CN216576505U - Radiator and casing connecting tool - Google Patents

Radiator and casing connecting tool Download PDF

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Publication number
CN216576505U
CN216576505U CN202122641094.9U CN202122641094U CN216576505U CN 216576505 U CN216576505 U CN 216576505U CN 202122641094 U CN202122641094 U CN 202122641094U CN 216576505 U CN216576505 U CN 216576505U
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China
Prior art keywords
radiator
unit
pressing
driving
sliding
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Active
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CN202122641094.9U
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Chinese (zh)
Inventor
谭竣文
周华国
廖建勇
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Shenzhen Honest Mechatronic Equipment Co Ltd
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Shenzhen Honest Mechatronic Equipment Co Ltd
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Abstract

The utility model relates to a connecting tool for a radiator and a casing, which comprises a pressing component for pressing the casing and the radiator, a lining feeding component for grabbing a lining and loading the lining into the radiator, and a screw driving component for driving screws in the lining to lock the radiator and the casing; the bushing feeding assembly comprises a clamping unit, a rotating unit driving the clamping unit to rotate and a three-phase moving unit driving the rotating unit to move; the pressing component comprises a machine shell pressing unit for pressing the machine shell and a radiator pressing unit for pressing the radiator; the screwing component comprises a screwing unit and a moving unit for driving the screwing unit to move; when the machine is processed, the machine shell is pressed and held by the machine shell pressing and holding unit, the aligned radiator on the machine shell is pressed and held by the radiator pressing and holding unit, then the bushing feeding assembly feeds the bushing and inserts into the mounting hole on the radiator, and the screw driving unit is driven by the moving unit to move to the screw driving position to drive the screw to drive the bushing, so that the automation degree is high, and the processing efficiency is high.

Description

Radiator and casing connecting tool
Technical Field
The utility model relates to the technical field of radiator installation, in particular to a connecting tool for a radiator and a machine shell.
Background
On the present production line, the procedure of installing the radiator on the casing mostly adopts the mode of manually screwing screws, the labor intensity of workers is high, the cost is high, and the consistency of products is poor.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem of providing a connecting tool for a radiator and a shell, aiming at the defects in the prior art.
The technical scheme adopted by the utility model for solving the technical problems is as follows:
constructing a connecting tool for a radiator and a shell, wherein the connecting tool comprises a pressing component for pressing and holding the shell and the radiator, a lining feeding component for grabbing a lining and loading the lining into the radiator, and a screwing component for screwing a screw in the lining to lock the radiator and the shell; the bushing feeding assembly comprises a clamping unit, a rotating unit driving the clamping unit to rotate and a three-phase moving unit driving the rotating unit to move; the pressing component comprises a machine shell pressing unit for pressing the machine shell and a radiator pressing unit for pressing the radiator; the screwing component comprises a screwing unit and a moving unit for driving the screwing unit to move.
The radiator and shell connecting tool comprises a clamping unit, a positioning unit and a control unit, wherein the clamping unit comprises a pneumatic clamping jaw, a sliding table cylinder driving the pneumatic clamping jaw to lift and a positioning assembly; the clamping end of the pneumatic clamping jaw is arranged downwards, and the positioning assembly comprises a positioning fork and an elastic piece for providing longitudinal resilience force for the positioning fork; the locating fork and the clamping end of the pneumatic clamping jaw are arranged side by side, a locating groove is formed in the lower end of the locating fork, and the locating groove corresponds to a middle gap between the two clamping arms of the pneumatic clamping jaw when the two clamping arms are opened.
The radiator and shell connecting tool is characterized in that the movable end of the sliding table cylinder is connected with the pneumatic clamping jaw through a connecting plate; the slip table cylinder, pneumatic clamping jaw and location fork all are located same one side of connecting plate.
The radiator and casing connecting tool comprises a positioning assembly, a positioning fork and an elastic piece, wherein the positioning assembly comprises a guide sleeve sleeved on the positioning fork, a supporting rod is arranged at the upper end of the positioning fork, the elastic piece is a spring, one end of the spring is connected with the supporting rod, and the other end of the spring is connected with the guide sleeve.
The radiator and shell connecting tool is characterized in that the supporting rods and the springs form a group of units, and the units are provided with two groups and are respectively positioned on two sides of the positioning fork.
The radiator and casing connecting tool comprises a base, wherein a track plate is arranged on the base, profiling edges are arranged on two opposite edges of the track plate, and a sliding plate, a sliding block and a driving mechanism for driving the sliding block to move are arranged on the track plate; the sliding plate is provided with at least two travelling wheels which are correspondingly attached to the profiling edges respectively and a sliding groove which is connected with the sliding block in a sliding manner; the direction of the driving mechanism driving the sliding block to move is vertical to the sliding direction of the sliding block relative to the sliding groove; and the sliding plate is provided with a transverse moving component for driving the screwing unit to transversely move.
The radiator and the shell connecting tool are characterized in that a positioning groove for positioning the sliding block in a sliding manner is formed in the track plate; the positioning groove is a through groove, the sliding block penetrates through the through groove, and the driving mechanism is positioned below the track plate; the upper end of the sliding block is matched with the sliding groove, and the lower end of the sliding block is connected with the driving mechanism.
The utility model has the beneficial effects that: when the machine is processed, the machine shell is pressed and held by the machine shell pressing and holding unit, the heat radiator which is aligned to the good position on the machine shell is pressed and held by the heat radiator pressing and holding unit, then the bushing feeding assembly feeds the bushing and inserts into the mounting hole on the heat radiator, and the screw beating unit is driven by the moving unit to move to the screw beating position to beat the screw on the bushing.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the present invention will be further described with reference to the accompanying drawings and embodiments, wherein the drawings in the following description are only part of the embodiments of the present invention, and for those skilled in the art, other drawings can be obtained without inventive efforts according to the accompanying drawings:
FIG. 1 is a top view of the orientation distribution of the pressing assembly, the bushing loading assembly and the screwing assembly of the heat sink and the enclosure connecting tool in the preferred embodiment of the present invention;
FIG. 2 is a schematic view of another angular orientation distribution of the pressing and holding assembly, the bushing loading assembly and the screwing assembly of the heat sink and the housing connecting tool according to the preferred embodiment of the present invention;
FIG. 3 is a schematic structural view of a bushing loading assembly of a heat sink and housing connection tooling in accordance with a preferred embodiment of the present invention;
FIG. 4 is a schematic structural view of a screw assembly of a heat sink and housing connection tool according to a preferred embodiment of the present invention;
fig. 5 is a top view of the assembly of the sliding plate, the track plate and the base of the connecting tool for the heat sink and the housing according to the preferred embodiment of the utility model.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention, and it is obvious that the described embodiments are some embodiments of the present invention, but not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments of the present invention without inventive step, are within the scope of the present invention.
The connecting tool for the radiator and the shell of the preferred embodiment of the utility model is shown in figure 1, and also refers to figures 2-5, and comprises a pressing component 1 for pressing the shell and the radiator, a lining feeding component 2 for grabbing a lining and loading the lining into the radiator, and a screwing component 3 for screwing the lining to lock the radiator and the shell; the bushing loading assembly 2 comprises a clamping unit 20, a rotating unit 21 driving the clamping unit 20 to rotate, and a three-phase moving unit (not shown in the figure) driving the rotating unit 21 to move; the pressing component 1 comprises a machine shell pressing unit 10 for pressing the machine shell and a radiator pressing unit 11 for pressing the radiator; the screwing component 3 comprises a screwing unit 30 and a moving unit 31 driving the screwing unit to move;
when the machine is processed, the machine shell is pressed and held by the machine shell pressing and holding unit 10, the aligned radiator on the machine shell is pressed and held by the radiator pressing and holding unit 11, then the bushing feeding component 2 feeds the bushing and inserts into the mounting hole on the radiator, and the screw driving unit 30 is driven by the moving unit 31 to move to the screw driving position to drive the screw to drive the bushing, so that the automation degree is high, the integrity is good, the processing efficiency is high, and the product consistency is good.
Preferably, the clamping unit 20 comprises a pneumatic clamping jaw 200, a sliding table cylinder 201 driving the pneumatic clamping jaw 200 to ascend and descend, and a positioning assembly 202; the clamping end of the pneumatic clamping jaw 200 is arranged downwards, and the positioning assembly 202 comprises a positioning fork 2020 and an elastic piece 2021 for providing longitudinal resilience for the positioning fork 2020; the positioning fork 2020 is arranged side by side with the clamping end of the pneumatic clamping jaw 200, the lower end of the positioning fork 200 is provided with a positioning groove corresponding to a middle gap when the two clamping arms of the pneumatic clamping jaw 200 are opened;
when materials are taken, the sliding table air cylinder 201 drives the pneumatic clamping jaw to firstly move downwards for a certain distance, the three-phase moving unit drives the clamping unit to move downwards, the lower end of the positioning fork 2020 firstly contacts the positioning pin 4 on the feeding device for positioning, then the downward elastic part is continuously deformed, the pneumatic clamping jaw clamps the materials after reaching the clamping position, then the pneumatic clamping jaw resets respectively to complete the clamping action, the rotating unit drives the clamping unit to rotate to adjust the angle, and the operation of inserting the bush into the mounting hole of the radiator is carried out under the driving of the three-phase moving unit.
Preferably, the movable end of the sliding table cylinder 201 is connected with the pneumatic clamping jaw 200 through a connecting plate 203; the sliding table cylinder 201, the pneumatic clamping jaw 200 and the positioning fork 2020 are positioned on the same side of the connecting plate 203; the structure is reasonable and compact, and the occupied space is small.
Preferably, the positioning assembly 202 includes a guide sleeve 2022 sleeved on the positioning fork 2020, a supporting rod 2023 is disposed at the upper end of the positioning fork 2020, the elastic element 2021 is a spring, one end of the spring is connected to the supporting rod 2023, and the other end of the spring is connected to the guide sleeve 2022; the structure is reasonable and compact, and the occupied space is small;
preferably, the strut 2023 and the spring form a set of units, and the set of units is provided with two sets and is respectively positioned at two sides of the positioning fork 2020; the balance of atress is convenient for ensure, because of the dead circumstances of card appears in the lateral force when preventing that locating fork 2020 from sliding.
Preferably, the moving unit 31 includes a base 310, a track plate 311 is disposed on the base 310, two opposite edges of the track plate 311 are respectively provided with a profile edge 3110, and a sliding plate 312, a slider 313 and a driving mechanism 314 for driving the slider to move are disposed on the track plate 311; the sliding plate 312 is provided with at least two travelling wheels 3120 which are correspondingly attached to the profiling edges respectively, and a sliding groove 3121 which is connected with the sliding block in a sliding manner; the direction in which the driving mechanism 314 drives the slider 313 to move is perpendicular to the direction in which the slider 313 slides relative to the sliding groove 3121; the sliding plate 312 is provided with a traverse component 315 for driving the screwing unit 30 to traverse;
during operation, rely on actuating mechanism 314 drive slider 313 to remove, slider 313 acts on and then drives sliding plate 312 and removes at sliding tray 3121 inner wall, and walking wheel 3120 cooperates with profile modeling limit 3110 and carries out the adjustment to sliding plate 312 moving direction, reaches the profile modeling effect to make single the position of beating the screw that needs that a plurality of arcs distribute can be carried out to beat screw unit 30 and beat the screw operation, saving equipment cost, also save space simultaneously.
Preferably, the track plate 311 is provided with a positioning groove 3111 for slidably positioning the slider; the positioning groove 3111 is a through groove, the slider 313 is inserted into the through groove, and the driving mechanism 314 is located below the track plate 311; the upper end of the sliding block 313 is matched with the sliding groove 3121, and the lower end of the sliding block 313 is connected with the driving mechanism 314; the structure is reasonable and compact, and the volume is small;
furthermore, a groove corresponding to the positioning groove can be formed in the base, and the driving mechanism is arranged in the base to guarantee integrity.
It will be understood that modifications and variations can be made by persons skilled in the art in light of the above teachings and all such modifications and variations are intended to be included within the scope of the utility model as defined in the appended claims.

Claims (7)

1. A radiator and casing connecting tool is characterized by comprising a pressing component for pressing and holding a casing and a radiator, a lining feeding component for grabbing a lining and loading the lining into the radiator, and a screwing component for screwing a screw in the lining to lock the radiator and the casing; the bushing feeding assembly comprises a clamping unit, a rotating unit driving the clamping unit to rotate and a three-phase moving unit driving the rotating unit to move; the pressing component comprises a machine shell pressing unit for pressing the machine shell and a radiator pressing unit for pressing the radiator; the screwing component comprises a screwing unit and a moving unit for driving the screwing unit to move.
2. The tool for connecting the radiator and the shell as claimed in claim 1, wherein the clamping unit comprises a pneumatic clamping jaw, a sliding table cylinder for driving the pneumatic clamping jaw to lift and a positioning assembly; the clamping end of the pneumatic clamping jaw is arranged downwards, and the positioning assembly comprises a positioning fork and an elastic piece for providing longitudinal resilience force for the positioning fork; the locating fork and the clamping end of the pneumatic clamping jaw are arranged side by side, a locating groove is formed in the lower end of the locating fork, and the locating groove corresponds to a middle gap between the two clamping arms of the pneumatic clamping jaw when the two clamping arms are opened.
3. The tool for connecting the radiator and the shell as claimed in claim 2, wherein the movable end of the sliding table cylinder is connected with the pneumatic clamping jaw through a connecting plate; the slip table cylinder, pneumatic clamping jaw and location fork all are located same one side of connecting plate.
4. The tool for connecting the radiator and the casing according to claim 2, wherein the positioning assembly comprises a guide sleeve sleeved on the positioning fork, a support rod is arranged at the upper end of the positioning fork, the elastic part is a spring, one end of the spring is connected with the support rod, and the other end of the spring is connected with the guide sleeve.
5. The tool for connecting the heat radiator and the machine shell as claimed in claim 4, wherein the support rod and the spring form a group of units, and the units are provided with two groups and are respectively positioned at two sides of the positioning fork.
6. The tool for connecting the radiator and the shell according to any one of claims 1 to 5, wherein the moving unit comprises a base, a track plate is arranged on the base, profiling edges are arranged on two opposite edges of the track plate, and a sliding plate, a sliding block and a driving mechanism for driving the sliding block to move are arranged on the track plate; the sliding plate is provided with at least two travelling wheels which are correspondingly attached to the profiling edges respectively and a sliding groove which is connected with the sliding block in a sliding manner; the direction of the driving mechanism driving the sliding block to move is vertical to the sliding direction of the sliding block relative to the sliding groove; and the sliding plate is provided with a transverse moving component for driving the screwing unit to transversely move.
7. The tool for connecting the radiator and the casing as claimed in claim 6, wherein the track plate is provided with a positioning groove for positioning the sliding block in a sliding manner; the positioning groove is a through groove, the sliding block penetrates through the through groove, and the driving mechanism is positioned below the track plate; the upper end of the sliding block is matched with the sliding groove, and the lower end of the sliding block is connected with the driving mechanism.
CN202122641094.9U 2021-10-29 2021-10-29 Radiator and casing connecting tool Active CN216576505U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122641094.9U CN216576505U (en) 2021-10-29 2021-10-29 Radiator and casing connecting tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122641094.9U CN216576505U (en) 2021-10-29 2021-10-29 Radiator and casing connecting tool

Publications (1)

Publication Number Publication Date
CN216576505U true CN216576505U (en) 2022-05-24

Family

ID=81643251

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122641094.9U Active CN216576505U (en) 2021-10-29 2021-10-29 Radiator and casing connecting tool

Country Status (1)

Country Link
CN (1) CN216576505U (en)

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