Pressure medium cylinder and method for moving toothed bar and work machine
12055163 ยท 2024-08-06
Assignee
Inventors
Cpc classification
F15B15/1466
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B15/1419
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E02F9/123
FIXED CONSTRUCTIONS
F15B15/1471
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E02F3/384
FIXED CONSTRUCTIONS
E02F3/358
FIXED CONSTRUCTIONS
F15B15/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F15B15/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A pressure medium cylinder (1) for moving a toothed bar (3), comprising a toothed bar (3) on at least one side of which is formed a toothing (4). Inside the toothed bar (3), a cavity (6, 6a, 6b) is formed, extending to at least one end (7a, 7b) of the toothed bar. The pressure medium cylinder (1) further comprises a longitudinal structure (8, 8a, 8b), the longitudinal structure (8, 8a, 8b) and the toothed bar (3) being adapted movably in relation to each other, and the longitudinal structure (8, 8a, 8b) is adapted at least partly inside said cavity (6, 6a, 6b). The toothed bar (3) and longitudinal structure (8, 8a, 8b) are adapted in a sealed manner in relation to each other so that the toothed bar and the longitudinal structure are movable in relation to each other by the effect of a pressure medium.
Claims
1. A pressure medium cylinder configured to move a toothed bar, the pressure medium cylinder comprising the toothed bar on at least one side of which a toothing is formed, wherein: inside the toothed bar, a cavity is formed, extending to at least one end of the toothed bar, the pressure medium cylinder further comprises a longitudinal structure, wherein the longitudinal structure and the toothed bar are provided movably in relation to each other, and the longitudinal structure is provided at least partly inside said cavity; there is at each time arranged, on the area of the toothed bar end, an end chamber which is configured to form a work chamber; and the toothed bar and the longitudinal structure are provided in a sealed manner in relation to each other so that the toothed bar and longitudinal structure are movable in relation to each other by the effect of a pressure medium when a pressure medium led to the work chamber causes the toothed bar to move in relation to the longitudinal structure.
2. The pressure medium cylinder as claimed in claim 1, wherein the toothed bar and longitudinal structure are movable in relation to each other by the effect of a pressure medium led inside the cavity and/or by the effect of a pressure medium led to act on a circular surface of an end of the toothed bar, surrounding the cavity.
3. The pressure medium cylinder as claimed in claim 1, wherein: a cylindrical structure is provided around the toothed bar, the longitudinal structure is provided to the cylindrical structure inside the cylindrical structure on at least one end of the cylindrical structure immovably, and a channel is provided in the cylindrical structure to lead a pressure medium between the cylindrical structure and the longitudinal structure, the cylindrical structure forms a cylinder pipe, and the toothed bar or a separate structural element is configured to act on the toothed bar forming a piston, and a pressure medium led between the cylindrical structure and longitudinal structure is configured to move the toothed bar in relation to the longitudinal structure.
4. The pressure medium cylinder as claimed in claim 3, wherein the longitudinal structure is provided immovably in the cylindrical structure inside the cylindrical structure on the end of the cylindrical structure, opposite in relation to the toothed bar.
5. The pressure medium cylinder as claimed in claim 1, wherein there is formed, in the longitudinal structure, a channel to lead a pressure medium to the cavity such that the cavity forms the cylinder pipe, and the longitudinal structure forms a piston, and wherein a pressure medium led into the cavity is configured to move the toothed bar in relation to the longitudinal structure.
6. The pressure medium cylinder as claimed in claim 1, wherein the toothed bar comprises two separate cavities, the first of which, cavity, is provided on the first end of the toothed bar to extend to said first end of the toothed bar, and the second of which, cavity, is provided on the second end of the toothed bar to extend to the second end of the toothed bar, and wherein the pressure medium cylinder comprises two separate longitudinal structures, one being movable at any one time in one of said the two cavities.
7. The pressure medium cylinder as claimed in claim 1 wherein: the toothed bar comprises one cavity which extends from the first end of the toothed bar to the second end of the toothed bar, the pressure medium cylinder comprises one longitudinal structure, movable in said cavity, and the longitudinal structure is provided inside a cylindrical structure on at least one end of the cylindrical structure immovably, and wherein there is a channel provided in the cylindrical structure to lead a pressure medium between the cylindrical structure and the longitudinal structure.
8. The pressure medium cylinder as claimed in claim 7 wherein the longitudinal structure is immovably provided at both ends to the corresponding end of the cylindrical structure at any one time, wherein the longitudinal structure extends within the cavity from a first end of the cylindrical structure to a second end of the cylindrical structure.
9. The pressure medium cylinder as claimed in claim 1, wherein the cross section of the toothed bar is substantially round.
10. The pressure medium cylinder as claimed in claim 1, wherein the cross section of the toothed bar is substantially rectangular.
11. The pressure medium cylinder as claimed in claim 1, wherein toothing of the toothed bar is configured to engage toothing of a gear to rotate the gear.
12. A turning device, including an apparatus comprising at least one pressure medium cylinder according to claim 1 configured to move a toothed bar and a gear configured to engage the toothed bar.
13. The turning device as claimed in claim 12, configured to turn a boom system, or part thereof, provided to a work machine in relation to another structural element of the work machine.
14. A work machine comprising a turning device according to claim 12, configured to turn a first structural element of the work machine in relation to a second structural element of the work machine.
15. A method for moving a toothed bar, wherein the toothed bar is moved with a pressure medium cylinder according to claim 1.
16. The method as claimed in claim 15, wherein the toothed bar is moved by leading a pressure medium inside the cavity and/or on the circular surface of an end of the toothed bar, surrounding the cavity, to move the toothed bar in relation to the longitudinal structure.
17. The method as claimed in claim 15, wherein the pressure medium cylinder is provided as a part of a turning device of the work machine, the method further comprising turning a first structural element of the work machine in relation to a second structural element of the work machine with said turning device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present solution is now described in closer detail in connection with preferred embodiments and with reference to the accompanying drawings, in which:
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(16) The figures are intended to illustrate the disclosed solution and some examples of its embodiments. The figures are not shown to scale, and not all of mutually similar features are numbered in all the figures.
DETAILED DESCRIPTION
(17) In this description, the toothed bar 3 generally refers to a bar-like piece in which a toothing is adapted on at least one side or edge. Therefore, a toothing 4 of the toothed bar is adaptable to engage a second toothing 5, such as the toothing of a gear 2. A pressure medium cylinder 1, also referred to as a pressure medium cylinder 1 for moving a toothed bar 3, in this description generally refers to an apparatus comprising a toothed bar 3 adaptable to be moved by the effect of a pressure medium. In other words, the pressure medium cylinder 1 may be configured to move the toothed bar 3. Such pressure medium cylinders may also be referred to as toothed bar cylinders.
(18) In different embodiments, a work chamber with a pressure medium led in it causes the movement of the toothed bar 3 is adapted in different structural ways in relation to the toothed bar 3, which is described more closely in this description and the associated figures. In this description, a turning device 20 refers to an apparatus comprising at least a pressure medium cylinder 1 for moving a toothed bar 3, and a gear 2 adapted for engaging the toothed bar.
(19) In this description, the expression that a structural element is adapted movably in relation to or with respect to a second one, means that one of the structural elements is stationary and the second structural element moves in relation to it, or that both structural elements move in relation to both each other and the environment. For example, a longitudinal structure 8, 8a, 8b being adapted movably in relation to or with respect to a cavity 6, 6a, 6b and/or a toothed bar 3, refers to three alternative situations. First of all, the longitudinal structure 8, 8a, 8b may be stationary and the cavity 6a, 6a, 6b and/or toothed bar 3 may move in relation to the longitudinal structure 8, 8a, 8b, as is typically the case. Secondly, the cavity 6, 6a, 6b and/or the toothed bar 3 may be stationary and the longitudinal structure 8, 8a, 8b may move in relation to the cavity or toothed bar. Thirdly, both the longitudinal structure 8, 8a, 8b and cavity 6, 6a, 6b and/or toothed bar 3 may move in relation to the environment and the longitudinal structure 8, 8a, 8b and cavity 6, 6a, 6b and/or toothed bar 3 in addition move in relation to each other.
(20) In an embodiment, the pressure medium cylinder may be configured to rotate a gear 2. The pressure medium cylinder 1, in particular, may be configured to rotate the gear 2 by means of a gear transmission formed between a toothing 4 formed in the toothed bar 3 and toothing 5 formed in the gear 2 when the toothing 4 of the toothed bar and the toothing 5 of the gear are adapted to engage each other.
(21) Different gears 2 are known per se and therefore not dealt with in more detail in this description. It will be obvious for a person skilled in the art that the gear 2 may comprise a toothing 5 formed on the surface of a rotatable piece or structural element, or a separate structural element on whose surface a toothing 5 has been formed and which is immovably connected to a rotatable piece or structural element or to cause a rotational movement of the rotatable piece in another manner.
(22) The pressure medium cylinder 1 for moving a toothed bar may comprise a toothed bar 3. The toothed bar 3 may comprise a toothing 4 formed on at least one side of the toothed bar 3. The toothing 4 formed on at least one side of the toothed bar may be configured to engage the toothing 5 of a counterpiece, such as the gear 2 rotated by means of the toothed bar, 3 moved by means of the toothed bar.
(23) Advantageously, the toothed bar 3 is a bar-like piece, but its length and cross-sectional geometry may vary according to the embodiment. In an embodiment, the toothed bar 3 may have a round or circular cross sections, whereby the toothing 4 may be adapted on the outer surface of the toothed bar 3 by, for example, notching the otherwise cross-sectionally round or circular outer surface of the toothed bar 3 or adapted to protrude from the otherwise cross-sectionally round or circular outer surface of the toothed bar 3. In an embodiment, the toothed bar 3 may have a square or rectangular cross section, whereby the toothing 4 may extend on one or more sides of the toothed bar 3. The toothing 4 of the toothed bar is advantageously adapted to extend in the longitudinal direction of the toothed bar 3.
(24) In an embodiment, the pressure medium cylinder 1 may be configured to rotate the gear 2. The toothing 4 formed on at least one side of the toothed bar may in such a case be configured to engage the toothing 5 of the gear 2 being rotated.
(25) In the disclosed solution, inside the toothed bar 3 there is adapted a cavity 6, 6a, 6b extending to at least one end 7a, 7b of the toothed bar. The ends 7a, 7b of the toothed bar are in this case adapted on opposite ends of the toothed bar 3 in its longitudinal direction. In such a case, the toothing 4 of the toothed bar extends between the ends of the toothed bar, that is, between the first end 7a and the second end 7b. Depending on the embodiment, the toothing 4 of the toothed bar may extend between the ends 7a, 7b of the toothed bar over the entire length of the toothed bar 3 or over part of the length of the toothed bar.
(26) The pressure medium cylinder 1 according to the disclosed solution further comprises a longitudinal structure 8, 8a, 8b. The longitudinal structure 8, 8a, 8b and toothed bar 3 are adapted movably in relation to each other. The toothed bar 3 is advantageously adapted to move in relation to the longitudinal structure 8, 8a, 8b. The longitudinal structure 8, 8a, 8b is adapted at least partly within the cavity 6, 6a, 6b. In other words, the toothed bar 3 is configured to move at least partly around the longitudinal structure 8, 8a, 8b. The longitudinal axes of the longitudinal structure 8, 8a, 8b, toothed bar 3, and cavity 6, 6a, 6b are mutually parallel. The toothed bar 3 and longitudinal structure 8, 8a, 8b are advantageously adapted in a sealed manner in relation to each other so that the toothed bar and the longitudinal structure are movable in relation to each other by the effect of the pressure medium.
(27) Depending on the embodiment, the sealing may comprise, for example, a structural sealing between the toothed bar 6, 6a, 6b and the longitudinal structure 8, 8a, 8b, and/or one accomplished with a separate at least one sealing member. Different means and methods for sealing parts of pressure medium devices are known per se and are therefore not discussed in closer detail herein.
(28) In an embodiment, the toothed bar 3 and longitudinal structure 8, 8a, 8b are configured to be movable in relation to each other by the effect of a pressure medium led inside the cavity 6, 6a, 6b and/or by the effect of a pressure medium led to act on the circular surface 9 of an end of the toothed bar, surrounding the cavity. In other words, when such a pressure medium cylinder 1 is used for moving the toothed bar 3, a pressure medium may be led inside the cavity 6, 6a, 6b whereby the pressure medium adapted in the cavity is configured to cause the movement of the toothed bar 3 in relation to the longitudinal structure 8, 8a, 8b. In other words, the part of the cavity 6, 6a, 6b on whose area the longitudinal structure 8, 8a, 8b does not extend at each time, is adapted to form the work chamber. The cavity 6, 6a, 6b does not consequently have any longitudinal structure 8, 8a, 8b at the work chamber. In other words, the work chamber has at least one spot where inside the cavity 6, 6a, 6b, in a sectional plane transverse in relation to the axial direction, there is no longitudinal structure 8, 8a, 8b. In such a solution, the work chamber can be sealed relatively easily and simply. Instead of this or in addition to this, when such a pressure medium cylinder 1 is used for moving the toothed bar 3, a pressure medium may be led to the area of at least one end 7a, 7b of the toothed bar 3 to act on the circular surface 9 surrounding the cavity 6, 6a, 6b of the end of the toothed bar whereby the pressure medium led to act on this circular surface 9 is configured to cause the movement of the toothed bar 3 in relation to the longitudinal structure 8, 8a, 8b. In other words, there is at each time adapted, in the area of the end 7a, 7b, an end chamber 18a, 18b that is adapted to form the work chamber.
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(30) In an embodiment, there is a cylindrical structure 10 adapted around the toothed bar 3, such as in the embodiments of
(31) In an embodiment, the longitudinal structure 8, 8a, 8b may be adapted in the cylindrical structure 10 adapted around the toothed bar 3 inside the cylindrical structure on at least one end of the cylindrical structure, advantageously at least on the end 11 opposite in relation to the toothed bar 3, immovably, as in the embodiments of
(32) In an embodiment, in the cylindrical structure 10 adapted around the toothed bar 3, a channel 12 may have been adapted to lead a pressure medium between the cylindrical structure 10 and the longitudinal structure 8, 8a, 8b, as in the embodiment of
(33) In an embodiment, the cylindrical structure 10 may form a cylinder pipe, and the toothed bar 3 may form a piston. In a second embodiment, the cylindrical structure 10 may form a cylinder pipe, and the pressure medium cylinder 1 may comprise a separate piston 17 which is adapted to act on the toothed bar 3. In other words, the separate structural element 17, adapted to act on the toothed bar 3, may in this case form the piston. In this case, the piston 17 may be adapted to act on the toothed bar so that the movement of the piston 17 causes the toothed bar 3 to move. In other words, in the various embodiments, the toothed bar 3 may as such form a piston of the pressure medium cylinder, the pressure medium cylinder 1 may comprise a separate piston 17 adapted to act on the toothed bar 3, whereby the piston 17 may thus be operationally coupled to the toothed bar 3, or the piston 17 and toothed bar 3 may be immovably coupled to each other whereby they may operationally form a uniform structural element.
(34) In an embodiment, the pressure medium led between the cylindrical structure 10 and longitudinal structure 8, 8a, 8b may be adaptable to move the toothed bar 3 in relation to the longitudinal structure 8, 8a, 8b.
(35) In an embodiment, such as the embodiments of
(36) In an embodiment, such as the embodiments of
(37) In an embodiment, such as the embodiments of
(38) In an embodiment, the pressure medium cylinder 1 may comprise a plurality of work chambers, such as a first end chamber 18a, a second end chamber 18b, a work chamber formed by the first cavity 6a and/or a work chamber formed by the second cavity 6b, so that the toothed bar 3 may be adapted to move by leading a pressure medium to at least two of such work chambers so that at least two structures, acting as a piston, are formed. In an embodiment, the pressure medium cylinder 1 may in such a case comprise a channel 12 adapted in the cylindrical structure 10 to lead a pressure medium to at least one cavity 6a, 6b and a channel 13 formed in the longitudinal structure 8, 8a, 8b to lead a pressure medium to at least one end chamber 18a, 18b. In other words, in such an embodiment, both the longitudinal structure 8, 8a, 8b and the toothed bar 3 or the separate structural element 17 adapted thereto may be adapted to form a piston that causes movement of the toothed bar 3 in relation to the cylindrical structure 10 when a pressure medium is led to the corresponding work chamber, as shown in connection with other embodiments, to establish a working pressure. In the different embodiments, one or more of the chambers of the pressure medium cylinder 1, such as the cavity 6a, 6b or end chamber 18a, 18b may be pressurized, and correspondingly one or more of the chambers of the pressure medium cylinder 1, such as the cavity 6a, 6b or end chamber 18a, 18b may be unpressurized, for example, connected to a tank line of the pressure medium system, such as a hydraulic system.
(39) In an embodiment, such as the embodiments of
(40) In an embodiment, such as the embodiment of
(41) In an embodiment, not shown in the drawings, the turning device 20 comprises two pressure medium cylinders 1, adapted in parallel, for example, on opposite sides of the gear 2. In such a case, each pressure medium cylinder 1 may comprise one toothed bar 3 which comprises one cavity 6a, 6b, whereby the cavity 6a of the toothed bar 3 of the first pressure medium cylinder 1 is adapted on the first end 7a of the toothed bar in question to extend to said first end 7a of the toothed bar, and the cavity 6b of the toothed bar 3 of the second pressure medium cylinder is adapted on the second end 7b of the toothed bar to extend to the second end 7b of the toothed bar. In other words, the cavities 6a, 6b may be adapted on opposite ends of the pressure medium cylinders 1, that is, crosswise in relation to each other. In such a case, there is, in other words, one cavity 6a, 6b formed in each toothed bar 3, on the mutually opposite ends 7a, 7b of the toothed bars 3, so that each of the cavities extends to one end of the toothed bar 3 in question at any one time and opens at this end so that each cavity 6a, 6b is able to receive at least one longitudinal structure 8a, 8b at any one time. In an embodiment, each of such pressure medium cylinders 1 further comprises at least one longitudinal structure 8a, 8b adapted movably at any one time in one of the chambers 6a, 6b. In other words, the longitudinal structures 8a, 8b are in this case adapted on opposite ends of the pressure medium cylinders, in a mutually crosswise manner in relation to the gear 2 or another rotatable structure.
(42) In an embodiment, not shown in the drawings, the toothed bar 3 comprises one cavity 6 which extends from the first end 7a of the toothed bar to the second end of the toothed bar 7b. In addition, the pressure medium cylinder 1 may in such an embodiment comprise one longitudinal structure 8 adapted movably in relation to the cavity 6, and at least one cylindrical structure 10. In such a case, the longitudinal structure 8 may be adapted in the cylindrical structure 10 inside the cylindrical structure on at least one end 11a, 11b of the cylindrical structure immovably. The pressure medium cylinder 1 may further comprise a channel 12 adapted in the cylindrical structure 10 to lead a pressure medium between the cylindrical structure 10 and longitudinal structure 8. In a second embodiment, the pressure medium cylinder may otherwise be similar, but the longitudinal structure 8, 8a, 8b may be immovably adapted at its both ends 14a, 14b to the corresponding end 11 of the cylindrical structure 10 at any one time. In such a case, the longitudinal structure 8, 8a, 8b may extend within the cavity 6, 6a, 6b from the first end of the cylindrical structure 10 to the second end of the cylindrical structure.
(43) In an embodiment, such as the embodiments of
(44) In an embodiment, the turning device 20 comprises an apparatus comprising at least a pressure medium cylinder 1 for moving the toothed bar 3, and a gear 2 adapted for engaging the toothed bar 3. The pressure medium cylinder 1 may be a pressure medium cylinder according to an embodiment disclosed in this description and/or related to the drawings thereof, or a combination of them. In the various embodiments, the turning device 20 may further comprise other structural elements, for example, to turn the turnable structural element, to adapt the turnable structural element to the turning device, gear, and/or work machine, and to install the turning device to the work machine or another application.
(45) In an embodiment, the turning device 20 may be adapted to turn a first structural element of the work machine in relation to a second structural element of the work machine.
(46) In an embodiment, the turning device 20 may be adapted to turn a boom system or a part thereof. In an embodiment, the boom system may comprise a boom system adapted to a work machine, and the turning device 20 may be adapted to turn the boom system in relation to another structural element of the work machine, such as the body of the work machine or a second structural element. In an embodiment, the turning device 20 may thus be adapted to turn a boom system, or its part, adapted to a work machine in relation to another structural element of the work machine. The use of pressure medium cylinders 1 disclosed in this description and the associated drawings in such turning devices 20 is particularly advantageous, because due to the disclosed pressure medium cylinders 1 the pressure level of the turning device may be adapted the same or nearly the same as that which is used in other actuators of the same pressure medium circuit and/or the same work machine. This way it is, for example, possible to avoid pressure losses caused by changing the pressure, and to simplify systems.
(47) In an embodiment, the work machine may comprise a pressure medium cylinder 1 according to an embodiment disclosed in this description and/or related to the drawings thereof, or a combination of them. In an embodiment, the work machine may comprise a turning device 20 which comprises a pressure medium cylinder 1 according to an embodiment disclosed in this description and/or related to the drawings thereof, or a combination of them, and which is adapted to turn a first structural element of the work machine in relation to a second structural element of the work machine.
(48) In an embodiment, the work machine may comprise a boom system and/or a control cabin, and the turning device 20 may be adapted to turn the boom system and/or control cabin in relation to the body of the work machine or another structural element. In other words, the first structural element of the work machine may in such a case comprise a boom system and/or control cabin, and the second structural element of the work machine may comprise the body or another structural element of the work machine.
(49) In an embodiment, the work machine comprises a turning device disclosed in this description and/or associated drawings. In an embodiment, the work machine may comprise a moving work machine, such as a forestry machine, excavator, transport machine, earth moving machine, mining machine, or a similar work machine used in a business activity, and which is in its entirety movable in relation to the ground or another usage surface. In another embodiment, the work machine may comprise a work machine fixedly and/or immovably adapted in place. Both the moving work machines and work machines fixedly/immovably adapted in place, and their typical structures, are as such generally known and therefore neither them of their structural elements are shown in any greater detail in this description or the associated drawings.
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(51) In an embodiment, the pressure medium cylinder 1 is adapted as part of the turning device 20 of the work machine. In such a case, the method may further comprise turning a first structural element of the work machine in relation to a second structural element with said turning device 20.
(52) In an embodiment, the pressure medium cylinder 1 is adapted to operate the turning device 20 of the work machine.
(53) In an embodiment, the toothed bar 3, on at least one side of which a toothing 4 is formed, is moved to engage the toothing 5 of a rotatable gear 2, and inside which a cavity 6, 6a, 6b is formed, extending to at least one end 7a, 7b of the toothed bar, by means of a pressure medium cylinder 1 which comprises a longitudinal structure 8, 8a, 8b whereby the longitudinal structure and the toothed bar are adapted movably in relation to each other and the longitudinal structure is adapted at least partly inside the cavity, and whereby the toothed bar and the longitudinal structure are adapted in a sealed manner in relation to each other so that the toothed bar and longitudinal structure may be moved in relation to each other by the effect of a pressure medium.
(54) Those skilled in the art will find it obvious that, as technology advances, the basic idea of the invention may be implemented in many different ways. The invention and its embodiments are thus not restricted to the examples described above but may vary within the scope of the claims.