CN205119718U - Pottery drying device - Google Patents

Pottery drying device Download PDF

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Publication number
CN205119718U
CN205119718U CN201520744511.4U CN201520744511U CN205119718U CN 205119718 U CN205119718 U CN 205119718U CN 201520744511 U CN201520744511 U CN 201520744511U CN 205119718 U CN205119718 U CN 205119718U
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CN
China
Prior art keywords
fixed
turning device
frame
transmission mechanism
drying system
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Expired - Fee Related
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CN201520744511.4U
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Chinese (zh)
Inventor
陈联社
柯国镇
胡大宛
尹强
承忠
吴嘉猛
朱树兵
柯勇
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Fujian Jilong Machine Technologies Co Ltd
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Fujian Jinjiang Jilong Machine Industry Co Ltd
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Application filed by Fujian Jinjiang Jilong Machine Industry Co Ltd filed Critical Fujian Jinjiang Jilong Machine Industry Co Ltd
Priority to CN201520744511.4U priority Critical patent/CN205119718U/en
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Publication of CN205119718U publication Critical patent/CN205119718U/en
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  • Drying Of Solid Materials (AREA)

Abstract

The utility model discloses a pottery drying device, including a drive mechanism, first drying system, secondary drive mechanism, the device is carried with moving to the second drying system, a drive mechanism's side is located to secondary drive mechanism parallel, first drying system, a drive mechanism and the 2nd drive mechanism's top is located respectively to the second drying system, move the top of carrying the device and locating first drying system, secondary drive mechanism includes the frame and locates the annular transmission rail in the frame, be located outside the second drying system, be equipped with a turning device and the 2nd turning device in the frame of secondary drive mechanism top. This pottery drying device is dried the substep with the porcelain base and is handled, incompletely dries in the first drying system, avoid the porcelain base in because of the mould at a drive mechanism over -drying shrink produces, lead to the fact disadvantages such as porcelain base fracture, deformation, overturn after the porcelain base rotates 90 and 180 send into the second drying system, can make porcelain base drying more even, ceramic output is of high quality.

Description

A kind of ceramic drying unit
Technical field
The utility model relates to household porcelain production apparatus field, refers to a kind of ceramic drying unit especially.
Background technology
Production of Ceramics comprises the technological processes such as mud refining, roll forming, oven dry, deburring, during work, first mud bar raw material is sent into soil kneader, extrude also vacuumizing process through helical blade and form fine and close moulded pottery not yet put in a kiln to bake, moulded pottery not yet put in a kiln to bake is sent in mould automatically, be after porcelain base shape through roll forming device roll extrusion, enter drying unit and carry out drying, more dried porcelain base is delivered to edge-neatening apparatus carry out refine process.Existing ceramic roll forming production line, only comprise a dryer, namely porcelain base is transferred to edge-neatening apparatus after primary drying, this kind of production line, the drying of porcelain base is even, yielding not, affects ceramic product quality, and porcelain base can produce contraction when mould is dry, thus cause the disadvantages such as porcelain base cracking, distortion.Separately have porcelain base after first drying, the mode of production of secondary drying under line is carried out in the demoulding, this kind of mode of production, and production efficiency is low, and it is large that the turnover of porcelain base takies ground, and cannot reach automated production.
Summary of the invention
The purpose of this utility model one is to provide a kind of ceramic drying unit.
A kind of ceramic drying unit, comprise the first transmission mechanism, first drying system, second transmission mechanism, second drying system and shifting apparatus, the parallel side being located at the first transmission mechanism of described second transmission mechanism, first drying system, second drying system is located at the top of the first transmission mechanism and the second transmission mechanism respectively, shifting apparatus is located at the top of the first drying system, described second transmission mechanism comprises frame and is located at the endless drive rail in frame, on transmission rail, evenly erection is distributed with and somely hangs indigo plant, each indigo plant of hanging comprises at least one arrangement unit, when hanging indigo plant and comprising some arrangement unit, some arrangement unit arrange along horizontal vertical in the direction of transmission rail, be positioned at outside the second drying system, frame above second transmission mechanism is provided with the first turning device and the second turning device, first turning device and the second turning device include adjustable shelf and are located at trip shaft above transmission rail in machine frame at two sides and oscillating cylinder, the output shaft of oscillating cylinder is axially identical with trip shaft and be fixedly connected with trip shaft one end, trip shaft is fixed with horizontal flip-arm, the quantity of flip-arm, distributing position all with single hang blue settle the quantity of unit and distributing position corresponding, flip-arm is upwards fixed with longitudinally vertical sucker bar, sucker bar free end is provided with sucker.
Further, the transmission rail of the second transmission mechanism is vertical ring structure, transmission rail comprises two hollow bearing pin roller chains arranged side by side, in the equally spaced hollow pins of hollow bearing pin roller chain, activity has fastened bearing pin, and corresponding two bearing pins in two hollow bearing pin roller chain positions hang blue two ends and are fixedly connected with same near one end of inner side respectively.The transmission rail of vertical ring, floor space is less, hangs blue two ends and is flexibly connected with hollow bearing pin roller chain by bearing pin, to hang blue between delivery area, between the arc delivery area of particularly vertical ring transmission rail, can level be remained, guarantee porcelain base safety, even running.
Further, trip shaft is positioned at frame place and is horizontally set with a backstay parallel with flip-arm, and in the frame of backstay end, trip shaft both sides, be respectively fixed with a fixed bar, two fixed bars are symmetrical arranged, before and after trip shaft rotates, backstay contacts with two fixed bars respectively.When flip-arm drives sucker to overturn, flip angle is difficult to control, easily occur the excessive or too small phenomenon of flip angle, and upset stops moment, less stable, there is shaking phenomenon, the setting of this structure, accurately can obtain the flip angle of 180 °, accurately can arrive porcelain base position to make upset anterior sucker, the porcelain base of upset posterior sucker absorption can accurate dropping place, separately also can improve the stability of upset stopping.
Further, fixed bar is oil buffer.When backstay is with trip shaft upset location, contacts with oil buffer, oil buffer Absorbable rod backstay rotation function, avoid the porcelain base of frame and sucker suction to produce large vibrations.
Further, also comprise upset switch, upset switch comprises and is fixed on the first cam switch in frame and the second cam switch, intrinsic first activation cam is overlapped in the trip shaft position corresponding with the first cam switch, intrinsic second activation cam is overlapped in the trip shaft position corresponding with the second cam switch, overturn front first activation cam protuberance to contact with the first cam switch, it is 180 ° that the second activation cam and the first activation cam install phase difference.When sucker overturns 180 °, second activation cam protuberance contacts with the second cam switch, trigger the second cam switch, send signal, oscillating cylinder stops driving trip shaft to rotate, sucker does release movement simultaneously, porcelain base falls within and hangs blue arrangement unit, when sucker turns round 180 °, first activation cam protuberance contacts with the first cam switch, trigger the first cam switch, send signal, oscillating cylinder stops driving trip shaft revolution, sucker does absorption action, porcelain base is adsorbed, this structure detects the upturned position of sucker on the one hand, provide the absorption actuating signal of sucker on the other hand, to realize Automated condtrol.
Further, shifting apparatus comprises installing rack, indexing mechanism and Qu Pi mechanism, described indexing mechanism comprises drive motors, eccentric disc, pivot link and the first pivoted arm, described drive motors is fixedly installed on installing rack, and drive motors and eccentric disc are in transmission connection, and eccentric disc is connected with pivot link, the first pivoted arm successively, first pivoted arm cover is fixed in a rotating shaft, rotating shaft is vertically fixed on installing rack rotationally, rotating shaft is also overlapped intrinsic second pivoted arm, the second pivoted arm is installed with Qu Pi mechanism.Drive motors drives eccentric disc, eccentric disc drives the first pivoted arm, rotating shaft and the second pivoted arm to rotate by pivot link, and then Qu Pi mechanism on drive pivoted arm and got the porcelain base half-twist put by Qu Pi mechanism, porcelain base is transferred load to the first turning device station of the second transmission mechanism, this shifting apparatus, compact conformation, takes up an area little, substantially increases production efficiency.
Further, described Qu Pi mechanism comprises the cylinder holder be fixed on the second pivoted arm, cylinder holder passes and is fixed with lifting cylinder, the direction of motion of lifting cylinder down, lifting cylinder second piston rod end is installed with sucker fixed mount, at least one group of Suction cup assembly is fixed with below sucker fixed mount, the cylinder holder of lifting cylinder second piston rod both sides is respectively provided with a vertical through hole, sucker fixed mount is also fixed with two guide rods corresponding with vertical through hole position, two guide rods are each passed through two vertical through hole.Lifting cylinder drives Suction cup assembly to move up and down, and realizes absorption and the release of porcelain base, and its structure is simple, and can realize the transfer of many group porcelain bases, enhance productivity, wherein guide rod plays guiding and prevents from rotating.
Further, also comprise the hanging basket automatic turning device be located between the second turning device and the first turning device, hanging basket automatic turning device comprises propulsion cylinder and inductive switch, described propulsion cylinder is fixedly installed on a side frame, one push rod is fixedly connected with the first piston bar of propulsion cylinder, frame above propulsion cylinder is also provided with a rotating fulcrum, the first end cover of push rod is fixed on fulcrum, described fulcrum is provided with a link assembly, the output of link assembly is fixedly connected with a driving lever, and the lower surface of driving lever contacts with hanging basket.When hanging basket moves to hanging basket automatic turning device station with transmission rail, inductive switch induced signal, start propulsion cylinder, the first piston bar of propulsion cylinder is released, promote push rod to swing around fulcrum, fulcrum drivening rod assembly swings and then drives driving lever to swing, driving lever applies pressure to hanging basket, make to hang a blue upset angle, the porcelain base broken or material slag are poured out, this hanging basket automatic turning device in hanging basket, the delay of hanging debris getting in basket can be avoided, and then affect production work, which ensure that the stable operation of production system, improve production efficiency.
The purpose of this utility model two is to provide a kind of ceramic production line.
A kind of ceramic production line, comprises ceramic drying unit described in the utility model.
The utility model pottery drying unit, porcelain base delivers into the first drying system by the first transmission mechanism, carry out the first turning device station being transferred load to the second transmission mechanism after once not exclusively drying by shifting apparatus half-twist, being placed on after first turning device absorption porcelain base is overturn 180 ° hangs on blue arrangement unit, the second drying system is delivered into by endless drive rail, carry out secondary to dry completely, porcelain base after oven dry is delivered to the second turning device station, adsorbed by the second turning device and overturn 180 °, then porcelain base is transferred to subsequent processing, this ceramic drying unit, by the first transmission mechanism and the first drying system, second transmission mechanism and the second drying system, porcelain base is dried step-by-step processing, not exclusively dry in first drying system, porcelain base is avoided to produce contraction because of over-drying in the mould of the first transmission mechanism, porcelain base is caused to ftracture, the disadvantages such as distortion, and when not exclusively drying, the mould on the first transmission mechanism more easily deviate from by porcelain base, in minimizing knockout course, porcelain base breaks, improve ceramic product rate, overturn 180 ° after porcelain base half-twist and send into the second drying system, the drying of porcelain base can be made more equal, ceramic yield quality is good, its automaticity another is high, improve production efficiency.
Accompanying drawing explanation
Be described in detail below in conjunction with the better embodiment of accompanying drawing to the utility model pottery drying unit, wherein:
Fig. 1 is the main TV structure schematic diagram not comprising the first transmission mechanism and the first drying system of a kind of better embodiment of the utility model;
Fig. 2 is the plan structure schematic diagram of a kind of better embodiment of the utility model;
Fig. 3 is the plan structure schematic diagram of the first turning device of a kind of better embodiment of the utility model;
Fig. 4 is the section structure schematic diagram of the utility model Fig. 3 along A-A line;
Fig. 5 is the right TV structure schematic diagram of the first turning device of a kind of better embodiment of the utility model;
Fig. 6 is the structural representation after the first turning device rotary movement of a kind of better embodiment of the utility model;
Fig. 7 is the plan structure partial sectional view of the transmission rail of a kind of preferred mode of the utility model;
Fig. 8 is the main TV structure schematic diagram of the shifting apparatus of a kind of better embodiment of the utility model;
Fig. 9 is that the shifting apparatus of a kind of better embodiment of the utility model is in the plan structure schematic diagram of the first transmission mechanism station;
Figure 10 is that the shifting apparatus of a kind of better embodiment of the utility model is in the plan structure schematic diagram of the second transmission mechanism first turning device station;
Figure 11 is the main TV structure schematic diagram of hanging basket automatic turning device of a kind of better embodiment of the utility model;
Figure 12 is the left TV structure schematic diagram of hanging basket automatic turning device of a kind of better embodiment of the utility model;
Figure 13 is the hanging basket automatic turning device tilt state schematic diagram of a kind of better embodiment of the utility model.
Detailed description of the invention
As shown in Figures 1 to 7, a kind of ceramic drying unit, comprise the first transmission mechanism 1, first drying system 10, second transmission mechanism 2, second drying system 20 and shifting apparatus 3, the parallel side being located at the first transmission mechanism 1 of described second transmission mechanism 2, first drying system 10, second drying system 20 is located at the top of the first transmission mechanism 1 and the second transmission mechanism 2 respectively, shifting apparatus 3 is located at the top of the first drying system 10, the endless drive rail 22 that described second transmission mechanism 2 comprises frame 21 and is located in frame 21, on transmission rail 22, evenly erection is distributed with and somely hangs blue 23, each indigo plant 23 of hanging comprises at least one arrangement unit 230, when hanging blue 23 and comprising some arrangement unit 230, some arrangement unit 230 arrange along horizontal vertical in the direction of transmission rail 21, be positioned at outside the second drying system 20, frame 21 above second transmission mechanism 2 is provided with the first turning device 4 and the second turning device 5, first turning device 4 and the second turning device 5 include adjustable shelf and are located at trip shaft 41 above transmission rail 22 in machine frame at two sides 21 and oscillating cylinder 42, the output shaft 421 of oscillating cylinder 42 is axially identical with trip shaft 41 and be fixedly connected with trip shaft 41 one end, trip shaft 41 is fixed with horizontal flip-arm 43, the quantity of flip-arm 43, the quantity that distributing position all hangs the arrangement unit 230 of blue 23 with single and distributing position corresponding, flip-arm 43 is upwards fixed with longitudinally vertical sucker bar 44, sucker bar 44 free end is provided with sucker 45.The transmission rail 22 of the second transmission mechanism 2 is vertical ring structure, transmission rail 22 comprises two hollow bearing pin roller chains 221 arranged side by side, in the equally spaced hollow pins 222 of hollow bearing pin roller chain 221, activity has fastened bearing pin 223, and corresponding two bearing pins 223 in two hollow bearing pin roller chain 221 positions are fixedly connected with same two ends of hanging blue 23 respectively near one end of inner side.Trip shaft 41 is positioned at frame 21 place and is horizontally set with a backstay 46 parallel with flip-arm 43, a fixed bar 461 is respectively fixed with in the frame 21 of backstay 46 end, trip shaft 41 both sides, two fixed bars 461 are symmetrical arranged, before and after trip shaft 41 rotates, backstay 46 contacts with two fixed bars 461 respectively.Fixed bar 461 is oil buffer.Also comprise upset switch 47, upset switch 47 comprises the first cam switch 471 and the second cam switch 473 be fixed in frame 21, intrinsic first activation cam 472 is overlapped in trip shaft 41 position corresponding with the first cam switch 471, intrinsic second activation cam 474 is overlapped in trip shaft 41 position corresponding with the second cam switch 473, overturn front first activation cam 472 protuberance to contact with the first cam switch 471, it is 180 ° that the second activation cam 474 and the first activation cam 472 install phase difference.
As shown in Fig. 8 to Figure 10, shifting apparatus 3 comprises installing rack 30, indexing mechanism 31 and Qu Pi mechanism 32, described indexing mechanism 31 comprises drive motors 311, eccentric disc 312, pivot link 313 and the first pivoted arm 314, described drive motors 311 is fixedly installed on installing rack 30, drive motors 311 and eccentric disc 312 are in transmission connection, eccentric disc 312 successively with pivot link 313, first pivoted arm 314 connects, first pivoted arm 314 cover is fixed in a rotating shaft 315, rotating shaft 315 is vertically fixed on installing rack 30 rotationally, rotating shaft 315 is also overlapped intrinsic second pivoted arm 316, second pivoted arm 316 is installed with Qu Pi mechanism 32.Described Qu Pi mechanism 32 comprises the cylinder holder 321 be fixed on the second pivoted arm 316, cylinder holder 321 passes and is fixed with lifting cylinder 322, the direction of motion of lifting cylinder 322 down, lifting cylinder second piston rod 3221 end winding support is provided with sucker fixed mount 323, at least one group of Suction cup assembly 324 is fixed with below sucker fixed mount 323, the cylinder holder 321 of lifting cylinder second piston rod 3221 both sides is respectively provided with a vertical through hole 3211, sucker fixed mount 323 is also fixed with two guide rods 3231 corresponding with vertical through hole 3211 position, two guide rods 3231 are each passed through two vertical through hole 3211.
As shown in Figure 10 to Figure 13, it also comprises the hanging basket automatic turning device 6 be located between the second turning device 5 and the first turning device 4, hanging basket automatic turning device 6 comprises propulsion cylinder 61 and inductive switch 62, described propulsion cylinder 61 is fixedly installed on a side frame 21, one push rod 63 is fixedly connected with the first piston bar 611 of propulsion cylinder, frame 21 above propulsion cylinder 61 is also provided with a rotating fulcrum 64, first end 631 cover of push rod 63 is fixed on fulcrum 64, described fulcrum 64 is provided with a link assembly 65, the output of link assembly 65 is fixedly connected with a driving lever 66, the lower surface 661 of driving lever 66 contacts with hanging basket 23.
The utility model pottery drying unit, oscillating cylinder 42 rotates for driving the flip-arm 43 on trip shaft 41 and trip shaft 41 and sucker 45; Sucker 45 is for absorption migration porcelain base.During work, porcelain base delivers into the first drying system 10 by the first transmission mechanism 1, carry out the first turning device 4 station being transferred load to the second transmission mechanism 2 after once not exclusively drying by shifting apparatus 3 half-twist, as shown in Figure 4, the sucker 45 of the first turning device 4 adsorbs porcelain base, after oscillating cylinder 42 action, sucker 45 is in position shown in Fig. 6, porcelain base overturns 180 °, sucker 45 discharge porcelain base be placed on hang blue 23 arrangement unit 230 on, endless drive rail 21 drives and hangs a blue 23 advances station, simultaneously, first turning device 4 returns original graph station as indicated at 4, for entering of next group porcelain base is got ready, circulation like this, porcelain base successively the second drying system 20 carries out secondary and dries completely, when hanging blue 23 and moving to the second turning device 5 place, second turning device 5 is by porcelain base state turnover state extremely as shown in Figure 6 as shown in Figure 4, for other devices, the taking-up of porcelain base is transferred to subsequent processing.
The utility model pottery drying unit, by the first transmission mechanism 1 and the first drying system 10, second transmission mechanism 2 and the second drying system 20, porcelain base is dried step-by-step processing, not exclusively dry in first drying system 10, porcelain base is avoided to produce contraction because of over-drying in the mould of the first transmission mechanism 1, porcelain base is caused to ftracture, the disadvantages such as distortion, and when not exclusively drying, the mould on the first transmission mechanism 1 more easily deviate from by porcelain base, in minimizing knockout course, porcelain base breaks, improve ceramic product rate, overturn 180 ° after porcelain base half-twist and send into the second drying system 20, the drying of porcelain base can be made more equal, ceramic yield quality is good, its automaticity another is high, improve production efficiency.
The utility model pottery drying unit, for making floor space less, and porcelain base safety, even running, preferably, the transmission rail 22 of the second transmission mechanism 2 is vertical ring structure, transmission rail 22 comprises two hollow bearing pin roller chains 221 arranged side by side, and in the equally spaced hollow pins 222 of hollow bearing pin roller chain 221, activity has fastened bearing pin 223, and corresponding two bearing pins 223 in two hollow bearing pin roller chain 221 positions are fixedly connected with same two ends of hanging blue 23 respectively near one end of inner side, for making sucker 45 upturned position accurate, and improve the stability of upset stopping, preferably, trip shaft 41 is positioned at frame 21 place and is horizontally set with a backstay 46 parallel with flip-arm 43, a fixed bar 461 is respectively fixed with in the frame 21 of backstay 46 end, trip shaft 41 both sides, two fixed bars 461 are symmetrical arranged, and before and after trip shaft 41 rotates, backstay 46 contacts with two fixed bars 461 respectively, the porcelain base adsorbed for frame 21 and sucker 45 when avoiding overturning produces large vibrations, and preferably, fixed bar 461 is oil buffer, for realizing Automated condtrol, preferably, also comprise upset switch 47, upset switch 47 comprises the first cam switch 471 and the second cam switch 473 be fixed in frame 21, intrinsic first activation cam 472 is overlapped in trip shaft 41 position corresponding with the first cam switch 471, intrinsic second activation cam 474 is overlapped in trip shaft 41 position corresponding with the second cam switch 473, overturn front first activation cam 472 protuberance to contact with the first cam switch 471, it is 180 ° that the second activation cam 474 and the first activation cam 472 install phase difference, for making compact conformation, take up an area little, substantially increase production efficiency, preferably, shifting apparatus 3 comprises installing rack 30, indexing mechanism 31 and Qu Pi mechanism 32, described indexing mechanism 31 comprises drive motors 311, eccentric disc 312, pivot link 313 and the first pivoted arm 314, described drive motors 311 is fixedly installed on installing rack 30, drive motors 311 and eccentric disc 312 are in transmission connection, eccentric disc 312 successively with pivot link 313, first pivoted arm 314 connects, first pivoted arm 314 cover is fixed in a rotating shaft 315, rotating shaft 315 is vertically fixed on installing rack 30 rotationally, rotating shaft 315 is also overlapped intrinsic second pivoted arm 316, second pivoted arm 316 is installed with Qu Pi mechanism 32, for making structure simple, enhance productivity, preferably, Qu Pi mechanism 32 comprises the cylinder holder 321 be fixed on the second pivoted arm 316, cylinder holder 321 passes and is fixed with lifting cylinder 322, the direction of motion of lifting cylinder 322 down, lifting cylinder second piston rod 3221 end winding support is provided with sucker fixed mount 323, at least one group of Suction cup assembly 324 is fixed with below sucker fixed mount 323, the cylinder holder 321 of lifting cylinder second piston rod 3221 both sides is respectively provided with a vertical through hole 3211, sucker fixed mount 323 is also fixed with two guide rods 3231 corresponding with vertical through hole 3211 position, two guide rods 3231 are each passed through two vertical through hole 3211, for ensureing production system stable operation, enhance productivity, preferably, also comprise the hanging basket automatic turning device 6 be located between the second turning device 5 and the first turning device 4, hanging basket automatic turning device 6 comprises propulsion cylinder 61 and inductive switch 62, described propulsion cylinder 61 is fixedly installed on a side frame 21, one push rod 63 is fixedly connected with the first piston bar 611 of propulsion cylinder, frame 21 above propulsion cylinder 61 is also provided with a rotating fulcrum 64, first end 631 cover of push rod 63 is fixed on fulcrum 64, described fulcrum 64 is provided with a link assembly 65, the output of link assembly 65 is fixedly connected with a driving lever 66, the lower surface 661 of driving lever 66 contacts with hanging basket 23.
This ceramic drying unit, the first transmission mechanism 1 and the second transmission mechanism 2 are general double track transmission mechanism; Another shifting apparatus 3 also can be independently located between the first transmission mechanism 1 and the second transmission mechanism 2.
The utility model additionally provides a kind of ceramic production line, and this ceramic production line comprises ceramic drying unit described in the utility model.

Claims (9)

1. a ceramic drying unit, it is characterized in that: comprise the first transmission mechanism (1), first drying system (10), second transmission mechanism (2), second drying system (20) and shifting apparatus (3), the described parallel side being located at the first transmission mechanism (1) of second transmission mechanism (2), first drying system (10), second drying system (20) is located at the top of the first transmission mechanism (1) and the second transmission mechanism (2) respectively, shifting apparatus (3) is located at the top of the first drying system (10), described second transmission mechanism (2) comprises frame (21) and is located at the endless drive rail (22) in frame (21), the upper evenly erection of transmission rail (22) is distributed with somely hangs indigo plant (23), each indigo plant (23) of hanging comprises at least one arrangement unit (230), when hanging indigo plant (23) and comprising some arrangement unit (230), some arrangement unit (230) arrange along horizontal vertical in the direction of transmission rail (21), be positioned at the second drying system (20) outward, the frame (21) of the second transmission mechanism (2) top is provided with the first turning device (4) and the second turning device (5), first turning device (4) and the second turning device (5) include adjustable shelf and are located at trip shaft (41) on transmission rail (22) top machine frame at two sides (21) and oscillating cylinder (42), the output shaft (421) of oscillating cylinder (42) is axially identical with trip shaft (41) and be fixedly connected with trip shaft (41) one end, trip shaft (41) is fixed with horizontal flip-arm (43), the quantity of flip-arm (43), distributing position all with single hang blue settle the quantity of unit (230) and distributing position corresponding, flip-arm (43) is upwards fixed with longitudinally vertical sucker bar (44), sucker bar (44) free end is provided with sucker (45).
2. ceramic drying unit according to claim 1, it is characterized in that: the transmission rail (22) of the second transmission mechanism (2) is vertical ring structure, transmission rail (22) comprises two hollow bearing pin roller chains (221) arranged side by side, hollow bearing pin roller chain (221) equally spaced hollow pins (222) interior activity has fastened bearing pin (223), and the one end of the close inner side of two bearing pins (223) that two hollow bearing pin roller chain (221) positions are corresponding is fixedly connected with same two ends of hanging indigo plant (23) respectively.
3. ceramic drying unit according to claim 1, it is characterized in that: trip shaft (41) is positioned at frame (21) place and is horizontally set with a backstay (46) parallel with flip-arm (43), a fixed bar (461) is respectively fixed with in the frame (21) of backstay (46) end, trip shaft (41) both sides, two fixed bars (461) are symmetrical arranged, before and after trip shaft (41) rotates, backstay (46) contacts with two fixed bars (461) respectively.
4. ceramic drying unit according to claim 3, is characterized in that: fixed bar (461) is oil buffer.
5. ceramic drying unit according to claim 1, it is characterized in that: also comprise upset switch (47), upset switch (47) comprises is fixed on the first cam switch (471) in frame (21) and the second cam switch (473), intrinsic first activation cam (472) is overlapped in trip shaft (41) position corresponding with the first cam switch (471), intrinsic second activation cam (474) is overlapped in trip shaft (41) position corresponding with the second cam switch (473), overturn front first activation cam (472) protuberance to contact with the first cam switch (471), it is 180 ° that second activation cam (474) and the first activation cam (472) install phase difference.
6. ceramic drying unit according to claim 1, it is characterized in that: shifting apparatus (3) comprises installing rack (30), indexing mechanism (31) and Qu Pi mechanism (32), described indexing mechanism (31) comprises drive motors (311), eccentric disc (312), pivot link (313) and the first pivoted arm (314), described drive motors (311) is fixedly installed on installing rack (30), drive motors (311) and eccentric disc (312) are in transmission connection, eccentric disc (312) successively with pivot link (313), first pivoted arm (314) connects, first pivoted arm (314) cover is fixed in a rotating shaft (315), rotating shaft (315) is vertically fixed on installing rack (30) rotationally, rotating shaft (315) is also overlapped intrinsic second pivoted arm (316), second pivoted arm (316) is installed with Qu Pi mechanism (32).
7. ceramic drying unit according to claim 6, it is characterized in that: described Qu Pi mechanism (32) comprises the cylinder holder (321) be fixed on the second pivoted arm (316), on cylinder holder (321) through and be fixed with lifting cylinder (322), the direction of motion of lifting cylinder (322) down, lifting cylinder second piston rod (3221) end winding support is provided with sucker fixed mount (323), sucker fixed mount (323) below is fixed with at least one group of Suction cup assembly (324), the cylinder holder (321) of lifting cylinder second piston rod (3221) both sides is respectively provided with a vertical through hole (3211), sucker fixed mount (323) is also fixed with two guide rods (3231) corresponding with vertical through hole (3211) position, two guide rods (3231) are each passed through two vertical through hole (3211).
8. ceramic drying unit according to claim 1, it is characterized in that: also comprise the hanging basket automatic turning device (6) be located between the second turning device (5) and the first turning device (4), hanging basket automatic turning device (6) comprises propulsion cylinder (61) and inductive switch (62), described propulsion cylinder (61) is fixedly installed on a side frame (21), one push rod (63) is fixedly connected with the first piston bar (611) of propulsion cylinder, the frame (21) of propulsion cylinder (61) top is also provided with a rotating fulcrum (64), first end (631) cover of push rod (63) is fixed on fulcrum (64), described fulcrum (64) is provided with a link assembly (65), the output of link assembly (65) is fixedly connected with a driving lever (66), the lower surface (661) of driving lever (66) contacts with hanging basket (23).
9. a ceramic production line, is characterized in that: comprise the ceramic drying unit described in claim any one of the utility model power 1 ~ power 8.
CN201520744511.4U 2015-09-24 2015-09-24 Pottery drying device Expired - Fee Related CN205119718U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105135847A (en) * 2015-09-24 2015-12-09 福建省晋江市佶龙机械工业有限公司 Ceramic drying device
CN105651063A (en) * 2016-04-11 2016-06-08 刘青建 Ceramic baking support
CN107718410A (en) * 2017-09-30 2018-02-23 张家港力勤机械有限公司 Chain-plate type annular foaming line
CN111755186A (en) * 2020-07-06 2020-10-09 太仓毅峰电子有限公司 Production method of chip resistor granules

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105135847A (en) * 2015-09-24 2015-12-09 福建省晋江市佶龙机械工业有限公司 Ceramic drying device
WO2017049904A1 (en) * 2015-09-24 2017-03-30 福建省晋江市佶龙机械工业有限公司 Ceramic drying apparatus
CN105135847B (en) * 2015-09-24 2017-06-27 福建佶龙机械科技股份有限公司 A kind of ceramic drying unit
CN105651063A (en) * 2016-04-11 2016-06-08 刘青建 Ceramic baking support
CN107718410A (en) * 2017-09-30 2018-02-23 张家港力勤机械有限公司 Chain-plate type annular foaming line
CN111755186A (en) * 2020-07-06 2020-10-09 太仓毅峰电子有限公司 Production method of chip resistor granules

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Address after: Jinjiang Economic Development Zone, Quanzhou City, Fujian province 362200 city (five yuan) Hin Yangxin Road No. 18

Patentee after: Fujian Jilong mechanical Polytron Technologies Inc

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