Automobile electrochromic glass lifting device
By designing a lifter module and a power supply module for automotive electrochromic glass, the problem of poor timeliness of traditional glass color changing and the wiring harness management issues of rotary doors has been solved. The system achieves stable lifting and lowering of the electrochromic glass and active color control, improving privacy and reliability.
Patent Information
- Application Number
- CN202422903201.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-11-27
AI Technical Summary
Traditional glass color-changing mechanisms are passive and lack timeliness, and cannot actively control color changes under non-light conditions. The problems of loose wiring harness management and abnormal noise in electrochromic window regulators in rotary doors have not been effectively solved.
An electrochromic glass lifting device for automobiles was designed, which includes a lifting module and a power supply module. The motor drives the slider to slide and lift the electrochromic glass, and the rotating buckle and fixing components stabilize the wire layout to prevent wire harness tangling and abnormal noise.
It achieves stable and reliable lifting of photochromic glass, prevents wire harness tangling, meets service life and noise requirements, and provides active light blocking and enhanced privacy.
Smart Images

Figure CN223647640U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to automobile parts technical field especially, relates to a car electrochromic glass lifting device. BACKGROUND
[0002] The car window glass discoloration can provide the light protection in the car, improves the privacy, and the traditional glass discoloration form causes the glass discoloration by the strong light irradiation glass, and the shortcoming of this form lies in passive and poor timeliness, cannot actively control the change of glass color under the non-illumination condition.
[0003] The existing electrochromic car window glass lifter is usually used in the sliding door, and the wire harness management requirement of this type of door to the device is low, and the problem of looseness and abnormal sound occurs when used in the rotary door. SUMMARY
[0004] The utility model discloses a car electrochromic glass lifting device.
[0005] Technical scheme: the car electrochromic glass lifting device disclosed by the utility model, including the lifting device module outer interface discoloration glass module;
[0006] The lifting device module includes power supply device module, mounting seat plate, motor, sliding block, steel wire rope, guide rail, roller;The motor is installed on the mounting seat plate, the roller and the sliding block are installed on the guide rail, the steel wire rope is connected to the mounting seat plate, the roller and the sliding block, is driven by the motor, realizes the up-down sliding of the sliding block, and the sliding block is connected to the discoloration glass module and drives the discoloration glass module to lift;
[0007] The power supply device module includes wire assembly, one end of the wire assembly is fixed on the sliding block, the other end is fixed on the mounting seat plate or the fixed position outside the lifting device module, plug-in connectors are arranged at both ends of the wire assembly, and the discoloration glass module and the power supply are connected respectively.
[0008] Further, the power supply device module includes wire assembly and first fixing assembly and second fixing assembly at both ends;
[0009] The wire assembly includes wire, A end interface and B end interface are arranged at both ends of the wire respectively, are used for connecting the discoloration glass module and the power supply;The wire is wrapped with a sleeve in the middle, A end clamping piece and B end clamping piece are arranged at both ends of the sleeve respectively, and are fixed with the first fixing assembly and the second fixing assembly through the A end clamping piece and the B end clamping piece respectively.
[0010] Further, the sleeve is wrapped on the part between the A end clamping piece and the B end clamping piece.
[0011] Further, the first fixing assembly comprises a rotating buckle, one end of the rotating buckle is a clamping arm, the other end is a cable tie structure, the clamping arm and the cable tie structure are connected through an axis, forming a rotating buckle structure; a sliding block mounting hole is arranged on the sliding block, the clamping arm is inserted into and clamped in the sliding block mounting hole, the A-end clamping piece is formed into a clamping groove structure by the spaced apart retaining edges, and the cable tie structure is fixed in the clamping groove structure.
[0012] Further, the second fixing assembly is installed on the mounting table and comprises a rotating fixing arm, the rotating fixing arm is provided with a boss, a torsion spring cavity, a first pin slot and a clamping rib, rotating holes are formed in the mounting table, limit points are arranged in the rotating holes in two directions, a second pin slot is arranged on the mounting table, the rotating fixing arm is rotated into the rotating holes through the boss and is installed on the mounting table, a torsion spring is arranged in the torsion spring cavity, the pins of the torsion spring are respectively inserted into the first pin slot and the second pin slot, the B-end clamping piece is formed into a clamping groove structure by the spaced apart retaining edges, and the clamping rib is clamped in the clamping groove structure.
[0013] Further, the second fixing assembly is installed on the mounting table, the mounting table is provided with a mounting hole, the second fixing assembly comprises a rotating fixing piece, the rotating fixing piece is provided with a clamping rib, the B-end clamping piece is formed into a clamping groove structure by the spaced apart retaining edges, the clamping rib is clamped in the clamping groove structure, and a wire through hole is formed in the bottom of the rotating fixing piece.
[0014] Further, the second fixing assembly is installed on the mounting table, and the structure of the second fixing assembly is consistent with that of the first fixing assembly.
[0015] Further, the mounting table is located on a mounting seat plate, or is located on a door plate, or is located on a mounting support, and the mounting support is fixed with a guide rail.
[0016] Further, the color-changing glass module comprises glass and a glass clamp, and the glass clamp is fixed with the sliding block.
[0017] Beneficial effects: compared with the prior art, the color-changing glass can realize stable and reliable operation in lifting, can prevent wire winding, can meet the requirements of service life, noise and the like, can realize the function of actively changing the color of the glass by electrifying the vehicle window glass moving with the lifter, can provide light shielding, can improve privacy and the like. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a whole structure diagram of the utility model;
[0019] Figure 2 It is a lifter module structure schematic diagram when the sliding block rises;
[0020] Figure 3The utility model discloses slider module structure schematic drawing when descending;
[0021] Figure 4 The utility model discloses electric wire assembly structure schematic drawing;
[0022] Figure 5 The utility model discloses first fixed assembly and second fixed assembly structure schematic drawing;
[0023] Figure 6 The utility model discloses the second structure form of first fixed assembly;
[0024] Figure 7 The utility model discloses the third structure form of first fixed assembly;
[0025] Figure 8 The utility model discloses installation platform is located on the schematic drawing of door panel;
[0026] Figure 9 The utility model discloses installation platform is located on the schematic drawing of installation support. Specific implementation
[0027] The technical scheme of the utility model will be further explained below in connection with the drawings and embodiments.
[0028] As Figure 1 The utility model discloses an automobile electrochromic glass lifting device, which comprises a lifter module 1 and an electrochromic glass module 2 connected to the lifter module 1.
[0029] As Figure 2 And 3 The lifter module 1 comprises a power supply device module 1-1, a mounting seat plate 1-2, a motor 1-3, a slider 1-4, a steel wire rope 1-5, a guide rail 1-6 and a roller 1-7. The motor 1-3 is mounted on the mounting seat plate 1-2, the roller 1-7 and the slider 1-4 are mounted on the guide rail 1-6, the steel wire rope 1-5 is connected to the mounting seat plate 1-2, the roller 1-7 and the slider 1-4, and is driven by the motor 1-3 to realize the up-and-down sliding movement of the slider 1-4. The slider 1-4 is connected to the electrochromic glass module 2 to drive the electrochromic glass module 2 to lift.
[0030] The power supply device module 1-1 comprises an electric wire assembly 1-1-1. One end of the electric wire assembly 1-1-1 is fixed to the slider 1-4, and the other end is fixed to the mounting seat plate 1-2 or a fixed position outside the lifter module 1. The electric wire assembly 1-1-1 is provided with a connector at both ends, and is connected to the electrochromic glass module 2 and a power supply, respectively.
[0031] The power supply device module 1-1 comprises the electric wire assembly 1-1-1, a first fixed assembly 1-1-2 and a second fixed assembly 1-1-3 at both ends.
[0032] AsFigure 4 As shown in the figure, the electric wire assembly 1-1-1 includes an electric wire 1-1-1-1, the two ends of which are respectively provided with an A terminal interface 1-1-1-2 and a B terminal interface 1-1-1-3 for connecting the color-changing glass module 2 and the power supply; the middle part of the electric wire 1-1-1-1 is provided with a sleeve 1-1-1-4, the two ends of which are respectively provided with an A end clamping piece 1-1-1-5 and a B end clamping piece 1-1-1-6, which are respectively fixed with the first fixing assembly 1-1-2 and the second fixing assembly 1-1-3.
[0033] The part of the sleeve 1-1-1-4 between the A end clamping piece 1-1-1-5 and the B end clamping piece 1-1-1-6 is provided with a sleeve 1-1-1-7.
[0034] As shown in the figure, Figure 5 The first fixing assembly 1-1-2 includes a rotating buckle 1-1-2-1, one end of which is a clamping arm 1-1-2-1-1 and the other end is a cable tie structure 1-1-2-1-2, the clamping arm 1-1-2-1-1 and the cable tie structure 1-1-2-1-2 are connected by a rotating shaft to form a rotating buckle structure; the sliding block 1-4 is provided with a sliding block mounting hole 1-4-1, the clamping arm 1-1-2-1-1 is inserted and clamped in the sliding block mounting hole 1-4-1, the A end clamping piece 1-1-1-5 is formed into a clamping groove structure by the spaced apart stop edges, and the cable tie structure 1-1-2-1-2 is fixed in the clamping groove structure.
[0035] The second fixing assembly 1-1-3 is installed on the mounting table 3 and includes a rotating fixing arm 1-1-3-1, the rotating fixing arm 1-1-3-1 is provided with a boss 1-1-3-1-2, a torsion spring cavity 1-1-3-1-3, a first pin slot 1-1-3-1-4 and a clamping rib 1-1-3-1-1, the mounting table 3 is provided with a rotating hole 3-1, the two directions of the rotating hole 3-1 are provided with limit points 3-2, the mounting table 3 is provided with a second pin slot 3-3, the rotating fixing arm 1-1-3-1 is rotated into the rotating hole 3-1 through the boss 1-1-3-1-2 and is installed on the mounting table 3, the torsion spring cavity 1-1-3-1-3 is provided with a torsion spring 1-1-3-1-6, the pins of which are respectively inserted into the first pin slot 1-1-3-1-4 and the second pin slot 3-3, the B end clamping piece 1-1-1-6 is formed into a clamping groove structure by the spaced apart stop edges, and the clamping rib 1-1-3-1-1 is clamped in the clamping groove structure.
[0036] As shown in the figure, Figure 6As shown, this embodiment also provides a second structural form of the second fixing component. The second fixing component 1-1-3 is mounted on the mounting platform 3, which has mounting holes. The second fixing component 1-1-3 includes a rotating fixing member 1-1-3-2. The rotating fixing member 1-1-3-2 has a snap-fit rib 1-1-3-1-1. The B-end snap-fit member 1-1-1-6 forms a slot structure with spaced-apart baffles. The snap-fit rib 1-1-3-1-1 is snapped into the slot structure. The bottom of the rotating fixing member 1-1-3-2 has an electrical wire through hole 1-1-3-2-1.
[0037] like Figure 7 As shown, this embodiment also provides a third structural form of the second fixing component. The second fixing component 1-1-3 is installed on the mounting platform 3, and the structure of the second fixing component 1-1-3 is the same as that of the first fixing component 1-1-2.
[0038] like Figure 2 As shown, the mounting platform 3 can be located on the mounting base plate 1-2.
[0039] like Figure 8 As shown, the mounting platform 3 can be directly installed on the door panel.
[0040] like Figure 9 As shown, the mounting platform 3 can be mounted on the mounting bracket 1-6-1, and the mounting bracket 1-6-1 is fixed to the guide rail 1-6.
[0041] The photochromic glass module 2 includes glass 2-1 and glass clip 2-2, and the glass clip 2-2 is fixed to the slider 1-4.
[0042] When the window is raised or lowered, the length of the wiring assembly needs to meet the maximum length of the entire movement. When the window reaches its shortest length, the redundant wires need to be controlled by the structure of this solution to prevent the wires from getting tangled, loosening and making noise, interfering with operation, etc., so as to achieve a reasonable layout of the wiring assembly.
Claims
1. A car electrochromic glass lifting device, characterized in that, Includes a lift module (1) and an external photochromic glass module (2); The lifting module (1) includes a power supply module (1-1), a mounting plate (1-2), a motor (1-3), a slider (1-4), a wire rope (1-5), a guide rail (1-6), and a roller (1-7). The motor (1-3) is mounted on the mounting plate (1-2), and the roller (1-7) and slider (1-4) are mounted on the guide rail (1-6). The wire rope (1-5) connects the mounting plate (1-2), the roller (1-7), and the slider (1-4), and is driven by the motor (1-3) to make the slider (1-4) slide up and down. The slider (1-4) is connected to the color-changing glass module (2) and drives it to rise and fall. The power supply module (1-1) includes a wire assembly (1-1-1). One end of the wire assembly (1-1-1) is fixed on the slider (1-4), and the other end is fixed on the mounting plate (1-2) or a fixed position outside the lifting module (1). The two ends of the wire assembly (1-1-1) are provided with connectors, which are respectively connected to the color-changing glass module (2) and the power supply.
2. The automotive electrochromic glass lifting device according to claim 1, characterized in that: The power supply module (1-1) includes a wire assembly (1-1-1) and a first fixing assembly (1-1-2) and a second fixing assembly (1-1-3) at both ends. The wire assembly (1-1-1) includes a wire (1-1-1-1), with an A-end interface (1-1-1-2) and a B-end interface (1-1-1-3) at both ends of the wire (1-1-1-1), which are used to connect the photochromic glass module (2) and the power supply. A sleeve (1-1-1-4) is wrapped in the middle of the wire (1-1-1-1), with an A-end snap-fit (1-1-1-5) and a B-end snap-fit (1-1-1-6) at both ends of the sleeve (1-1-1-4), which are fixed to the first fixing component (1-1-2) and the second fixing component (1-1-3) respectively through the A-end snap-fit (1-1-1-5) and the B-end snap-fit (1-1-1-6).
3. The automotive electrochromic glass lifting device according to claim 2, characterized in that: The sleeve (1-1-1-7) is fitted on the part between the A-end snap fastener (1-1-1-5) and the B-end snap fastener (1-1-1-6) on the sleeve (1-1-1-4).
4. The automotive electrochromic glass lifting device according to claim 2, characterized in that: The first fixing component (1-1-2) includes a rotating buckle (1-1-2-1), one end of which is a snap-fit arm (1-1-2-1-1) and the other end is a cable tie structure (1-1-2-1-2). The snap-fit arm (1-1-2-1-1) and the cable tie structure (1-1-2-1-2) are connected by a rotating shaft to form a rotating buckle structure. The slider (1-4) is provided with a slider mounting hole (1-4-1). The snap-fit arm (1-1-2-1-1) is inserted into and snapped into the slider mounting hole (1-4-1). The A-end snap-fit member (1-1-1-5) is formed by spaced-apart baffles to form a slot structure. The cable tie structure (1-1-2-1-2) is fixed in the slot structure.
5. The automotive electrochromic glass lifting device according to claim 2, characterized in that: The second fixing component (1-1-3) is mounted on the mounting platform (3) and includes a rotating fixing arm (1-1-3-1). The rotating fixing arm (1-1-3-1) is provided with a boss (1-1-3-1-2), a torsion spring cavity (1-1-3-1-3), a first pin groove (1-1-3-1-4), and a snap-fit rib (1-1-3-1-1). The mounting platform (3) has a rotating hole (3-1) with limiting points (3-2) in both directions. The mounting platform (3) has a second pin groove. (3-3), the rotating fixed arm (1-1-3-1) is screwed into the rotating hole (3-1) through the boss (1-1-3-1-2) and installed on the mounting platform (3). The torsion spring cavity (1-1-3-1-3) is provided with a torsion spring (1-1-3-1-6), whose pins are respectively inserted into the first pin slot (1-1-3-1-4) and the second pin slot (3-3). The B-end snap fastener (1-1-1-6) is formed by the spaced-apart baffles to form a snap groove structure. The snap fastener rib (1-1-3-1-1) is snapped into the snap groove structure.
6. The automotive electrochromic glass lifting device according to claim 2, characterized in that: The second fixing component (1-1-3) is installed on the mounting platform (3), which has mounting holes. The second fixing component (1-1-3) includes a rotating fixing member (1-1-3-2), which has a snap-fit rib (1-1-3-1-1) on it. The B-end snap-fit member (1-1-1-6) has a slot structure formed by spaced-out baffles. The snap-fit rib (1-1-3-1-1) is snapped into the slot structure. The bottom of the rotating fixing member (1-1-3-2) has an electrical wire through hole (1-1-3-2-1).
7. The automotive electrochromic glass lifting device according to claim 2, characterized in that: The second fixing component (1-1-3) is installed on the mounting platform (3), and the structure of the second fixing component (1-1-3) is the same as that of the first fixing component (1-1-2).
8. The automotive electrochromic glass lifting device according to claim 5, 6, or 7, characterized in that: The mounting platform (3) is located on the mounting base plate (1-2); or on the door panel; or on the mounting bracket (1-6-1), which is fixed to the guide rail (1-6).
9. The automotive electrochromic glass lifting device according to claim 1, characterized in that: The color-changing glass module (2) includes glass (2-1) and glass clip (2-2), and the glass clip (2-2) is fixed to the slider (1-4).