Manual intubation reworking tool
By designing manual intubation rework tooling, the problem that existing tooling is difficult to adapt to water-cooled plates of different sizes is solved, and the adaptation to cannula rework of water-cooled plates of different sizes and cannulas of different types is achieved, enhancing the practicality of tooling and reducing costs.
Patent Information
- Application Number
- CN202421870320.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-08-05
AI Technical Summary
The existing reworking workpieces are difficult to meet the rework needs of manual intubation of water-cooled plates of different sizes.
A manual cannulation rework tool is designed, including installation platform, two-fold plate, linear moving module, jaw assembly and fixture substrate. By adjusting the range of action of the jaw assembly and fixture substrate, it can be compatible with water-cooled plates of different sizes, and by adjusting the spacing between the fixed jaw and sliding jaws of the jaw assembly, it can adapt to different models of cannulas.
Reworking of cannulas of different sizes of water-cooled plates has been achieved, which enhances the practical scope of the tooling and reduces manufacturing costs.
Smart Images

Figure CN222958482U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of water-cooled plate processing, in particular to a manual pipe inserting rework tooling. Background Technique
[0002] In the field of new energy electric vehicles, each cooling plate needs to be connected to form a cooling channel and a support system. Therefore, water pipes are arranged at both ends of the cooling plate along its length direction, and a supply sleeve needs to be sleeved on the water pipe to facilitate the connection between each cooling plate.
[0003] When installing the above-mentioned water-cooled plate sleeve, defective products are inevitable in the flow operation and need to be manually reworked. However, the existing rework tooling is difficult to meet the rework requirements of manual pipe inserting for water-cooled plates of different sizes. Content of the Utility Model
[0004] To solve the above technical problems, the utility model provides a manual pipe inserting rework tooling, which can compatibly realize the pipe inserting rework process for water-cooled plates of different sizes.
[0005] The technical solution of the utility model is as follows:
[0006] A manual pipe inserting rework tooling, which includes an installation platform, and two vertical plates are relatively arranged on the installation platform. One of the vertical plates is slidably connected to the installation platform in a direction close to or away from the other vertical plate;
[0007] On each vertical plate, a linear motion module is arranged along a direction perpendicular to the installation platform. A clamping jaw assembly is connected to each linear motion module, and a buffer elastic member for resetting is arranged on each clamping jaw assembly;
[0008] On the installation platform along its length direction, a fixture substrate is arranged, and the fixture substrate is located below each clamping jaw assembly; each clamping jaw assembly is driven by its corresponding linear motion module to move in a direction close to or away from the fixture substrate.
[0009] Further, each clamping jaw assembly includes:
[0010] A transverse connecting plate, which is fixedly connected with a sliding seat, and the sliding seat is slidably connected to the linear motion module;
[0011] On the lower surface of each transverse connecting plate facing the installation platform, a first guide rail is arranged along the length direction of the fixture substrate. Each fixed clamping jaw is fixedly arranged on the lower surface of the transverse connecting plate facing the installation platform. Each sliding clamping jaw is slidably connected to the first guide rail, and each sliding clamping jaw moves close to or away from the fixed clamping jaw along the first guide rail;
[0012] A stop member is further arranged on the sliding clamping jaw.
[0013] Further, on each of the sliding jaws, a pressing support bar is slidably connected in a direction perpendicular to the fixture substrate.
[0014] Further, on each of the vertical plates, at least one support rod is provided along the direction of its height extension. One end of each buffer elastic member is connected to the support rod, and the other end is connected to its corresponding sliding seat.
[0015] Further, the linear movement module includes a linear guide rail, a serrated guide rail, and a gear link mechanism;
[0016] Each of the linear guide rails is disposed on each vertical plate in a direction perpendicular to the fixture substrate;
[0017] One side of each serrated guide rail is provided with a serrated surface, and each serrated guide rail is connected to each sliding seat;
[0018] One side of each sliding seat connected to the serrated guide rail is connected to the linear guide rail;
[0019] Each gear link mechanism is disposed on each vertical plate, and its driving end meshes with the serrated surface.
[0020] Further, on each vertical plate, and located at the top and bottom of each linear guide rail, a limit block is provided respectively.
[0021] Further, on the installation platform, at least one second fixture plate is slidably connected along the length extension direction of the fixture substrate.
[0022] Further, on one end of the fixture substrate along its length direction, a water pipe positioning seat is provided. A water pipe positioning seat is slidably connected to one end of each second fixture plate away from the fixture substrate.
[0023] Further, the installation platform is disposed on a moving frame body.
[0024] The beneficial technical effects of the present utility model are as follows: The present utility model provides a manual intubation rework tooling. The working ranges of its two jaw assemblies and the fixture substrate for placing the water-cooled plate can both be adjusted according to the length of the water-cooled plate, so as to be compatible with water-cooled plates of different sizes for intubation rework procedures; in addition, since the distance between the fixed jaw and the sliding jaw in each jaw assembly of the present utility model can also be adjusted according to the diameter size of the intubation, it can be compatible with clamping or pulling out intubations of different models, further enhancing the practical range of the present utility model and reducing the manufacturing cost. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is the overall assembly schematic diagram of the present utility model;
[0026] Figure 2 is the rear view of the present utility model;
[0027] Figure 3 is a schematic view of another angle of the present utility model;
[0028] Figure 4 is a schematic view of the vertical plate and the jaw assembly of the present utility model;
[0029] Figure 5 is a schematic view of the vertical plate of the present utility model;
[0030] Figure 6 is a schematic view of the jaw assembly of the present utility model.
[0031] Wherein:
[0032] 100 - mounting platform, 101 - support rod, 102 - limiting member, 103 - moving frame body, 104 - vertical plate guide rail, 105 - vertical plate sliding plate; 200 - vertical plate, 201 - strip groove, 202 - first fixing plate, 203 - second fixing plate;
[0033] 401 - sliding seat, 402 - linear guide rail, 403 - serrated guide rail, 4031 - serrated surface, 404 - gear link mechanism, 4041 - driving wheel, 4042 - driven wheel, 4043 - link rotating shaft, 4044 - follower strip, 4045 - stop rod, 4046 - manual rocker;
[0034] 500 - jaw assembly, 501 - cross connecting plate, 5021 - fixed jaw, 5022 - sliding jaw, 503 - stop member, 504 - first guide rail; 600 - stop elastic member, 601 - buffer elastic member;
[0035] 700 - fixture substrate, 701 - second fixture plate, 702 - water pipe positioning seat, 704 - elastic side pressing member; 800 - downward pressing support bar, 801 - insertion tube, 802 - water cooling plate, 8021 - water pipe. Specific embodiments
[0036] In order to be able to more clearly understand the technical means of the present utility model and implement it in accordance with the content of the specification, the following combines the drawings and embodiments to further describe in detail the specific embodiments of the present utility model. The following embodiments are used to illustrate the present utility model but are not used to limit the scope of the present utility model.
[0037] As Figures 1-6 shown, the present utility model provides a manual insertion tube rework tooling for installing or extracting the insertion tube 801 on the water cooling plate 802. The water cooling plate 802 of the present utility model is provided with water pipes 8021 at both top ends along its length direction. The present utility model is used to sleeved the insertion tube 801 on the water pipe 8021, or extract the defective insertion tube 801 on the water pipe 8021.
[0038] It includes an installation platform 100, and two vertical plate guide rails 104 are oppositely arranged along its length direction. A vertical plate 200 is fixedly connected to the installation platform 100, and the other vertical plate 200 is slidably connected to the vertical plate guide rail 104 through a vertical plate slide plate 105. A stop member 503 is also provided on the vertical plate slide plate 105.
[0039] Preferably, the utility model is provided with two vertical plate guide rails 104, and the two vertical plate guide rails 104 are arranged in parallel side by side. The vertical plate slide plate 105 is slidably connected to the two vertical plate guide rails 104, so that the parts on the vertical plate slide plate 105 run more smoothly.
[0040] On each vertical plate 200, a linear motion module is respectively provided along the direction perpendicular to the installation platform 100, and a clamping jaw assembly 500 is connected to each linear motion module.
[0041] Each linear motion module includes two linear guide rails 402, a serrated guide rail 403 and a gear link mechanism 404, and each serrated guide rail 403 includes a serrated surface 4031.
[0042] The two linear guide rails 402 are arranged in parallel side by side along the direction perpendicular to the installation platform 100 on each vertical plate 200. On each vertical plate 200, a strip-shaped groove 201 is provided parallel to the linear guide rail 402.
[0043] A sliding seat 401 is slidably connected to each linear guide rail 402, and each serrated guide rail 403 is fixedly arranged on the surface of the sliding seat 401. Its serrated surface 4031 faces the strip-shaped groove 201, and one end of it is placed on the strip-shaped groove 201.
[0044] The gear link mechanism 404 includes a driving wheel 4041, a driven wheel 4042, a link rotating shaft 4043, a follower strip 4044, a stop rod 4045, a manual rocker 4046 and an elastic member 600, and tooth grooves are provided on the circumferential surfaces of both the driving wheel 4041 and the driven wheel 4042.
[0045] On the back surface of each vertical plate 200, a first fixing plate 202 and a second fixing plate 203 are respectively fixed on both sides of the strip-shaped groove 201. One end of the link rotating shaft 4043 is connected to the first fixing plate 202, and the other end of it passes through the second fixing plate 203; the driving wheel 4041 is sleeved on the link rotating shaft 4043 and is located between the first fixing plate and the second fixing plate. A part of the circumferential surface of the driving wheel 4041 passes through the strip-shaped groove 201 and then meshes with the serrated surface 4031; the driven wheel 4042 is sleeved on the link rotating shaft 4043 and is located outside the second fixing plate 203; in order to facilitate the rotation of the link rotating shaft 4043, one end of the link rotating shaft 4043 located outside the second fixing plate 203 is vertically connected with a manual rocker 4046.
[0046] The end of the follower card strip 4044 has a serrated portion that mates with the tooth groove. One end of it is fixedly arranged on the outer side surface of the second fixed plate 203, and the serrated portion at the other end is in contact with the driven wheel 4042; the stop rod 4045 is fixedly arranged on the outer side surface of the second fixed plate 203 and is located below the driven wheel 4042; one end of the stop elastic member 600 is connected to the follower card strip 4044, and the other end is a free end.
[0047] The stop elastic member 600 of the present utility model is a spring.
[0048] Each jaw assembly 500 includes a transverse connecting plate 501, a fixed jaw 5021 and a sliding jaw 5022 oppositely arranged on the transverse connecting plate 501, and a stop member 503.
[0049] One side of each transverse connecting plate 501 is connected to the sliding seat 401. On the lower surface of each transverse connecting plate 501 facing the installation platform 100, a first guide rail 504 is arranged along the length direction of the installation platform 100. Each fixed jaw 5021 is fixedly arranged on the transverse connecting plate 501, and each sliding jaw 5022 is slidably connected to the first guide rail 504 through a slider. Each transverse connecting plate 501 is also provided with a stop member 503. The fixed end of the stop member 503 is connected to the transverse connecting plate 501, and its stop end is connected to the sliding jaw 5022. When the sliding jaw 5022 moves to a preset position, the stop member is tightened to prevent the sliding jaw 5022 from sliding. In the present utility model, the stop member 503 is a quick-release wrench.
[0050] Both the end of the sliding jaw 5022 and the end of the fixed jaw 5021 are provided with cannula card seats. The sliding jaw 5022 moves along the first guide rail 504 towards or away from the fixed jaw 5021 to realize the clamping or removal of the cannula 801. At the same time, by adjusting the distance between the sliding jaw 5022 and the fixed jaw 5021, the clamping or removal of cannulas 801 with different diameter sizes is realized.
[0051] On the outer side surface of each sliding jaw 5022 facing away from the fixed jaw 5021, a pressing support bar 800 is slidably clamped along a direction perpendicular to the installation platform 100. Each pressing support bar 800 includes a fixed block. One end of a compression spring is connected to the fixed block, and the other end is connected to a pressing portion. The fixed block of the pressing support bar 800 is slidably clamped on the sliding jaw 5022, and its pressing portion is used to abut against the surface of the water-cooled plate 802.
[0052] At the top of each vertical plate 200, two support rods 101 are connected in parallel at intervals. One end of the buffer elastic member 601 is connected to the top of the support rod 101, and the other end is connected to the sliding seat 401. The buffer elastic member 601 provides a downward resistance during the descent of the jaw assembly 500 to stabilize the descent process. During the ascent of the jaw assembly 500, it drives its reset by using its elastic deformation force. In the present utility model, the buffer elastic member 601 is a spring.
[0053] So far, when manually pressing down the manual rocker 4046, the connecting rod rotating shaft 4043 drives the driving wheel 4041 and the driven wheel 4042 to rotate. At the same time, the driving wheel 4041 drives the sliding seat 401 and the jaw assembly 500 to move downward synchronously through the serrated guide rail 403 engaged therewith. After moving to above the fixture substrate 700 described below, the free end of the stop elastic member 600 is hooked to the stop rod 4045. At this time, the serrated portion of the follower bar 4044 is engaged in the tooth groove of the driven wheel 4042, so as to realize the stop of the jaw assembly 500, and perform the operation of installing or extracting the insertion tube 801. After completing the operation of installing or extracting the insertion tube 801, when manually rocking up the manual rocker 4046, the sliding seat 401 and the jaw assembly 500 also rise synchronously.
[0054] On each vertical plate, a limit block 102 is provided at the top and bottom of the linear guide rail 402 to prevent the jaw assembly 500 from derailing.
[0055] On the installation platform 100, a fixture substrate 700 is erected on one side parallel to the vertical plate 200, and the upper surface of the fixture substrate 700 is located below the jaw assembly 500.
[0056] Preferably, on both sides of the fixture substrate 700 along its length direction, a side baffle and an elastic side pressing member 704 are oppositely provided.
[0057] The water-cooled plate 802 to be installed or extracted with the insertion tube 801 is placed on the fixture substrate 700 and located between the side baffle and the elastic side pressing member 704, and the elastic side pressing member 704 clamps the water-cooled plate 802 on the fixture substrate 700.
[0058] On the installation platform 100, along the length extension direction of the fixture substrate 700, two parallel second guide rails are provided parallel to the vertical plate guide rail 104, and the second fixture plate 701 is slidably connected to one of the second guide rails through a slider to be compatible with water-cooled plates 802 of different lengths.
[0059] Preferably, on the fixture substrate 700, a water pipe positioning seat 702 is fixedly connected to one end along its length direction and away from the second fixture substrate 701. A water pipe positioning seat 702 is slidably connected to one end of the second fixture plate 701 away from the fixture substrate 700. The water pipe positioning seat 702 is slidably connected to the other second guide rail through a slider. Each water pipe positioning seat 702 has a bayonet for clamping the water pipe 8021 at the top end of the water-cooled plate. When the water-cooled plate 802 is placed on the fixture substrate and the second fixture plate, the water pipes 8021 at its two top ends are respectively located on the water pipe positioning seat 702 on the fixture substrate 700 and the water pipe positioning seat 702 on the second guide rail.
[0060] Preferably, for the convenience of moving the installation platform 100, the installation platform 100 of the present utility model is arranged on a movable frame body 103.
[0061] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. A manual intubation rework tool, characterized in that: It comprises a mounting platform (100), on which two vertical plates (200) are arranged opposite to each other, wherein one of the vertical plates (200) is slidably connected to the mounting platform (100) in a direction approaching or moving away from the other vertical plate (200); On each of the vertical plates (200), a linear moving module is provided in a direction perpendicular to the mounting platform (100), each linear moving module is connected to a clamping jaw assembly (500), and each clamping jaw assembly (500) is provided with a buffer elastic member (601) for resetting the clamping jaw assembly; The mounting platform (100) is provided with a fixture substrate (700) along its length direction, and the fixture substrate (700) is located below each of the clamping jaw assemblies (500); each of the clamping jaw assemblies (500) is driven by its corresponding linear motion module to move toward or away from the fixture substrate (700).
2. The manual intubation rework tool according to claim 1, characterized in that: Each of the clamping jaw assemblies (500) comprises: A transverse connecting plate (501) is fixedly connected to a sliding seat (401), and the sliding seat (401) is slidably connected to the linear moving module; A first guide rail (504) is provided on the lower surface of each of the cross-connecting plates (501) facing the mounting platform (100) along the length direction of the fixture base plate (700); each fixed clamping jaw (5021) is fixedly provided on the lower surface of the cross-connecting plate (501) facing the mounting platform (100); each sliding clamping jaw (5022) is slidably connected to the first guide rail (504); each sliding clamping jaw (5022) moves closer to or away from the fixed clamping jaw (5021) along the first guide rail (504); The sliding clamp (5022) is also provided with a stopper (503).
3. The manual intubation rework tool according to claim 2, characterized in that: Each of the sliding clamps (5022) is slidably connected to a pressing support bar (800) in a direction perpendicular to the fixture base plate (700).
4. The manual intubation rework tool according to claim 2, characterized in that: At least one support rod (101) is provided on each of the vertical plates (200) along the direction in which the vertical plates extend in height. One end of each of the buffer elastic members (601) is connected to the support rod (101), and the other end is connected to the corresponding sliding seat (401).
5. The manual intubation rework tool according to claim 2, characterized in that: The linear motion module comprises a linear guide rail (402), a sawtooth guide rail (403) and a gear connecting rod mechanism (404); Each of the linear guide rails (402) is disposed on each vertical plate (200) along a direction perpendicular to the fixture base plate (700); A serrated surface (4031) is provided on one side of each of the sawtooth guide rails (403), and each of the sawtooth guide rails (403) is connected to each of the sliding seats (401); A side surface of each sliding seat (401) connected to the sawtooth guide rail (403) is connected to the linear guide rail (402); Each gear linkage mechanism (404) is disposed on each vertical plate, and its driving end is meshed with the sawtooth surface (4031).
6. The manual intubation rework tool according to claim 5, characterized in that: A limit block (102) is provided on each vertical plate (200) and at the top and bottom of each linear guide rail (402).
7. The manual intubation rework tool according to claim 1, characterized in that: At least one second fixture plate (701) is slidably connected to the installation platform (100) along the length extension direction of the fixture base plate (700).
8. The manual intubation rework tool according to claim 7, characterized in that: A water pipe positioning seat (702) is provided on the jig base plate (700) at one end along its length direction, and one end of each of the second jig plates (701) away from the jig base plate (700) is slidably connected to the water pipe positioning seat (702).
9. The manual intubation rework tool according to claim 1, characterized in that: The installation platform (100) is arranged on a movable frame (103).