CN214991116U - Servo feedway of glass kiln - Google Patents

Servo feedway of glass kiln Download PDF

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Publication number
CN214991116U
CN214991116U CN202120984325.3U CN202120984325U CN214991116U CN 214991116 U CN214991116 U CN 214991116U CN 202120984325 U CN202120984325 U CN 202120984325U CN 214991116 U CN214991116 U CN 214991116U
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China
Prior art keywords
annular
plate
upside
fixed connection
glass kiln
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CN202120984325.3U
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Chinese (zh)
Inventor
胡青宇
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Nanyang Huanyu Electric Appliance Co ltd
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Nanyang Huanyu Electric Appliance Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • Y02P40/57Improving the yield, e-g- reduction of reject rates

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Abstract

The utility model provides a pair of servo feedway of glass kiln, including annular substrate, the annular substrate upside is equipped with the ring channel, annular rotor plate is connected to the ring channel internal rotation, ring gear in the annular rotor plate inner wall fixed connection, the flat board that the annular substrate downside fixed connection level set up, dull and stereotyped upside fixed connection motor, motor spindle upper end fixed drive gear, drive gear meshes with interior ring gear mutually, annular rotor plate upside is equipped with four material feeding unit that can the auto-tilt pay-off, four material feeding unit use the annular rotor plate centre of a circle as the benchmark and evenly set up at the annular rotor plate upside. The utility model provides a servo feedway of glass kiln, constantly rotate in the ring channel through four material feeding unit that can the auto-tilt pay-off, the staff only need constantly load the processing material to material feeding unit, just can make the processing material be sent into the different positions in the glass kiln continuously and produce processing, has effectively improved the production efficiency of glass kiln.

Description

Servo feedway of glass kiln
Technical Field
The utility model relates to a kiln feed technical field especially relates to a servo feedway of glass kiln.
Background
A glass furnace is a melting device that the glass manufacturing industry must have, and the glass furnace needs to add processing materials into the furnace in the production process of glass manufacturing to maintain the operation of the glass furnace. Generally, the mode of feeding materials into the kiln is manual feeding, firstly, processing materials are manually filled into a cart, then the cart is pushed to a furnace opening, and then the processing materials are poured into the kiln from the furnace opening.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem that exists among the background art, the utility model discloses the technical scheme who takes is:
the utility model provides a servo feedway of glass kiln, includes annular substrate, the annular substrate upside is equipped with the ring channel, annular rotor plate is connected to the ring channel internal rotation, ring gear in the annular rotor plate inner wall fixed connection, the flat board that annular substrate downside fixed connection level set up, dull and stereotyped upside fixed connection motor, motor spindle upper end fixed drive gear, drive gear meshes with interior ring gear mutually, annular rotor plate upside is equipped with four material feeding unit that can the auto-tilt pay-off, and four material feeding unit use the annular rotor plate centre of a circle as the even setting of benchmark at annular rotor plate upside.
Preferably, the upper horizontal surface of the annular rotary plate is higher than the upper horizontal surface of the annular base plate.
Preferably, material feeding unit includes the bracing piece of vertical setting, bracing piece fixed connection is at the rotor plate upside, upper end of the support bar is equipped with the bottom plate, the bottom plate downside is equipped with first rotating groove and second rotating groove, the bracing piece upper end stretches into first rotating groove and rotates through first pivot and connect in first rotating groove, the second rotates the lifter of connecting vertical setting through the second shaft rotation in the groove, the lifter lower extreme is equipped with spherical chamber, spherical intracavity roll connection spin, the spin can paste at the roll of annular base plate upside, the annular base plate upside is equipped with the arc recess, the arc recess corresponds the setting with the spin.
Preferably, the tank bottom of arc recess is equipped with perpendicular hole, it is linked together with the recess to erect the hole, erect downthehole sliding connection montant, the montant can stretch into in the arc recess through erecting the hole, erect the hole and correspond the setting with the lifter, erect downthehole spring that is equipped with, spring fixed connection is between erecting hole bottom and montant lower extreme.
Preferably, the bottom plate upside is fixedly connected with two parallel arrangement's curb plate, two the relative one side of curb plate all is equipped with the round hole, two rotate between the round hole and connect the round bar that has the torsional spring, two fixed connection dials the board between the round bar, bottom plate upside fixed connection baffle, the baffle lateral wall respectively with two relative one side fixed connection of curb plate.
Preferably, the annular substrate is fixedly connected with four columns at the lower side, and the four columns are uniformly arranged by taking the circle center of the annular substrate as a reference.
The utility model has the advantages that: the utility model provides a servo feedway of glass kiln, constantly rotate in the ring channel through four material feeding unit that can the auto-tilt pay-off, the staff only need constantly load the processing material to material feeding unit, just can make the processing material be sent into the different positions in the glass kiln continuously and produce processing, has effectively improved the production efficiency of glass kiln.
Drawings
The invention and its features, aspects and advantages will become more apparent from a reading of the following detailed description of non-limiting embodiments with reference to the attached drawings. Like reference symbols in the various drawings indicate like elements. The drawings are not intended to be drawn to scale, emphasis instead being placed upon illustrating the principles of the invention.
Fig. 1 is a schematic diagram of the basic structure of the present invention;
FIG. 2 is a schematic view of a connection structure of a driving gear and an internal gear ring;
FIG. 3 is a schematic view of the basic structure of the feeding device;
fig. 4 is a schematic view of a connection structure of the arc-shaped groove and the vertical hole.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and specific examples, which should not be construed as limiting the invention.
Example 1
As shown in fig. 1-4, the utility model provides a servo feedway of glass kiln, including annular base plate 1, four stands 7 of 1 downside fixed connection of annular base plate, four stands 7 use the 1 centre of a circle of annular base plate to evenly set up as the benchmark to play and support fixed effect to annular base plate 1. The upper side of the annular base plate 1 is provided with an annular groove, the annular rotating plate 2 is connected in the annular groove in a rotating manner, the inner wall of the annular rotating plate 2 is fixedly connected with an inner toothed ring 21, the lower side of the annular base plate 1 is fixedly connected with a flat plate 3 horizontally arranged, the upper side of the flat plate 3 is fixedly connected with a motor 31, a driving gear 32 is fixed at the upper end of a main shaft of the motor 31, and the driving gear 32 is meshed with the inner toothed ring 21. When the motor 31 is started, the driving gear 32 will drive the annular rotating plate 2 to rotate slowly in the annular groove by driving the inner gear ring 21. Four feeding devices capable of automatically inclining and feeding materials are arranged on the upper side of the annular rotating plate 2, and the four feeding devices are uniformly arranged on the upper side of the annular rotating plate 2 by taking the circle center of the annular rotating plate 2 as a reference. The feeding device comprises a vertically arranged support rod 4, the support rod 4 is fixedly connected to the upper side of the rotating plate 2, a bottom plate 41 is arranged at the upper end of the support rod 4, a first rotating groove 411 and a second rotating groove 412 are formed in the lower side of the bottom plate 41, and the upper end of the support rod 4 extends into the first rotating groove 411 and is rotatably connected to the first rotating groove 411 through a first rotating shaft 42. The second rotating groove 412 is internally connected with a vertically arranged lifting rod 44 in a rotating manner through a second shaft rotor 43, the lower end of the lifting rod 44 is provided with a spherical cavity, the spherical cavity is connected with a rolling ball 45 in a rolling manner, the rolling ball 45 can be attached to the upper side of the annular base plate 1 to roll, and the upper side horizontal plane of the annular rotating plate 2 is higher than that of the annular base plate 1. Through the connection of the support rod 4, the bottom plate 41 can rotate in the annular groove along with the annular rotating plate 2, meanwhile, the rolling balls 45 at the lower end of the lifting rod 44 can be attached to the upper side of the annular base plate 1 and continuously roll along with the rotation of the annular rotating plate 2, and the bottom plate 41 can synchronously rotate along with the annular rotating plate 2. The lifting rod 44 is parallel to the supporting rod 4, and the bottom plate 41 can be kept in a horizontal state in the rotating process through the combined action of the supporting rod 4 and the lifting rod 44. Two parallel arrangement's curb plate 6 of bottom plate 41 upside fixed connection, two curb plate 6 relative one sides all are equipped with the round hole, rotate between two round holes and connect the round bar 61 that has the torsional spring, fixed connection stirring board 62 between two round bars 61, bottom plate 41 upside fixed connection baffle 63, baffle 63 lateral wall respectively with two curb plate 6 relative one side fixed connection. In the free state, the torsion spring urges the toggle plate 62 to rotate upward with respect to the round bar 61, and when a work material is put on the toggle plate 62, the toggle plate 62 is pressed against the upper side of the base plate 41 by the weight of the work material. The two side plates 6 of the bottom plate 41 and the stopper 63 prevent the work material from slipping off the side of the toggle plate 62.
The upper side of the annular substrate 1 is provided with an arc-shaped groove 5, and the arc-shaped groove 5 corresponds to the rolling ball 45. The tank bottom center of arc recess 5 is equipped with vertical hole 51, vertical hole 51 is linked together with recess 5, sliding connection montant 52 in vertical hole 51, montant 52 can stretch into arc recess 5 through vertical hole 51 in, vertical hole 51 corresponds the setting with lifter 44, be equipped with spring 53 in the vertical hole 51, spring 53 fixed connection is between vertical hole 51 bottom of the hole and montant 52 lower extreme, spring 53 is when free state, can make montant 52 stretch into in the arc recess 5 from vertical hole 51. In the process that the bottom plate 41 synchronously rotates in the annular groove along with the annular rotating plate 2, the lifting rod 44 on the lower side of the bottom plate 41 is in contact with the arc-shaped groove 5, the rolling ball 45 at the lower end of the lifting rod 44 slides into the arc-shaped groove 5, and the rolling ball 45 slides into the arc-shaped groove 5 and then clings to the upper end of the vertical rod 52 extending out of the bottom of the groove; because the processing material is put on the bottom plate 41, the whole weight of the bottom plate 41 is increased, the vertical rod 52 is pressed down after the rolling ball 45 is attached to the upper end of the vertical rod 52, so that the vertical rod 52 is pressed by the lifting rod 4 to move towards the bottom of the vertical hole 51, the spring 53 is in a compressed state, and the lifting rod 4 is rotatably connected with the second rotating groove 412 through the second shaft 43, so that the lifting rod 4 can always vertically move downwards when moving along the vertical hole 51, and the lifting rod 4 is prevented from being clamped in the vertical hole 51 due to the inclination of the bottom plate 41. After the lifting rod 4 is inserted into the vertical hole 51, the annular rotating plate 2 stops rotating in the annular groove; along with lifter 4 moves down along vertical hole 51, bottom plate 41 can use bracing piece 4 to take place the slope downwards as the benchmark for the processing material of dialling the board 62 upside can be along the downward landing of bottom plate 41, along with the processing material of dialling the board 62 upside landing gradually, the weight of dialling the board 62 upside can reduce, after the torsion of torsional spring is greater than the whole weight of the processing material of dialling the board 62 upside, under the effort of torsional spring, can be with the processing material of dialling the board 62 upside shed to far away, thereby can not pile up together after making the processing material gliding on the board 62 of dialling. Along with disappearance of the processing materials, the whole weight of the bottom plate 41 can be greatly reduced, the spring 53 in a compressed state can upwards push the vertical rod 52, so that the vertical rod 52 pushes the lifting rod 4 to extend out of the hole opening of the vertical hole 51, meanwhile, the annular rotating plate 2 can start to rotate in the annular groove, the rolling ball 45 can be attached to the upper side of the annular base plate 1 again through transition of the arc-shaped groove 5, and the bottom plate 41 can be kept in a horizontal state again so as to be filled with the processing materials again.
When in use, the arc-shaped groove 5 is arranged towards the position of a furnace mouth of a glass furnace, and then the processing material is put on the poking plate 62, so that the poking plate 62 is pressed on the upper side of the bottom plate 41 in a horizontal state; starting the motor 31, the annular rotating plate 2 can drive the bottom plate 41 to synchronously and slowly rotate in the annular groove, when the lifting rod 44 is in contact with the arc-shaped groove 5, the rolling ball 45 at the lower end of the lifting rod 44 can slide into the arc-shaped groove 5, the rolling ball 45 can be attached to the upper end of a vertical rod 52 extending out of the bottom of the groove after sliding into the arc-shaped groove 5, and the lifting rod 4 can press the vertical rod 52 to move towards the bottom of the vertical hole 51 together; along with the lifter 4 moves down, the bottom plate 41 inclines, so that the processing materials on the upper side of the poking plate 62 can slide into the furnace mouth downwards along the bottom plate 41, and after the weight of the upper side of the poking plate 62 is reduced, the poking plate 62 can throw the remaining processing materials on the upper side far away in the furnace, so that the processing materials can be thrown to other positions in the furnace, and the phenomenon that the processing materials are accumulated at the furnace mouth to cause the reduction of the working efficiency of the glass kiln furnace is avoided. After the processing materials on the bottom plate 41 are completely fed into the furnace, the inclined bottom plate 41 can restore to the horizontal state again and continue to rotate so that working personnel can refill the processing materials, meanwhile, the other feeding device can rotate to the position of the arc-shaped groove 5 to continue to feed the processing materials into the furnace, and the four feeding devices circulate in sequence, so that the production efficiency of the glass kiln furnace is improved.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a glass kiln servo feedway, includes annular base plate (1), its characterized in that: annular base plate (1) upside is equipped with the ring channel, annular rotor plate (2) is connected in the ring channel internal rotation, ring gear (21) in annular rotor plate (2) inner wall fixed connection, dull and stereotyped (3) that annular base plate (1) downside fixed connection level set up, dull and stereotyped (3) upside fixed connection motor (31), motor (31) main shaft upper end fixed drive gear (32), drive gear (32) mesh mutually with interior ring gear (21), annular rotor plate (2) upside is equipped with four material feeding unit that can the auto-tilt pay-off, and four material feeding unit use annular rotor plate (2) centre of a circle evenly to set up at annular rotor plate (2) upside as the benchmark.
2. The glass kiln servo feeding device as claimed in claim 1, characterized in that: the upper horizontal surface of the annular rotating plate (2) is higher than the upper horizontal surface of the annular base plate (1).
3. The glass kiln servo feeding device as claimed in claim 1, characterized in that: the feeding device comprises a supporting rod (4) which is vertically arranged, the supporting rod (4) is fixedly connected to the upper side of the rotating plate (2), a bottom plate (41) is arranged at the upper end of the supporting rod (4), a first rotating groove (411) and a second rotating groove (412) are arranged at the lower side of the bottom plate (41), the upper end of the supporting rod (4) extends into the first rotating groove (411) and is rotationally connected in the first rotating groove (411) through a first rotating shaft (42), the second rotating groove (412) is connected with a vertically arranged lifting rod (44) in a rotating way through a second shaft rotor (43), the lower end of the lifting rod (44) is provided with a spherical cavity, the spherical cavity is internally connected with a rolling ball (45) in a rolling way, rolling ball (45) can paste and roll at annular base plate (1) upside, annular base plate (1) upside is equipped with arc recess (5), arc recess (5) correspond the setting with rolling ball (45).
4. The glass kiln servo feeding device as claimed in claim 3, characterized in that: the tank bottom of arc recess (5) is equipped with vertical hole (51), vertical hole (51) are linked together with recess (5), sliding connection montant (52) in vertical hole (51), montant (52) can stretch into arc recess (5) through erecting hole (51), erect hole (51) and correspond the setting with lifter (44), be equipped with spring (53) in erecting hole (51), spring (53) fixed connection is between erecting hole (51) hole bottom and montant (52) lower extreme.
5. The glass kiln servo feeding device as claimed in claim 3, characterized in that: bottom plate (41) upside fixed connection two parallel arrangement's curb plate (6), two the relative one side of curb plate (6) all is equipped with the round hole, two rotate between the round hole and connect round bar (61) that have the torsional spring, two fixed connection stirring board (62) between round bar (61), bottom plate (41) upside fixed connection baffle (63), baffle (63) lateral wall respectively with two relative one side fixed connection of curb plate (6).
6. The glass kiln servo feeding device as claimed in claim 1, characterized in that: the annular substrate (1) downside fixed connection four stands (7), four stand (7) use annular substrate (1) centre of a circle as the even setting of benchmark.
CN202120984325.3U 2021-05-10 2021-05-10 Servo feedway of glass kiln Active CN214991116U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120984325.3U CN214991116U (en) 2021-05-10 2021-05-10 Servo feedway of glass kiln

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120984325.3U CN214991116U (en) 2021-05-10 2021-05-10 Servo feedway of glass kiln

Publications (1)

Publication Number Publication Date
CN214991116U true CN214991116U (en) 2021-12-03

Family

ID=79133299

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120984325.3U Active CN214991116U (en) 2021-05-10 2021-05-10 Servo feedway of glass kiln

Country Status (1)

Country Link
CN (1) CN214991116U (en)

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