SENSING DEVICE FOR ELECTROMECHANICAL BRAKE
20230094394 ยท 2023-03-30
Assignee
Inventors
Cpc classification
F16D65/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D66/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2066/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2121/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2125/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Disclosed is a sensing device for an electromechanical brake, including: a power part configured to generate an operation force for braking when power is applied thereto; a housing positioned on the power part; a pressurized part positioned on the housing and pressurized by a reaction force caused by driving of the power part; and a sensing part connected to the housing and configured to sense a pressing force by the pressurized part.
Claims
1. A sensing device for an electromechanical brake, comprising: a power part configured to generate an operation force for braking; a housing positioned on the power part; a pressurized part positioned on the housing and being pressurized by a reaction force caused by driving of the power part; and a sensing part connected to the housing and configured to sense a pressing force generated by the pressurized part.
2. The sensing device of claim 1, wherein the power part comprises: a power body; a power motor positioned on the power body; a power screw connected to the power body and configured to be rotated by the power motor; a power bearing configured to support the power screw; and a power piston configured to move along an axis when the power screw is rotated.
3. The sensing device of claim 2, wherein: the housing and the pressurized part are positioned between the power bearing and the power body, and the pressurized part is pressurized by the reaction force of the power bearing.
4. The sensing device of claim 2, further comprising a power nut part configured to move along an axis and move the power piston when the power screw rotates, wherein the housing and the pressurized part are disposed between the power piston and the power nut part, and the pressurized part is pressurized by the reaction force of the power piston.
5. The sensing device of claim 1, wherein the housing comprises: a housing body part having an open front side and a space region formed therein, wherein the power part penetrates the housing body part, and the pressurized part is positioned in the space region; and a housing cover part positioned on the housing body part and configured to prevent the pressurized part from separating from the space region.
6. The sensing device of claim 1, wherein the pressurized part comprises: a pressurized fluid filling the housing; a pressurized washer projecting from the housing and configured to cover and press the pressurized fluid; and a pressurized airtight part positioned on the housing, being in contact with the pressurized washer, and configured to block leakage of the pressurized fluid.
7. The sensing device of claim 6, wherein the pressurized fluid is transferred to or discharged from the housing through a flow path formed on the housing, the flow path being openable and closable.
8. The sensing device of claim 6, wherein the pressurized washer comprises: a first washer positioned in the housing and configured to cover the pressurized fluid part; and a second washer positioned on the first washer, projecting out from the housing, and pressurized by the reaction force caused by driving of the power part.
9. The sensing device of claim 6, wherein the pressurized part further comprises a pressurized recovery part positioned in the housing and configured to elastically support the pressurized washer.
10. The sensing device of claim 1, wherein the sensing part is positioned in the power part and connected to the housing.
11. The sensing device of claim 1, wherein the sensing part is positioned at a rear portion of the housing and connected to the housing.
12. The sensing device of claim 1, wherein the sensing part is positioned at a side portion of the housing and connected to housing.
13. The sensing device of claim 1, wherein the sensing part is positioned outside the power part and connected to the housing positioned in the power part through a sensing flow path part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
DETAILED DESCRIPTION OF THE ILLUSTRATED EMBODIMENTS
[0033] Hereinafter, a sensing device for an electromechanical brake will be described with reference to the accompanying drawings through various exemplary embodiments. In such a process, the thicknesses of lines or the sizes of constituent elements illustrated in the drawings may be exaggerated for clarity and convenience in explanation. Further, terms to be described hereinafter have been defined in consideration of functions in the disclosure, and may differ depending on a user or an operator's intention, or practice. Accordingly, each term should be defined based on the contents over the entire specification.
[0034]
[0035] The power part 10 generates an operation force for braking when power is applied thereto. For example, the power part 10 may generate a braking force in such a manner that a motor is driven when the power is applied to the power part 10 and a pad presses a disc mounted on a wheel.
[0036] The housing 20 is positioned (or mounted) on the power part 10. For example, the housing 20 may be built in the power part 10, and the position of the housing 20 may differ depending on the design. The housing 20 may be positioned (or disposed) on a power shaft on which the power of the power part 10 is generated.
[0037] The pressurized part 30 is mounted on the housing 20, and is pressurized by a reaction force caused by the driving of the power part 10. For example, the pressurized part 30 may be in surface contact with the power part 10, and may provide a uniform pressure to the sensing part 40 while pushed out by the reaction force of the power part 10.
[0038] The sensing part 40 is connected to the housing 20, and senses a pressing force by the pressurized part 30. For example, since the pressurized part 30 provides the uniform pressure, one sensing part 40 may be connected to the housing 20 to measure the pressure.
[0039]
[0040] The power body 11 is mounted on a vehicle body, and is disposed near a wheel being rotated. For example, the power body 11 may be fixedly installed on the vehicle body, and a space for accommodating the power motor 12, the power screw 13, the power bearing 14, and the power piston 15 may be formed inside the power body 11.
[0041] The power motor 12 is mounted on the power body 11, and is driven when the power is applied thereto. The power screw 13 is built in the power body 11, and is rotated by the power motor 12. As an example, the power motor 12 may be directly connected to the power screw 13, or may be indirectly connected to the power screw 13 through a separate transfer gear, and as the power motor 12 is driven, the power screw 13 may be rotated.
[0042] The power bearing 14 supports the power screw 13. For example, the power bearing 14 may be built in the power body 11, and may be penetrated by the power screw 13. The power screw 13 may be rotatably supported by the power bearing 14.
[0043] The power piston 15 is moved along an axis (e.g., a straight line) as the power screw 13 is rotated. For example, the power piston 15 is moved by a power nut part 19 being moved in an axis by the power screw 13, and the moved power piston 15 may keep a brake pad coming into close contact with the disc of the wheel.
[0044]
[0045]
[0046]
[0047] The power part 10 penetrates the housing body part 21. The housing body part 21 has an open front side, and a space region 29 formed therein. For example, the housing body part 21 may be in the shape of a ring in which the front side of the housing body part 21 is opened, and may be penetrated by the power screw 13 or the motor shaft of the power motor 12.
[0048] The housing cover part 22 is mounted on the housing body part 21, and prevents separation of the pressurized part 30 disposed in the space region 29. For example, the housing cover part 22 may be mounted on the front side of the housing body part 21, and may surround a part of the pressurized part 30 inserted into the space region 29.
[0049]
[0050] The pressurized fluid part 31 fills the housing 20. For example, the pressurized fluid part 31 may be a fluid that fills the space region 29 formed in the housing body part 21. The pressurized fluid part 31 may be transferred to or discharged from the housing body part 21 through a flow path that is formed in the housing body part 21 and openable or closable.
[0051] The pressurized washer 32 covers the pressurized fluid part 31, projects from the housing 20, and presses the pressurized fluid part 31 by an external force. For example, the pressurized washer 32 may include a first washer 321 inserted into the space region 29 formed in the housing body part 21 and coming into close contact with the housing body part 21, and a second washer 322 formed on the first washer 321, extended forward, and projecting out of the housing 20. The first washer 321 may be locked by the housing cover part 22 with its movement limited, and may be kept inserted into the housing body part 21. The second washer 322 is exposed to an outside without interfering with the housing cover part 22, and is pressurized by the reaction force of the power part 10. The second washer 322 may be pressurized to the power bearing 14, or may be pressurized to the power piston 15.
[0052] The pressurized airtight part 33 is mounted on the housing 20, and comes into close contact with the pressurized washer 32 to block the leakage of the pressurized fluid part 31. For example, one or more pressurized airtight parts 33 may be mounted inside the housing body part 21, and may come into close contact with the first washer 321 to prevent the leakage of the pressurized fluid part 31.
[0053] The pressurized part 30 according to an embodiment of the disclosure may further include a pressurized recovery part 34. The pressurized recovery part 34 is built in the housing 20, and elastically supports the pressurized washer 32. For example, the pressurized recovery part 34 may be in the form of a coil spring, and a plurality of pressurized recovery parts may support the first washer 321, and may restore the pressurized washer 32, from which the external force is removed, to the original position.
[0054]
[0055]
[0056] The operation of the sensing device for the electromechanical brake according to an embodiment of the disclosure, which has the aforementioned structure, will be described as follows.
[0057] If the pressurized fluid part 31 fills the space region 29 formed in the housing body part 21, the space region 29 is sealed by the pressurized washer 32, and the housing cover 22 is mounted on the housing body part 21 and thus restrains the pressurized washer 32. Further, the housing body part 21 is directly or indirectly connected to the sensing part 40.
[0058] The housing body part 21 is disposed between the power screw 13 and the power body 11 or between the power screw 13 and the power piston 15.
[0059] If a brake pedal is operated in the above-described state, the power screw 13 is rotated as the power motor 12 is driven, and the power piston 15 is moved by the power screw 13. Accordingly, the brake pad presses the disc formed on the wheel.
[0060] Meanwhile, the pressurized washer 32 is pressurized by the reaction force that is generated in the pressurization process of the power piston 15. If the pressurized washer 32 is pressurized, the pressure of the fluid filling the space region 29 is uniformly increased.
[0061] Accordingly, although being connected to various points of the housing body part 21, the sensing part 40 measures the uniformly increased pressure of the fluid, and thus the measurement precision can be stably maintained.
[0062] According to the sensing device for the electromechanical brake according to an embodiment of the disclosure, the pressurized part 30 mounted on the housing 20 provides the uniform pressure as the power part 10 is driven, which makes it possible to stably maintain the measurement precision of the sensing part 40 connected to the housing 20.
[0063] Although exemplary embodiments of the disclosure have been described for illustrative purposes, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the disclosure as defined in the accompanying claims. Thus, the true technical scope of the disclosure should be defined by the following claims.