DEVICE FOR APPLYING A VISCOUS SUBSTANCE
20220226849 · 2022-07-21
Inventors
Cpc classification
B05B11/1026
PERFORMING OPERATIONS; TRANSPORTING
A45D34/04
HUMAN NECESSITIES
B05B11/028
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1015
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05B11/00
PERFORMING OPERATIONS; TRANSPORTING
A45D34/04
HUMAN NECESSITIES
Abstract
The invention relates to a device for applying a viscous substance, in particular for cosmetic, writing, painting, drawing and/or marking purposes, having a tank for the substance, an applicator and a conveyor designed to convey the substance from the tank to the applicator. According to the invention, the conveyor has a cylinder, a first and a second closing device, which are both arranged in the cylinder in an axially displaceable manner, a pump tappet for axially displacing the closing devices, a first connecting channel between the cylinder and the tank and a second connecting channel between the cylinder and the applicator, the first closing device opens or closes the first connecting channel depending on its position relative to the cylinder, and the second closing device is adjustable relative to the pump tappet, opens or closes the second connecting channel depending on the position relative to the pump tappet and, together with the cylinder, forms a pump in which it serves as a piston.
Claims
1. A device for applying a viscous substance, comprising a tank configured to store the viscous substance; an applicator; and a conveyor configured to convey the viscous substance from the tank to the applicator, the conveyor including a cylinder a first closing device, a second closing device, the first and second closing devices axially, displaceable in the cylinder, a pump tappet adjustable relative to the second closing device and configured to axially displace the first and second closing devices, a first connecting channel disposed between the cylinder and the tank, and a second connecting channel disposed between the cylinder and the applicator, wherein the first closing device opens or closes the first connecting channel depending on a position relative to the cylinder, and wherein the second closing device opens or closes the second connecting channel depending on a position relative to the pump tappet.
2. The device according to claim 1, wherein the second closing device is configured to be axially displaceable in the cylinder by a pressure stroke and a suction stroke, wherein the second closing device is movable between a first stop and a second stop at the pump tappet, and wherein in the pressure stroke, the second closing device contacts the first stop, and in the suction stroke, the second closing device contacts the second stop.
3. The device according to claim 1, wherein the second closing device is moveable between a first stop and a second stop on the pump tappet, and wherein when the second closing device contacts the first stop, the second connecting channel is open, and when the second closing device contacts the second stop, the second connecting channel is closed.
4. The device according to claim 1, wherein the first closing device is configured to be axially displaceable in the cylinder by a pressure stroke and a suction stroke, and wherein in the pressure stroke, the first closing device closes the first connection channel, and in the suction stroke, the first closing device opens the first connection channel.
5. The device according to claim 1, wherein the second connecting channel is disposed in the pump tappet.
6. The device according to claim 1, wherein the second closing device surrounds at least a portion of the pump tappet in the form of a ring or sleeve.
7. The device according to claim 6, wherein the second closing device is configured as an O-ring. charact
8. The device according to claim 1, wherein the cylinder and the tank are integrally formed.
9. The device according to claim 1, wherein the first closing device and the pump tappet are integrally formed.
10. The device according to claim 1, wherein the first closing device and the pump tappet are separate) formed.
11. The device according to claim 1, further comprising two parts rotatable relative to each other, and a transmission for converting a rotation of the two parts in relation to one another into an axial movement of the pump tappet.
12. The device according to claim 11, wherein the transmission comprises a cam guided by a guide curve running along a closed path.
13. A conveying device for a viscous substance application device having a tank and an application apparatus, the conveying device comprising: a cylinder; a first closing device; a second closing device, the first and second closing devices axially displaceable in the cylinder; a pump tappet adjustable relative to the second closing device and configured to axially displace the first and second closing devices; a first connecting channel disposed between the cylinder and the tank; and a second connecting channel disposed between the cylinder and the applicator, wherein the first closing device opens or closes the first connecting channel depending on a position relative to the cylinder, and wherein the second closing device opens or closes the second connecting channel depending on a position relative to the pump tappet.
14. The conveying device according to claim 13, wherein the second closing device is configured to be axially displaceable in the cylinder by a pressure stroke and a suction stroke, and wherein the second closing device is movable between a first stop and a second stop at the pump tappet, and wherein in the pressure stroke, the second closing device contacts the first stop, and in the suction stroke, the second closing device contacts the second stop.
15. The conveying device according to claim 13, wherein the second closing device is moveable between a first stop and a second stop on the pump tappet, and wherein when the second closing device contacts the first stop, the second connecting channel is open; and when the second closing device contacts the second stop, the second connecting channel is closed.
16. The conveying device according to claim 13, wherein the first closing device is configured to be axially displaceable in the cylinder by a pressure stroke and a suction stroke, and wherein in the pressure stroke, the first closing device closes the first connection channel, and in the suction stroke, the first closing device opens the first connection channel.
17. The conveying device according to claim 13, wherein the second connecting channel is disposed in the pump tappet.
18. The conveying device according to claim 13, wherein the second dosing device surrounds at least a portion of the pump tappet in the form of a ring or sleeve.
19. The conveying device according to claim 13, further comprising two parts rotatable relative to each other, and a transmission for converting a rotation of the two parts in relation to one another into an axial movement of the pump tappet.
20. The conveying device according to claim 19, wherein the transmission comprises a cam guided by a guide curve running along a dosed path.
Description
[0021] In the following, the invention is explained in more detail by means of preferred exemplary embodiments with reference to the appended drawing. Here are shown:
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035] The X-axis direction and the Y-axis direction are defined in such a way that
[0036] The shaft 50b has a hollow interior designed as a tank 40 to receive the viscous substance, A pump cage 42 is formed in the tank 40, said pump cage being connected to the tank 40 via a first connecting channel 41 (
[0037] A conveyor 3 serves to convey the viscous substance from the tank 40 via the pump cage 42 to the applicator 2. For this purpose, the conveyor 3 has a cylinder 10, which in the exemplary embodiment shown in
[0038] By rotating the cartridge 50a with respect to the shaft 50b around the longitudinal axis L, the pump tappet 20 is moved in the cylinder 10 along the longitudinal axis L (Z-axis). For this purpose, the application device 1 is designed with a transmission 23, 70. The transmission 23, 70 has two cams 71 and a link 23. The cams 71 are in engagement with the link 23 formed in the pump tappet 20. As can be seen in
[0039] If the pump tappet 20 is moved downwards from the position shown in
[0040]
[0041] In the following, the functionality of the application device 1 in the embodiment according to
[0042]
[0043] Now the cartridge 50a and the shaft 50b are rotated against each other around the longitudinal axis L. Thus, the rotation can occur in any direction. Due to the interaction of the link 23 and the cams 71, the pump tappet 20 is displayed along the longitudinal axis L in the direction of the tank 40 as explained above. The rotation of the cartridge 50a is thus translated into a movement of the pump tappet 20 along the longitudinal axis L via the cams 71, which run in the link 23 of the pump tappet 20, and via the second anti-rotation device 22 of the pump tappet 20, which is guided in the first anti-rotation device 43 of the shaft 50b. Due to the axial movement of the pump tappet 20, the first stop 24 of the pump tappet 20 comes into contact with the O-ring 30. The O-ring 30 is then moved together with the pump tappet 20 in the direction of the tank 40.
[0044]
[0045]
[0046] If the cartridge 50a is rotated further, the condition shown in
[0047] The second exemplary embodiment of the invention shown in
[0048] The function is, however, substantially the same, wherein in the operating condition according to
[0049] The features of the invention disclosed in the above description, the claims and the drawing can be essential for the implementation of the invention in its various embodiments, both individually and in any combination.