Vehicular charging device
The vehicle charging device incorporates a cover structure with a cover body and locking portion to protect the guide member from foreign objects, addressing the challenge of contamination and ensuring smooth operation.
Patent Information
- Application Number
- JP2023182743
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-10-24
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2043-10-24
AI Technical Summary
Existing vehicle charging devices face the challenge of protecting their linear guide members from foreign objects when they protrude from the device body during movement.
A vehicle charging device is designed with a cover structure that includes a cover body and a locking portion. The cover body extends from the device body to cover the protruding guide member, and the locking portion ensures the cover body remains in place, effectively protecting the guide member from external debris.
The cover structure effectively protects the guide member from foreign objects, ensuring the device operates smoothly and reducing the risk of mechanical failures due to contamination.
Smart Images

Figure 2025072168000001_ABST
Abstract
Description
[Technical field]
[0001] The present invention relates to a vehicle charging device. [Background technology]
[0002] Conventionally, there are charging devices that charge vehicles. The vehicle charging system disclosed in Patent Document 1 has a power supply fitting and is provided with a power supply device installed in a parking space for the vehicle. The vehicle charging system has an insertion / removal direction moving part that fits the power supply fitting into the power receiving fitting of the vehicle. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Patent Publication No. 2022-26379 Summary of the Invention [Problem to be solved by the invention]
[0004] A linear guide member can be used as a means for adjusting the position of the charging device according to the stopping position of the vehicle. Here, when the device body of the charging device moves along the guide member, if the guide member is exposed to the external space, foreign objects are likely to adhere to it. It is desirable to be able to protect the guide member from foreign objects.
[0005] An object of the present invention is to provide a vehicle charging device capable of protecting a guide member. [Means for solving the problem]
[0006] The vehicle charging device of the present invention comprises a device main body that charges a vehicle, a linear guide member extending in a first direction and guiding movement of the device main body along the first direction, and a cover structure that covers the guide member, wherein the guide member is arranged so that a part of the guide member protrudes from the device main body when the device main body moves in the first direction, and the cover structure has a cover body that covers the part of the guide member that protrudes from the device main body and a locking portion, wherein the locking portion is arranged at an end of the guide member in the first direction and is configured to lock a tip of the cover body, and the cover body extends from the device main body to cover the guide member when the device main body moves with the tip locked by the locking portion. Effect of the Invention
[0007] The vehicle charging device according to the present invention has a cover structure for covering the guide member. The cover structure has a cover body for covering a portion of the guide member protruding from the device body, and a locking portion. The cover body extends from the device body to cover the guide member when the device body moves with its tip locked by the locking portion. The vehicle charging device according to the present invention has the advantage that the guide member can be protected by the cover body extending from the device body. [Brief description of the drawings]
[0008] [Figure 1] FIG. 1 is a side view of a vehicle charging device according to an embodiment. [Diagram 2] FIG. 2 is a cross-sectional view of the vehicle charging device according to the embodiment. [Diagram 3] FIG. 3 is a cross-sectional view of the cover structure according to the embodiment. [Figure 4] FIG. 4 is a cross-sectional view of the cover structure according to the embodiment. [Diagram 5] FIG. 5 is a plan view of the cover structure according to the embodiment. [Figure 6] FIG. 6 is a cross-sectional view of the cover structure according to the embodiment. [Figure 7] FIG. 7 is a front view of the cover structure according to the embodiment. [Figure 8] FIG. 8 is a side view of the cover structure according to the embodiment. [Figure 9] FIG. 9 is a cross-sectional view of the cover structure according to the embodiment. [Figure 10] FIG. 10 is a side view of the cover structure according to the embodiment. [Figure 11] FIG. 11 is a cross-sectional view of the cover structure according to the embodiment. [Figure 12] FIG. 12 is a side view of the cover structure according to the embodiment. [Figure 13] FIG. 13 is a cross-sectional view of the cover structure according to the embodiment. [Figure 14] FIG. 14 is a side view of the cover structure according to the embodiment. [Figure 15] FIG. 15 is a perspective view of a cover structure according to the embodiment. [Figure 16] FIG. 16 is a perspective view showing an example of a cover body. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0009] Hereinafter, a vehicle charging device according to an embodiment of the present invention will be described in detail with reference to the drawings. Note that the present invention is not limited to the embodiment. In addition, the components in the following embodiments include those that a person skilled in the art can easily imagine or that are substantially the same.
[0010] [Embodiment] An embodiment will be described with reference to Fig. 1 to Fig. 15. The embodiment relates to a vehicle charging device. Fig. 1 is a side view of the vehicle charging device according to the embodiment, Fig. 2 is a cross-sectional view of the vehicle charging device according to the embodiment, Figs. 3 and 4 are cross-sectional views of a cover structure according to the embodiment, Fig. 5 is a plan view of the cover structure according to the embodiment, Fig. 6 is a cross-sectional view of the cover structure according to the embodiment, Fig. 7 is a front view of the cover structure according to the embodiment, Fig. 8 is a side view of the cover structure according to the embodiment, Fig. 9 is a cross-sectional view of the cover structure according to the embodiment, and Fig. 10 is a side view of the cover structure according to the embodiment.
[0011] Fig. 11 is a cross-sectional view of the cover structure according to the embodiment, Fig. 12 is a side view of the cover structure according to the embodiment, Fig. 13 is a cross-sectional view of the cover structure according to the embodiment, Fig. 14 is a side view of the cover structure according to the embodiment, and Fig. 15 is a perspective view of the cover structure according to the embodiment. Fig. 2 shows a cross section taken along line II-II in Fig. 1. Fig. 9 shows a cross section taken along line IX-IX in Fig. 8. Fig. 11 shows a cross section taken along line XI-XI in Fig. 10. Fig. 13 shows a cross section taken along line XIII-XIII in Fig. 12.
[0012] As shown in Fig. 1, the vehicle charging device 1 of this embodiment is a device that charges a vehicle 200. The vehicle charging device 1 is placed on a floor 100 of a charging stand, a parking lot, or the like. A charging inlet 210 is placed under the vehicle 200. The vehicle charging device 1 has an apparatus main body 2 that charges the vehicle 200, a guide member 10, and a cover structure 20. As will be described later, the cover structure 20 is configured to cover a portion of the guide member 10 that protrudes from the apparatus main body 2.
[0013] The device main body 2 has a housing 2a, a moving mechanism 4, and a connector 5. The housing 2a accommodates components including the moving mechanism 4 and the connector 5 inside. The shape of the housing 2a is, for example, a rectangular parallelepiped. The connector 5 is a connector for charging that fits into the inlet 210. The charging circuit of the vehicle charging device 1 is connected to the battery of the vehicle 200 via the connector 5.
[0014] The moving mechanism 4 is a mechanism for fitting the connector 5 with the inlet 210. The moving mechanism 4 is configured to move the connector 5 in three directions. The three directions are a first direction X shown in FIG. 2, a second direction Y shown in FIG. 1, and a vertical direction Z. The first direction X corresponds to, for example, the width direction of the vehicle 200. The second direction Y corresponds to, for example, the front-rear direction of the vehicle 200. The vertical direction Z corresponds to the vertical direction of the vehicle 200. The first direction X is perpendicular to the second direction Y. The vertical direction Z is perpendicular to both the first direction X and the second direction Y.
[0015] The movement mechanism 4 moves the connector 5 in the vertical direction Z by, for example, an arm. The movement mechanism 4 moves the connector 5 in the first direction X and the second direction Y by, for example, a rack-and-pinion mechanism.
[0016] 2, the movement mechanism 4 has a guide member 10, a pinion gear 41, and a motor 42. The guide member 10, the pinion gear 41, and the motor 42 configure a mechanism for moving the housing 2a in the first direction X. The guide member 10 is fixed to a floor portion 100 and extends in the first direction X.
[0017] The guide member 10 is a linearly extending member, and has a rack gear portion 11 and a pair of fixed portions 12. The rack gear portion 11 has a plurality of gear teeth aligned in a first direction X. The fixed portions 12 are portions that are fixed to the floor portion 100. The fixed portions 12 are fixed to a base 110 arranged on the floor portion 100, for example, by a fastening member. The fixed portions 12 are disposed at both ends of the guide member 10 in the first direction X. The rack gear portion 11 is disposed between the two fixed portions 12.
[0018] The pinion gear 41 is a disk-shaped gear that meshes with the rack gear portion 11. The motor 42 is a drive source that rotates the pinion gear 41. The motor 42 is fixed to the housing 2a. The motor 42 may be connected to the pinion gear 41 via a reduction mechanism. When the pinion gear 41 rotates, the housing 2a and the connector 5 move in the first direction X.
[0019] 2 shows the device main body 2 positioned at a standby position. The standby position is a position in a standby state before the vehicle charging device 1 starts charging the vehicle 200. When starting charging, the vehicle charging device 1 detects the position of the inlet 210 and causes the movement mechanism 4 to move the connector 5 to a position where it can be fitted into the inlet 210.
[0020] The moving mechanism 4 can move the device body 2 to both sides in the first direction X relative to the standby position. When the device body 2 is in the standby position, the rack gear unit 11 is covered and hidden by the housing 2a. In other words, the rack gear unit 11 is housed in the housing 2a in the standby position. The housing 2a in the standby position may house the entire guide member 10.
[0021] The guide member 10 of this embodiment is disposed such that a portion of the guide member 10 protrudes from the device body 2 when the device body 2 moves in the first direction X. In other words, when the device body 2 moves in the first direction X, a portion of the guide member 10 is exposed to the external space of the housing 2a. In the vehicle charging device 1 of this embodiment, at least a portion of the rack gear portion 11 may be exposed to the external space of the housing 2a. If the guide member 10 protruding from the housing 2a is exposed toward the external space without being covered, foreign matter such as mud and dirt may adhere to the guide member 10.
[0022] The vehicle charging device 1 of this embodiment protects the guide member 10 with a cover structure 20 described below. Fig. 3 shows a cross section of the vehicle charging device 1 perpendicular to the second direction Y. As shown in Fig. 3 and other figures, the vehicle charging device 1 of this embodiment has a cover structure 20 that covers and protects the guide member 10. The cover structure 20 has a cover body 21, an engaging portion 22, a locked portion 23, and a winding mechanism 6.
[0023] The cover body 21 is a plate-like member having flexibility. The material of the cover body 21 is, for example, metal, resin, rubber, etc. The cover body 21 is formed in a tape shape, and is taken up by the winding mechanism 6, or is unwound from the winding mechanism 6. The locked portion 23 is attached to the tip of the cover body 21. The locked portion 23 is a member that is locked by the locking portion 22. The exemplified locked portion 23 has a recess 23a that fits with the locking portion 22. The recess 23a opens toward the first direction X. The shape of the locked portion 23 in the cross section shown in FIG. 3 is substantially U-shaped.
[0024] The locking portion 22 is disposed at an end of the guide member 10 in the first direction X. The illustrated locking portion 22 is fixed to the fixed portion 12. A tip of the locking portion 22 protrudes from the fixed portion 12 in the first direction X. The illustrated locking portion 22 has a rod-like or plate-like shape that can be inserted into the recess 23a of the locked portion 23.
[0025] The winding mechanism 6 can wind up the cover body 21 and unwind the cover body 21 in response to an external force acting on the cover body 21. The winding mechanism 6 includes a rotating body 61 and a roller 62. The rotating body 61 is a member around which the cover body 21 is wound and is supported rotatably. The rotating body 61 has a cylindrical shape and has an outer circumferential surface 61b around which the cover body 21 is wound. A rotation shaft 61a of the rotating body 61 extends in the second direction Y. The winding mechanism 6 has a spring that applies a biasing force to the rotating body 61 in the rotational direction. The spring biases the rotating body 61 in the rotational direction in which the cover body 21 is wound.
[0026] The roller 62 changes the extending direction of the cover body 21. The roller 62 is disposed between the rotating body 61 and the locked portion 23. That is, the portion of the cover body 21 between the rotating body 61 and the locked portion 23 is wound around the roller 62. The roller 62 in this embodiment is disposed so that the cover body 21 is pulled downward from the rotating body 61. The roller 62 is also disposed so that the cover body 21 extends in the first direction X from the roller 62 toward the locked portion 23.
[0027] 3 shows the cover structure 20 when the device body 2 is in the standby position. The locked portion 23 fits into and is locked by the locking portion 22. The locked portion 23, the cover body 21, and the winding mechanism 6 are covered from above by the housing 2a and are housed in the housing 2a.
[0028] The device body 2 can move from the standby position to a first side X1 and a second side X2 in the first direction X. FIG. 4 shows the device body 2 moved from the standby position to the first side X1. When the device body 2 moves to the first side X1, the guide member 10 protrudes from the device body 2. In other words, the first side X1 is a side that increases the length of the portion 10x of the guide member 10 protruding from the device body 2. When the device body 2 moves to the first side X1, the fixing part 12 protrudes from the device body 2 first. When the device body 2 further moves to the first side X1, the rack gear part 11 protrudes from the device body 2. In FIG. 4, the rack gear part 11 protrudes from the device body 2.
[0029] When the device main body 2 moves from the standby position to the first side X1, the locking portion 22 locks the locked portion 23. By restricting the movement of the locked portion 23 to the first side X1, the cover body 21 is unwound from the winding mechanism 6. The unwound cover body 21 covers the guide member 10 from above, protecting the guide member 10. The cover body 21 covers the rack gear portion 11, and inhibits the intrusion of foreign matter into the rack gear portion 11.
[0030] 5, the width W1 of the cover body 21 is equal to or larger than the width W2 of the guide member 10. The width W1 of the cover body 21 is preferably larger than the width W2 of the guide member 10. The cover body 21 may protrude in the second direction Y relative to the guide member 10. The cover body 21 of this embodiment can appropriately protect the rack gear portion 11 and the fixed portion 12 from foreign matter.
[0031] The second side X2 is the opposite side to the first side X1. When the device body 2 moves from the position shown in FIG. 4 to the second side X2, the guide member 10 is accommodated in the device body 2. In other words, the second side X2 is the side where the length of the portion 10x of the guide member 10 protruding from the device body 2 is reduced. When the device body 2 moves to the second side X2 toward the standby position, the winding mechanism 6 winds the cover body 21 around the rotating body 61.
[0032] 6 shows the device body 2 further moved from the standby position to the second side X2. When the device body 2 moves from the standby position to the second side X2, the locked part 23 is released from the locking part 22. The locked part 23 released from the locking part 22 moves together with the device body 2 to the second side X2.
[0033] The housing 2a may have a support portion that supports the locked portion 23 that has been released from the locking portion 22. For example, as shown in FIG. 7, the housing 2a may have a support portion 2b that guides the locked portion 23. The illustrated support portion 2b has a substantially L-shape when viewed from the first direction X. The support portion 2b supports the piece portion 23b of the locked portion 23 from below. The support portion 2b faces the piece portion 23b from both sides in the second direction Y, and positions the locked portion 23 in the second direction Y. The piece portion 23b is slidable in the first direction X relative to the support portion 2b. The support portion 2b may have a stopper that locks the locked portion 23 against the winding force of the winding mechanism 6. The support portion 2b holds the locked portion 23 at a position where it can be fitted into the locking portion 22. Therefore, when the device body 2 returns from the position shown in FIG. 6 to the standby position, the locked portion 23 fits into the locking portion 22.
[0034] The vehicle charging device 1 of this embodiment has two cover structures 20 as shown in FIG. 2. The two cover structures 20 are configured in the same way. That is, when the guide member 10 is exposed to the external space due to the movement of the device main body 2, the two cover structures 20 unfold the cover body 21 and cover the guide member 10 with the cover body 21. Also, when the guide member 10 is accommodated in the housing 2a due to the movement of the device main body 2, the two cover structures 20 wind up the cover body 21 on the rotating body 61. Also, when the device main body 2 moves to the second side X2 from the standby position, the two cover structures 20 release the locked portion 23 from the locking portion 22 to follow the movement of the device main body 2. In the vehicle charging device 1 of this embodiment, when one cover structure 20 unfolds the cover body 21 to cover the guide member 10, the other cover structure 20 moves together with the device main body 2 with the cover body 21 accommodated in the housing 2a.
[0035] Therefore, in the vehicle charging device 1 of this embodiment, the guide member 10 can be protected by the cover body 21 when the device body 2 moves from the standby position to either side in the first direction X. In addition, the locked portion 23 of the cover structure 20 is configured to be detachable from the locking portion 22. Therefore, when the device body 2 moves to the second side X2, the cover structure 20 of this embodiment can move together with the device body 2 without impeding the movement of the device body 2.
[0036] Next, another cover structure 20 according to the embodiment will be described. As shown in FIG. 8, the cover body 21 of the cover structure 20 may be composed of a plurality of slide bodies 50. The slide body 50 has a semi-cylindrical shape and covers the guide member 10 from above and from the sides. The slide body 50 is formed, for example, in a rectangular gutter shape. As shown in FIG. 8, the slide body 50 has a top wall 50a and a side wall 50b. The top wall 50a is a wall portion that covers the guide member 10 from above. The side wall 50b is a wall portion that covers the guide member 10 from the sides. As shown in FIG. 9, the slide body 50 has side walls 50b on both sides of the guide member 10 in the second direction Y.
[0037] The multiple slide bodies 50 can slide relative to each other along the first direction X. The illustrated cover body 21 has four slide bodies 50. The four slide bodies 50 include a first slide body 51, a second slide body 52, a third slide body 53, and a fourth slide body 54. The first slide body 51 is a tip slide body that constitutes the tip of the cover body 21. The interval W3 between the side walls 50b of the first slide body 51 is larger than the width W2 of the guide member 10. The first slide body 51 is locked by the locking portion 22 of the guide member 10. The locking portion 22 that locks the cover body 21 in FIG. 8 is an end face of the guide member 10 in the first direction X.
[0038] The first slide body 51 has a locked portion 23 that is locked by the locking portion 22. The locked portion 23 is a piece that protrudes inward from an end portion of the second side X2 of the first slide body 51. The locked portion 23 faces the locking portion 22 in the first direction X and is locked by the locking portion 22.
[0039] 9, the multiple slide bodies 50 form a telescopic cover body 21 that is extendable and retractable in the first direction X. The second slide body 52 is formed so that the first slide body 51 can be accommodated therein. The third slide body 53 is formed so that the second slide body 52 can be accommodated therein. The fourth slide body 54 is formed so that the third slide body 53 can be accommodated therein.
[0040] Each slide body 50 has contact portions 50c, 50d. The contact portion 50c is a piece that protrudes outward from an end portion of the first side X1 of the slide body 50 along the second direction Y. The contact portion 50d is a piece that protrudes inward from an end portion of the second side X2 of the slide body 50 along the second direction Y. The contact portion 50d of the first slide body 51 functions as a locked portion 23 that is locked by the guide member 10.
[0041] The contact portion 50c of the first slide body 51 faces the contact portion 50d of the second slide body 52 in the first direction X. When the cover body 21 extends, the contact portion 50c of the first slide body 51 and the contact portion 50d of the second slide body 52 abut against each other. Similarly, the contact portion 50c of the second slide body 52 abuts against the contact portion 50d of the third slide body 53, and the contact portion 50c of the third slide body 53 abuts against the contact portion 50d of the fourth slide body 54.
[0042] The housing 2a has an opening 2e through which the cover body 21 can extend. The opening 2e is provided in an outer wall of the housing 2a facing the first direction X. The cover body 21 can extend into the external space of the housing 2a through the opening 2e.
[0043] The abutment portion 50c of the fourth slide body 54 is locked by the first locking portion 2c and the second locking portion 2d of the housing 2a. The first locking portion 2c is disposed on the second side X2 of the abutment portion 50c of the fourth slide body 54 and faces the abutment portion 50c in the first direction X. The first locking portion 2c is, for example, a part of a wall portion forming the opening 2e. The second locking portion 2d is disposed on the first side X1 of the abutment portion 50c of the fourth slide body 54 and faces the abutment portion 50c in the first direction X.
[0044] The second locking portions 2d are configured to face the contact portions 50c of the respective slide bodies 50. That is, the second locking portions 2d are arranged so as to be able to lock the contact portions 50c of the first slide body 51 to the fourth slide body 54.
[0045] 10 and 11 show the cover body 21 when the device body 2 is in the standby position. When the device body 2 is in the standby position, the cover body 21 is most contracted and is housed inside the housing 2a. As shown in FIG. 11, the four slide bodies 51, 52, 53, and 54 are nested and overlap each other. The cover body 21 is housed in a housing space formed between the first locking portion 2c and the second locking portion 2d. The locking portion 22 locks the locked portion 23 to restrict the movement of the first slide body 51 toward the first side X1.
[0046] When the device main body 2 moves from the standby position to the first side X1, the cover body 21 extends from the housing 2a as shown in FIG. 12. When substantially the entire cover body 21 extends from the housing 2a, the first locking portion 2c of the housing 2a abuts against the abutting portion 50c of the fourth slide body 54 as shown in FIG. 13. The first locking portion 2c of the housing 2a presses the fourth slide body 54 toward the first side X1. As a result, the fourth slide body 54 moves to the first side X1 following the housing 2a. At this time, the locked portion 23 of the first slide body 51 is locked by the locking portion 22 of the guide member 10.
[0047] When the device main body 2 moves further toward the first side X1, the abutment portion 50d of the fourth slide body 54 abuts against the abutment portion 50d of the third slide body 53. As a result, the third slide body 53 moves toward the first side X1 following the housing 2a and the fourth slide body 54. In this manner, the cover body 21 extends toward the first side X1 while following the movement of the housing 2a to cover the guide member 10. When the housing 2a moves to the end of the first side X1 in the movable range, the cover body 21 reaches the most extended state as shown in FIGS. 8 and 9.
[0048] When the housing 2a moves from the extended state of the cover body 21 to the second side X2, the second locking portion 2d of the housing 2a abuts against the abutment portion 50c of the sliding body 50, compressing the cover body 21. When the housing 2a moves to the standby position, all of the sliding bodies 50 are housed inside the housing 2a.
[0049] 14 shows the cover body 21 when the housing 2a moves from the standby position to the second side X2. In this case, the second locking portion 2d of the housing 2a comes into contact with the cover body 21 to move the cover body 21 to the second side X2. Due to the movement of the cover body 21, the locked portion 23 of the cover body 21 is released from the locking portion 22 of the guide member 10. When the locked portion 23 is released from the locking portion 22, the cover body 21 moves to the second side X2 together with the device main body 2 while being housed in the housing 2a.
[0050] As described above, the vehicle charging device 1 of this embodiment has the device main body 2 that charges the vehicle 200, the linear guide member 10, and the cover structure 20 that covers the guide member 10. The guide member 10 extends in a first direction X and guides the movement of the device main body 2 along the first direction X. The guide member 10 is disposed such that a portion of the guide member 10 protrudes from the device main body 2 when the device main body 2 moves in the first direction X.
[0051] The cover structure 20 has a cover body 21 and a locking portion 22. The cover body 21 covers a portion 10x of the guide member 10 that protrudes from the device body 2. The locking portion 22 is disposed at an end of the guide member 10 in the first direction X. The locking portion 22 is configured to lock the tip of the cover body 21. With the tip of the cover body 21 locked by the locking portion 22, the device body 2 moves, causing the cover body 21 to extend from the device body 2 and cover the guide member 10. The vehicle charging device 1 of this embodiment can protect the guide member 10 by the cover structure 20.
[0052] The cover body 21 is, for example, a plate-like member having flexibility. In this case, the cover structure 20 may have a winding mechanism 6 that winds up the cover body 21. The device body 2 moves to a first side X1 or a second side X2. The first side X1 is a side that increases the length of the portion 10x of the guide member 10 that protrudes from the device body 2. The second side X2 is a side that decreases the length of the portion 10x of the guide member 10 that protrudes from the device body 2.
[0053] The winding mechanism 6 pays out the cover body 21 when the device body 2 moves to the first side X1, and winds up the cover body 21 when the device body 2 moves to the second side X2. With this configuration, the cover body 21 can be stored compactly.
[0054] The cover body 21 may be composed of, for example, a plurality of semi-cylindrical slide bodies 50 that slide against each other along the first direction X. In this case, the plurality of slide bodies 50 have a tip slide body that constitutes a tip portion. The illustrated tip slide body is a first slide body 51. When the device body 2 moves to the first side X1 with the first slide body 51 locked by the locking portion 22, the plurality of slide bodies 50 extend from the device body 2 to cover the guide member 10. With such a configuration, the guide member 10 can be covered from the side.
[0055] The tip of the cover body 21 may be detachable from the locking portion 22. In this embodiment, a locked portion 23 provided at the tip of the cover body 21 is detachable from the locking portion 22. When the device main body 2 moves to the second side X2 and the tip of the cover body 21 is detached from the locking portion 22, the cover body 21 moves to the second side X2 together with the device main body 2 while being accommodated in the device main body 2. By accommodating the cover body 21 in the device main body 2 in this manner, the vehicle charging device 1 can be made compact.
[0056] The guide member 10 protected by the cover structure 20 is not limited to a member having a rack gear portion 11. The guide member 10 to be protected may be, for example, a rail 13 shown in FIG. 15 . The rail 13 is a guiding rail in a linear guide. The device body 2 has a carriage guided by the rail 13. The rail 13 extends linearly in the first direction X and guides the device body 2. The vehicle charging device 1 may have a cover structure 20 that covers the rail 13.
[0057] The vehicle charging device 1 may have a cover body 25 shown in FIG. 16. The cover body 25 is fixed to the housing 2a and protrudes from the housing 2a in the first direction X in an eave-like shape. The cover body 25 has a top wall 25a that covers the guide member 10 from above, and a side wall 25b. The top wall 25a is inclined with respect to the first direction X so as to approach the floor part 100 as it moves away from the device main body 2 along the first direction X. The cover body 25 is provided from one end to the other end of the housing 2a in the second direction Y. Therefore, the cover body 25 can protect a wide area on the side of the housing 2a and suppress the intrusion of foreign matter.
[0058] The cover body 25 is formed so as to cover the portion 10x of the guide member 10 protruding from the device body 2 when the device body 2 moves to the first side X1. The length of the cover body 25 in the first direction X is determined, for example, according to the length of the movable range of the device body 2. The length of the cover body 25 is determined, for example, so that the cover body 25 can always cover the entire protruding portion 10x.
[0059] The contents disclosed in the above embodiments can be implemented in appropriate combinations. [Explanation of symbols]
[0060] 1: Vehicle charging device 2: device body, 2a: housing, 2b: support portion, 2c: first locking portion 2d: Second locking part, 2e: Opening part 4: Movement mechanism 5: Connector 6: Winding mechanism 10: guide member, 11: rack gear portion, 12: fixing portion 20: cover structure, 21: cover body, 22: engaging portion, 23: engaged portion 25: Cover body 41: pinion gear, 42: motor 50: Slide body, 50a: Top wall, 50b: Side wall, 50c, 50d: Contact portion 51: first slide body, 52: second slide body, 53: third slide body 54: Fourth slide body 61: Rotating body, 62: Roller 100: Floor part 200: Vehicle, 210: Inlet X: first direction, X1: first side, X2: second side Y: Second direction, Z: Vertical direction
Claims
1. A device main body for charging a vehicle; A linear guide member extending in a first direction and guiding the movement of the device body along the first direction; A cover structure for covering the guide member; Equipped with the guide member is disposed such that a portion of the guide member protrudes from the device body when the device body moves in the first direction; the cover structure includes a cover body that covers a portion of the guide member that protrudes from the device body, and a locking portion, The locking portion is disposed at an end portion of the guide member in the first direction and configured to lock a tip portion of the cover body, The cover body extends from the device body to cover the guide member when the device body moves with the tip portion locked by the locking portion. A vehicle charging device comprising:
2. the cover body is a flexible plate-like member, The cover structure has a winding mechanism that winds up the cover body, the device body is moved to a first side that increases the length of the portion of the guide member that protrudes from the device body, or to a second side that decreases the length of the portion of the guide member that protrudes from the device body; The winding mechanism unwinds the cover body when the device body moves to the first side, and winds up the cover body when the device body moves to the second side. The vehicle charging device according to claim 1 .
3. The cover body has a plurality of semi-cylindrical sliders that slide relative to each other along the first direction, The plurality of slide bodies each have a tip slide body that constitutes the tip portion, the device body is moved to a first side that increases the length of the portion of the guide member that protrudes from the device body, or to a second side that decreases the length of the portion of the guide member that protrudes from the device body; When the device body moves toward the first side while the tip slide body is locked by the locking portion, the plurality of slide bodies are pulled out from the device body to cover the guide member. The vehicle charging device according to claim 1 .
4. The tip portion of the cover body is detachable from the locking portion, When the device body moves to the second side and the tip portion is released from the locking portion, the cover body moves to the second side together with the device body while being accommodated in the device body.
4. The vehicle charging device according to claim 2 or 3.
Citation Information
Patent Citations
Inductive power transfer with inductive power transfer pads
JP2017512452A
Subsurface contact system
JP2023078405A
Non-contact power supply apparatus
WO2014057905A1
Vehicle charging system and power receiving fitting
JP2022026379A