Pursuant to 35 U.S.C. ยง 119(a), this application claims the benefit of earlier filing date and right of priority to Korean Patent Application No. 10-2019-0000928, filed on Jan. 3, 2019 and Korean Patent Application No. 10-2019-0127594, filed Oct. 15, 2019, the disclosures of which are incorporated herein by reference in its entirety.
The present invention relates to an auxiliary wheel for a lawn mower coupled to a lawn mower.
Lawn mowers are devices for trimming grass planted in a home yard or a playground. The lawn mowers are classified into home use lawn mowers used in homes and a tractor-type lawn mowers used in a large playground or a large farm.
Referring to
The lawn mower 10 according to the related art may be mainly classified into two types according to a method of positioning the lawn mower 10 below the work vehicle. First, there may be a so-called side-loading lawn mower 10 which is located at a lateral side of the stopped work vehicle and pushed to be positioned below the work vehicle. Further, there may be a so-called drive-over lawn mower 10 which is positioned on the ground and then is positioned below the work vehicle by driving a work vehicle over the lawn mower 10.
In the latter drive-over lawn mower, an operation in which the lawn mower 10 is fixed to the ground is required so that the lawn mower 10 is not pushed by the work vehicle while the work vehicle drives over the lawn mower 10.
However, conventionally, since an element for fixing the lawn mower 10 to the ground is not provided, it is difficult to mount the lawn mower 10 to a lower portion of the work vehicle
Therefore, the present invention is designed to solve the problems and is to provide an auxiliary wheel for a lawn mower that is capable of solving a problem in which it is difficult to mount a lawn mower on a lower portion of a work vehicle.
To solve the above problems, the present invention may include the following configurations.
An auxiliary wheel for a lawn mower according to the present invention includes an installation unit coupled to a main body of a lawn mower, a swing unit coupled to the installation unit to be swingable in one direction or the other direction, a wheel unit connected to the swing unit to be swingable with the swing unit, and a fixing unit installed on an outer portion of the installation unit and configured to fix the swing unit swung in the other direction. When the wheel unit swings in the one direction, the main body may be pressed against the ground. When wheel unit swings in the other direction, the main body may be spaced apart from the ground. The swing unit includes a swingable body part coupled to the installation unit to be swingable about the swing shaft in the one direction or the other direction and having one end connected with the wheel unit, and a swing fixing groove formed in the swingable body part. The fixing unit is inserted into the swing fixing groove to fix the swing unit swung in the other direction or comes out of the swing fixing groove to release fixing of the swing unit.
According to the present invention, an auxiliary wheel for a lawn mower may have the following effects.
Because the present invention is implemented so that a work vehicle can easily move while a lawn mower is mounted thereon and can also improve easiness of an operation in which the lawn mower is mounted on a lower portion of the work vehicle.
Hereinafter, an auxiliary wheel for a lawn mower according to embodiments of the present invention will be described below in detail with reference to the accompanying drawings.
Referring to
The auxiliary wheel 1 for a lawn mower according to the present invention includes an installation unit 2 coupled to a main body 200 of the lawn mower 100, a wheel unit 3 supported on the ground G, a swing unit 4 coupled to the installation unit 2 to be swingable, and a fixing unit 5 selectively fixing the swing unit 4.
The wheel unit 3 is connected to the swing unit 4 and may swing with the swing unit 4. The swing unit 4 may include a swingable body part 41 and a swing fixing groove 42, wherein the swingable body part 41 is coupled to the installation unit 2 to be swingable about a swing shaft 41a in one direction or the other direction, and the swing fixing groove 42 is formed in the swingable body part 41. When the swingable body part 41 swings in the one direction or the other direction, the wheel unit 3 may also swing about the swing shaft 41a in the one direction or the other direction. Hereinafter, unless stated otherwise, swinging of the swingable body part 41 and the wheel unit 3 in the one direction or the other direction refers to swinging about the swing shaft 41a. The fixing unit 5 may include a fixing pin 51 that selectively fixes the swing unit 4 according to whether the fixing pin 51 is inserted into the swing fixing groove 42. The auxiliary wheel 1 for a lawn mower according to the present invention may be operated as described below.
First, as shown in
Next, as shown in
Thus, the auxiliary wheel 1 for a lawn mower according to the present invention can improve easiness of an operation in which the lawn mower 100 is mounted on a lower portion of the work vehicle using the fixing unit 5 and can be implemented to easily move the work vehicle while being mounted with the lawn mower 100.
Hereinafter, the installation unit 2, the wheel unit 3, the swing unit 4, and the fixing unit 5 will be described in detail with reference to the accompanying drawings.
Referring to
Referring to
Referring to
The swingable body part 41 is coupled to the installation unit 2 to be swingable about the swing shaft 41a in the one direction or the other direction. The swing shaft 41a may be formed as a shaft. The wheel unit 3 may be connected to one end portion of the swingable body part 41.
A stop surface 411 (shown in
A limiting surface 412 (shown in
A stop groove 413 may be formed in the swingable body part 41. In this case, a stop bar 414 may be coupled to the installation unit 2.
As shown in
As shown in
Meanwhile, in each case in which the swing unit 4 swings in the one direction or the swing unit 4 swings in the other direction, the stop bar 414 may be in contact with different portions of the swingable body part 41. For example, when the swing unit 4 swings in the one direction, the stop bar 414 is in contact with one surface of the swingable body part 41, and when the swing unit 4 swings in the other direction, the stop bar 414 may be in contact with the other surface of the swingable body part 41. In this case, the stop bar 414 may be disposed between the one surface and the other surface of the swingable body part 41 in the stop groove 413.
Referring to
Referring to
The fixing pin 51 is selectively inserted into the swing fixing groove 42 so that the swingable body part 41 is selectively fixed. As shown in
A protrusion part 511 may be coupled to the fixing pin 51. The protrusion part 511 may protrude outward from the fixing pin 51. When the fixing pin 51 is inserted into the swing fixing groove 42 through the through hole 21, the protrusion part 511 is supported on the installation unit 2 to limit a movement distance of the fixing pin 51 in a direction in which the fixing pin 51 is inserted into the swing fixing groove 42. After the protrusion part 511 is manufactured separately from the fixing pin 51, the protrusion part 511 may be coupled to the fixing pin 51. The protrusion part 511 may be a washer. In this case, a supporting pin (not shown) that supports the protrusion part 511 may be additionally coupled to the fixing pin 51. The fixing pin 51 and the protrusion part 511 may be formed integrally.
Referring to
The fixing operation part 52 moves the fixing pin 51 so that the fixing pin 51 fixes the swing unit 4 swung in the other direction or releases fixing of the swing unit 4. The fixing operation part 52 may be operated so that the fixing pin 51 is moved by an external force applied by the operator. The operator may directly apply an external force to the fixing operation part 52 using a hand, a foot, or the like and apply an external force to the fixing operation part 52 using a separate device.
In this case, the auxiliary wheel 1 for a lawn mower according to the present invention may include the fixing operation part 52 according to various embodiments of the present invention. Hereinafter, the fixing operation part 52 according to the embodiments will be described in detail with reference to the accompanying drawings.
Fixing Operation Part According to First Embodiment
Referring to
The fixing bracket 521 is coupled to an installation unit 2. The fixing bracket 521 may be disposed on an upper side of the installation unit 2.
The force transferring part 522 is connected to a fixing pin 51. The force transferring part 522 and the fixing pin 51 may move together. The force transferring part 522 may be formed in a ring shape. An operator applies an external force to the force transferring part 522 to move the force transferring part 522, and thus the fixing pin 51 moves. The force transferring part 522 may be disposed on an outer side of the installation unit 2.
The pin-elastic part 523 applies an elastic force to the fixing pin 51 in a direction in which the fixing pin 51 fixes the swing unit 4 swung in the other direction. The pin-elastic part 523 has one end portion supported on the fixing bracket 521 and the other end portion supported on the fixing pin 51. The other end portion of the pin-elastic part 523 may be supported on the protrusion part 511. The pin-elastic part 523 may be disposed in the fixing bracket 521. The fixing pin 51 may be disposed in the pin-elastic part 523.
The fixing operation part 52 according to the first embodiment will be operated as described below.
First, as shown in
As shown in
Fixing Operation Part According to Second Embodiment
Referring to
The force transferring part 522 is connected to a fixing pin 51. The force transferring part 522 may be formed to be swingable about a hinge shaft 522a. A movement direction of the fixing pin 51 may be changed according to a direction in which the force transferring part 522 swings about the hinge shaft 522a. In this case, the fixing pin 51 may be connected to the force transferring part 522 so that the fixing pin 51 moves according to swinging of the force transferring part 522. The force transferring part 522 may be integrated with the fixing pin 51. The force transferring part 522 may be coupled to an installation unit 2 so as to be disposed above the installation unit 2.
The force transferring part 522 may include a transfer member 5221 and an external force member 5222.
The transfer member 5221 may move the fixing pin 51 while swinging about the hinge shaft 522a. The fixing pin 51 may be connected to the transfer member 5221.
The external force member 5222 may be disposed on a side opposite to the transfer member 5221 with respect to the hinge shaft 522a.
As shown in
As shown in
The fixing operation part 52 according to the second embodiment may include a fixing bracket 521 and a pin-elastic part 523. Since the fixing bracket 521 and the pin-elastic part 523 are substantially the same as described in the above-described first embodiment, the specific descriptions thereof will be omitted.
The fixing operation part 52 according to the second embodiment may include a transfer elastic part 524. The transfer elastic part 524 applies force to the fixing pin 51 in a direction in which the fixing pin 51 fixes the swing unit 4 swung in the other direction. The transfer elastic part 524 has one end portion supported on the installation unit 2 and the other end portion supported on the force transferring part 522. Therefore, as shown in
The fixing operation part 52 according to the second embodiment is formed so that fixing of the swing unit 4 is released using force with which the operator presses the force transferring part 522. Therefore, in the fixing operation part 52 according to the second embodiment, the operator steps on the force transferring part 522 with his or her foot without bending down, and as shown in
Fixing Operation Part According to Third Embodiment
Referring to
The fixing bracket 521 is coupled to the installation unit 2. The fixing bracket 521 may be disposed above an installation unit 2. The interior of the fixing bracket 521 may be formed to be empty.
The force transferring part 522 is coupled to the fixing bracket 521 to be swingable about a hinge shaft 522a. The force transferring part 522 may be disposed to support a protrusion part 511. In this case, the force transferring part 522 may be disposed between the protrusion part 511 and the installation unit 2. Therefore, the force transferring part 522 swings about the hinge shaft 522a and moves the protrusion part 511 so as to move the fixing pin 51. In this case, a movement direction of the protrusion part 511 and the fixing pin 51 may be changed according to a swing direction in which the force transferring part 522 swings about the hinge shaft 522a. For example, as shown in
The force transferring part 522 may include a transfer member 5221 and an external force member 5222.
The transfer member 5221 is disposed between the protrusion part 511 and the installation unit 2 and supports the protrusion part 511. The transfer member 5221 swings about the hinge shaft 522a and moves the protrusion part 511. As shown in
The external force member 5222 may swing the transfer member 5221 about the hinge shaft 522a. The external force member 5222 and the transfer member 5221 are formed by extending in different directions with respect to the hinge shaft 522a. Therefore, an operation in which the operator applies an external force to the external force member 5222 can be facilitated. When the external force is applied to the external force member 5222, the transfer member 5221 may swing the hinge shaft 522a about the hinge shaft 522a so that the transfer member 5221 is spaced apart from the installation unit 2. Therefore, since the transfer member 5221 lifts the protrusion part 511, the fixing pin 51 may come out of the swing fixing groove 42. Meanwhile, a contact surface 5221a may be formed in the transfer member 5221. When the contact surface 5221a swings so that the transfer member 5221 is spaced apart from the installation unit 2, the contact surface 5221a may come into contact with the fixing bracket 521. Therefore, the contact surface 5221a is supported on the fixing bracket 521 to prevent the transfer member 5221 from swinging more toward the fixing bracket 521. Therefore, the contact surface 5221a may prevent damage to the transfer member 5221 when the transfer member 5221 swings excessively toward the fixing bracket 521.
The fixing operation part 52 according to the third embodiment may include a pin-elastic part 523.
The pin-elastic part 523 elastically presses the protrusion part 511. The pin-elastic part 523 may be disposed between the fixing bracket 521 and the protrusion part 511. The pin-elastic part 523 elastically presses the protrusion part 511 in a direction in which the fixing pin 51 fixes the swing unit 4 swung in the other direction. As shown in
It has been heretofore described that the force transferring part 522 supports the protrusion part 511 and moves the protrusion part 511 to move the fixing pin 51. However, the fixing operation part 52 according to the third embodiment may allow the fixing pin 51 to be directly coupled to the force transferring part 522 without the protrusion part 511. The fixing pin 51 may be coupled to the transfer member 5221. In this case, when an external force is applied to the external force member 5222, the transfer member 5221 swings about the hinge shaft 522a, and thus the fixing pin 51 may move upward. Therefore, the pin-elastic part 523 is pressed, and the fixing pin 51 may come out of the swing fixing groove 42. When the external force applied to the external force member 5222 is removed, and the swing fixing groove 42 is disposed at a position corresponding to the fixing pin 51, the pin-elastic part 523 may stretch and move the fixing pin 51 downward. Therefore, the transfer member 5221 is supported on the installation unit 2, and the fixing pin 51 may be inserted into the swing fixing groove 42. The force transferring part 522 and the fixing pin 51 may be formed integrally.
The fixing operation part 52 according to the third embodiment releases fixing of the swing unit 4 using force with which the operator pushes the force transferring part 522 for swinging. Therefore, in the fixing operation part 52 according to the third embodiment, when the operator steps on the force transferring part 522 with his or her foot without bending down, as shown in
Fixing Operation Part According to Fourth Embodiment
Referring to
The force transferring part 522 may be coupled to a lateral side of the installation unit 2 to be swingable about a hinge shaft 522a. A fixing pin 51 may be coupled to the force transferring part 522. A swing fixing groove 42 may be formed in a lateral surface of a swingable body part 41. In this case, the fixing pin 51 may be moved to be inserted into the swing fixing groove 42 through a through hole 21 formed in a lateral side of the installation unit 2 or to come out of the swing fixing groove 42. The force transferring part 522 and the fixing pin 51 may be formed integrally.
The force transferring part 522 may include a transfer member 5221 and an external force member 5222.
The transfer member 5221 swings about the hinge shaft 522a and moves the fixing pin 51. The fixing pin 51 may be coupled to the transfer member 5221.
The external force member 5222 may be coupled to the transfer member 5221. The external force member 5222 and the transfer member 5221 may be formed to extend in the different directions with respect to the hinge shaft 522a. The external force member 5222 and the transfer member 5221 may be formed integrally.
The transfer elastic part 524 applies force to the force transferring part 522 in a direction in which the fixing pin 51 is inserted into the swing fixing groove 42. The transfer elastic part 524 has one end supported on a lateral surface of the installation unit 2 and the other end supported on the external force member 5222. The transfer elastic part 524 may be formed as a torsion spring.
The fixing operation part 52 according to the fourth embodiment may be operated as described below.
First, as shown in
As shown in
The fixing operation part 52 according to the fourth embodiment may be disposed above the swing shaft 41a. In this case, the swing fixing groove 42 may be disposed above the swing shaft 41a of the swingable body part 41.
The fixing operation part 52 according to the fourth embodiment releases fixing of the swing unit 4 using force with which an operator presses the force transferring part 522 toward a lateral surface of the installation unit 2 for swinging. Therefore, in the fixing operation part 52 according to the fourth embodiment, when the operator steps on the force transferring part 522 with his or her foot without bending down, as shown in
Meanwhile, in the case in which the fixing operation part 52 according to the fourth embodiment is applied, as shown in
Fixing Operation Part According to Fifth Embodiment
Referring to
Heretofore, various embodiments of the fixing operation part 52 have been described.
In the first to third embodiments, the fixing unit 5 is disposed on an upper portion of the installation unit 2, and the swing fixing groove 42 may be formed in an upper surface of the swingable body part 41. However, the present invention is not limited thereto, the fixing unit 5 may be disposed on a lateral surface of the installation unit 2, and the swing fixing groove 42 may be formed in a lateral surface of the swingable body part 41.
In the fourth to fifth embodiments, the fixing unit 5 is disposed on a lateral surface of the installation unit 2, and the swing fixing groove 42 may be formed in a lateral surface of the swingable body part 41. However, the present invention is not limited thereto, the fixing unit 5 may be disposed on an upper portion of the installation unit 2, and the swing fixing groove 42 may be formed in an upper surface of the swingable body part 41.
The above-described present invention is not limited to the above-described embodiments and the accompanying drawings, and it will be apparent to those skilled in the art to which the present invention belongs that various substitutions, changes, and alterations may be made herein without departing from the scope of the present invention.
Number | Date | Country | Kind |
---|---|---|---|
10-2019-0000928 | Jan 2019 | KR | national |
10-2019-0127594 | Oct 2019 | KR | national |