CN214601521U - High-stability necking machine for copper pipe processing - Google Patents

High-stability necking machine for copper pipe processing Download PDF

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Publication number
CN214601521U
CN214601521U CN202120452795.5U CN202120452795U CN214601521U CN 214601521 U CN214601521 U CN 214601521U CN 202120452795 U CN202120452795 U CN 202120452795U CN 214601521 U CN214601521 U CN 214601521U
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Prior art keywords
board
post
feed box
extruder
copper pipe
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CN202120452795.5U
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Chinese (zh)
Inventor
金京世
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Suzhou Yitai Refrigeration Equipment Co ltd
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Suzhou Yitai Refrigeration Equipment Co ltd
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Abstract

The utility model discloses a high-stability necking machine for copper pipe processing, including board, extruder, tight post of clamp, reference column and feeder box, the top welded mounting of board has tight post of clamp, the positive fixed mounting who presss from both sides tight post has the pusher, the extruder is installed to the top of machine board, and the extruder is located the one side that presss from both sides tight post, the reference column is installed to the top of machine board, and the reference column is located the opposite side that presss from both sides tight post, the inside of board is run through and is installed the feeder box, and the feeder box is located between tight post of clamp and the reference column. The utility model discloses a board of installation comes to change the area of contact on device and ground, increases area of contact, makes the device more stable when using, causes danger to the operator when the feeder box of installation can avoid manual blowing simultaneously.

Description

High-stability necking machine for copper pipe processing
Technical Field
The utility model relates to a copper pipe processing technology field specifically is a high-stability necking machine for copper pipe processing.
Background
The copper pipe is generally used in the evaporimeter more, as the joint of connecting the inside device of evaporimeter, perhaps absorbs heat through the copper pipe when using, makes the evaporimeter can normal use, guarantees that performance is intact, need connect between the copper pipe of difference when using, the variety of using between coming, because be difficult to connect between the copper pipe, need carry out the throat with partial copper pipe before connecting, the interconnect installation between the copper pipe of being convenient for.
The existing necking machine for processing the copper pipe has the following defects:
1. when the existing necking machine for copper pipe processing is used, the impact or extrusion force is large when the existing necking machine is used, so that the existing necking machine is easy to cause instability of the device when in use, and the device can not be subjected to necking when inclined;
2. the existing necking machine for copper pipe processing needs manual feeding when in use, and an operator neglects a lot when in use, so that raw materials can be damaged and danger is brought.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a high copper pipe processing of stability is with throat machine for the extrusion force is great when being used for solving the use that proposes in the above-mentioned background art, causes the unstable slope of device easily, unable throat to and need manual material loading during the use, operator's carelessness can cause the raw materials to damage or cause dangerous problem for a while.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a high copper pipe processing of stability is with throat machine, includes board, extruder, presss from both sides tight post, reference column and feeder box, the top welded mounting of board has tight post of clamp, the positive fixed mounting who presss from both sides tight post has the pusher, the extruder is installed to the top of machine board, and the extruder is located the one side that presss from both sides tight post, the reference column is installed to the top of machine board, and the reference column is located the opposite side that presss from both sides tight post, the inside of board is run through and is installed the feeder box, and the feeder box is located and presss from both sides between tight post and the reference column.
Preferably, the below welding of board is installed and is locked the extension rod, and the reinforcing post is installed to the outside nestification of locking extension rod, and the internally mounted of reinforcing post has buffer spring, and buffer spring welding is in the below of locking the extension rod, and the below welding of reinforcing post installs the backup pad, and the inside of backup pad is run through and is installed the extension board, and the one end that the extension board is located the backup pad outside is run through and is installed the locking seat.
Preferably, the connector is installed in the outside of extruder, and the extrusion stem is installed to the output of extruder, and the extrusion head is installed at the top of extrusion stem, and the outside movable mounting of extrusion head has the fixed column.
Preferably, the telescopic link is installed to the output that pushes away the machine, and the punch holder is installed on the top of telescopic link, and the lower plate is installed to the below of punch holder, and the lower plate is installed in the top of board, and the friction pad is installed to the inboard of punch holder.
Preferably, the inside of reference column runs through and installs the threaded rod, and the locating plate is installed to one side that the threaded rod is located tight post of clamp, and the cushion is installed in the outside of locating plate, and the other end fixed mounting of threaded rod has the carousel.
Preferably, the internally mounted of feed box has the recess board, and the below welded mounting of recess board has return spring, installs the handle on the recess board, and the top of feed box is equipped with the feed trough, and the inside gomphosis of feed trough has the drawing board, and the front movable mounting of feed box has the door of reloading, and the ejection of compact post is installed in the outside of feed box, and the ejection of compact post is located the one side that presss from both sides tight post and be close to the feed box.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses a backup pad of installation under the board can increase the area of contact of device and ground when using the device, make the device more firm when using through changing area of contact, install the locking extension rod in the below of board, and run through the locking extension rod inside the reinforcement post, can be convenient for adjust the height of board, after adjusting the height, lock the locking extension rod dead, avoid falling, simultaneously buffer spring of installation in the reinforcement post can cushion the device when using, the backup pad of installation in the below of reinforcement post, can change the area of contact of device and ground, increase the stability of device through changing area of contact, the device is prevented from toppling over when using, run through the extension board in the inside of backup pad simultaneously, can further increase area of contact, after pulling out the extension board, fix the extension board on ground through the locking seat, the device is prevented from sliding and falling;
2. the utility model is provided with the feeding box, which can solve the trouble and danger caused by manual feeding when in use, increase the safety when in use, run the feeding box inside the machine, directly feed the clamping column through the feeding box, increase the convenience and safety when in use, place the pipe to be contracted for the output of the pipe by the groove plate arranged inside the feeding box, and install the return spring below the groove plate, lift the pipe placed inside the groove plate by the elasticity of the return spring, so that the pipe can be smoothly output, because the feeding groove is arranged at the top end of the feeding box, and the pulling plate is embedded inside the feeding groove, the pulling plate is pulled when in need of feeding, so that the pipe is popped out to the top end, and the pipe enters the inside of the clamping column through the combined action of the positioning column and the discharging column, the pipe is fixed, after the pipe is used up, the material changing door is opened, the handle installed on the groove plate is pulled, and raw materials are added into the groove plate.
Drawings
Fig. 1 is a schematic sectional structure of the present invention;
fig. 2 is a schematic front structural view of the present invention;
FIG. 3 is a schematic side view of the clamping column of the present invention;
fig. 4 is a schematic diagram of the structure of the feeding box of the present invention.
In the figure: 1. a machine platform; 101. locking the extension rod; 102. reinforcing columns; 103. a buffer spring; 104. a support plate; 105. an extension plate; 106. a locking seat; 2. an extruder; 201. a connector; 202. an extrusion stem; 203. an extrusion head; 204. fixing a column; 3. clamping the column; 301. pushing the machine; 302. a telescopic rod; 303. an upper splint; 304. a lower splint; 305. a friction pad; 4. a positioning column; 401. a threaded rod; 402. positioning a plate; 403. a soft cushion; 404. a turntable; 5. a feed box; 501. a groove plate; 502. a return spring; 503. a handle; 504. a feed trough; 505. drawing the plate; 506. a material changing door; 507. and (6) discharging the material column.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides an embodiment: a high-stability necking machine for processing a copper pipe comprises a machine table 1, an extruder 2, a clamping column 3, a positioning column 4 and a feeding box 5, wherein the clamping column 3 is welded and installed above the machine table 1, a pusher 301 is fixedly installed on the front surface of the clamping column 3, the pusher 301 is fixed through the clamping column 3 installed above the machine table 1, the stability of a pipe during necking is ensured, the pipe can be successfully necked at one time, the extruder 2 is installed above the machine table 1, the extruder 2 is located on one side of the clamping column 3, the extruder 2 is installed on one side of the clamping column 3, the pipe placed on the clamping column 3 is extruded through the extrusion force of the extruder 2 during use, the pipe can be necked, the positioning column 4 is installed above the machine table 1, the positioning column 4 is located on the other side of the clamping column 3, and the other end of the pipe is positioned through the installed positioning column 4, and support fixedly to the top of tubular product when the extrusion, tubular product drops when avoiding the extrusion, causes danger, the inside of board 1 is run through and is installed feed box 5, and feed box 5 is located and presss from both sides between tight post 3 and reference column 4, installs feed box 5 between pressing from both sides tight post 3 and reference column 4, and the tubular product of being convenient for is exported on pressing from both sides tight post 3, extrudees the throat to the tubular product.
Furthermore, a locking extension rod 101 is welded and installed below the machine platform 1, a reinforcing column 102 is nested and installed outside the locking extension rod 101, a buffer spring 103 is installed inside the reinforcing column 102, the buffer spring 103 is welded and installed below the locking extension rod 101, a support plate 104 is welded and installed below the reinforcing column 102, an extension plate 105 is installed inside the support plate 104 in a penetrating manner, a locking seat 106 is installed at one end, located outside the support plate 104, of the extension plate 105 in a penetrating manner, a locking extension rod 101 is installed below the machine platform 1, the locking extension rod 101 penetrates inside the reinforcing column 102, the height of the machine platform 1 can be conveniently adjusted, the locking extension rod 101 is locked after the height is adjusted, falling is avoided, meanwhile, the buffer spring 103 installed inside the reinforcing column 102 can buffer the device when in use, the support plate 104 installed below the reinforcing column 102, can change the area of contact of device and ground, increase the stability of device through changing area of contact, the device is emptyd when avoiding using, runs through in the inside of backup pad 104 simultaneously and has extension board 105, increase area of contact that can be further, after pulling out extension board 105, will extend board 105 through locking seat 106 and fix subaerial, avoid the device to slide and emptys.
Further, connector 201 is installed in the outside of extruder 2, the stripper bar 202 is installed to the output of extruder 2, extrusion head 203 is installed on the top of stripper bar 202, the outside movable mounting of extrusion head 203 has fixed column 204, connector 201 at the installation of 2 outsides of extruder, can be with the leading-in inside to extruder 2 of external hydraulic oil or gas, make extruder 2 can normal use, drive stripper bar 202 through extruder 2 and remove, because extrusion head 203 is installed on stripper bar 202 top, the removal of stripper bar 202 drives extrusion head 203 and removes, extrude the throat to the tubular product, and extrusion head 203 damages when avoiding the extrusion through the fixed column 204 of installing in the extrusion head 203 outside.
Further, push away the output of machine 301 and install telescopic link 302, punch holder 303 is installed on the top of telescopic link 302, lower plate 304 is installed to the below of punch holder 303, and lower plate 304 installs the top at board 1, friction pad 305 is installed to the inboard of punch holder 303, telescopic link 302 is installed at the output that pushes away machine 301, telescopic link 302 reciprocates when starting to push away machine 301, punch holder 303 that drives telescopic link 302 top installation moves down, and install lower plate 304 on board 1 and extrude, lock the tubular product inside the splint, and install friction pad 305 in the inboard of punch holder 303 and lower plate 304, increase frictional force through friction pad 305, drop when avoiding the tubular product to extrude.
Further, the inside through-mounting of reference column 4 has threaded rod 401, locating plate 402 is installed to one side that threaded rod 401 is located tight post 3 of clamp, cushion 403 is installed in the outside of locating plate 402, threaded rod 401's other end fixed mounting has carousel 404, threaded rod 401 that runs through in the inside of reference column 4, and carousel 404 is installed to the one end that moves at threaded rod 401, rotate carousel 404 when using, make threaded rod 401 remove, can remove at the locating plate 402 that drives the opposite side installation, make locating plate 402 and tubular product laminating, fix a position and support the tubular product, tubular product drops from pressing from both sides tight post 3 when avoiding the extrusion, because cushion 403 is installed to the inboard of locating plate 402, tubular product top damage when can avoiding the extrusion through cushion 403.
Further, a groove plate 501 is installed inside the feeding box 5, a return spring 502 is installed below the groove plate 501 in a welded mode, a handle 503 is installed on the groove plate 501, a feeding groove 504 is arranged above the feeding box 5, a drawing plate 505 is embedded inside the feeding groove 504, a material changing door 506 is movably installed on the front face of the feeding box 5, a discharging column 507 is installed on the outer side of the feeding box 5, the discharging column 507 is located on one side, close to the feeding box 5, of the clamping column 3, the pipe to be reduced can be placed on the groove plate 501 installed inside the feeding box 5, the pipe can be conveniently output, the return spring 502 is installed below the groove plate 501, the pipe placed inside the groove plate 501 is lifted through the elastic force of the return spring 502, the pipe can be smoothly output, the feeding groove 504 is arranged at the top end of the feeding box 5, and the drawing plate 505 is embedded inside the feeding groove 504, when feeding is needed, the pulling plate 505 is pulled to enable the pipe to be popped to the top end, the pipe enters the clamping column 3 through the combined action of the positioning column 4 and the discharging column 507 to be fixed, the material changing door 506 is opened after the pipe is used up, the handle 503 arranged on the groove plate 501 is pulled, and raw materials are added into the groove plate 501.
The working principle is as follows: the contact area between the device and the ground can be increased when the device is used by the support plate 104 arranged below the machine table 1, the device is more stable when the device is used by changing the contact area, the locking extension rod 101 is arranged below the machine table 1, the locking extension rod 101 penetrates through the reinforcing column 102, the height of the machine table 1 can be conveniently adjusted, the locking extension rod 101 is locked after the height is adjusted to avoid falling, meanwhile, a buffer spring 103 arranged inside the reinforcing column 102 can buffer the device when the device is used, the contact area between the device and the ground can be changed by the support plate 104 arranged below the reinforcing column 102, the stability of the device is increased by changing the contact area, the device is prevented from falling when the device is used, meanwhile, the extension plate 105 penetrates through the support plate 104 to further increase the contact area, after the extension plate 105 is pulled out, the extension plate 105 is fixed on the ground through the locking seat 106, the device is prevented from sliding and falling, meanwhile, the feeding box 5 is installed, the trouble and danger caused by manual feeding in the prior art can be solved when the device is used, the safety in use is improved, the feeding box 5 penetrates through the inside of the machine table 1, the clamping column 3 is directly fed through the feeding box 5, the convenience and the safety in use are improved, the groove plate 501 arranged in the feeding box 5 can place a pipe to be contracted, the output of the pipe is convenient, the return spring 502 is arranged below the groove plate 501, the pipe placed in the groove plate 501 is lifted through the elasticity of the return spring 502, the pipe can be smoothly output, the feeding groove 504 is arranged at the top end of the feeding box 5, the drawing plate 505 is embedded in the feeding groove 504, the drawing plate 505 is drawn when feeding is needed, the pipe is ejected to the top end, and under the combined action of the positioning column 4 and the discharging column 507, the pipe enters the clamping column 3 to be fixed, after the pipe is used up, the material changing door 506 is opened, the handle 503 arranged on the groove plate 501 is pulled, and raw materials are added into the groove plate 501.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides a high copper pipe processing of stability is with throat machine, includes board (1), extruder (2), presss from both sides tight post (3), reference column (4) and feed box (5), its characterized in that: top welded mounting of board (1) has tight post (3) of clamp, the positive fixed mounting who presss from both sides tight post (3) has and pushes away machine (301), extruder (2) are installed to the top of board (1), and extruder (2) are located the one side of pressing from both sides tight post (3), reference column (4) are installed to the top of board (1), and reference column (4) are located the opposite side that presss from both sides tight post (3), the inside of board (1) runs through and installs feed box (5), and feed box (5) are located and press from both sides between tight post (3) and reference column (4).
2. A high-stability necking machine for copper pipe processing according to claim 1, characterized in that: the utility model discloses a locking platform, including board (1), reinforcing post (102), buffer spring (103), and buffer spring (103), backup pad (104) are installed in the below welding of reinforcing post (102), and the inside of backup pad (104) is run through and is installed extension board (105), and the one end that extension board (105) are located backup pad (104) outside is run through and is installed locking seat (106) to the below welding installation of locking extension rod (101), and the internally mounted of reinforcing post (102) has buffer spring (103), and the below of locking extension rod (101) is welded to buffer spring (103).
3. A high-stability necking machine for copper pipe processing according to claim 1, characterized in that: the connecting head (201) is installed in the outside of extruder (2), extrusion stem (202) is installed at the output of extruder (2), extrusion head (203) is installed on the top of extrusion stem (202), and fixed column (204) is movably installed in the outside of extrusion head (203).
4. A high-stability necking machine for copper pipe processing according to claim 1, characterized in that: push away the output of machine (301) and install telescopic link (302), punch holder (303) are installed on the top of telescopic link (302), and lower plate (304) are installed to the below of punch holder (303), and install in the top of board (1) lower plate (304), and friction pad (305) are installed to the inboard of punch holder (303).
5. A high-stability necking machine for copper pipe processing according to claim 1, characterized in that: the inside of reference column (4) is run through and is installed threaded rod (401), and locating plate (402) are installed to one side that threaded rod (401) are located to press from both sides tight post (3), and cushion (403) are installed in the outside of locating plate (402), and the other end fixed mounting of threaded rod (401) has carousel (404).
6. A high-stability necking machine for copper pipe processing according to claim 1, characterized in that: the utility model discloses a feed box, including feed box (5), the internally mounted of feed box (5) has recess board (501), return spring (502) are installed in the below welding of recess board (501), install handle (503) on recess board (501), the top of feed box (5) is equipped with feed trough (504), the inside gomphosis of feed trough (504) has drawer (505), the front movable mounting of feed box (5) has material changing door (506), ejection of compact post (507) is installed in the outside of feed box (5), and ejection of compact post (507) is located the one side that clamping column (3) are close to feed box (5).
CN202120452795.5U 2021-03-02 2021-03-02 High-stability necking machine for copper pipe processing Active CN214601521U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120452795.5U CN214601521U (en) 2021-03-02 2021-03-02 High-stability necking machine for copper pipe processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120452795.5U CN214601521U (en) 2021-03-02 2021-03-02 High-stability necking machine for copper pipe processing

Publications (1)

Publication Number Publication Date
CN214601521U true CN214601521U (en) 2021-11-05

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ID=78392198

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120452795.5U Active CN214601521U (en) 2021-03-02 2021-03-02 High-stability necking machine for copper pipe processing

Country Status (1)

Country Link
CN (1) CN214601521U (en)

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