CN208408455U - Revolving tube cooling machine - Google Patents

Revolving tube cooling machine Download PDF

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Publication number
CN208408455U
CN208408455U CN201820574638.XU CN201820574638U CN208408455U CN 208408455 U CN208408455 U CN 208408455U CN 201820574638 U CN201820574638 U CN 201820574638U CN 208408455 U CN208408455 U CN 208408455U
Authority
CN
China
Prior art keywords
cylinder
cooling
water
machine according
revolving tube
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.)
Expired - Fee Related
Application number
CN201820574638.XU
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Chinese (zh)
Inventor
颜邦棣
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.)
Tiantai Zhongtai Machinery Ltd By Share Ltd
Original Assignee
Tiantai Zhongtai Machinery Ltd By Share 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 Tiantai Zhongtai Machinery Ltd By Share Ltd filed Critical Tiantai Zhongtai Machinery Ltd By Share Ltd
Priority to CN201820574638.XU priority Critical patent/CN208408455U/en
Application granted granted Critical
Publication of CN208408455U publication Critical patent/CN208408455U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of revolving tube cooling machines, belong to cooler field, its key points of the technical solution are that including cylinder, the plate conveyor for being connected to inner barrel, the feeding cylinder being connected on cylinder, the discharge barrel being connected on cylinder and the Power Component being connected on cylinder, it further include that the cooling component sprayed water on the outside of cylinder towards cylinder is set, the sparge pipe being arranged towards cylinder is connected in cooling component, the cooling component is connected with the radiating subassembly cooling to cooling water.The utility model solves the technical issues of cooler waste water resource under the prior art, has achieved the effect that save water, applied in the cooling of casting model powder.

Description

Revolving tube cooling machine
Technical field
The utility model relates to a kind of coolers, more specifically, it is related to a kind of revolving tube cooling machine.
Background technique
Horizontal revolving cylinder cooler is cooling one of the capital equipment of casting model powder.Casting model powder is in cooling cylinder body with cooling cylinder Body is rotated and is stirred, and casting model powder transfers heat to cooling cylinder, and air water atomization is directly injected to the outer of the cooling cylinder of rotation On wall, the water mist being sufficiently atomized encounters the cooling cylinder body outer wall i.e. high-efficient gasification of high temperature, takes away amount of heat.
The cylinder feed end of horizontal revolving cylinder cooler is higher than discharge end, it is ensured that casting model powder from feed end enter, then from Discharge end comes out, but prolonged operating, and cylinder can be detached from support device to discharging end movement, thus horizontal revolving cylinder cooler It can not normal operation.
To solve the above-mentioned problems, in the prior art, Authorization Notice No. is that the Chinese utility model of CN203284440U is special A kind of horizontal revolving cylinder cooler is disclosed in sharp file, including cooling cylinder and the feeding cylinder connecting with its left and right ends and is gone out Barrel, cooling barrel outer surface are equipped with air water and are sprayed ring, and cooling cylinder left and right ends outer circle is equipped with support device, the support of right end The right side of device is equipped with rotating device, and the support device is the wheel belt of two support wheel support sleeves on cooling cylinder, and two The center of support wheel and the angle of the wheel belt line of centres are 60 °, and the right edge of the support device of the right end is equipped with position-limited wheel.
Existing this formula revolution cylinder cooler is sprayed the steam that ring spray goes out by air water and cools down to cooling cylinder, water Vapour short time after the heat for absorbing cooling cylinder loses the effect for continuing heat absorption, cause cooling procedure need a large amount of water into Row cooling, wastes water resource.
Utility model content
In view of the deficienciess of the prior art, passing through the purpose of this utility model is to provide a kind of revolving tube cooling machine Cooling component and radiating subassembly on the outside of cylinder, which is arranged in, to be realized and can either cool down to cylinder, and can be used to cooling Water is accelerated to absorb the heat dissipation for the cooling water for having heat after recycling, and can be continuously applied in cooling, reduce cooled The waste of water resource in journey.
To achieve the above object, the utility model provides following technical solution: a kind of revolving tube cooling machine, including cylinder, It is connected to the plate conveyor of inner barrel, the feeding cylinder being connected on cylinder, the discharge barrel being connected on cylinder and is connected to cylinder Power Component on body, it is characterised in that: further include that the cooling component sprayed water on the outside of cylinder towards cylinder, cooling component are set On be connected with the sparge pipe being arranged towards cylinder, the cooling component is connected with the radiating subassembly cooling to cooling water.
By using above-mentioned technical proposal, cylinder is cooled down by cooling component, can be accelerated by radiating subassembly Absorb have cylinder heat cooling water radiating rate, enable cooling water continue be applied in the heat dissipation of cylinder, save Water resource improves radiating efficiency.
It is preferable: the cooling component include be placed on sink below cylinder, the water pipe that is connected on sink and company Connect the water pump on water pipe.
By using above-mentioned technical proposal, cooling water sustainable circulation benefit during cooling down to cylinder can be made With.
Preferable: the sparge pipe is parallel to tubular axis setting.
By using above-mentioned technical proposal, can be improved by the sparge pipe being arranged along entire body axis direction to the cold of cylinder But effect.
Preferable: the radiating subassembly includes the C-shaped channel being connected on water pipe, the heat dissipation of connection on a passage Grid, the upper heat emission fan being connected on heat dissipation grid and the lower heat emission fan being connected on heat dissipation grid.
By using above-mentioned technical proposal, there is the cooling water of cylinder heat to absorption by upper heat emission fan and lower heat emission fan It is cooled down, i.e., cooling water applies water cooling, upper heat emission fan and lower heat emission fan to cylinder and applies air-cooled, Neng Goujia to cooling water The radiating rate of fast cooling water, can make applying in the cooling of cylinder for cooling water continuous and effective;By the way that channel is set Upper heat emission fan and lower heat emission fan are capable of increasing to the cooling effect of cooling water in channel for c-type, improve dissipating for cooling water The thermal efficiency, and then improve the heat dissipation effect of cylinder.
It is preferable: the Power Component include the ring gear being connected in cylinder cambered surface, with ring gear cooperation gear and with The motor of gear connection.
It by using above-mentioned technical proposal, is rotated by motor driven gear, the rotation of gear band movable tooth ring can make cylinder It is steadily rotated along its axis.
Preferable: plate conveyor is helically linear.
By using above-mentioned technical proposal, the intracorporal material of cylinder can be made to turn with cylinder by the plate conveyor of zigzag shape Dynamic stability is moved to the other end from one end.
It is preferable: at least two support components to be connected with below the cylinder, support component includes connecting on the ground Pedestal and the support wheel being connected on pedestal, the cambered surface of support wheel are abutted with cylinder.
By using above-mentioned technical proposal, support can be provided for cylinder by support component, reduce Power Component and hold The pressure received, improves service life.
Preferable: the top surface of the discharge barrel is equipped with dust removal port, and the lower section of the discharge barrel is equipped with discharge port, the charging Cylinder is equipped with feed inlet, is equipped at dust removal port and inhales hair dryer.
By using above-mentioned technical proposal, the intracorporal material of cylinder can be blown with dust is generated during barrel body rotation by inhaling The intracorporal dust of cylinder can be concentrated and be collected from dust removal port by blower, and it is dirty to reduce dust environment caused by the other positions leakage Dye.
It is preferable: antislip ring made of rubber is connected on the support wheel.
By using above-mentioned technical proposal, when between cylinder and support wheel being sliding friction cylinder and support wheel have compared with Big abrasion, and a large amount of noises can be generated, it can be increased between cylinder and support wheel by the way that antislip ring is arranged on support wheel Frictional force reduces the sliding friction between cylinder and support wheel, reduces the abrasion of cylinder and support wheel, also reduces and make an uproar Sound.
It is preferable: to be equipped with the limiting slot cooperated with support wheel, antislip ring at the position of support wheel cooperation on the cylinder Cambered surface be connected to inside limiting slot.
By using above-mentioned technical proposal, the limit on axis direction can be provided for cylinder, reduced cylinder and rotated The axial displacement of process.
In conclusion the utility model has the advantages that 1. can make to cylinder cooling compared with the prior art Water circulation use, reduce water resource waste;2. the cooling of water can be accelerated, cooling efficiency is improved;3. reducing cylinder Noise in rotation.
Detailed description of the invention
Fig. 1 is that embodiment is the axonometric drawing for indicating plate conveyor structure;
Fig. 2 is that embodiment is to indicate integrally-built axonometric drawing;
Fig. 3 is the portion the A enlarged drawing in Fig. 2 to indicate Power Component structure;
Fig. 4 is that embodiment is the right view for indicating cooling component connection relationship;
Fig. 5 is the portion the B enlarged drawing in Fig. 4 to indicate heat radiation assembly structure.
In figure: 1, cylinder;11, plate conveyor;12, feeding cylinder;121, feed inlet;13, discharge barrel;131, discharge port;132, Connecting tube;133, hair dryer is inhaled;134, dust removal port;14, limiting slot;2, Power Component;21, motor;22, gear;23, ring gear; 24, support;3, cooling component;31, sink;32, water pump;33, water pipe;34, sparge pipe;4, support component;41, support wheel;42, Antislip ring;43, pedestal;5, radiating subassembly;51, upper heat emission fan;52, lower heat emission fan;53, radiate grid;54, channel.
Specific embodiment
The utility model is described in further detail below.
Embodiment: a kind of revolving tube cooling machine is connected with along its axis helically linear referring to Fig. 1 and Fig. 2, in cylinder 1 Plate conveyor 11.Helically threadiness can make plate conveyor have good transport effect to plate conveyor 11.
Referring to fig. 2, including the feeding cylinder 12 and discharge barrel 13 that are placed on the ground, feeding cylinder 12 is equipped with feed inlet 121, The bottom end of discharge barrel 13 is equipped with discharge port 131, and cylinder 1 is rotatably connected between feeding cylinder 12 and discharge barrel 13.On discharge barrel 13 It is connected with dust removal port 134, dust removal port 134 is communicated with connecting tube 132, is connected in connecting tube 132 and inhales hair dryer 133.On cylinder 1 Side's connection is parallel to the sparge pipe 34 of 1 axis of cylinder, and 34 one end of sparge pipe is communicated with water pipe 33, and 1 lower section of cylinder is also placed with Sink 31.Discharge port 131 is located at the bottom end of discharge barrel 13 to transport from cylinder 1 convenient for material.By being connected with suction hair dryer Dust centralized collection in cylinder 1 can be reduced pollution of the dust leakage to environment by 133 dust removal port 134.
Referring to figs. 2 and 3, it is fixedly connected with ring gear 23 in the cambered surface of cylinder 1, support 24 is fixedly connected in sink 31, It is fixedly connected with motor 21 on support 24, gear 22 is fixedly connected on the output shaft of motor 21, gear 22 is engaged with ring gear 23, Motor 21, gear 22 and ring gear 23 constitute Power Component 2.It is also symmetrical in sink 31 that there are four be installed in sink 31 Pedestal 43 is rotatably connected to support wheel 41 on pedestal 43, the antislip ring 42 concentric with support wheel 41 is connected on support wheel 41, prevents Slipping ring 42 is made of rubber.Limiting slot 14 is connected in the cambered surface of cylinder 1 at support wheel 41, antislip ring 42 is connected to limiting slot In 14.It is rotated by motor 21 with moving gear 22, gear 22 drives ring gear 23 to rotate turn that cylinder 1 can be made stable along its axis It is dynamic.The pressure that Power Component 2, feeding cylinder 12 and discharge barrel 13 are born can be reduced by the way that support wheel 41 is arranged, it is cold to improve rotating cylinder But the service life of machine.The friction between support wheel 41 and cylinder 1 can be increased by the way that antislip ring 42 is arranged on support wheel 41 Power reduces the sliding friction between cylinder 1 and support wheel 41, i.e., noise when reduction cylinder 1 rotates.By on cylinder 1 Limiting slot 14, which is arranged, can reduce the moving along its axial direction during rotation of cylinder 1, improve the stability of the rotation of cylinder 1.
Referring to fig. 4, the connection of water pipe 33 is connected with water pump 32 on the side wall of sink 31 on water pipe 33, water pipe 33 it is another Fig. 2 is seen with sparge pipe 34(in end) it connect, water pipe 33, water pump 32 and sink 31 constitute cooling component 3.By sparge pipe 34 with it is cold But component 3 can cool down cylinder 1, and water after cooling can be recycled sustainable use.
Referring to Fig. 5, radiating subassembly 5 is connected on water pipe 33, radiating subassembly 5 includes upper heat emission fan 51, lower heat emission fan 52, dissipates What hot grid 53 and channel 54, upper heat emission fan 51 and lower heat emission fan 52 were distributed vertically is fixedly connected on heat dissipation grid 53, upper heat dissipation The air-flow driven after fan 51 and the starting of lower heat emission fan 52 can be flowed by heat dissipation grid 53, and channel 54 is fixedly connected in C font Heat emission fan 51 and lower heat dissipation are located inside heat dissipation grid 53, and in parallel to each other two side in the channel 54 of C font The rear of fan 52.Water after the recovery can be cooled down, can be put into again as soon as possible to cylinder by radiating subassembly 5 In 1 cooling, the cooperation of heat dissipation grid 53 and upper heat emission fan 51 and lower heat emission fan 52 can accelerate cooling of the wind to channel 54, i.e., The cooling for accelerating water improves radiating efficiency, that is, improves cooling efficiency.
The working principle when revolving tube cooling machine uses is as follows: starting motor 21 makes gear 22 that ring gear 23 be driven to rotate, cylinder Body 1 also starts turning, and material is poured into cylinder 1 by feed inlet 121, by the translocation of the plate conveyor 11 of zigzag shape Transport leaves cylinder 1 by discharge port 131 to discharge barrel 13.The effect of plate conveyor 11 of the material through rotating during transportation Dust can be generated, dust centralized collection can be reduced powder under the action of the suction hair dryer 133 connecting with dust removal port 134 Dirt pollutes caused by leaking.Axial displacement may be generated during cylinder 1 rotates, limiting slot 14 is matched with support wheel 41 The axial displacement that can reduce cylinder 1 is closed, the stability of the rotation of cylinder 1 is improved.Water pump is opened during cylinder 1 rotates 32, the water in sink 31 uniformly spreads to cylinder 1 by sparge pipe 34 and finally flows back to sink 31, and the water in water pipe 33 is flowing Pass through radiating subassembly 5 in the process, the air-flow that upper heat emission fan 51 is generated with the rotation of lower heat emission fan 52 is by screen in channel 54 Water flow is cooled down, and makes to carry out cylinder 1 that cooling water energy is enough keeps low temperature for a long time.
The above is only the preferred embodiment of the utility model, and the protection scope of the utility model is not limited merely to Above-described embodiment, technical solution belonging to the idea of the present invention belong to the protection scope of the utility model.It should refer to Out, for those skilled in the art, it is without departing from the principle of the utility model it is several improvement and Retouching, these improvements and modifications also should be regarded as the protection scope of the utility model.

Claims (10)

1. a kind of revolving tube cooling machine including cylinder (1), the plate conveyor (11) being connected to inside cylinder (1), is connected to cylinder (1) On feeding cylinder (12), the discharge barrel (13) being connected on cylinder (1) and the Power Component (2) being connected on cylinder (1), It is characterized in that: further including the cooling component (3) that setting is sprayed water on the outside of cylinder (1) towards cylinder (1), cooling component connects on (3) It is connected to the sparge pipe (34) towards cylinder (1) setting, the cooling component (3) is connected with the radiating subassembly cooling to cooling water (5)。
2. revolving tube cooling machine according to claim 1, it is characterised in that: the cooling component (3) includes being placed on cylinder (1) sink (31), the water pipe (33) being connected on sink (31) below and the water pump (32) being connected on water pipe (33).
3. revolving tube cooling machine according to claim 2, it is characterised in that: the sparge pipe (34) is parallel to cylinder (1) Axis setting.
4. revolving tube cooling machine according to claim 2, it is characterised in that: the radiating subassembly (5) includes being connected to water pipe (33) C-shaped channel (54) on, the heat dissipation grid (53) being connected on channel (54), upper dissipating of being connected in heat dissipation grid (53) Heat fan (51) and the lower heat emission fan (52) being connected in heat dissipation grid (53).
5. revolving tube cooling machine according to claim 1, it is characterised in that: the Power Component (2) includes being connected to cylinder (1) ring gear in cambered surface (23), with the gear (22) of ring gear (23) cooperation and the motor (21) that is connect with gear (22).
6. revolving tube cooling machine according to claim 1, it is characterised in that: plate conveyor (11) is helically linear.
7. revolving tube cooling machine according to claim 1, it is characterised in that: be connected at least two below the cylinder (1) Support component (4), support component (4) include the pedestal (43) connected on the ground and the support wheel being connected on pedestal (43) (41), the cambered surface of support wheel (41) is abutted with cylinder (1).
8. revolving tube cooling machine according to claim 1, it is characterised in that: the top surface of the discharge barrel (13) is equipped with dust removal port (134), the lower section of the discharge barrel (13) is equipped with discharge port (131), and the feeding cylinder (12) is equipped with feed inlet (121), removes It is equipped at dirt mouth (134) and inhales hair dryer (133).
9. revolving tube cooling machine according to claim 7, it is characterised in that: be connected with rubber on the support wheel (41) and be made Antislip ring (42).
10. revolving tube cooling machine according to claim 1, it is characterised in that: cooperate on the cylinder (1) with support wheel (41) Position at be equipped with the limiting slot (14) that cooperate with support wheel (41), it is interior that the cambered surface of antislip ring (42) is connected to limiting slot (14) Portion.
CN201820574638.XU 2018-04-21 2018-04-21 Revolving tube cooling machine Expired - Fee Related CN208408455U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820574638.XU CN208408455U (en) 2018-04-21 2018-04-21 Revolving tube cooling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820574638.XU CN208408455U (en) 2018-04-21 2018-04-21 Revolving tube cooling machine

Publications (1)

Publication Number Publication Date
CN208408455U true CN208408455U (en) 2019-01-22

Family

ID=65119404

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201820574638.XU Expired - Fee Related CN208408455U (en) 2018-04-21 2018-04-21 Revolving tube cooling machine

Country Status (1)

Country Link
CN (1) CN208408455U (en)

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GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20190122

Termination date: 20210421