A new energy vehicle radiator water chamber installation mechanism

By introducing accurate alignment and clamping mechanisms into the installation mechanism of the radiator water chamber of the new energy vehicle, the deviation problem during the installation of the radiator water chamber is solved, efficient and stable positioning and installation are achieved, and workload and cost are reduced.

CN116001560BActive Publication Date: 2025-08-22JILIN RAILWAY VOCATIONAL & TECH COLLEGE
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Patent Information

Application Number
CN202310012281.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-01-05
Publication Date
2025-08-22
Estimated Expiration
2043-01-05

AI Technical Summary

Technical Problem

The existing new energy vehicle radiator water chamber installation mechanism is prone to deviations during positioning, resulting in rework and damage to components, increasing workload and cost.

Method used

The installation board, installation base, pallet, guide plate, electric telescopic rod and electric jaw are used to realize the positioning and installation of the radiator water chamber through precise alignment and clamping mechanism, and the combination of the scale plate and the anti-slip pad improves the installation accuracy and stability.

Benefits of technology

It improves the installation success rate of the water chamber of the radiator of new energy vehicles, reduces workload and component damage, and enhances the accuracy and stability of installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

A new energy vehicle radiator water chamber installation mechanism relates to the technical field of automobile radiators; a baffle is fixedly arranged on the inner bottom wall of a base plate, the baffle is arranged between No. 1 support plates on the left and right sides, and the rear side walls of the mounting plate and the mounting base are both arranged in contact with the front side wall of the baffle; the No. 1 guide plate is fixedly arranged between the inner side walls of the left and right fixed plates, and the No. 1 guide plate is fixedly arranged on the front side wall of the baffle; the right clamping plate is fixed to the left side wall of the right fixed plate using several fixing columns, and the right clamping plate is fixedly sleeved on the No. 1 guide plate; the positioning and installation of the new energy vehicle radiator water chamber are facilitated, the installation success rate is improved, and the workload is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of automobile radiators, and in particular to a radiator water chamber mounting mechanism for a new energy vehicle. Background Art

[0002] The water chamber of the new energy vehicle radiator is composed of a radiator core and an inlet and outlet water chambers. The hot coolant flowing out of the engine flows through the radiator core through the radiator inlet chamber, and exchanges heat with the air flowing through the radiator core from the outside. The existing automobile radiator water chamber installation mechanism has the advantages of easy operation and easy access, but due to its simple structure, it requires manual positioning, and deviations are prone to occur during installation, resulting in rework and component damage, increasing workload and cost. Therefore, a new energy vehicle radiator water chamber installation mechanism is urgently needed. Summary of the Invention

[0003] The purpose of the present invention is to provide a rationally designed new energy vehicle radiator water chamber installation mechanism in view of the defects and shortcomings of the existing technology, which can effectively solve the defects of the above-mentioned existing technology.

[0004] To achieve the above-mentioned object, the present invention adopts the following technical solutions: it comprises a mounting plate, a mounting base, a left fixed plate, a bottom plate and a right fixed plate; the mounting plates are fixedly provided on the bottom wall of the water inlet chamber and the top wall of the water outlet chamber, the mounting bases are fixedly provided on the upper and lower side walls of the radiator core, and the mounting plates and the mounting bases are matched with each other; the bottom plate is provided with an open top wall structure, the left fixed plate is fixed on the left top wall of the bottom plate, and the left fixed plate is provided with an open right structure; the right fixed plate is fixed on the right top wall of the bottom plate;

[0005] There are multiple No. 1, No. 2, and No. 3 support plates, and they are intermittently movable and inserted into the left and right fixed plates. The No. 1, No. 2, and No. 3 support plates are arranged symmetrically from top to bottom. The mounting plate on the water inlet chamber is in contact with the No. 1 support plate, the mounting base on the bottom wall of the radiator core is in contact with the No. 2 support plate, and the mounting plate on the water outlet chamber is in contact with the No. 3 support plate. It also includes:

[0006] The baffle is fixedly mounted on the inner bottom wall of the base plate, and is disposed between the left and right No. 1 support plates, with the rear side walls of the mounting plate and the mounting base both in contact with the front side walls of the baffle;

[0007] A No. 1 guide plate, the No. 1 guide plate being fixedly disposed between the inner side walls of the left fixed plate and the right fixed plate, and the No. 1 guide plate being fixedly disposed on the front side wall of the baffle;

[0008] The right splint is fixed to the left side wall of the right fixing plate by using a plurality of fixing columns, and the right splint is fixedly sleeved on the first guide plate;

[0009] The mounting base alignment mechanism is arranged in the middle of the left inner wall of the left fixed plate, and the mounting base alignment mechanism is aligned with the right clamping plate. The right clamping plate and the mounting base alignment mechanism are both symmetrically provided with placement grooves;

[0010] The mounting plate alignment mechanism is fixedly arranged on the inner side wall of the placement groove;

[0011] A number one electric telescopic rod, wherein the number one electric telescopic rod is multiple and is respectively fixedly arranged on the upper and lower inner side walls of the left fixed plate, and the number one electric telescopic rod is connected to an external power supply via a wire;

[0012] The electric clamp is fixedly arranged on the inner end of the No. 1 electric telescopic rod, the electric clamp is intermittently arranged to abut against the outer wall of the mounting plate, and the electric clamp is connected to an external power supply through a wire.

[0013] Through the above technical solution design, the water inlet chamber, radiator core and water outlet chamber are first placed on the No. 1 pallet, No. 2 pallet and No. 3 pallet respectively, and all are placed close to the baffle. The radiator core is clamped in position through the cooperation of the right clamping plate and the mounting base alignment mechanism. The water inlet chamber and the water outlet chamber are positioned through the mounting plate alignment mechanism, so that the water inlet chamber, the water outlet chamber and the radiator core are aligned up and down. The water inlet chamber and the water outlet chamber are accurately installed on the radiator core through the No. 1 electric telescopic rod and the electric clamp.

[0014] As a further improvement of the present invention, the No. 1 pallet, No. 2 pallet and No. 3 pallet are all fixedly arranged on the inner wall of the connecting plate, a movable groove is opened through the connecting plate, the No. 1 motor is intermittently movable in the movable groove, and a handle is fixedly arranged on the outer wall of the connecting plate, and the handle is located below the movable groove; the connecting plate can be moved by moving the handle, and the moving connecting plate can move the No. 1 pallet, No. 2 pallet and No. 3 pallet as a whole, thereby reducing workload.

[0015] As a further improvement of the present invention, a scale plate is fixedly provided on the right side wall of the baffle; the heights of the water inlet chamber and the water outlet chamber can be directly observed, making height adjustment convenient.

[0016] As a further improvement of the present invention, an anti-skid pad is fixedly provided on the left side wall of the right clamping plate; the friction between the radiator core and the anti-skid pad is increased, the movement of the radiator core during installation is reduced, and the installation accuracy is increased.

[0017] As a further improvement of the present invention, the mounting base alignment mechanism includes:

[0018] Motor No. 1, the motor No. 1 is fixedly mounted on the left side wall of the left fixed plate, and its output end passes through the left side wall of the left fixed plate and is connected to the No. 1 screw rod. The threaded tube is rotatably connected to the No. 1 screw rod through a thread, and the motor No. 1 is connected to an external power supply via a wire;

[0019] The left splint is fixedly arranged at the right end of the threaded tube, and the left splint is movably sleeved on the No. 1 guide plate, and the right side wall of the left splint is intermittently set in conflict with the radiator core; the right splint and the left splint are aligned left and right, and the right splint and the left splint are both arranged between the No. 1 support plate and the No. 2 support plate; the placement groove is opened in the left splint.

[0020] Through the above technical design, the No. 1 motor is used to realize the rightward movement of the left clamping plate, so as to realize the left and right positioning and alignment of the water inlet chamber, radiator core and water outlet chamber. At the same time, the radiator core is positioned and clamped to facilitate the installation of the water inlet chamber and water outlet chamber.

[0021] As a further improvement of the present invention, several electromagnets are fixedly installed on the middle inner wall of the No. 2 pallet, and an auxiliary pallet is intermittently movable inside the No. 2 pallet, and the auxiliary pallet and the electromagnet are intermittently magnetically attracted to each other; a connecting block is fixedly installed on the bottom end of the outer wall of the auxiliary pallet, and a No. 2 screw is rotatably passed through the connecting block by a thread, a stop block is fixedly installed on the lower end of the No. 2 screw, and the upper end of the No. 2 screw is rotatably set in the bottom wall of the No. 2 pallet through a bearing.

[0022] Through the above technical solution design, the manual tightening is rotated, and the manual tightening drives the block and the No. 2 screw to move upward, the block pushes the connecting block to move upward, and the connecting block pushes the auxiliary support plate to move upward along the No. 2 guide plate. After the movement is completed, the auxiliary support plate is fixed by the electromagnet and the auxiliary support plate, which increases the stability when supporting the radiator core and facilitates the adjustment of the alignment height of the radiator core.

[0023] As a further improvement of the present invention, a hand screw is fixedly provided on the bottom wall of the block; by rotating the hand screw, the block and the second screw are conveniently driven to rotate upward, thereby driving the connecting block to move upward, and finally realizing the upward movement of the auxiliary support plate.

[0024] As a further improvement of the present invention, a No. 2 guide plate is fixedly provided on the middle inner wall of the No. 2 support plate, and the electromagnets are symmetrically arranged on the front and rear sides of the No. 2 guide plate. The No. 2 guide plate is fixedly connected to the electromagnet, and the No. 2 guide plate is intermittently movable and penetrates the auxiliary support plate. The electromagnet is connected to an external power supply through a wire; the electromagnet is magnetically fixed to the auxiliary support plate to increase the stability of the auxiliary support plate.

[0025] As a further improvement of the present invention, the mounting plate alignment mechanism comprises:

[0026] A second electric telescopic rod, wherein the second electric telescopic rod is multiple and all are fixedly arranged on the inner wall of the placement slot, and the second electric telescopic rod is connected to an external power supply through a wire;

[0027] The limit plate is fixedly arranged on the outer end of the second electric telescopic rod, and the limit plate is movably arranged in the placement groove, and the limit plate is intermittently movably arranged on the left and right sides of the mounting plate.

[0028] The above technical solution design makes it easy to position the water inlet chamber and the water outlet chamber on the left and right, and at the same time makes it easy to store them, reducing interference during installation.

[0029] Compared with the prior art, the beneficial effects of the present invention are: the new energy vehicle radiator water chamber installation mechanism of the present invention facilitates the positioning and installation of the new energy vehicle radiator water chamber, improves the installation success rate, and reduces workload. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 It is a structural schematic diagram of the present invention.

[0031] Figure 2 yes Figure 1 Top view of .

[0032] Figure 3 yes Figure 1 rear view.

[0033] Figure 4 yes Figure 2 Middle AA section view.

[0034] Figure 5 It is a schematic structural diagram of the present invention when it is installed after positioning.

[0035] Figure 6 yes Figure 4 Enlarged view of part B in the middle.

[0036] Figure 7 It is a structural diagram of the connection relationship between the second support plate, electromagnet, second screw, stop block, second guide plate, connecting block, hand screw and auxiliary support plate in the present invention.

[0037] Description of reference numerals:

[0038] Water inlet chamber 1, mounting plate 2, mounting base 3, radiator core 4, water outlet chamber 5, left fixed plate 6, No. 1 electric telescopic rod 7, electric clamp 8, baffle 9, scale plate 10, No. 1 support plate 11, No. 2 support plate 12, No. 3 support plate 13, connecting plate 14, right splint 15, mounting base alignment mechanism 16, left splint 16-1, No. 1 screw 16-2, threaded tube 16-3, No. 1 motor 16-4, handle 17, bottom plate 18, mounting plate alignment mechanism 19, No. 2 electric telescopic rod 19-1, limit plate 19-2, electromagnet 20, No. 2 screw 21, block 22, No. 1 guide plate 23, No. 2 guide plate 24, right fixed plate 25, fixed column 26, connecting block 27, hand screw 28, movable groove 29, anti-slip pad 30, placement groove 31, auxiliary support plate 32. DETAILED DESCRIPTION

[0039] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0040] Example 1:

[0041] See Figure 1-6 As shown, embodiment 1 includes a mounting plate 2, a mounting base 3, a left fixing plate 6, a bottom plate 18 and a right fixing plate 25; the mounting plate 2 is welded to the bottom wall of the water inlet chamber 1 and the top wall of the water outlet chamber 5, and the mounting base 3 is fixedly mounted on the upper and lower side walls of the radiator core 4. The mounting plate 2 and the mounting base 3 are matched to ensure sealing after installation; the bottom plate 18 is a top-wall open structure, the left fixing plate 6 is welded to the left top wall of the bottom plate 18, and the left fixing plate 6 is a right-side open structure; the right fixing plate 25 is welded to the right top wall of the bottom plate 18;

[0042] The first support plate 11, the second support plate 12, and the third support plate 13 are all multiple and intermittently movable and penetrate the left fixed plate 6 and the right fixed plate 25. The first support plate 11, the second support plate 12, and the third support plate 13 are arranged symmetrically from top to bottom; the mounting plate 2 on the water inlet chamber 1 is arranged in contact with the first support plate 11, the mounting base 3 on the bottom wall of the radiator core 4 is arranged in contact with the second support plate 12, and the mounting plate 2 on the water outlet chamber 5 is arranged in contact with the third support plate 13;

[0043] The first support plate 11 supports the water inlet chamber 1; the second support plate 12 supports the radiator core 4; the third support plate 13 supports the water outlet chamber 5;

[0044] It also contains:

[0045] The baffle 9 is fixed to the inner bottom wall of the base plate 18 by bolts. The baffle 9 is set between the left and right No. 1 support plates 11. The rear side walls of the mounting plate 2 and the mounting base 3 are both in contact with the front side wall of the baffle 9; the front and rear positions of the mounting plate 2 and the mounting base 3 are positioned; a scale plate 10 is glued and fixed on the right side wall of the baffle 9 to facilitate observation of the distance between the various components and the height of the components;

[0046] A first guide plate 23, the first guide plate 23 is fixed between the inner side walls of the left fixing plate 6 and the right fixing plate 25 by bolts, and the first guide plate 23 is fixed to the front side wall of the baffle 9 by bolts and brackets;

[0047] The mounting base alignment mechanism 16 includes:

[0048] No. 1 motor 16-4, the No. 1 motor 16-4 is fixed to the left side wall of the left fixed plate 6 by bolts and brackets, and its output end passes through the left side wall of the left fixed plate 6 and is connected to the No. 1 screw rod 16-2. The threaded tube 16-3 is rotatably connected to the No. 1 screw rod 16-2 through a thread. The No. 1 motor 16-4 is connected to an external power supply through a wire to provide power for the movement of the left clamping plate 16-1;

[0049] The left clamping plate 16-1 is welded to the right end of the threaded tube 16-3 and is movably mounted on the first guide plate 23. The right side wall of the left clamping plate 16-1 is intermittently in contact with the radiator core 4. A placement groove 31 is defined in the left clamping plate 16-1.

[0050] The right splint 15 is fixed to the left side wall of the right fixed plate 25 by means of several fixing columns 26. The right splint 15 is fixedly sleeved on the No. 1 guide plate 23. The right splint 15 and the left splint 16-1 are aligned left and right, and both the right splint 15 and the left splint 16-1 are arranged between the No. 1 support plate 11 and the No. 2 support plate 12; the right splint 15 and the left splint 16-1 are symmetrically provided with placement grooves 31; an anti-slip pad 30 is glued and fixed on the left side wall of the right splint 15 to prevent slipping and increase stability during installation;

[0051] The mounting plate alignment mechanism 19 includes:

[0052] The second electric telescopic rod 19-1 is four in number and is fixedly mounted on the inner wall of the placement slot 31. The second electric telescopic rod 19-1 is connected to an external power source via a wire to provide power for the movement of the limit plate 19-2 and facilitates the storage of the limit plate 19-2, thereby reducing interference during installation.

[0053] The limit plate 19-2 is fixed to the outer end of the second electric telescopic rod 19-1 by bolts, and the limit plate 19-2 is movably arranged in the placement groove 31. The limit plate 19-2 is intermittently movably arranged on the left and right sides of the mounting plate 2 to facilitate pushing the mounting plate 2 for left and right positioning;

[0054] The first electric telescopic rod 7 is two in number and is fixed to the upper and lower inner side walls of the left fixed plate 6 by bolts respectively. The first electric telescopic rod 7 is connected to an external power supply through a wire; it is convenient to drive the mounting plate 2 to move up and down for installation;

[0055] The electric clamp 8 is fixed to the inner end of the No. 1 electric telescopic rod 7 by bolts. The electric clamp 8 is intermittently arranged to abut against the outer wall of the mounting plate 2. The electric clamp 8 is connected to an external power supply through a wire; it is convenient to clamp and fix the mounting plate 2 to ensure installation accuracy.

[0056] Through the above technical solution design, the water inlet chamber 1, the radiator core 4 and the water outlet chamber 5 are first supported and placed by the No. 1 support plate 11, the No. 2 support plate 12 and the No. 3 support plate 13 respectively, and then the No. 1 motor 16-4 controls the right clamping plate 15 and the No. 2 electric telescopic rod 19-1 to move right, and the mounting plate 2 and the mounting base 3 are aligned and positioned left and right, and then the radiator core 4 is limited and fixed by the right clamping plate 15 and the left clamping plate 16-1, and the mounting plate 2 is clamped by the electric clamp 8 and finally installed on the mounting base 3 to complete the precise installation.

[0057] Example 2:

[0058] See Figure 7As shown, this embodiment is based on the embodiment 1, and two electromagnets 20 are fixed on the middle inner wall of the No. 2 support plate 12 by bolts. An auxiliary support plate 32 is intermittently provided in the No. 2 support plate 12. The auxiliary support plate 32 is made of metal. The auxiliary support plate 32 and the electromagnet 20 are intermittently magnetically attracted to ensure the stability of the support; a connecting block 27 is welded to the bottom end of the outer wall of the auxiliary support plate 32, and a No. 2 screw rod 21 is passed through the connecting block 27 by thread rotation. A stopper 22 is welded to the lower end of the No. 2 screw rod 21, and the stopper 22 limits the minimum height of the connecting block 27; the bottom wall of the stopper 22 is welded There is a hand screw 28 to facilitate the rotation of the No. 2 screw 21 by the staff; the upper end of the No. 2 screw 21 is rotatably set in the bottom wall of the No. 2 support plate 12 through a bearing; the No. 2 guide plate 24 is welded to the middle inner wall of the No. 2 support plate 12, which guides the up and down movement of the auxiliary support plate 32, ensuring that the auxiliary support plate 32 horizontally supports the radiator core 4 so that the mounting base 3 is in a horizontal state; the electromagnet 20 is symmetrically arranged on the front and rear sides of the No. 2 guide plate 24, and the No. 2 guide plate 24 and the electromagnet 20 are glued and fixed. The No. 2 guide plate 24 is intermittently movable and penetrates the auxiliary support plate 32. The electromagnet 20 is connected to an external power supply via a wire;

[0059] Through the above technical solution design, the electromagnet 20 is first turned off, the electromagnet 20 is powered off and demagnetized, and the electromagnet 20 and the auxiliary support plate 32 lose adsorption; by rotating the hand screw 28, the hand screw 28 drives the stopper 22 to rotate, and the stopper 22 drives the No. 2 screw 21 to rotate, and the No. 2 screw 21 drives the connecting block 27 thereon to move upward, and the connecting block 27 drives the auxiliary support plate 32 to move upward along the No. 2 guide plate 24. After the auxiliary support plate 32 moves higher than the No. 2 support plate 12, the electromagnet 20 is turned on, and the electromagnet 20 and the auxiliary support plate 32 are adsorbed together. The radiator core 4 is placed on the auxiliary support plate 32 for alignment, and the alignment height is increased to ensure that the radiator core 4 is at the middle height between the right clamping plate 15 and the left clamping plate 16-1, thereby ensuring the stability of the installation.

[0060] When using the present invention, first hold the handle 17 to move the connecting plate 14, insert the No. 1 support plate 11, the No. 2 support plate 12 and the No. 3 support plate 13 into the jackspots provided on the right fixing plate 25 and the left fixing plate 6, place the mounting plate 2 on the No. 1 support plate 11, the radiator core 4 on the No. 2 support plate 12, the water outlet chamber 5 on the No. 3 support plate 13, and place the mounting plate 2 and the mounting base 3 close to the baffle 9 so that the mounting plate 2 and the mounting base 3 are aligned front to back for easy installation; then open the No. 2 electric telescopic rod 29 on the left and right sides, the No. 2 electric telescopic rod 29 drives the limit plate 30 to move upward, and the upper and lower limit plates 30 are respectively moved between the No. 1 support plate 11 and the No. 3 support plate 13 (the electric clamping claw 8 does not engage with the limit jaws when it is not clamped). The plate 30 is in contact with the mounting plate 2 and does not affect the positioning); turn on the No. 1 motor 16-4, the No. 1 motor 16-4 drives the No. 1 screw 16-2 to rotate, the No. 1 screw 16-2 drives the threaded tube 16-3 to rotate, and the threaded tube 16-3 pushes the left clamping plate 16-1 to move to the right along the No. 1 guide plate 23, and the left clamping plate 16-1 drives the No. 2 electric telescopic rod 29 and the limit plate 30 on the left to move to the right, and the left clamping plate 16-1 pushes the radiator core 4 and the mounting base 3 to move to the right until the radiator core 4 conflicts with the right clamping plate 15; at the same time, the limit plate 30 on the left pushes the water inlet chamber 1 and the water outlet chamber 5 to move to the right until the mounting plate 2 conflicts with the limit plate 30 on the right, thereby realizing the left-right alignment positioning of the mounting plate 2 and the mounting base 3;

[0061] After positioning is completed, open the electric clamp 8, the electric clamp 8 clamps the mounting plate 2, and the left clamp 16-1 and the right clamp 15 clamp the radiator core 4; move the connecting plate 14 away, so that the No. 1 support plate 11, the No. 2 support plate 12 and the No. 3 support plate 13 are moved out from the left fixed plate 6 and the right fixed plate 25, and the limit plate 30 is moved back to the placement groove 31 to reduce interference during installation; open the No. 1 electric telescopic rod 7 on the upper and lower sides, the No. 1 electric telescopic rod 7 drives the electric clamp 8 to move toward the middle, and the electric clamp 8 drives the mounting plate 2 to move toward the middle until the mounting plate 2 is installed together with the mounting base 3, and release the electric clamp 8 to install the mounting plate 2 and the water outlet chamber 5 on the radiator core 4.

[0062] After adopting the above structure, the beneficial effects of this specific embodiment are as follows:

[0063] 1. Through the arrangement of the No. 1 electric telescopic rod 7, the electric clamping claw 8, the baffle 9, the right clamping plate 15, the left clamping plate 16-1, the No. 1 screw 16-2, the threaded tube 16-3, the No. 1 guide plate 23, the fixing column 26, the No. 2 electric telescopic rod 29 and the limit plate 30, the positioning and installation of the radiator water chamber of the new energy vehicle are facilitated, the installation success rate is improved, and the workload is reduced;

[0064] 2. The anti-skid pad 30 is provided to prevent the radiator core 4 from slipping; the scale plate 10 is provided to facilitate observation of the distance between components and the height of the components;

[0065] 3. Through the arrangement of the auxiliary support plate 32, the second guide plate 24, the electromagnet 20, the second screw 21, the stopper 22 and the connecting block 27, the alignment height of the radiator core 4 is conveniently adjusted so that the radiator core 4 is at an intermediate height between the right clamping plate 15 and the left clamping plate 16-1, thereby increasing stability during installation;

[0066] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A new energy vehicle radiator water chamber mounting mechanism, comprising a mounting plate (2), a mounting base (3), a left fixing plate (6), a bottom plate (18) and a right fixing plate (25); the mounting plate (2) is fixedly provided on the bottom wall of the water inlet chamber (1) and the top wall of the water outlet chamber (5); the mounting base (3) is fixedly provided on the upper and lower side walls of the radiator core (4); the mounting plate (2) and the mounting base (3) are matched; the bottom plate (18) is a top wall open structure, the left fixing plate (6) is fixed on the left top wall of the bottom plate (18), and the left fixing plate (6) is a right side open structure; the right fixing plate (25) is fixedly provided on the right top wall of the bottom plate (18); Its characteristics are: The number of the first support plate (11), the second support plate (12) and the third support plate (13) are all multiple and intermittently movable and arranged in the left fixed plate (6) and the right fixed plate (25). The first support plate (11), the second support plate (12) and the third support plate (13) are arranged symmetrically from top to bottom; the mounting plate (2) on the water inlet chamber (1) is arranged in contact with the first support plate (11), the mounting base (3) on the bottom wall of the radiator core (4) is arranged in contact with the second support plate (12), and the mounting plate (2) on the water outlet chamber (5) is arranged in contact with the third support plate (13); it also includes: A baffle (9), wherein the baffle (9) is fixedly mounted on the inner bottom wall of the bottom plate (18), the baffle (9) is disposed between the left and right No. 1 support plates (11), and the rear side walls of the mounting plate (2) and the mounting base (3) are both disposed in contact with the front side wall of the baffle (9); A No. 1 guide plate (23), wherein the No. 1 guide plate (23) is fixedly disposed between the inner side walls of the left fixed plate (6) and the right fixed plate (25), and the No. 1 guide plate (23) is fixedly disposed on the front side wall of the baffle (9); A right splint (15), wherein the right splint (15) is fixed to the left side wall of the right fixed plate (25) by using a plurality of fixing columns (26), and the right splint (15) is fixedly sleeved on the first guide plate (23); A mounting base alignment mechanism (16) is provided at the middle portion of the left inner wall of the left fixed plate (6), and the mounting base alignment mechanism (16) is aligned with the right clamping plate (15) in the left and right directions; placement grooves (31) are symmetrically provided in the right clamping plate (15) and the mounting base alignment mechanism (16); A mounting plate alignment mechanism (19), wherein the mounting plate alignment mechanism (19) is fixedly arranged on the inner side wall of the placement groove (31); A number one electric telescopic rod (7), wherein the number one electric telescopic rod (7) is a plurality of the number one electric telescopic rods (7) and is respectively fixedly arranged on the upper and lower inner side walls of the left fixed plate (6), and the number one electric telescopic rod (7) is connected to an external power supply via a wire; An electric clamp (8), wherein the electric clamp (8) is fixedly mounted on the inner end of the first electric telescopic rod (7), the electric clamp (8) is intermittently in contact with the outer wall of the mounting plate (2), and the electric clamp (8) is connected to an external power source via a wire; First, the water inlet chamber (1), the radiator core (4) and the water outlet chamber (5) are placed on the No. 1 support plate (11), the No. 2 support plate (12) and the No. 3 support plate (13) respectively, and are all placed close to the baffle (9). The radiator core (4) is clamped in position by the cooperation of the right clamping plate (15) and the mounting base alignment mechanism (16). The water inlet chamber (1) and the water outlet chamber (5) are positioned by the mounting plate alignment mechanism (16) so that the water inlet chamber (1), the water outlet chamber (5) and the radiator core (4) are aligned up and down. The water inlet chamber (1) and the water outlet chamber (5) are accurately mounted on the radiator core (4) by the No. 1 electric telescopic rod (7) and the electric clamp (8).

2. A new energy vehicle radiator water chamber installation mechanism according to claim 1, characterized in that: The No. 1 support plate (11), the No. 2 support plate (12) and the No. 3 support plate (13) are all fixedly arranged on the inner side wall of the connecting plate (14), a movable groove (29) is opened through the connecting plate (14), and the No. 1 motor (16-4) is intermittently movable through the movable groove (29). A handle (17) is fixedly arranged on the outer side wall of the connecting plate (14), and the handle (17) is located below the movable groove (29).

3. The radiator water chamber installation mechanism for a new energy vehicle according to claim 1, characterized in that: A scale plate (10) is fixedly provided on the right side wall of the baffle (9).

4. The radiator water chamber installation mechanism for a new energy vehicle according to claim 1, characterized in that: An anti-slip pad (30) is fixedly provided on the left side wall of the right splint (15).

5. The radiator water chamber installation mechanism for a new energy vehicle according to claim 1, characterized in that: The mounting base alignment mechanism (16) comprises: A No. 1 motor (16-4), wherein the No. 1 motor (16-4) is fixedly arranged on the left side wall of the left fixed plate (6), and its output end passes through the left side wall of the left fixed plate (6) and is connected to the No. 1 screw rod (16-2), the threaded tube (16-3) is rotationally connected to the No. 1 screw rod (16-2) through a thread, and the No. 1 motor (16-4) is externally connected to a power supply through a wire; A left clamping plate (16-1) is fixedly arranged at the right end of the threaded tube (16-3), and the left clamping plate (16-1) is movably sleeved on the first guide plate (23), and the right side wall of the left clamping plate (16-1) is intermittently abutted against the radiator core (4); the right clamping plate (15) and the left clamping plate (16-1) are arranged in left-right alignment, and the right clamping plate (15) and the left clamping plate (16-1) are both arranged between the first support plate (11) and the second support plate (12); and a placement groove (31) is opened in the left clamping plate (16-1).

6. The radiator water chamber installation mechanism for a new energy vehicle according to claim 1, characterized in that: A plurality of electromagnets (20) are fixedly provided on the middle inner wall of the No. 2 support plate (12), an auxiliary support plate (32) is intermittently provided in the No. 2 support plate (12), and the auxiliary support plate (32) and the electromagnet (20) are intermittently magnetically attracted; a connecting block (27) is fixedly provided at the bottom end of the outer wall of the auxiliary support plate (32), a No. 2 screw rod (21) is rotatably passed through the connecting block (27) by a thread, a stopper (22) is fixedly provided at the lower end of the No. 2 screw rod (21), and the upper end of the No. 2 screw rod (21) is rotatably provided in the bottom wall of the No. 2 support plate (12) through a bearing.

7. The radiator water chamber installation mechanism for a new energy vehicle according to claim 6, characterized in that: A hand screw (28) is fixedly provided on the bottom wall of the stopper (22).

8. The radiator water chamber installation mechanism for a new energy vehicle according to claim 6, characterized in that: A second guide plate (24) is fixedly provided on the middle inner side wall of the second support plate (12), and the electromagnet (20) is symmetrically arranged on the front and rear sides of the second guide plate (24). The second guide plate (24) and the electromagnet (20) are fixedly connected. The second guide plate (24) is intermittently movable and penetrates the auxiliary support plate (32). The electromagnet (20) is connected to an external power supply through a wire.

9. The radiator water chamber installation mechanism for a new energy vehicle according to claim 1, characterized in that: The mounting plate alignment mechanism (19) comprises: A second electric telescopic rod (19-1), wherein the second electric telescopic rod (19-1) is a plurality of rods and is fixedly arranged on the inner wall of the placement slot (31), and the second electric telescopic rod (19-1) is connected to an external power supply via a wire; A limit plate (19-2) is fixedly arranged on the outer end of the second electric telescopic rod (19-1), and the limit plate (19-2) is movably arranged in the placement groove (31), and the limit plate (19-2) is intermittently movably arranged on the left and right sides of the installation plate (2).

Citation Information

Patent Citations

  • Self-adaptive positioning and clamping device

    CN113500545A

  • AU6186686A