A glove box, instrument panel assembly and automobile

CN117681786BActive Publication Date: 2026-09-01ZHEJIANG GEELY HLDG GRP CO LTD +1
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Patent Information

Application Number
CN202311529428.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-16
Publication Date
2026-09-01
Estimated Expiration
2043-11-16

AI Technical Summary

Technical Problem

但是,现有的手套箱内部空间利用率比较低,而且,随着生活日渐多样化,随身物品种类及尺寸也各不相同,导致放在手套箱内的物品摆放杂乱,难以寻找

Benefits of technology

[0006]The glove box is equipped with a telescopic partition inside, and the thickness of the partition matches, or is parallel to or approximately parallel to, the width of the vehicle. This means the telescopic partition divides the interior space of the box into multiple unit spaces along the width of the vehicle, allowing for the categorized storage of various items and preventing clutter. Specifically, the telescopic partition comprises a first plate and a second plate. For example, the first plate has an arc-shaped guide structure, and the second plate has a guide fitting. The first plate is connected to the inner wall of the box, and the second plate is connected to the inner wall of the door. Since the center of the arc-shaped guide structure is located on the first axis, when the door is opened or closed, the door can move the second plate relative to the first plate. In other words, the door can cause the telescopic partition to extend and retract along the arc of the arc-shaped guide structure. In this way, each unit space can store a large number of items, that is, each unit space can have a high space utilization rate. At the same time, it ensures that when the box door is opened, the items in adjacent unit spaces with high space utilization rate will at most lean against the inner side wall of the box door, but will not cross the telescopic partition and get mixed up. Ultimately, it can make full use of the glove box space, while the items stored in adjacent unit spaces will not get mixed up. The storage performance of this glove box is better.

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Abstract

This invention provides a glove box, a dashboard assembly, and an automobile, relating to the field of automotive parts technology. The glove box includes a box body, a door, and a telescopic partition. The door is rotatable relative to the box body about a first axis to open or close the box. The telescopic partition is at least partially located inside the box body, and its thickness direction matches the width direction of the automobile. The telescopic partition includes a first plate and a second plate. The first plate is connected to the inner wall of the box body, and the second plate is connected to the inner wall of the door. One of the first and second plates is provided with an arc-shaped guide structure, the center of which is located on the first axis. The other of the first and second plates is provided with a guide fitting for moving along the arc-shaped guide structure. The telescopic partition divides the internal space of the box body into multiple unit spaces, which can fully utilize the glove box space while preventing items stored in adjacent unit spaces from being confused, thus improving the storage performance of the glove box.
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Description

Technical Field

[0001] This invention relates to the field of automotive parts technology, and more specifically, to a glove box, an instrument panel assembly, and an automobile. Background Technology

[0002] The glove box is part of the dashboard assembly, typically located in front of the passenger seat. It's used to store documents and miscellaneous items. When closed, the glove box door blends seamlessly with the dashboard, maintaining its overall integrity. However, existing glove boxes have relatively low space utilization. Furthermore, with increasingly diverse lifestyles and varying types and sizes of personal belongings, items stored in the glove box often become cluttered and difficult to find. Summary of the Invention

[0003] The present invention aims to improve the storage performance of existing glove boxes.

[0004] To address the aforementioned problems, the present invention provides a glove box, comprising a box body, a box door, and a telescopic partition. The box door is used to rotate relative to the box body about a first axis to open or close the box body. At least a portion of the telescopic partition is located inside the box body, and the thickness direction of the telescopic partition matches the width direction of the vehicle. The telescopic partition includes a first plate and a second plate. The first plate is connected to the inner wall of the box body, and the second plate is connected to the inner wall of the box door. One of the first plate and the second plate is provided with an arc-shaped guide structure, and the center of the arc-shaped guide structure is located on the first axis. The other of the first plate and the second plate is provided with a guide fitting member, which is used to move along the arc-shaped guide structure.

[0005] The glove box provided by this invention has, but is not limited to, the following technical effects compared to the prior art:

[0006] The glove box is equipped with a telescopic partition inside, and the thickness of the partition matches, or is parallel to or approximately parallel to, the width of the vehicle. This means the telescopic partition divides the interior space of the box into multiple unit spaces along the width of the vehicle, allowing for the categorized storage of various items and preventing clutter. Specifically, the telescopic partition comprises a first plate and a second plate. For example, the first plate has an arc-shaped guide structure, and the second plate has a guide fitting. The first plate is connected to the inner wall of the box, and the second plate is connected to the inner wall of the door. Since the center of the arc-shaped guide structure is located on the first axis, when the door is opened or closed, the door can move the second plate relative to the first plate. In other words, the door can cause the telescopic partition to extend and retract along the arc of the arc-shaped guide structure. In this way, each unit space can store a large number of items, that is, each unit space can have a high space utilization rate. At the same time, it ensures that when the box door is opened, the items in adjacent unit spaces with high space utilization rate will at most lean against the inner side wall of the box door, but will not cross the telescopic partition and get mixed up. Ultimately, it can make full use of the glove box space, while the items stored in adjacent unit spaces will not get mixed up. The storage performance of this glove box is better.

[0007] Furthermore, multiple telescopic partitions are provided, and the multiple telescopic partitions are arranged sequentially along the width direction of the vehicle.

[0008] Furthermore, the inner wall of the box is provided with a first linear guide structure, the first linear guide structure extends along the width direction of the vehicle, and the first plate is provided with a first protrusion that slides and engages with the first linear guide structure.

[0009] And / or, the inner wall of the door is provided with a second linear guide structure, the second linear guide structure extends along the width direction of the vehicle, and the second plate protrudes with a second protrusion that slides in cooperation with the second linear guide structure.

[0010] Furthermore, the first linear guide structure is a first linear groove structure formed by the inner wall recess of the box body, and the depth direction of the first linear groove structure is inclined downward; and / or, the second linear guide structure is a second linear groove structure formed by the inner wall recess of the box door, and the depth direction of the second linear groove structure is parallel to the arcuate direction of the arcuate guide structure.

[0011] Furthermore, the arc-shaped guide structure is an arc-shaped through-groove structure that penetrates the thickness direction of the first plate or the second plate, and the guide fitting includes a shaft, which passes through the arc-shaped through-groove structure.

[0012] Furthermore, the glove box also includes a horizontal partition, which is disposed inside the box and located above the telescopic partition. The horizontal partition is spaced apart from the top wall of the box.

[0013] Furthermore, the inner walls of the box body along both sides along the width direction of the vehicle are recessed to form a holding groove, and the two ends of the horizontal partition along the width direction of the vehicle are respectively placed at the bottom wall of the corresponding holding groove, and the rear end of the holding groove penetrates the box body, and the horizontal partition is used to move out of the box body along the holding groove.

[0014] Furthermore, at least one of the holding tanks is provided with a positioning part on its inner wall, and the horizontal partition is provided with a positioning mating part that cooperates with the positioning part.

[0015] The present invention also provides an instrument panel assembly including the glove box as described above.

[0016] Since the technical improvements and effects of the instrument panel assembly are the same as those of the glove box, the instrument panel assembly will not be described in detail again.

[0017] The present invention also provides an automobile including a glove box or instrument panel assembly as described above.

[0018] Since the technological improvements and effects of the vehicle are the same as those of the glove box or dashboard assembly, the vehicle will not be described in detail again. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the glove box in the open state according to an embodiment of the present invention. Figure 1 ;

[0020] Figure 2 for Figure 1 A schematic diagram of the cross-sectional structure;

[0021] Figure 3 for Figure 1 A structural diagram after the cabinet door has been removed;

[0022] Figure 4 This is a schematic diagram of the structure from the inside of the cabinet door according to an embodiment of the present invention;

[0023] Figure 5 This is a schematic diagram of the structure of the horizontal partition in an embodiment of the present invention.

[0024] Explanation of reference numerals in the attached figures:

[0025] 1. Box body; 11. First linear guide structure; 12. Container slot; 13. Bottom protrusion; 2. Box door; 21. Second linear guide structure; 22. Door side panel; 23. Door bottom panel; 3. Telescopic partition; 31. First plate; 311. Arc-shaped guide structure; 312. First protrusion; 32. Second plate; 321. Guide fitting; 322. Second protrusion; 4. Horizontal partition; 41. Positioning fitting. Detailed Implementation

[0026] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0027] In the description of this invention, it should be understood that the terms "upper", "lower", "left", "right", "front", "rear", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0028] Furthermore, the X-axis represents the longitudinal direction, that is, the front-to-back direction, with the positive X-axis representing front and the negative X-axis representing back; the Y-axis represents the transverse direction, that is, the left-to-right direction, with the positive Y-axis representing left and the negative Y-axis representing right; the Z-axis represents the vertical direction, that is, the up-down direction, with the positive Z-axis representing up and the negative Z-axis representing down. It should also be noted that the aforementioned X-axis, Y-axis, and Z-axis representations are merely for the convenience of describing the present invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0029] See Figure 1-2 An embodiment of the present invention provides a glove box, comprising a box body 1, a box door 2, and a telescopic partition 3. The box door 2 is used to rotate relative to the box body 1 about a first axis to open or close the box body 1. The telescopic partition 3 is at least partially located inside the box body 1, and the thickness direction of the telescopic partition 3 matches the width direction of the vehicle (i.e., the lateral direction of the vehicle, the Y-axis direction). The telescopic partition 3 includes a first plate 31 and a second plate 32. The first plate 31 is connected to the inner wall of the box body 1, and the second plate 32 is connected to the inner wall of the box door 2. One of the first plate 31 and the second plate 32 is provided with an arc-shaped guide structure 311, and the center of the arc-shaped guide structure 311 is located on the first axis. The other of the first plate 31 and the second plate 32 is provided with a guide fitting 321, which is used to move along the arc-shaped guide structure 311.

[0030] In this embodiment, a telescopic partition 3 is added inside the glove box, and the thickness direction of the telescopic partition 3 matches the width direction of the car, or is parallel to or approximately parallel to the width direction of the car. In other words, the telescopic partition 3 can divide the internal space of the box 1 into multiple unit spaces along the width direction of the car, and thus multiple unit spaces can classify and store various items to avoid clutter.

[0031] Moreover, the telescopic partition 3 specifically includes a first plate 31 and a second plate 32. For example, the first plate 31 is provided with an arc-shaped guide structure 311, and the second plate 32 is provided with a guide fitting 321. The first plate 31 is connected to the inner wall of the box 1, and the second plate 32 is connected to the inner wall of the door 2. Since the center of the arc-shaped guide structure 311 is located on the first axis, when the door 2 flips open or closes the box 1, the door 2 can drive the second plate 32 to move relative to the first plate 31. That is, the door 2 can drive the telescopic partition 3 to extend and retract along the arc direction of the arc-shaped guide structure 311. In this way, each unit space can store a large number of items, that is, each unit space can have a high space utilization rate. At the same time, it ensures that when the door 2 is opened, the items in the adjacent unit spaces with high space utilization rate will at most lean against the inner side wall of the door 2, but will not cross the telescopic partition 3 and get mixed up. Ultimately, it can make full use of the glove box space, and the items stored in the adjacent unit spaces will not get mixed up. The storage performance of this glove box is better.

[0032] It should be noted that, in the foregoing description, the telescopic partition 3 being at least partially located inside the box body 1 means that: when the box door 2 is in the open state, the telescopic partition 3 is in the extended state, at which time part of the telescopic partition 3 is located inside the box body 1, while the other part, specifically part of the second plate 32, is brought outside the box body 1 by the box door 2; when the box door 2 is in the closed state, the telescopic partition 3 is in the retracted state, and is entirely located inside the box body 1.

[0033] It should be noted that when the door 2 flips forward to close the box 1, it is usually held in the closed position by one or more fixed structures. Existing structures can be used to hold it in the closed position, which will not be described further here.

[0034] It should be noted that in one telescopic partition 3, the first panel 31 and the second panel 32 are at least partially attached. When the door 2 is flipped backward to the fully open state, the attachment between the second panel 32 and the first panel 31 is minimal, and when the door 2 is flipped forward to the closed state, the attachment between the second panel 32 and the first panel 31 is maximized. This at least partial attachment of the first panel 31 and the second panel 32 ensures that smaller items in one unit space will not leak between the two panels into another unit space. Furthermore, this at least partial attachment improves the integration of the telescopic partition 3 along the lateral direction of the vehicle, reducing its lateral footprint within the interior space of the compartment 1.

[0035] It should be noted that the aforementioned arc-shaped guide structure 311 can also be provided on the second plate 32, while the guide fitting 321 is provided on the first plate 31.

[0036] See Figure 1 and Figure 3 Optionally, multiple telescopic partitions 3 are provided, and the multiple telescopic partitions 3 are arranged sequentially along the width direction of the vehicle.

[0037] In this embodiment, multiple telescopic partitions 3 divide the interior space of the box 1 into at least three unit spaces along the transverse direction of the vehicle, allowing for the categorization and storage of a wider variety of items.

[0038] See Figure 1-4 Optionally, the inner wall of the box body 1 is provided with a first linear guide structure 11, the first linear guide structure 11 extends along the width direction of the vehicle, and the first plate 31 is provided with a first protrusion 312 that slides with the first linear guide structure 11.

[0039] And / or, the inner wall of the door 2 is provided with a second linear guide structure 21, the second linear guide structure 21 extends along the width direction of the vehicle, and the second plate 32 is provided with a second protrusion 322 that slides with the second linear guide structure 21.

[0040] In this embodiment, the telescopic partition 3 has a lateral movement function. Specifically, the inner wall of the box body 1, specifically the front side wall of the box body 1, is provided with a first linear guide structure 11. A first protrusion 312 is provided on the front side of the first plate 31. The first protrusion 312 can move along the first linear guide structure 11, thereby enabling the first plate 31 and the second plate 32 to move together along the first linear guide structure 11, that is, to move together along the lateral direction of the vehicle; and / or, the inner wall of the box door 2 is provided with a second linear guide structure 21, and a second protrusion 322 is provided on the rear side of the second plate 32. The second protrusion 322 can move along the second linear guide structure 21, that is, to move together along the lateral direction of the vehicle.

[0041] Since the telescopic partition 3 can move laterally inside the box 1, the lateral dimension of any unit space can be adjusted to meet the user's needs for classifying and storing items of different sizes.

[0042] The first linear guide structure 11, the first protrusion 312, the second linear guide structure 21, and the second protrusion 322 can coexist to ensure the stability of the lateral movement of the telescopic partition 3.

[0043] See Figure 1-4 Optionally, the first linear guide structure 11 is a first linear groove structure formed by the inner wall recess of the box body 1, and the depth direction of the first linear groove structure is inclined downward; and / or, the second linear guide structure 21 is a second linear groove structure formed by the inner wall recess of the box door 2, and the depth direction of the second linear groove structure is parallel to the arcuate direction of the arcuate guide structure 311.

[0044] In this embodiment, the first linear guide structure 11 is a first linear groove structure formed by a recess in the inner wall of the housing 1. It is simple to form, does not require additional structures, and is low in cost and light in weight. Similarly, the second linear guide structure 21 is a second linear groove structure formed by a recess in the inner wall of the door 2.

[0045] Furthermore, as shown in Figure 2, the depth direction of the first straight groove is inclined downwards. Thus, under the gravity of the first plate 31, the first protrusion 312 of the first plate 31 can be maintained in the cooperation relationship with the first straight groove structure. Similarly, the second protrusion 322 of the second plate 32 can be maintained in the cooperation relationship with the second straight groove structure.

[0046] It should be noted that although the second protrusion 322 and the second straight groove structure are in a sliding fit, they are in a sliding damping fit. That is, the second protrusion 322 requires a relatively large external force to disengage from the second straight groove structure to ensure that the second plate 32 can move during the rearward flip-opening process of the door 2. Similarly, the second protrusion 322 also requires a relatively large force to move along the second straight groove structure to prevent the telescopic partition 3 from moving accidentally.

[0047] To ensure that the second plate 32 can move together with the door 2, the following design can be made: when the door 2 is closed, that is, when the second plate 32 and the first plate 31 overlap and fit together the most, the center of gravity of the second plate 32 is located at the rear and above the first axis. In this way, when the door 2 is opened, the second plate 32 can also move together with its own weight, so as to realize the extension of the telescopic partition 3.

[0048] It should be noted that the telescopic movement of the telescopic partition 3 refers to the telescopic movement along the arc direction of the arc-shaped guide structure 311.

[0049] In this embodiment, depending on actual needs, a certain number of telescopic partitions 3 can be removed, or an additional number of telescopic partitions 3 can be added; that is, the telescopic partitions 3 have convenient detachability. Specifically, during disassembly, the door 2 can be opened first. Since the depth direction of the second straight groove structure is parallel to the arc direction of the arc-shaped guide structure 311, the second plate 32 can then be moved towards the arc direction of the leading edge arc-shaped guide structure 311, so that the second protrusion 322 of the second plate 32 disengages from the second straight groove structure. Then, the second plate 32 and the first plate 31 can be moved together along the depth direction of the first straight groove structure to complete the disassembly. Note that the depth direction of the second straight groove structure is not a straight line, but an arc direction, which is parallel to the arc direction of the arc-shaped guide structure; that is, as mentioned above, the depth direction of the second straight groove structure is parallel to the arc direction of the arc-shaped guide structure 311.

[0050] See Figure 2 Optionally, the arc-shaped guide structure 311 is an arc-shaped through groove structure that penetrates the thickness direction of the first plate 31 or the second plate 32, and the guide fitting 321 includes a shaft, which passes through the arc-shaped through groove structure.

[0051] In this embodiment, for example, an arc-shaped guide structure 311 is provided on the first plate 31. The arc-shaped guide structure 311 can be an arc-shaped through groove structure that runs through the thickness direction of the first plate 31. The shaft can be a rivet. A rivet hole can be provided on the second plate 32. The end of the rivet away from the rivet head can pass through the rivet hole on the second plate 32 and the arc-shaped through groove structure on the first plate 31 in sequence. Then, the end of the rivet away from its rivet head can be riveted to form an anti-detachment part, thereby realizing the movable connection between the first plate 31 and the second plate while the two will not separate laterally. The structure is simple and the cost is low.

[0052] See Figure 1 , Figure 2 and Figure 4 The inner sidewall of the door 2 can also have side panels 22 protruding from both ends. When the space utilization of the unit space is high, the side panels 22 can prevent items in the corresponding unit space from falling out. The bottom of the inner sidewall of the door 2 also has a bottom panel 23 protruding from it, and the second panel 32 is located on the upper side of the bottom panel 23. Figure 2As shown, the bottom wall of the box 1 also has a bottom protrusion 13 protruding upwards. When the box door 2 closes the box 1, the bottom plate 23 of the door is attached to the upper side of the bottom wall of the box, and the front end of the bottom plate 23 abuts against the bottom protrusion 13 of the box 1. When the box door 2 is in the open state, the bottom plate 23 is still partially attached to the upper side of the bottom wall of the box 1. In this way, it is ensured that the bottom side of the unit space is closed during the opening and closing of the box door 2, and the items in the unit space will not leak from below.

[0053] See Figure 1-3 Optionally, the glove box further includes a horizontal partition 4, which is disposed inside the box body 1 and located above the telescopic partition 3. The horizontal partition 4 is spaced apart from the top wall of the box body 1.

[0054] In this embodiment, in addition to the aforementioned vertically arranged telescopic partition 3, the glove box also includes a horizontal partition 4. The horizontal partition 4 is disposed inside the box body 1 and is higher than the telescopic partition 3. At the same time, the horizontal partition 4 is spaced apart from the top wall of the box body 1. In this way, some documents, notebooks and flat items can be stored in the space above the horizontal partition 4, which improves the space utilization of the entire glove box.

[0055] Additionally, as mentioned earlier, when disassembling the telescopic partition 3, the door 2 can be opened first. Since the depth direction of the second straight groove structure is parallel to the arc direction of the arc guide structure 311, the second plate 32 can then be moved towards the arc direction of the leading edge arc guide structure 311 to disengage the second protrusion 322 of the second plate 32 from the second straight groove structure. Then, the second plate 32 and the first plate 31 can be moved together along the depth direction of the first straight groove structure to complete the disassembly. Optionally, the distance from the telescopic partition 3 to the horizontal partition 4 along the depth direction of the first straight groove structure is greater than the depth dimension of the first straight groove structure. This ensures that the first plate 31 will not be interfered with by the horizontal partition 4 when it is moved out of the first straight groove structure along the depth direction. Thus, even if the horizontal partition 4 is fixed relative to the box 1, the telescopic partition 3 can still be disassembled.

[0056] Among them, the horizontal partition 4 can be a flat plate or an arc plate with a certain curvature, but the whole is in a similar horizontal state.

[0057] See Figure 1 Optionally, the inner walls of the left and right sides of the box 1 are recessed to form a holding groove 12, the left and right ends of the horizontal partition 4 are respectively placed at the bottom wall of the corresponding holding groove 12, and the rear end of the holding groove 12 penetrates the box 1. The horizontal partition 4 is used to move out of the box 1 along the holding groove 12.

[0058] In this embodiment, the inner walls of the left and right sides of the housing 1 are recessed to form storage grooves 12, and the rear end of the storage grooves 12 penetrates through the housing 1, that is, the rear end of the storage grooves 12 is an open opening. Thus, the horizontal partition 4 can move in and out along the storage grooves 12 and can be supported at the bottom wall of the storage grooves 12. The bottom wall of the storage groove 12 refers to its side wall at one end in the negative Z-axis direction.

[0059] Optionally, at least one of the inner walls of the holding tank 12 is provided with a positioning part, and the horizontal partition 4 is provided with a positioning mating part 41 that cooperates with the positioning part.

[0060] In this embodiment, after the holding tank 12 is placed on the bottom wall of the holding tank 12, the positioning effect can be achieved through the cooperation between the positioning part and the positioning mating part 41, so as to prevent the horizontal partition 4 from moving back and forth, especially after the box door 2 is opened, to prevent the horizontal partition 4 from falling backward.

[0061] The positioning part and the positioning mating part 41 can be magnets that attract each other. The positioning part can also be a snap-fit, and the positioning mating part 41 can be a slot. Alternatively, the positioning part can be a positioning groove located on the bottom wall of the holding tank 12, and the positioning mating part 41 can be... Figure 5 The positioning pin shown can prevent the horizontal partition 4 from moving back and forth by inserting the positioning pin vertically into the positioning groove. The positioning pin can be a protruding structure on the horizontal partition 4. Of course, the positioning part can also be a pin, bolt or other material connected to the horizontal partition 4.

[0062] When the positioning part is a positioning groove and the positioning mating part 41 is a positioning post, the height dimension of the holding groove 12 should be greater than or equal to the depth of the positioning groove. In this way, when the horizontal partition 4 moves the positioning post upward out of the positioning groove, it will not be interfered with by the top wall of the holding groove 12.

[0063] Another embodiment of the present invention provides an instrument panel assembly including the glove box as described above.

[0064] Since the technical improvements and effects of the instrument panel assembly are the same as those of the glove box, the instrument panel assembly will not be described in detail again.

[0065] Another embodiment of the present invention provides an automobile including the glove box or instrument panel assembly as described above.

[0066] Since the technological improvements and effects of the vehicle are the same as those of the glove box or dashboard assembly, the vehicle will not be described in detail again.

[0067] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" and "second" may explicitly or implicitly include at least one of those features.

[0068] While the present invention has been disclosed above, its scope of protection is not limited thereto. Those skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention, and all such changes and modifications will fall within the scope of protection of the present invention.

Claims

1. A glove box, characterized in that, The device includes a housing (1), a door (2), and a telescopic partition (3). The door (2) is used to rotate relative to the housing (1) about a first axis to open or close the housing (1). The telescopic partition (3) is at least partially located inside the housing (1), and the thickness direction of the telescopic partition (3) matches the width direction of the vehicle. The telescopic partition (3) includes a first plate (31) and a second plate (32). The first plate (31) is connected to the inner wall of the housing (1). Then, the second plate (32) is connected to the inner wall of the box door (2). One of the first plate (31) and the second plate (32) is provided with an arc-shaped guide structure (311), and the center of the arc-shaped guide structure (311) is located on the first axis. The other of the first plate (31) and the second plate (32) is provided with a guide fitting (321), which is used to move along the arc-shaped guide structure (311).

2. The glove box according to claim 1, characterized in that, Multiple telescopic partitions (3) are provided, and the multiple telescopic partitions (3) are arranged sequentially along the width direction of the vehicle.

3. The glove box according to claim 1, characterized in that, The inner wall of the box (1) is provided with a first linear guide structure (11), the first linear guide structure (11) extends along the width direction of the vehicle, and the first plate (31) is provided with a first protrusion (312) that slides with the first linear guide structure (11). And / or, the inner wall of the door (2) is provided with a second linear guide structure (21), the second linear guide structure (21) extends along the width direction of the vehicle, and the second plate (32) is provided with a second protrusion (322) that slides with the second linear guide structure (21).

4. The glove box according to claim 3, characterized in that, The first linear guide structure (11) is a first linear groove structure formed by the inner wall recess of the box (1), and the depth direction of the first linear groove structure is inclined downward; and / or, the second linear guide structure (21) is a second linear groove structure formed by the inner wall recess of the box door (2), and the depth direction of the second linear groove structure is parallel to the arc direction of the arc guide structure (311).

5. The glove box according to claim 1, characterized in that, The arc-shaped guide structure (311) is an arc-shaped through groove structure that penetrates the thickness direction of the first plate (31) or the second plate (32). The guide fitting (321) includes a shaft, which passes through the arc-shaped through groove structure.

6. The glove box according to any one of claims 1-5, characterized in that, It also includes a horizontal partition (4), which is disposed inside the box (1) and is located above the telescopic partition (3). The horizontal partition (4) is spaced apart from the top wall of the box (1).

7. The glove box according to claim 6, characterized in that, The inner walls of the box (1) along the width direction of the vehicle are recessed to form a holding groove (12). The two ends of the horizontal partition (4) along the width direction of the vehicle are respectively placed at the bottom wall of the corresponding holding groove (12), and the rear end of the holding groove (12) penetrates the box (1). The horizontal partition (4) is used to move out of the box (1) along the holding groove (12).

8. The glove box according to claim 7, characterized in that, At least one of the holding troughs (12) has a positioning part on its inner wall, and the horizontal partition (4) has a positioning mating part (41) that mates with the positioning part.

9. An instrument panel assembly, characterized in that, Includes the glove box as described in any one of claims 1-8.

10. A car, characterized in that, Includes the glove box as described in any one of claims 1-8, or includes the dashboard assembly as described in claim 9.

Citation Information

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