CN214033131U - Aluminum row assembly for vacuum line suction machine - Google Patents

Aluminum row assembly for vacuum line suction machine Download PDF

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Publication number
CN214033131U
CN214033131U CN202022287614.6U CN202022287614U CN214033131U CN 214033131 U CN214033131 U CN 214033131U CN 202022287614 U CN202022287614 U CN 202022287614U CN 214033131 U CN214033131 U CN 214033131U
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water
gas
aluminium
joint
end cover
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CN202022287614.6U
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Chinese (zh)
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胡志坚
张德祥
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Hangzhou Anjienuo Intelligent Machinery Co ltd
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Hangzhou Anjienuo Intelligent Machinery Co ltd
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Abstract

The utility model discloses a line machine aluminium bar subassembly is inhaled in vacuum aims at solving current vacuum and inhales line machine aluminium bar cooling effect not good, makes to inhale the line and kick-backs the phenomenon easily to appear, influences product quality's not enough. The utility model discloses an including a plurality of aluminium rows, fixed end cover is used to gas, water is with fixed end cover, the aluminium row is fan-shaped ring structure, all aluminium rows are around the aluminium row body that constitutes tubular structure, gas is with fixed end cover, water is connected respectively at the both ends of the aluminium row body with fixed end cover, be equipped with a plurality of gas channel holes and water channel hole in the aluminium row, all correspond with every water channel hole on the aluminium row outer wall and set up a plurality of suction holes, suction hole and water channel hole intercommunication, the downthehole heat transfer water pipe of installing of air channel, the gas of aluminium row one end connection and gas channel hole intercommunication is connected and is used the joint, gas is connected and is run through gas and is used fixed end cover, water channel joint and water channel hole intercommunication are all run through to the aluminium row other end, heat transfer joint and heat transfer water pipe intercommunication.

Description

Aluminum row assembly for vacuum line suction machine
Technical Field
The utility model relates to a line machine part is inhaled in vacuum, more specifically says that it relates to a line machine aluminium bar subassembly is inhaled in vacuum.
Background
The aluminum row component of the existing vacuum grain suction machine is composed of a plurality of aluminum rows, the interior of each aluminum row is vacuumized, a ceramic cylinder on the outer side of each aluminum row component has good air permeability, and corresponding grains are sucked out on the surface of the preheated PU synthetic leather by using the grains on the outer surface of the ceramic cylinder. Due to poor cooling effect, the phenomenon of rebound easily occurs in the suction lines in many times, and the quality of the product is influenced.
SUMMERY OF THE UTILITY MODEL
The utility model overcomes current vacuum is inhaled line machine aluminium and is arranged cooling effect not good, makes to inhale the line and appear kick-back phenomenon easily, influences product quality's not enough, provides a vacuum is inhaled line machine aluminium and is arranged subassembly, and its cooling effect is good, inhales the line and is difficult for appearing kick-back phenomenon, has guaranteed product quality.
In order to solve the technical problem, the utility model discloses a following technical scheme: the utility model provides a line machine aluminium row subassembly is inhaled in vacuum, including a plurality of aluminium rows, fixed end cover is used to gas, water is with fixed end cover, the aluminium row is fan-shaped ring structure, all aluminium rows are around constituting the aluminium row body of tubular structure, gas is with fixed end cover, water is connected respectively at the both ends of aluminium row body with fixed end cover, be equipped with a plurality of gas channel holes and water channel hole in the aluminium row, all correspond with every water channel hole on the aluminium row outer wall and set up a plurality of suction holes, suction hole and water channel hole intercommunication, the downthehole heat transfer water pipe of installing of air channel, the gas that air channel hole intercommunication is connected to aluminium row one end, gas is with fixed end cover through gas, water channel joint and heat transfer joint are connected to the aluminium row other end, water channel joint and heat transfer joint all run through water with fixed end cover, water channel joint and water channel hole intercommunication, heat transfer joint and heat transfer water pipe intercommunication.
When the ceramic cylinder with air permeability is sleeved on the outer surface of the aluminum exhaust body, the air passage hole in the aluminum exhaust body is vacuumized by the vacuum pump, vacuum negative pressure can be formed on the outer surface of the ceramic cylinder, and when the PU synthetic leather coated on the outer surface of the ceramic cylinder passes through the ceramic cylinder, the PU synthetic leather can be sucked on the ceramic cylinder through the pressure difference between the atmospheric pressure and the vacuum negative pressure on the outer surface of the ceramic cylinder to form suction lines matched with the outer surface of the ceramic cylinder. Set up the heat transfer water pipe downthehole at the air flue, let in cold water in to the heat transfer water pipe through heat transfer joint, directly cool off downthehole the air flue, improved the cooling effect greatly, cool off the aluminium row through to the downthehole cold water that lets in of water course, the cooling method that both combined together has improved the cooling effect that the aluminium was arranged greatly, makes to inhale the difficult rebound phenomenon that appears of line, has guaranteed product quality.
Preferably, two flow passages are arranged in the heat exchange water pipe, the two flow passages are communicated at the end part far away from the water fixing end cover, one end of the heat exchange connector is provided with two inserting cylinders, the other end of the heat exchange connector is provided with two connectors, the two connectors are respectively communicated with the two inserting cylinders, and the two inserting cylinders are respectively and tightly inserted at the end parts of the two flow passages. Two flow passages are arranged in the heat exchange water pipe, the water flow path is long, and the heat exchange effect is good. The heat exchange joint and the heat exchange water pipe are convenient and reliable to install.
Preferably, a partition board is arranged in the heat exchange water pipe, the partition board divides the heat exchange water pipe into two flow passages, and the cross sections of the two flow passages are semicircular. The heat exchange water pipe with the structure is convenient to process.
Preferably, the water channel holes are arranged in the aluminum row in a snake-shaped tubular structure, two ends of each water channel hole are arranged on the same side of the aluminum row body, and two ends of each water channel hole are connected with the water channel joints. The water channel hole of the snakelike tubular structure has good heat exchange effect.
Preferably, the gas is with closely inserting the one end in the gas channel hole with connecting, the gas is with connecting being equipped with one section locking tooth on the outer wall, a side of locking tooth orientation gas channel hole is the inclined plane, a side that the locking tooth back of the body leaves the gas channel hole is vertical face, correspond installation locking round pin with connecting on the fixed disk, locking round pin one end butt is between two adjacent locking teeth, installation butt spring between the other end and the fixed disk, locking round pin tip is equipped with the spigot surface of slope, the spigot surface butt is on the inclined plane of locking tooth, the side laminating of locking round pin is on the vertical face of locking tooth.
The gas is with connecting to be inserted to the open end in air duct hole, and gas is with connecting in the in-process of cartridge, and the inclined plane slides the surface of leading and outwards promotes the locking round pin. After the cartridge targets in place, the guide surface butt is on the inclined plane of locking tooth, and the side laminating of lock round pin is on the vertical face of locking tooth, and the lock round pin carries out the locking to gas with connecting this moment, and gas can not break away from the gas passage hole with connecting. The pneumatic connector is convenient to insert and reliable in connection.
Compared with the prior art, the beneficial effects of the utility model are that: the aluminum bar assembly for the vacuum grain suction machine has a good cooling effect, the grain suction machine is not easy to rebound, and the product quality is ensured.
Drawings
Fig. 1 is a schematic structural view of a use state of the present invention;
fig. 2 is a schematic structural diagram of the aluminum busbar of the present invention;
fig. 3 is a schematic structural diagram of the aluminum row of the present invention;
FIG. 4 is a schematic view of the connection structure of the aluminum exhaust and the gas connector of the present invention;
in the figure: 1. the aluminum row, 2, the fixed end cover is used to gas, 3, the fixed end cover is used to water, 4, the aluminum row body, 5, the air flue hole, 6, the water channel hole, 7, the suction hole, 8, the heat transfer water pipe, 9, the joint is used to gas, 10, the water channel connects, 11, the heat transfer connects, 12, the runner, 13, the baffle, 14, the locking tooth, 15, the inclined plane, 16, vertical face, 17, the locking round pin, 18, butt spring, 19, the spigot surface.
Detailed Description
The technical solution of the present invention is further described in detail by the following specific embodiments in combination with the accompanying drawings:
example (b): an aluminum row assembly for a vacuum texture suction machine (see attached figures 1 to 4) comprises a plurality of aluminum rows 1, a gas fixing end cover 2 and a water fixing end cover 3, wherein the aluminum rows are of a fan-shaped structure, all the aluminum rows surround an aluminum row body 4 which forms a cylindrical structure, the gas fixing end cover and the water fixing end cover are respectively connected to two ends of the aluminum row body, a plurality of air channel holes 5 and water channel holes 6 are formed in the aluminum rows, a plurality of air suction holes 7 are formed in the outer wall of each aluminum row and correspond to each water channel hole, the air suction holes are communicated with the water channel holes, heat exchange water pipes 8 are installed in the air channel holes, one ends of the aluminum rows are connected with gas connectors 9 communicated with the air channel holes, the gas connectors penetrate through the gas fixing end covers, the other ends of the aluminum rows are connected with water channel connectors 10 and heat exchange connectors 11, the water channel connectors and the heat exchange connectors penetrate through the water fixing end covers, the water channel connectors are communicated with the water channel holes, and the heat exchange connectors are communicated with the heat exchange water pipes.
Two flow passages 12 are arranged in the heat exchange water pipe, the end parts of the two flow passages far away from the water fixing end cover are communicated, one end of the heat exchange joint is provided with two inserting cylinders, the other end of the heat exchange joint is provided with two connectors, the two connectors are respectively communicated with the two inserting cylinders, and the two inserting cylinders are respectively and tightly inserted at the end parts of the two flow passages. One of the two connecting heads is a water inlet joint, and the other is a water outlet joint. A partition plate 13 is arranged in the heat exchange water pipe and divides the heat exchange water pipe into two flow passages, and the cross sections of the two flow passages are semicircular. The water channel hole is arranged in the aluminum row in a snake-shaped tubular structure, two ends of the water channel hole are arranged on the same side of the aluminum row body, and two ends of the water channel hole are connected with the water channel joint. The inseparable cartridge of gas joint is in the one end in gas passage hole, gas is with connecting and being equipped with one section locking tooth 14 on the outer wall, the locking tooth is inclined plane 15 towards a side in gas passage hole, the locking tooth is vertical face 16 from a side in gas passage hole, correspond installation locking round pin 17 with gas joint on the fixed disk, locking round pin one end butt is between two adjacent locking teeth, installation butt spring 18 between the other end and the fixed disk, locking round pin tip is equipped with the spigot surface 19 of slope, the spigot surface butt is on the inclined plane of locking tooth, the side laminating of locking round pin is on the vertical face of locking tooth.
When the ceramic cylinder with air permeability is sleeved on the outer surface of the aluminum exhaust body, the air passage hole in the aluminum exhaust body is vacuumized by the vacuum pump, vacuum negative pressure can be formed on the outer surface of the ceramic cylinder, and when the PU synthetic leather coated on the outer surface of the ceramic cylinder passes through the ceramic cylinder, the PU synthetic leather can be sucked on the ceramic cylinder through the pressure difference between the atmospheric pressure and the vacuum negative pressure on the outer surface of the ceramic cylinder to form suction lines matched with the outer surface of the ceramic cylinder. Set up the heat transfer water pipe downthehole at the air flue, let in cold water in to the heat transfer water pipe through heat transfer joint, directly cool off downthehole the air flue, improved the cooling effect greatly, cool off the aluminium row through to the downthehole cold water that lets in of water course, the cooling method that both combined together has improved the cooling effect that the aluminium was arranged greatly, makes to inhale the difficult rebound phenomenon that appears of line, has guaranteed product quality.
The above-described embodiments are merely preferred and are not intended to limit the present invention in any way, and other variations and modifications may be made without departing from the spirit and scope of the invention as defined in the appended claims.

Claims (5)

1. The utility model provides a line machine aluminium row subassembly is inhaled in vacuum, which is characterized by, including a plurality of aluminium rows, fixed end cover is used to gas, fixed end cover is used to water, the aluminium row is fan-shaped ring structure, all aluminium rows are around constituting the aluminium row body of tubular structure, fixed end cover is used to gas, water is connected respectively at the both ends of aluminium row body with fixed end cover, be equipped with a plurality of gas channel holes and water channel hole in the aluminium row, all correspond with every water channel hole on the aluminium row outer wall and set up a plurality of suction holes, suction hole and water channel hole intercommunication, the downthehole heat transfer water pipe of installing of air channel, the air that air channel hole intercommunication is connected to aluminium row one end, air is connected with the gas joint of gas channel hole intercommunication, air is run through gas with fixed end cover, water channel joint and heat transfer joint are connected to the aluminium row other end, water channel joint and heat transfer joint all run through water with fixed end cover for water, water channel joint and water transfer water pipe intercommunication.
2. The aluminum bar assembly for the vacuum embossing machine as claimed in claim 1, wherein two flow passages are provided in the heat exchange water pipe, the two flow passages communicate with each other at an end portion away from the water fixing end cap, one end of the heat exchange joint is provided with two insertion cylinders, the other end of the heat exchange joint is provided with two connectors, the two connectors communicate with the two insertion cylinders, respectively, and the two insertion cylinders are tightly inserted into the end portions of the two flow passages, respectively.
3. The aluminum bar assembly for the vacuum embossing machine as claimed in claim 1, wherein a partition is provided in the heat exchange water pipe to divide the heat exchange water pipe into two flow passages, and the cross sections of the two flow passages are semicircular.
4. The aluminum bar assembly for the vacuum embossing machine as claimed in claim 1, 2 or 3, wherein the water passage holes are arranged in the aluminum bar in a serpentine tubular structure, both ends of the water passage holes are disposed at the same side of the aluminum bar body, and both ends of the water passage holes are connected with the water passage joints.
5. The aluminum bar assembly for the vacuum grain suction machine as claimed in claim 1, 2 or 3, wherein the air connector is tightly inserted into one end of the air passage hole, a section of locking teeth is arranged on the outer wall of the air connector, one side surface of the locking teeth facing the air passage hole is an inclined surface, one side surface of the locking teeth away from the air passage hole is a vertical surface, the fixed disk and the air connector are correspondingly provided with locking pins, one ends of the locking pins are abutted between two adjacent locking teeth, abutting springs are arranged between the other ends of the locking pins and the fixed disk, the end parts of the locking pins are provided with inclined guide surfaces, the guide surfaces are abutted against the inclined surfaces of the locking teeth, and the side surfaces of the locking pins are abutted against the vertical surfaces of the locking teeth.
CN202022287614.6U 2020-10-14 2020-10-14 Aluminum row assembly for vacuum line suction machine Active CN214033131U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022287614.6U CN214033131U (en) 2020-10-14 2020-10-14 Aluminum row assembly for vacuum line suction machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022287614.6U CN214033131U (en) 2020-10-14 2020-10-14 Aluminum row assembly for vacuum line suction machine

Publications (1)

Publication Number Publication Date
CN214033131U true CN214033131U (en) 2021-08-24

Family

ID=77352608

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022287614.6U Active CN214033131U (en) 2020-10-14 2020-10-14 Aluminum row assembly for vacuum line suction machine

Country Status (1)

Country Link
CN (1) CN214033131U (en)

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