Fluid product dispensing pump
The fluid product dispensing pump addresses the issue of leakage by using a sliding barrel with a main and secondary rest section to reduce radial stress on the sealing lips, ensuring a perfect seal and improved thrust force, thus enhancing seal integrity and extending the pump's life.
Patent Information
- Application Number
- FR2023008576
- Authority / Receiving Office
- FR · FR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2023-08-09
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2043-08-09
AI Technical Summary
Existing fluid product dispensing pumps experience significant leakage due to constant radial stress on sealing lips, leading to imperfect seals, especially when the ferrule is not perfectly centered, which affects the seal quality and reduces the bearing force of the piston against the ferrule.
The sliding barrel is designed with a main distribution section and a secondary rest section, where the lower sealing lip remains in contact throughout the piston stroke, and the upper sealing lip is positioned at the secondary rest section in the rest position, reducing radial stress and allowing it to center freely on the ferrule, ensuring a perfect seal.
This design enhances the seal integrity by reducing friction and concentrating the thrust force on the upper sealing lip, improving the seal between the piston and ferrule, thereby minimizing leakage and extending the pump's service life.
Smart Images

Figure 00000009_0000 
Figure 00000010_0000
Abstract
Description
Title of the invention: Fluid product dispensing pump
[0001] The present invention relates to a fluid product dispensing pump comprising a pump body internally defining a sliding barrel. The pump also comprises an actuating rod movable back and forth in the pump body and a piston mounted on the actuating rod and sliding in a sealed manner in the sliding barrel over a piston stroke. The piston forms a lower sealing lip and an upper sealing lip. The pump also comprises a ferrule fixedly mounted in the pump body and a return spring which urges the piston against the ferrule in the rest position of the pump. This is a conventional design for a manual pump in the fields of perfumery, cosmetics, pharmacy and food.
[0002] The sliding barrel is generally cylindrical over its entire height with a constant diameter, so that the two sealing lips are permanently subjected to a constant radial stress along the stroke of the piston, but also in the rest position, in which the piston comes into abutment against the ferrule under the action of the return spring. This constant radial stress also implies a significant constant friction, which therefore reduces the bearing force of the piston against the ferrule and therefore affects the quality of the seal between these two parts in the rest position. In addition, in the case where the ferrule is not perfectly centered in the sliding barrel, which is not rare, the piston is then deformed, which can lead to a sealing defect, either at the sliding barrel, or at the ferrule, or both. And since the pump is at rest, the leakage of fluid product can be significant.
[0003] The aim of the present invention is to guarantee perfect sealing of the pump in the rest position.
[0004] To do this, the present invention proposes that the sliding barrel defines a main distribution section and a secondary rest section, the main distribution section having a diameter smaller than that of the upper section, the lower sealing lip being constantly in contact with the main distribution section over (the entire) piston stroke, while the upper sealing lip is located axially at the height of the secondary rest section in the rest position and in contact with the main distribution section at least at the end of the piston stroke, and preferably over the majority of the piston stroke.
[0005] Thus, the lower lip, always in contact with the main section of the barrel, already ensures a good seal and the upper lip, freed from its strong radial constraint with the barrel, can center itself freely on the ferrule and ensure a perfect seal. This latter seal is all the better as the friction of the piston in the barrel is reduced, which increases the thrust force of the return spring on the piston, which is thus pressed more strongly against the ferrule. In addition, the upper lip is preserved, which is more or less constrained against the barrel in the rest position, which still represents the major part of the pump's life. The advantages are therefore multiple: release of radial stress on the upper lip, centering on the ferrule, reinforced seal on the ferrule, extended service life.
[0006] Advantageously, the piston, in the rest position, is in sealed contact with the ferrule only with its upper sealing lip. This means that all the thrust force exerted by the return spring is concentrated and is applied to the sealed contact between the upper sealing lip and the ferrule.
[0007] According to a practical embodiment, the ferrule may define a frustoconical contact surface and the upper sealing lip may comprise an upper end which internally defines a rounded contact surface, which comes into sealed pressed contact against the frustoconical contact surface in the rest position. This sealed pressed contact is advantageously the only one between the piston and the ferrule.
[0008] Furthermore, the upper sealing lip may comprise an upper end which externally defines a sealed sliding edge, which comes into sealed contact with the main dispensing section of the barrel.
[0009] According to one embodiment, the upper sealing lip may be in contact with the secondary rest section in the rest position. Of course, the radial stress on the upper sealing lip is less than that exerted on the lower sealing lip, which is in contact with the main section of the barrel. Alternatively, the upper sealing lip may be out of contact with the secondary rest section in the rest position. In this case, the upper sealing lip is completely released from its radial stress with the barrel.
[0010] According to one aspect of the invention, the main distribution section may be cylindrical and the secondary rest section may be frustoconical. Alternatively, the main distribution section and the secondary rest section may be cylindrical and connected by a frustoconical connecting section.
[0011] Generally, it is necessary to allow outside air to enter the bottle, as fluid product is extracted from it. This outside air passes through a venting passage which follows the ferrule. According to the invention, this venting passage can be closed in the rest position by the sealed contact between the upper sealing lip and the ferrule. Thus, any leakage of fluid product through this venting passage is impossible.
[0012] The spirit of the invention lies in reducing, or even eliminating, the radial stress on the upper sealing lip to improve its centering and increase its axial support against the shell in the rest position.
[0013] The invention will now be described in greater detail, with reference to the attached drawings, giving, as non-limiting examples, three embodiments of the invention.
[0014] In the figures:
[0015] [Fig-1] [Fig.l] is a vertical cross-sectional view through a pump of the invention, and
[0016] [Fig.2] [Fig.2] is a greatly enlarged view showing a detail of the pump of [Fig.l].
[0017] Referring firstly to [Fig.l], the general structure of the pump will be described. It comprises a pump body 1, an actuating rod 2, a piston 3, a ferrule 4, a return spring 5 and a ball 6 forming a movable inlet valve member.
[0018] The pump body 1 is generally cylindrical and of revolution. It internally defines a sliding barrel 11 for the piston 3. The pump body 1 forms at its lower end an inlet sleeve 12, which can receive a dip tube. In the extension of the inlet sleeve 12, there is an inlet valve seat 13, on which the ball 6 rests. The seat 13 and the ball 6 together form the inlet valve of the pump. Instead of the ball 6, other shapes for a movable valve member can be imagined. At its upper end, the pump body forms a projecting collar 14, which can be grooved externally.
[0019] The actuating rod 2 is movable back and forth in the pump body 1. The rod 2 here results from the assembly of two parts, namely an upper part 20 and a lower part 25. The upper part 20 comprises a rod end 21 intended to receive a pusher, on which a user presses to move the actuating rod 2. Below this rod end, the rod 2 forms an external skirt 22 and an internal sleeve 24. The upper part 20 is axially traversed by a conduit 23. The lower part 25 forms a pin 26 which is fixedly engaged in the internal sleeve 24, as well as a seat 27 for the pump outlet valve.
[0020] The piston 3 comprises a lower sealing lip 31 and an upper sealing lip 32, which are located on the outside of the piston. The two lips 31 and 32 are oriented oppositely, but have the same external diameter. The piston 3 also forms an internal lip 34 of reduced diameter. The piston 3 also forms a valve lip 33, which extends concentrically inside the lower sealing lip 31.
[0021] The lower sealing lip 31 and the upper sealing lip 32 come into sealed sliding contact in the sliding barrel 11. The inner lip 34 comes into sealed sliding contact in the outer skirt 22. The valve lip 33 comes into selective sealed contact with the seat 27, so as to together constitute the pump outlet valve.
[0022] A pump chamber C is thus formed in the pump body 1 between the inlet valve 13, 6 and the outlet valve 27, 33. The piston 3 is mounted on the actuating rod 2, so as to be able to move between the seat 27 and the lower edge of the external skirt 22, with the internal lip 34 sliding in the external skirt 22. When the valve is opened under the effect of the pressure prevailing in the pump chamber C, the latter communicates with the conduit 23, so that the fluid product is discharged from the pump chamber C to the pusher through the conduit 23.
[0023] The ferrule 4 is fixedly mounted in the pump body 1, and more precisely around the upper part of the pump body 1, which forms the projecting collar 14. The ferrule 4 comprises an internal stop section 41 and an external snap-in section 42, which is in snap-in engagement around the collar 14. The ferrule 4, which is a sort of stop ring, could also be limited to the internal stop section 4L
[0024] The return spring 5 rests on a cage 7, which limits the degree of freedom of the ball 6, and under the actuating rod 2. The spring 5 pushes the actuating rod 2 upwards, carrying with it the piston 3, which is pushed into abutment against the ferrule 4, and more precisely its internal abutment section 4L. The axial contact between the rod 2 and the piston 3 is made at the outlet valve 27, 33 and the axial contact between the piston 3 and the ferrule is made at the upper sealing lip 32. The ferrule 4 thus defines the rest position of the piston, of the actuating rod 2 and of the pump as a whole.
[0025] When a user presses the pusher (not shown) mounted on the rod end 21 of the actuating rod 2, the actuating rod descends and pushes into the pump body 1. The upper sealing lip 32 leaves its contact with the ferrule 4 and the valve lip 33 also leaves its contact with its seat 27. The pump chamber C is open towards the conduit 23 and the piston 3 will perform a complete stroke in the sliding barrel 11. The ball 6 is pressed against its seat 13. As soon as the user releases pressure on the pusher, the actuating rod is returned to its rest position under the action of the spring 5. The outlet valve closes and the inlet valve opens, to draw a new dose of fluid product into the pump chamber C. Outside air can enter the fluid product reservoir through a vent passage 4th, formed around the internal abutment section of the ferrule 4.
[0026] This is a completely conventional design and operation for a hand pump.
[0027] According to the invention, the sliding barrel 11 is not perfectly cylindrical over its entire height, but has at its upper end a portion of increased diameter. More precisely, in the embodiment illustrated in the figures, the sliding barrel 11 defines a main distribution section 111, which extends over the majority of the height of the barrel, and a secondary rest section 112, which extends over a reduced portion of the height of the barrel, at its upper end. In a variant not shown, the main distribution section 111 could be more reduced in height and the secondary rest section 112 could extend further. For example, the secondary rest section 112 could have the same height as the main distribution section 111, or even more.
[0028] The main distribution section 111 has a diameter smaller than that of the secondary rest section 112. The increase in diameter of the secondary rest section 112 relative to the main distribution section 111 is of the order of a few hundredths, or even tenths, of millimeters. The main distribution section 111 is cylindrical over its entire height, while the secondary rest section may be frustoconical. Preferably, as shown in the figures, the secondary rest section 112 is cylindrical and is connected to the main distribution section 111 by a frustoconical connecting section 113.
[0029] When the piston 3 is in the rest position, the upper sealing lip 32 is located at the axial level of the secondary rest section 112 and may or may not come into contact with it. When the piston 3 is moved downwards, the upper sealing lip 32 will engage on the frustoconical connecting section 113 to return to the main distribution section 111, where the piston 3 will travel the majority of its stroke. And even with a lower main distribution section 111 as mentioned above, the upper sealing lip 32 will always come into contact with the main distribution section 111 at least at the end of the piston stroke.
[0030] This implies that the upper sealing lip 32 is no longer or almost no longer radially constrained in the rest position, so that it can come to center itself perfectly on the ferrule 4.
[0031] In more detail, the lower end of the outer skirt 41 of the ferrule 4 defines a frustoconical contact surface 412 facing downwards and outwards. On the other hand, the upper sealing lip 32 comprises an upper end which internally defines a rounded contact surface 322, which comes into sealed pressed contact against the frustoconical contact surface 412 in the rest position. Without departing from the scope of the invention, conversely, the ferrule 4 could define a rounded contact surface and the upper sealing lip 32 could define a frustoconical contact surface. In all cases, the “rounded against frustoconical” contact or vice versa is advantageous, it allows relative sliding until reaching the final position of maximum sealing.
[0032] Advantageously, the upper end of the upper sealing lip 32 externally defines a sealed sliding edge 321, which comes into contact or not with the secondary rest section 112. When there is contact, it can be made only on a peripheral part.
[0033] It should be noted that the piston 3, in the rest position, only comes into sealed contact with the ferrule 4 with its upper sealing lip 32. In other words, the rounded contact surface 322 is the only contact area of the piston 3 with the ferrule 4. And due to the taper of the truncated contact surface 412 and the rounding of the rounded contact surface 322, the centering of the piston 3 relative to the ferrule 4 is ensured. In addition, the axial contact is increased, because the radial stress is reduced or canceled. It can be noted that the vent passage 4e is closed in the rest position by the sealed contact between the upper sealing lip 32 and the ferrule 4.Thus, the sealing of the pump is entirely ensured, on the one hand by the lower sealing lip 31, which remains permanently in sealed sliding contact with the main distribution section 111 of the barrel 11, and on the other hand by the upper sealing lip 32, which is in reinforced sealed contact with the ferrule 4.
[0034] Thanks to the invention, a pump is provided whose sealing is reinforced in the rest position.
Claims
Claims
1. A fluid product dispensing pump comprising: - a pump body (1) internally defining a sliding barrel (11), - an actuating rod (2) movable back and forth in the pump body (1), - a piston (3) mounted on the actuating rod (2) and sliding in a sealed manner in the sliding barrel (11) over a piston stroke, the piston (3) forming a lower sealing lip (31) and an upper sealing lip (32), - a ferrule (4) fixedly mounted in the pump body (1), - a return spring (5) which urges the piston (3) against the ferrule (4) in the rest position of the pump, in which the sliding barrel (11) defines a main dispensing section (111) and a secondary rest section (112), the main dispensing section (111) having a diameter smaller than that of the secondary rest section (112),the lower sealing lip (31) being constantly in contact with the main distribution section (111) over the piston stroke, while the upper sealing lip (32) is located axially at the height of the secondary rest section (112) in the rest position and in contact with the main distribution section (111) at least at the end of the piston stroke, in which the piston (3), in the rest position, is in sealing contact with the ferrule (4) only with its upper sealing lip (32), characterized in that the ferrule (4) defines a frustoconical contact surface (412) and the upper sealing lip (32) comprises an upper end which internally defines a rounded contact surface (322), which comes into sealing pressed contact against the frustoconical contact surface (412) in the rest position.,
2. A pump according to claim 1, wherein the upper sealing lip (32) comprises an upper end which externally defines a sealing sliding edge (321), which comes into sealing contact with the main distribution section (111).
3. A pump according to any preceding claim, wherein the upper sealing lip (32) is in contact with the secondary rest section (112) in the rest position.
4. A pump according to any one of claims 1 to 2, wherein the upper sealing lip (32) is out of contact with the secondary rest section (112) in the rest position.
5. Pump according to any one of the preceding claims, in which the main distribution section (111) is cylindrical and the secondary rest section is frustoconical.
6. Pump according to any one of the preceding claims, in which the main distribution section (111) and the secondary rest section (112) are cylindrical and connected by a frustoconical connecting section (113).
7. Pump according to any one of the preceding claims, defining a vent passage (4e), which is closed in the rest position by the sealed contact between the upper sealing lip (32) and the ferrule (4). * * *