conical shape.

4. The pump of claim 2 , wherein the bellows include flanges which separately attach to the actuator and the insert.

5. The pump of claim 1 , wherein the sliding insert and insert housing form cooperating, coaxially hollow tubes.

6. The pump of claim 5 , wherein the guides are formed on an inner facing of the insert housing.

7. The pump of claim 6 , wherein the projections are formed on an outer facing of the sliding insert.

8. The pump of claim 1 , wherein the guides follow a helical path on an inner facing of the insert housing.

9. The pump of claim 1 wherein a sealing flange is formed on the closure body proximate to the central aperture.

10. The pump of claim 1 , wherein indents are provided on inner facing of the actuator, said indents cooperating with outer projections formed on an outer facing of the closure body so as to define a second stocked position.

11. The pump of claim 10 , wherein the outer projections are angled.

12. A dispenser pump capable of being locked in operational and stocking positions without unwanted compression of components, the pump comprising:

an actuator defining a fluid flow path having an outlet and attached to a top end of a biasing member;

a closure body including a cylindrical skirt and a central aperture which allows for reciprocating motion of the actuator therethrough;

a pump body having a sliding insert received within an outer housing fixed to the closure body, the outer housing coaxially receiving portions of the actuator within a pump chamber formed inside the outer housing, the sliding insert positioned above the pump chamber and having an insert housing fixed to the outer housing and a sliding member attached to a bottom end of the biasing member and fitted coaxially within the insert housing; and

wherein guides and stoppers formed on an inner facing of the insert housing cooperate with projections extending radially outward from an outer facing of the sliding member so as to allow the actuator to be selectively locked upwardly in an operable position and locked downwardly in a stocked position without substantial compression of the biasing member; and

wherein ramps are interposed between the guides and stoppers.

13. A dispenser pump capable of being locked in operational and stocking positions without unwanted compression of components, the pump comprising:

an actuator defining a fluid flow path having an outlet and attached to a top end of a biasing member;

a closure body including a cylindrical skirt and a central aperture which allows for reciprocating motion of the actuator therethrough;

a pump body having a sliding insert received within an outer housing fixed to the closure body, the outer housing coaxially receiving portions of the actuator within a pump chamber formed inside the outer housing, the sliding insert positioned above the pump chamber and having an insert housing fixed to the outer housing and a sliding member attached to a bottom end of the biasing member and fitted coaxially within the insert housing; and

wherein guides and stoppers formed on an inner facing of the insert housing cooperate with projections extending radially outward from an outer facing of the sliding member so as to allow the actuator to be selectively locked upwardly in an operable position and locked downwardly in a stocked position without substantial compression of the biasing member; and

wherein the insert housing is coaxially fitted within the outer housing so as to rest upon annular ledge formed on an inner surface of the outer housing immediately above the pump chamber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2023
From: ZANDONÀ, RAFFAELE
To: TAPLAST S.R.L.
Reel/Frame 065582/0932 →
Priority Claims (1)
IT 102019000021321 · Nov 15, 2019 · national
Continuity (1)
Related Publication 20230034207A1 · Feb 2, 2023