Device in a rock drilling machine and rock drilling machine
09937611 ยท 2018-04-10
Assignee
Inventors
Cpc classification
B25D9/18
PERFORMING OPERATIONS; TRANSPORTING
B25D9/12
PERFORMING OPERATIONS; TRANSPORTING
B25D9/20
PERFORMING OPERATIONS; TRANSPORTING
F15B13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B25D9/20
PERFORMING OPERATIONS; TRANSPORTING
F15B13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25D9/18
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A device in a hydraulic rock drilling machine (1) has a distribution valve (7, 7, 7) for controlling hydraulic flow to different parts of the rock drilling machine. The distribution valve has a valve body (8, 8, 8) which moves to and from in an axial direction inside a valve chamber (33). The valve chamber is limited in axial direction by two valve end walls (10, 11; 10, 11; 10, 11). One of the valve end walls is movable in an axial direction against an abutment (12, 12) to define an end position for the valve body, and a pressing device (13, 13, 13) is provided for pressing at least one of the valve end walls against the abutment. A rock drilling machine includes the device.
Claims
1. Device in respect of a hydraulic rock drilling machine (1) including a distribution valve (7,7,7) arranged in connection with the rock drilling machine for controlling hydraulic flows to different parts of the rock drilling machine, wherein the distribution valve includes a valve body (8,8,8), which is arranged movable to and from in axial directions inside a valve chamber (33) and wherein the valve chamber is limited in axial direction by two valve end walls (10,11; 10,11; 10,11), wherein at least one of the valve end walls is movable in an axial direction against an abutment (12,12) in such a way that it defines a first end position for the valve body, a pressing device (13,13,13) is arranged for pressing said at least one of the valve end walls in a direction of the second one of said valve end walls and against said abutment, and said pressing device (13,13,13) includes an end wall piston portion arranged on said at least one of the valve end walls and being received in a cylinder portion to be pressurized in order to drive the valve end wall against said abutment during pressurizing.
2. Device according to claim 1, wherein the cylinder portion includes a connection to a hydraulic pressure source.
3. Hydraulic rock drilling machine (1) with a machine housing (2) which receives a working cylinder (4) with a to and from movable impact piston (3), wherein the rock drilling machine includes a device according to claim 2.
4. Device according to claim 2, wherein the hydraulic pressure source is a system pressure source of the rock drilling machine (1).
5. Hydraulic rock drilling machine (1) with a machine housing (2) which receives a working cylinder (4) with a to and from movable impact piston (3), wherein the rock drilling machine includes a device according to claim 4.
6. Device according to claim 1, wherein the valve chamber (33) in a radial direction is limited by a valve bushing (9), which is formed with said abutment (12).
7. Device according to claim 6, wherein the valve bushing (9) on a side opposite to the one of the valve end walls (10) abuts the second one of the valve end walls (11).
8. Device according to claim 7, wherein the valve bushing (9) lies against a housing wall whereon abuts also one of the valve end walls (11).
9. Device according to claim 6, wherein the valve bushing (9) lies against a housing wall whereon abuts also one of the valve end walls (11).
10. Device according to claim 1, wherein said second one of the valve end walls is movable axially against a second abutment to define a second end position of said valve body so that said two valve end walls are movable axially against said two abutments, respectively, such that when, during pressurizing through a respective pressing device, said two valve end walls lie against said two abutments, respectively, so as to define said first and second end positions, respectively, of the valve body.
11. Device according to claim 1, wherein an end position regulating device is arranged at least at said one of the valve end walls (10) for positioning thereof axially in respect of said abutment for adjusting the first end position of the valve body relative to said abutment.
12. Device according to claim 11, wherein the end position regulating device includes a chamber (13), which is able to be pressurized with varying pressure (30) acting against any one from the group: a mechanical spring device, a hydraulic/pneumatic spring device, a spring device of synthetic elastic material, a spring device of rubber material.
13. Hydraulic rock drilling machine (1) with a machine housing (2) which receives a working cylinder (4) with a to and from movable impact piston (3), wherein the rock drilling machine includes a device according to claim 1.
14. Hydraulic rock drilling machine according to claim 13, wherein said device with said distribution valve is received in the machine housing.
15. Hydraulic rock drilling machine according to claim 14, wherein the distribution valve has an axis (18), which is parallel to an axis (19) of the working cylinder (4).
16. Hydraulic rock drilling machine according to claim 15, wherein the rock drilling machine has a machine end wall (6) of the working cylinder (4), wherein said machining end wall also closes a space (20) for receiving the distribution valve (20).
17. Hydraulic rock drilling machine according to claim 14, wherein the rock drilling machine has a machine end wall (6) of the working cylinder (4), wherein said machining end wall also closes a space (20) for receiving the distribution valve (20).
18. Hydraulic rock drilling machine according to claim 13, wherein the distribution valve has an axis (18), which is parallel to an axis (19) of the working cylinder (4).
19. Hydraulic rock drilling machine according to claim 18, wherein the rock drilling machine has a machine end wall (6) of the working cylinder (4), wherein said machining end wall also closes a space (20) for receiving the distribution valve (20).
20. Hydraulic rock drilling machine according to claim 13, wherein the rock drilling machine has a machine end wall (6) of the working cylinder (4), wherein said machining end wall also closes a space (20) for receiving the distribution valve (20).
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The invention will now be described in greater detail by way of embodiments and with reference to the annexed drawings, wherein:
(2)
(3)
(4)
DESCRIPTION OF EMBODIMENTS
(5) In
(6) At the rear end region of the rock drilling machine 1 there is arranged a rear housing end wall 6, which closes the cylinder space 4. In the rear end region there is also positioned a distribution valve 7 for distributing pressure fluid to the drive chambers of the rock drilling machine for driving the impact piston 3 to and fro.
(7) In
(8) The distribution valve 7 is arranged in a valve space 20 inside the housing 2 being closed by said rear housing end wall 6.
(9) The first valve end wall 10 is influenced by pressure in a chamber 13, being permanently pressurized in operation of the rock drilling machine 1, said chamber 13 co-operating with a piston portion 25 on the first valve end wall 10. Because of this pressurization, the first valve end wall 10 is pressed in a direction towards the second valve end wall 11.
(10) The valve end wall 10 exhibits an abutment surface 26 being directed against the second valve end wall 11, whereby said abutment surface 26 will come into abutment against an abutment 12 at the end of the valve bushing 9. Hereby the valve end wall 10 will be accurately positioned relative to the valve end wall 11 during pressurization of the chamber 13.
(11) It should be understood that for correct positioning of the first valve end wall 10 and thereby for obtaining an end position of the valve body 8, there is hereby no longer any need of accurate machining with high tolerances of a bottom hole being formed having a surface directed in the direction of the second valve end wall 11, in what corresponds to the space receiving the distribution valve 7, as is shown in
(12) Altogether is achieved through the invention that all elements adapted for co-operation with the valve body 8, according to the above, can be effectively accurately positioned in respect of each other, since the valve bushing 9 can be machined in respect of control edges as well as at its (abutment) end(-s) in a relatively simple way.
(13) In the position shown in
(14) An intermittently pressurized channel 14 is in this shown position pressurized such that a hydraulic pressure actuates an end surface 15 of a central end piston portion 23 of the valve body 8, resulting in that this element takes the position shown in
(15) When the channel 14, because of the movement of the impact piston 3, instead is relieved from pressure (not shown), the valve body 8 will be driven to the left in the Figure, such that the first abutment end 21 of the valve body 8 will come to abutment against the first end abutment 17 on the first valve end wall 10.
(16) This is achieved when a permanent pressurized space 16 inside the valve body 8 receives fluid under pressure transmitted through holes 27 in the wall of the valve body, such that the pressure in this space 16 acts against the end surface 24 of the space 16 for driving the valve body 8 to the left in the Figure.
(17) The invention can also be realized by both the first and the second valve end wall 10, 11 being movable such that both valve end walls can be pressed against abutments in directions towards each other for defining two defined end positions for the valve body 8.
(18) The distribution valve 7 can also be made without a specific valve bushing 9. In that case e.g. an abutment corresponding to the abutment 12 can be arranged otherwise in the valve space 20, for example by an inserted locking sleeve comprising an abutment (corresponding to 12) of the valve end wall 10. Alternatively a bore having an abutment can be machined from the end opposite to the opening of the bore shown in
(19) In
(20) A further advantage with having a pressurized valve end wall is that the valve body contacting this end wall will experience a softer abutment, since the pressurized valve end wall will be somewhat resilient and somewhat gives away in connection with the impact of the valve body. This reduces strain on the valve and thereby enhances function and increases working live. It is possible, within the scope of the invention, to make it possible to regulate this resilience by for example dimensioning a confined volume and a throttle in the conduit supplying hydraulic medium.
(21)
(22)