CN213052475U - Scraper type groove extruding mechanism of grooving insertion piece type radiator manufacturing equipment - Google Patents

Scraper type groove extruding mechanism of grooving insertion piece type radiator manufacturing equipment Download PDF

Info

Publication number
CN213052475U
CN213052475U CN202022162763.XU CN202022162763U CN213052475U CN 213052475 U CN213052475 U CN 213052475U CN 202022162763 U CN202022162763 U CN 202022162763U CN 213052475 U CN213052475 U CN 213052475U
Authority
CN
China
Prior art keywords
scraper
positioning seat
base
arm portion
screw rod
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202022162763.XU
Other languages
Chinese (zh)
Inventor
梁铭基
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Foshan Shunde Kuyu Hardware Products Co ltd
Original Assignee
Foshan Shunde Kuyu Hardware Products Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Foshan Shunde Kuyu Hardware Products Co ltd filed Critical Foshan Shunde Kuyu Hardware Products Co ltd
Priority to CN202022162763.XU priority Critical patent/CN213052475U/en
Application granted granted Critical
Publication of CN213052475U publication Critical patent/CN213052475U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The utility model discloses a crowded groove mechanism of scraper formula of grooving inserted sheet radiator preparation equipment, including the scraper, the linking arm, the positioning seat, be used for with grooving inserted sheet device erection joint's base and be used for adjusting the positioning screw rod of the depth of processing of scraper, the scraper is equipped with the sword point portion that is used for making the double-layered groove plastic deformation centre gripping fixed cooling fin of radiator base plate, positioning seat and base sliding connection, positioning screw rod and base rotate to be connected, positioning screw rod and positioning seat spiro union, the one end fixed connection of scraper and linking arm, the other end and the positioning seat erection joint that the linking arm is corresponding. The utility model discloses a crowded groove mechanism is favorable to improving work efficiency, is favorable to reducing intensity of labour.

Description

Scraper type groove extruding mechanism of grooving insertion piece type radiator manufacturing equipment
Technical Field
The utility model relates to an crowded groove utensil field of scraper formula that is used for grooving gilled radiator preparation equipment, concretely relates to grooving gilled radiator preparation equipment pushes away groove mechanism.
Background
As shown in fig. 13, the heat sink includes a heat sink substrate 98 for contacting a device requiring heat dissipation and a heat sink 99 for increasing a heat dissipation area. The material of the heat sink is typically aluminum. Some high power devices or components require a heat sink that is bulky and has a large total heat dissipation area, and thus the heat dissipation fins of the heat sink need to be arranged narrow and long. In order to form the heat sink of the structure shown in fig. 13, the heat sink substrate 98 and the heat radiation fins 99 are currently set to an assembly structure with each other.
As shown in fig. 1, the conventional grooving blade-inserting type heat sink manufacturing apparatus is provided with a grooving blade-inserting device 1, the grooving blade-inserting device 1 can be moved left and right by a servo motor, as shown in fig. 3, the grooving blade-inserting device 1 is provided with a saw blade 1111 and a vacuum chuck 121, the saw blade 1111 is used for processing and forming a clamping groove 981 on a heat sink substrate 98, the vacuum chuck 121 is used for holding a heat sink 99 as an assembly material, an arrow direction in fig. 3 represents a feeding direction of the grooving blade-inserting device 1 (it should be noted that, since fig. 3 is a rear view, the feeding direction is a right direction in a view of fig. 3), since the saw blade 1111 is provided at a front position of the vacuum chuck 121 in the feeding direction of the grooving blade-inserting device 1, as shown in fig. 10, when the grooving blade-inserting device 1 moves to feed to the left, the saw blade 1111 cuts the heat sink substrate 98 to form, as shown in fig. 11, when the saw blade 1111 finishes processing one clamping groove 981, the grooving insert device 1 continues to move leftwards and feed, the vacuum chuck 121 inserts one heat sink fin 99 into the corresponding clamping groove 981, the vacuum chuck 121 releases the heat sink fin 99, the grooving insert device 1 leaves the working position, and the grooving insert radiator manufacturing apparatus moves the radiator base plate 98 to the next station for cutting the clamping groove 981, as shown in fig. 14, so that the radiator base plate 98 is inserted with a row of heat sink fins 99. However, since the heat sink 99 is not firmly and reliably joined to the heat sink base plate 98, the upper side of the heat sink base plate 98 is chiseled by a hand tool at the side of the clip groove 981, so that the material of the groove wall of the clip groove 981 is pressed, and the clip groove 981 is plastically deformed and narrowed to clamp and fix the lower end portion of the heat sink 99 inserted correspondingly.
Disclosure of Invention
An object of the utility model is to overcome prior art not enough, provide a crowded groove mechanism of scraper formula of grooving inserted sheet radiator preparation equipment, it is favorable to improving work efficiency, is favorable to reducing intensity of labour.
The purpose of the utility model is realized by the following technical scheme.
The utility model discloses a crowded groove mechanism of scraper formula of grooving inserted sheet radiator preparation equipment, including scraper, linking arm, positioning seat, be used for with grooving inserted sheet device erection joint's base and be used for adjusting the positioning screw rod of the depth of processing of scraper, the scraper is equipped with the sword point portion that is used for making the double-layered groove plastic deformation centre gripping fixed cooling fin of radiator base plate, positioning seat with base sliding connection, positioning screw rod with the base rotates the connection, positioning screw rod with positioning seat spiro union, the scraper with the one end fixed connection of linking arm, the corresponding other end of linking arm with positioning seat erection joint.
Preferably, the positioning seat comprises a pressing plate and a connecting plate, a jack is formed between the pressing plate and the connecting plate, the connecting arm is inserted into the jack in a matching mode, the extending direction of the jack is parallel to the axis of the scraper, the pressing plate is fixedly connected with the connecting plate through screws, and the pressing plate clamps and fixes the connecting arm.
Preferably, the connecting plate is formed with a dovetail, and the base is formed with a dovetail groove, the dovetail being fittingly connected with the dovetail groove.
Preferably, the end of the connecting arm is formed with a concave platform part, the scraper is fittingly arranged in the concave platform part, and the scraper and the concave platform part are fixedly connected through a first screw.
Preferably, the connecting arm includes a horizontal arm portion and a vertical arm portion, the horizontal arm portion is perpendicular to the vertical arm portion, the vertical arm portion is disposed at a lower side of the horizontal arm portion, the horizontal arm portion is mounted and connected to the positioning seat, and the scraper is fixedly connected to the vertical arm portion.
Preferably, a hand wheel is fixedly connected to the upper end of the positioning screw rod.
Compared with the prior art, the utility model, its beneficial effect is: because the scraper is equipped with the sword point portion that is used for making the double-layered groove plastic deformation centre gripping fixed cooling fin of radiator base plate, positioning seat and base sliding connection, the positioning screw rod rotates with the base to be connected, positioning screw rod and positioning seat spiro union, the one end fixed connection of scraper and linking arm, the corresponding other end of linking arm and positioning seat erection joint, the base is used for with grooving inserted sheet device erection joint, so the sword point portion of scraper can be at the last side of the position extrusion radiator base plate that is close to the double-layered groove, the material of the cell wall that makes the double-layered groove is crowded compelled to make the double-layered groove plastic deformation constriction centre gripping fixed cooling fin, so the utility model discloses an crowded groove mechanism is favorable to improving work efficiency, is favorable to reducing intensity of labour.
Drawings
FIG. 1 is a schematic perspective view of an apparatus for manufacturing a slot-cut fin-inserted heat sink.
Fig. 2 is a schematic perspective view of the slot-cutting insert device.
Fig. 3 is a rear view of the slot-cutting insert device.
Fig. 4 is a left side view structural schematic diagram of the groove extruding mechanism of the present invention.
Fig. 5 is a schematic rear view of the groove extruding mechanism of the present invention.
Fig. 6 is a schematic sectional view taken along the line a-a in fig. 4.
Fig. 7 is a schematic perspective view of the scraper of the present invention.
Fig. 8 is a left side view of the scraper of the present invention.
Fig. 9 is a partially exploded view of the squeezing mechanism of the present invention.
FIG. 10 is a schematic view showing a state in which a saw blade machines a clip groove on a heat sink base plate.
Fig. 11 is a schematic diagram showing a state in which the vacuum chuck inserts the heat sink into the clip groove of the heat sink base plate.
Fig. 12 is a schematic diagram of a state in the left-view direction of the scraper blade for processing the radiator substrate according to the present invention.
Fig. 13 is a schematic structural view of a heat sink.
Fig. 14 is a schematic view of a heat sink during a grooving insert sheet process.
Description of reference numerals: 1-grooving insert devices; 101-a box base; 1111-saw blade; 121-negative pressure suction cup; 13-a groove extruding mechanism; 131-a scraper; 1311-a cutting tip; 132-a connecting arm; 1321-transverse arm portion; 1322-upright arm portions; 1323-a land portion; 133-a positioning seat; 1331-a receptacle; 1332-pressing plate; 1333-connecting plate; 1334-dovetail; 1335-dovetail groove; 134-a base; 135-positioning screw rod; 136-a handwheel; 137-a limit sleeve; 98-a heat sink substrate; 981-a clamping groove; 99-heat sink.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
The groove extruding mechanism of the present invention, as shown in fig. 4 to 9, comprises a scraper 131, a connecting arm 132, a positioning seat 133, a base 134 for mounting and connecting with the groove cutting insert device 1, and a positioning screw 135 for adjusting the processing depth of the scraper 131, as shown in fig. 7 and 8, the scraper 131 is provided with a blade tip 1311 for plastically deforming a clamping groove 981 of the heat sink substrate 98 to clamp the fixed heat sink 99, specifically, as shown in fig. 2 and 3, the base 134 can be relatively fixedly mounted on the left side surface of the box seat 101 of the groove cutting insert device 1; since the heat radiation fins 99 are located at the upper side position of the heat sink base plate 98 in the manufacturing process of the heat sink, the processing depth direction of the scraper 131 is in the up-down direction, in other words, the positioning screw 135 is provided to extend in the up-down direction. The positioning seat 133 is slidably connected to the base 134. The positioning screw 135 is rotatably connected to the base 134, in other words, the positioning screw 135 can only rotate relative to the base 134, and the positioning screw 135 cannot move axially relative to the base 134, specifically, as shown in fig. 4, the upper portion of the positioning screw 135 can be fittingly sleeved with a limiting sleeve 137 (it should be noted that only fig. 4 illustrates the limiting sleeve 137), the limiting sleeve 137 can be fixed to the positioning screw 135 by a set screw, the positioning screw 135 is formed with a shoulder which is connected to the base 134 in an abutting manner, the shoulder and the limiting sleeve 137 respectively abut against the upper and lower sides of the corresponding portion which sandwiches the base 134, and thus the positioning screw 135 cannot move along the axial direction of the positioning screw 135; in some embodiments, the upper portion of the positioning screw 135 and the corresponding portion of the base 134 may be connected by a bearing, in which case the shoulder is transformed into a butting connection with the lower end face of the inner race of the corresponding bearing. As shown in fig. 6 and 8, the positioning screw 135 is screwed with the positioning seat 133, the scraper 131 is fixedly connected with one end of the connecting arm 132, and the other end of the connecting arm 132 corresponding to the positioning seat 133 is installed and connected.
The working principle of the groove extruding mechanism of the utility model is briefly explained as follows: fig. 12 schematically shows an operation state in which the doctor blade 131 machines the upper side surface of the heat sink base plate 98, and fig. 12 is a left side view, and a station feeding direction of the heat sink base plate 98 is an arrow direction in fig. 12. One heat sink 99 in fig. 12 is inserted into the corresponding clip groove 981 of the heat sink base plate 98 through the negative suction cup 121 in the last station of the heat sink base plate 98. Fig. 12 schematically illustrates the position of the saw blade 1111. As shown in fig. 1 and fig. 2, since the base 134 of the groove-extruding mechanism of the present invention is installed and connected with the groove-cutting insert device 1, so that the scraper 131 is driven by the grooving insert-sheet device 1 to move leftwards to feed in the process that the grooving insert-sheet device 1 moves leftwards to feed, as shown in fig. 12, so that the blade edge 1311 of the scraper 131 can be scraped onto the upper side of the heat sink substrate 98, and the processing depth of the scraper 131 is adjusted by rotating the positioning screw 135, so that the cutting edge 1311 of the scraper 131 presses the upper side surface of the heat sink substrate 98 to form a pit in the heat sink substrate 98 (note that the cutting edge 1311 is not formed by cutting the heat sink substrate 98, so the pit is not formed by separating the material of the heat sink substrate 98), since the cutting edge 1311 is close to the clip 981, the material of the walls of the clip groove 981 is forced to plastically deform and narrow the clip groove 981 so that the clip groove 981 clamps and secures the heat sink 99 in good contact. The positioning screw 135 is arranged to be combined with the lifting mechanism of the positioning seat 133, so that the scraper 131 can adjust the height position to adapt to the radiator base plates 98 with different thickness specifications. As shown in fig. 12, in order that the blade 131 does not touch the heat radiating fins 99, the distance in the arrow direction in fig. 12 between the blade edge 1311 of the blade 131 and the saw blade 1111 should be smaller than the pitch of the heat radiating fins 99 inserted into the heat sink substrate 98, and in order that the blade 131 can press the upper side surface of the heat sink substrate 98 beside the corresponding clip groove 981, the blade edge 1311 of the blade 131 should be disposed at the front position of the saw blade 1111 in the station feeding direction of the heat sink substrate 98. From the foregoing, because the utility model discloses an extrusion groove mechanism can process the last side of extrusion radiator base plate 98 at grooving inserted sheet device 1's the in-process of feeding, so on grooving inserted sheet radiator preparation equipment original moving mechanism's basis, realized simply that the double-layered groove 981 plastic deformation centre gripping fixed cooling fin 99 that makes radiator base plate 98 compares with the mode of the last side of the staff combination hand tool of passing through of prior art chiseling radiator base plate 98 on the next door of double-layered groove 981, the utility model discloses an extrusion groove mechanism is favorable to improving work efficiency, is favorable to reducing intensity of labour. To secure the effect of the tip 1311 pressing against the clip groove 981, as shown in fig. 7, the angle "X" of the tip 1311 may be set to 30 ° to 40 °.
Further, as shown in fig. 6 and 8, the positioning seat 133 includes a pressing plate 1332 and a connecting plate 1333, a socket 1331 is formed between the pressing plate 1332 and the connecting plate 1333, the connecting arm 132 is inserted into the socket 1331, the extending direction of the socket 1331 is parallel to the axis of the scraper 131, in other words, the connecting arm 132 is inserted into the socket 1331 along the horizontal direction, the pressing plate 1332 is fixedly connected with the connecting plate 1333 through a screw, and the pressing plate 1332 clamps the connecting arm 132, specifically, the pressing plate 1332 is pressed against the connecting arm 132 by the pulling force generated by the screw connected with the pressing plate 1332. With the above arrangement, the connecting arm 132 and the scraper 131 can be easily attached and detached as shown in fig. 8.
Further, as shown in fig. 6, the connecting plate 1333 is formed with a dovetail 1334, the base 134 is formed with a dovetail 1335, and the dovetail 1334 is fittingly connected with the dovetail 1335. The dovetail 1334 and dovetail 1335 connection structure is a sliding connection structure commonly used in the mechanical industry, and in low-speed relative sliding applications, the dovetail sliding connection structure can have a relatively large bearing capacity and high stability due to a relatively large contact area, so as to adapt to the reaction force applied by the scraper 131 when the heat sink substrate 98 is processed.
Further, as shown in fig. 9, a concave portion 1323 is formed at an end of the connecting arm 132, as shown in fig. 4 and fig. 5, the scraper 131 is fittingly disposed in the concave portion 1323, the scraper 131 and the concave portion 1323 are fixedly connected by the first screw 2, by setting the above-mentioned installation manner of the scraper 131, it is beneficial for the scraper 131 and the connecting arm 132 to be made of different materials, for example, the scraper 131 can be made of high-carbon steel, and the connecting arm 132 can be made of medium-carbon steel, so as to be beneficial for ensuring the hardness of the scraper 131 and also beneficial for ensuring that the connecting arm 132 has sufficient impact toughness, the above-mentioned installation manner of the scraper 131 is also beneficial for the easy manufacture of the scraper 131 and the connecting arm 132, and since the scraper 131 is fittingly disposed in the concave portion 1323, the loosening phenomenon of the scraper 131 when the heat. As shown in fig. 7, the scraper 131 may be formed with a counterbore into which the first screw 2 may be fittingly mounted.
Further, as shown in fig. 8, the connecting arm 132 includes a horizontal arm portion 1321 and a vertical arm portion 1322, the horizontal arm portion 1321 is perpendicular to the vertical arm portion 1322, the vertical arm portion 1322 is provided on the lower side of the horizontal arm portion 1321, in other words, the vertical arm portion 1322 is bent downward with respect to the horizontal arm portion 1321, the horizontal arm portion 1321 is attached to the positioning seat 133, and the scraper 131 is fixedly connected to the vertical arm portion 1322. As shown in fig. 4, the above arrangement is advantageous in that the scraper 131 is disposed at a position below the base 134, and the base 134 is prevented from colliding against the heat sink substrate 98. When the connection arm 132 is formed in a meandering shape as shown in fig. 8, the cross section of the arm portion 1321 may be formed in a rectangular or square shape, that is, the hole 1331 may be formed in a rectangular or square shape, in order to prevent the connection arm 132 from swinging due to a moment during the process of the blade 131 processing the heat sink base plate 98.
Further, as shown in fig. 8, a hand wheel 136 is fixedly connected to an upper end portion of the positioning screw 135, so that the hand wheel 136 can be conveniently rotated to rotate the positioning screw 135, and the positioning screw 135 rotates to drive the positioning seat 133 to move for positioning.

Claims (6)

1. The utility model provides a crowded groove mechanism of scraper formula of grooving inserted sheet radiator preparation equipment which characterized in that: including scraper (131), linking arm (132), positioning seat (133), be used for with grooving inserted sheet device (1) erection joint's base (134) and be used for adjusting positioning screw rod (135) of the depth of processing of scraper (131), scraper (131) are equipped with cutting edge portion (1311) that are used for making double-layered groove (981) plastic deformation centre gripping fixed cooling fin (99) of radiator base plate (98), positioning seat (133) with base (134) sliding connection, positioning screw rod (135) with base (134) rotate to be connected, positioning screw rod (135) with positioning seat (133) spiro union, scraper (131) with the one end fixed connection of linking arm (132), the corresponding other end of linking arm (132) with positioning seat (133) erection joint.
2. The doctor blade type slot extruding mechanism of the slot-cutting gilled radiator manufacturing equipment according to claim 1, wherein: the positioning seat (133) comprises a pressing plate (1332) and a connecting plate (1333), a jack (1331) is formed between the pressing plate (1332) and the connecting plate (1333), the connecting arm (132) is inserted into the jack (1331) in a matching mode, the extension direction of the jack (1331) is parallel to the axis of the scraper (131), the pressing plate (1332) is fixedly connected with the connecting plate (1333) through screws, and the pressing plate (1332) clamps and fixes the connecting arm (132).
3. The doctor blade type slot extruding mechanism of the slot-cutting gilled radiator manufacturing equipment according to claim 2, wherein: the connecting plate (1333) is provided with a dovetail (1334), the base (134) is provided with a dovetail groove (1335), and the dovetail (1334) is matched and connected with the dovetail groove (1335).
4. The doctor blade type slot extruding mechanism of the slot-cutting gilled radiator manufacturing equipment according to claim 1, wherein: a concave platform part (1323) is formed at the end part of the connecting arm (132), the scraper (131) is fittingly arranged in the concave platform part (1323), and the scraper (131) is fixedly connected with the concave platform part (1323) through a first screw (2).
5. The doctor blade type slot extruding mechanism of the slot-cutting gilled radiator manufacturing equipment according to claim 1, wherein: the connecting arm (132) comprises a transverse arm portion (1321) and a vertical arm portion (1322), the transverse arm portion (1321) is perpendicular to the vertical arm portion (1322), the vertical arm portion (1322) is arranged on the lower side of the transverse arm portion (1321), the transverse arm portion (1321) is connected with the positioning seat (133) in an installing mode, and the scraper (131) is fixedly connected with the vertical arm portion (1322).
6. The doctor blade type slot extruding mechanism of the slot-cutting gilled radiator manufacturing equipment according to claim 1, wherein: the upper end part of the position adjusting screw rod (135) is fixedly connected with a hand wheel (136).
CN202022162763.XU 2020-09-28 2020-09-28 Scraper type groove extruding mechanism of grooving insertion piece type radiator manufacturing equipment Active CN213052475U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022162763.XU CN213052475U (en) 2020-09-28 2020-09-28 Scraper type groove extruding mechanism of grooving insertion piece type radiator manufacturing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022162763.XU CN213052475U (en) 2020-09-28 2020-09-28 Scraper type groove extruding mechanism of grooving insertion piece type radiator manufacturing equipment

Publications (1)

Publication Number Publication Date
CN213052475U true CN213052475U (en) 2021-04-27

Family

ID=75560734

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022162763.XU Active CN213052475U (en) 2020-09-28 2020-09-28 Scraper type groove extruding mechanism of grooving insertion piece type radiator manufacturing equipment

Country Status (1)

Country Link
CN (1) CN213052475U (en)

Similar Documents

Publication Publication Date Title
CN213052475U (en) Scraper type groove extruding mechanism of grooving insertion piece type radiator manufacturing equipment
CN213764293U (en) Aluminum alloy cooling fin relieving machine capable of being clamped and installed rapidly
CN212665058U (en) Circular sawing machine for steel pipes
CN213003733U (en) Knife wheel type groove extruding mechanism of groove cutting inserting piece type radiator manufacturing equipment
CN201023150Y (en) Electric lig saw blade fast-assembling fixture
CN212858660U (en) Concave block's of convenient operation adds clamping apparatus
CN215146626U (en) Full-automatic aluminum product processing all-in-one
CN212977490U (en) Plate machining clamp
CN210967186U (en) Plane bidirectional planing tool rest rotating around horizontal shaft
CN212042965U (en) Barb groove cutter structure
CN210817748U (en) Internal groove processing device
CN211027730U (en) Positioner of copper bar piercing press
CN211760039U (en) Plane milling machine with side presss from both sides function
CN210497881U (en) A forming relieved tooth mould for radiator fin processing
CN217776336U (en) Quick flush mounting tool for radiator
CN218080501U (en) Boring device
CN216324457U (en) Brake chamber cylinder body notching device
CN207900252U (en) A kind of semicircle cambered surface process tool
CN216266325U (en) Be used for grooved portable positioner of wood-plastic panel
CN212385051U (en) Steel sheet drilling machine convenient to operation
CN110153275A (en) A kind of aluminium alloy sectional part punching die
CN218926282U (en) Groove machining tool with adjustable machining depth
CN219503958U (en) Multi-directional positioning structure adjustable universal laser carving jig
CN212551943U (en) Novel angle-adjustable edge planer
CN214392597U (en) High numerical control synchronous cutting system for steel pipe

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant