CN104121781B - Heating kiln cover lifting control system - Google Patents

Heating kiln cover lifting control system Download PDF

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Publication number
CN104121781B
CN104121781B CN201410388088.9A CN201410388088A CN104121781B CN 104121781 B CN104121781 B CN 104121781B CN 201410388088 A CN201410388088 A CN 201410388088A CN 104121781 B CN104121781 B CN 104121781B
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China
Prior art keywords
eccentric wheel
stop pin
pin
bell body
drive shaft
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Expired - Fee Related
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CN201410388088.9A
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Chinese (zh)
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CN104121781A (en
Inventor
夏知
刘元宝
汪淼
王磊
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Anhui Special Cable Industry Technology Research Institute
Anhui Yuce Cable Quality Inspection Technology Co ltd
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WUWEI COUNTY SPECIAL CABLE INDUSTRY TECHNOLOGY INSTITUTE
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Publication of CN104121781A publication Critical patent/CN104121781A/en
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Abstract

A heating kiln cover lifting control system makes a heating kiln cover ascend and descend so that a kiln can be opened and closed. The system comprises a kiln cover body (9), a cam lifting mechanism, a controller, an electromagnetic attraction device driving circuit, a motor driving circuit and a driving rotary shaft motor. The cam lifting mechanism comprises a rack (1), an eccentric wheel (2), a locking pin (3), an elastic pushing pin (4) and a limiting post (5). The eccentric wheel (2) is round as a whole and eccentrically provided with a driving rotary shaft (21). When the circle center of the round eccentric wheel is located above the driving rotary shaft (21), and the circle center of the round eccentric wheel and the driving rotary shaft are located on the same vertical line, the kiln cover body (9) is lifted to a high place by the eccentric wheel (2). A locking hole (23) sunken inward in the radial direction is further formed in the circumferential surface of the eccentric wheel (2), and the locking hole (23) is used for being matched with the upper end of the locking pin (3).

Description

A kind of heating kiln furnace cover lifting control system
Technical field
The application relates to a kind of kiln bell, is specially a kind of heating kiln furnace cover lifting control system.
Background technology
Kiln is the equipment in order to burnt product be built into refractory material, be pottery art shaping in indispensable facility.Mankind's pottery of up to ten thousand years burns makes history, have accumulated abundant to make kiln pattern and experience.From the ground of primitive society outdoor burnt in a heap, digging pit to build burns steamed bun shape and rises flame circular kiln, half downdraf horse shoe flame furnace, half way up the mountain dragon kiln, oval kiln, then to Indoor Air kiln, electrical kiln now, kiln science and technology is in continuous improvement.
And due to the high-temperature behavior of kiln, its bell requires can be heat insulation, its weight is often heavier, and in use, needs again to open to check situation in stove to bell.
The higher pair mechanism that cam mechanism is made up of cam, driven member and frame three basic building blocks.Cam is a component with curved profile or groove, is generally driving link, makes constant speed gyration or linear reciprocating motion.
Contact with cam contour, and transmit power and the component realizing the predetermined characteristics of motion, generally do linear reciprocating motion or swing, be called driven member, or the bell body be lifting.
Cam mechanism basic characteristics are in the application to make driven member obtain the more complicated characteristics of motion.Because the characteristics of motion of driven member depends on cam profile curve, so when applying, as long as the contour curve designing cam according to the characteristics of motion of driven member is just passable.
Cam mechanism is widely used in various automation, instrument and maneuver control device.Why cam mechanism obtains so is applied widely, and mainly because cam mechanism can realize the movement needs of various complexity, and structure is simple, compact.Cam lifting mechanism has the simple and reliable advantage of operation, needs to be widely used in the device controlling to be elevated at some.
Due to the higher pair performance of cam, often need to lock its position.And the motion conversion between the out of phase of cam, often need to apply active drive power.Apply active drive power continually, be disadvantageous for driving mechanism.And when for driving power device disappearance or fault, then become difficulty in a kind of phase place of cam to the transfer of another phase place and arrange infeasible.
Summary of the invention
The invention provides a kind of heating kiln furnace cover lifting control system, it is when being shifted to another cam phase by a kind of cam phase, and without the need to restarting or applying active drive power, and the phase position of cam is stablized, stress equalization.
According to the present invention, a kind of heating kiln furnace cover lifting control system, it can make heating kiln furnace cover lifting thus realizes the unlatching of kiln and close, described system comprises: bell body, cam lifting mechanism, controller, electromagnetic attraction device drive circuit, motor-drive circuit, and drive shaft motor, described cam lifting mechanism comprises frame, eccentric wheel, stop pin, resiliency urged pin and limited post, described eccentric shape is as general as round-shaped, and be provided with drive shaft prejudicially, when the described round-shaped center of circle be positioned at the top of described drive shaft and relation vertical with its formation time, described bell body is risen to a high position by described eccentric wheel, described eccentric periphery is also provided with radially-inwardly recessed lock hole, lock hole is used for coordinating with the upper end of stop pin, when described bell body is risen to a high position by described eccentric wheel, lock hole is positioned at the below of described drive shaft and relation vertical with its formation, the lower end of stop pin is connected with stop pin spring, and under the top pressure effect of stop pin spring, stop pin can stretch into described lock hole when described bell body is risen to a high position by described eccentric wheel thus lock eccentric wheel, the lower end of stop pin also couples with latch-release pull-down member, and latch-release pull-down member is used for stop pin is drop-down and contact locks,
Eccentric wheel is also provided with acute angle shape part, under described bell body being risen to high-order state at described eccentric wheel, down, and left surface is vertical direction to described acute angle shape part tip, right flank and described eccentric outer circumference surface tangent, and intersect acute angle with left surface; The described left surface of acute angle shape part is the drive surface for engaging with the right-hand member of resiliency urged pin, and described right flank is the loading end being used for carrying described bell body when described bell body is down to low level by described eccentric wheel;
The right-hand member of resiliency urged pin is rounded shape, and left end is connected with promotion spring, and the rounded shape of described right-hand member is used for engaging with drive surface, the position, middle part of stop pin is fixedly installed voussoir, and the upper side of described voussoir is tapered ramp, and described tapered ramp is parallel to the axis direction of described drive shaft, and acutangulates with horizontal plane, resiliency urged pin is near its right-hand member, the inclined-plane notch inserted for described voussoir is provided with between its right-hand member and left end, the left surface of described inclined-plane notch is the engagement ramp for coordinating with described tapered ramp, when stop pin is in the lock-out state stretched in described lock hole, stop pin is coordinated with the engagement ramp of resiliency urged pin by described tapered ramp and resiliency urged pin is pressed to left side simultaneously against promoting spring, thus it is moved right lock, now, between the right-hand member of resiliency urged pin and the drive surface of acute angle shape part, there is gap and do not engage,
When latch-release pull-down member applies transient state effect to stop pin, and when it is drop-down, the upper end of stop pin departs from from eccentric lock hole, meanwhile, voussoir to exit and tapered ramp is disengaged with engagement ramp from inclined-plane notch, thus, the right-hand member of resiliency urged pin engages the described drive surface of acute angle shape part, eccentric wheel is rotated counterclockwise, and thus, bell body is down to low level gradually; Described limited post is connected to frame by spacing flexible member, and when eccentric wheel rotates counterclockwise and makes bell body be down to low level, horizontally, and the outer end of loading end contacts with limited post thus carries out spacing the loading end of acute angle shape part;
When needs make bell body rise to a high position from described low level, drive shaft drives eccentric wheel to rotate clockwise, in the process, slide along eccentric circumferential outer surface in the upper end of stop pin under the top pressure effect of its stop pin spring, and the drive surface of acute angle shape part can turn to and be combined with the right-hand member of resiliency urged pin, thus gradually it is pushed up pressure to the left; When the upper end of stop pin starts to fall into lock hole, stop pin moves straight up in the top of stop pin spring pressure entirety, and now, voussoir can insert the inclined-plane notch of resiliency urged pin thus be promoted left further by resiliency urged pin; Realize the locking of bell body in a high position thus;
Described latch-release pull-down member is electromagnetic attraction device; Stop pin is irony; Described drive shaft motor connects with drive shaft, for driving the rotation of described drive shaft;
Described controller controls electromagnetic attraction device to the attraction behavior of stop pin by electromagnetic attraction device drive circuit, is controlled the rotation of described drive shaft motor by motor-drive circuit.
By such scheme, while bell body being risen to a high position by low level at elevating mechanism, the spring members of telescoping mechanism be have accumulated a large amount of potential energy; When needs are changed to low level by a high position, utilize the elastic potential energy drive cam put aside to rotate to the direction expected, utilize gravitional force afterwards and be down to low level voluntarily.And, by locking mechanism, while locking cam upper level position, also described elastic telescopic mechanism is locked, avoid elastic force to be applied directly to cam mechanism, therefore avoid and affect the stability of cam mechanism in a high position.Utilize acute angle shape part, while being used as to coordinate with described telescoping mechanism the drive surface contacted, also when low level as loading end, the crank caused with the skew of bell body contact position that the eccentric setting avoiding cam mechanism causes.By limiting component, both ensure that the horizontal position after cam rotation, served again the effect of stable low-end trim.
Accompanying drawing explanation
Fig. 1 is the diagram of cam mechanism when bell body being risen to a high position;
Fig. 2 is the diagram of cam mechanism when bell body being down to low level of Fig. 1;
Fig. 3 is the structural front view of resiliency urged pin;
Fig. 4 is the illustrated upward view of Fig. 3;
Fig. 5 is the structure chart of control system.
Detailed description of the invention
Below in conjunction with accompanying drawing, by instantiation, the present invention is described in detail.
A kind of heating kiln furnace cover lifting control system, it can make heating kiln furnace cover lifting thus realizes the unlatching of kiln and close, described system comprises: bell body 9, cam lifting mechanism, controller, electromagnetic attraction device drive circuit, motor-drive circuit, and drive shaft motor, described cam lifting mechanism comprises frame 1, eccentric wheel 2, stop pin 3, resiliency urged pin 4 and limited post 5, the shape of described eccentric wheel 2 is as general as round-shaped, and be provided with drive shaft 21 prejudicially, when the described round-shaped center of circle be positioned at the top of described drive shaft 21 and relation vertical with its formation time, described bell body 9 is risen to a high position by described eccentric wheel 2, the periphery of described eccentric wheel 2 is also provided with radially-inwardly recessed lock hole 23, lock hole 23 is for coordinating with the upper end of stop pin 3, when described bell body 9 is risen to a high position by described eccentric wheel 2, lock hole 23 is positioned at the below of described drive shaft 21 and relation vertical with its formation, the lower end of stop pin 3 is connected with stop pin spring 32, and under the top pressure effect of stop pin spring 32, stop pin 3 can stretch into described lock hole 23 when described bell body 9 is risen to a high position by described eccentric wheel 2 thus lock eccentric wheel 2, the lower end of stop pin 3 also couples with latch-release pull-down member 33, latch-release pull-down member 33 for by drop-down for stop pin 3 and contact locking,
Eccentric wheel 2 is also provided with acute angle shape part 22, under described bell body 9 being risen to high-order state at described eccentric wheel 2, down, and left surface is vertical direction to described acute angle shape part 22 tip, the outer circumference surface of right flank and described eccentric wheel 2 is tangent, and intersects acute angle with left surface; The described left surface of acute angle shape part 22 is the drive surface for engaging with the right-hand member of resiliency urged pin 4, and described right flank is the loading end being used for carrying described bell body 9 when described bell body 9 is down to low level by described eccentric wheel 2;
The right-hand member of resiliency urged pin 4 is rounded shape, and left end is connected with promotion spring 41, and the rounded shape of described right-hand member is used for engaging with drive surface, the position, middle part of stop pin 3 is fixedly installed voussoir 31, and the upper side of described voussoir 31 is tapered ramp 311, and described tapered ramp 311 is parallel to the axis direction of described drive shaft 21, and acutangulates with horizontal plane, resiliency urged pin 4 is near its right-hand member, the inclined-plane notch 43 inserted for described voussoir 31 is provided with between its right-hand member and left end, the left surface of described inclined-plane notch 43 is the engagement ramp 44 for coordinating with described tapered ramp 311, when stop pin 3 is in the lock-out state stretched in described lock hole 23, stop pin 3 is coordinated with the engagement ramp 44 of resiliency urged pin 4 by described tapered ramp 311 and resiliency urged pin 4 is pressed to left side simultaneously against promoting spring 41, thus it is moved right lock, now, between the right-hand member of resiliency urged pin 4 and the drive surface of acute angle shape part 22, there is gap and do not engage,
When latch-release pull-down member 33 pairs of stop pins 3 apply transient state effect, and when it is drop-down, the upper end of stop pin 3 departs from from the lock hole 23 of eccentric wheel 2, meanwhile, voussoir 31 to exit and tapered ramp 311 is disengaged with engagement ramp 44 from inclined-plane notch 43, thus, the right-hand member of resiliency urged pin 4 engages the described drive surface of acute angle shape part 22, eccentric wheel 2 is rotated counterclockwise, and thus, bell body 9 is down to low level gradually; Described limited post 5 is connected to frame 1 by spacing flexible member 51, and when eccentric wheel 2 rotates counterclockwise and makes bell body 9 be down to low level, horizontally, and the outer end of loading end contacts with limited post 5 thus carries out spacing the loading end of acute angle shape part 22;
When needs make bell body 9 rise to a high position from described low level, drive shaft 21 drives eccentric wheel 2 to rotate clockwise, in the process, the circumferential outer surface of upper end along eccentric wheel 2 under the top pressure effect of its stop pin spring 32 of stop pin 3 slides, and the drive surface of acute angle shape part 22 can turn to and be combined with the right-hand member of resiliency urged pin 4, thus gradually it is pushed up pressure to the left; When the upper end of stop pin 3 starts to fall into lock hole 23, stop pin 3 moves straight up in the top of stop pin spring 32 pressure entirety, and now, voussoir 31 can insert the inclined-plane notch 43 of resiliency urged pin 4 thus be promoted left further by resiliency urged pin 4; Realize the locking of bell body 9 in a high position thus;
Described latch-release pull-down member 33 is electromagnetic attraction device; Stop pin 3 is irony; Described drive shaft motor connects with drive shaft 21, for driving the rotation of described drive shaft 21;
Described controller controls electromagnetic attraction device to the attraction behavior of stop pin 3 by electromagnetic attraction device drive circuit, is controlled the rotation of described drive shaft motor by motor-drive circuit.
Wherein, the face relative with engagement ramp 44 of the inclined-plane notch 43 of resiliency urged pin 4 is vertical wall 42, and itself and engagement ramp 44 interval separate thus form described inclined-plane notch 43 between engagement ramp 44 and vertical wall 42.
Wherein, latch-release pull-down member 33 is manual pulling mechanism.
By with upper type, those skilled in the art can make various change according to mode of operation within the scope of the invention.

Claims (3)

1. a heating kiln furnace cover lifting control system, it can make heating kiln furnace cover lifting thus realizes the unlatching of kiln and close, described system comprises: bell body (9), cam lifting mechanism, controller, electromagnetic attraction device drive circuit, motor-drive circuit, and drive shaft motor, described cam lifting mechanism comprises frame (1), eccentric wheel (2), stop pin (3), resiliency urged pin (4) and limited post (5), the shape of described eccentric wheel (2) is as general as round-shaped, and be provided with drive shaft (21) prejudicially, when the described round-shaped center of circle be positioned at the top of described drive shaft (21) and relation vertical with its formation time, described bell body (9) is risen to a high position by described eccentric wheel (2), the periphery of described eccentric wheel (2) is also provided with radially-inwardly recessed lock hole (23), lock hole (23) is for coordinating with the upper end of stop pin (3), when described bell body (9) is risen to a high position by described eccentric wheel (2), lock hole (23) is positioned at the below of described drive shaft (21) and relation vertical with its formation, the lower end of stop pin (3) is connected with stop pin spring (32), under the top pressure effect of stop pin spring (32), stop pin (3) can stretch into described lock hole (23) when described bell body (9) is risen to a high position by described eccentric wheel (2) thus lock eccentric wheel (2), the lower end of stop pin (3) also couples with latch-release pull-down member (33), latch-release pull-down member (33) for by drop-down for stop pin (3) and contact locking,
Eccentric wheel (2) is also provided with acute angle shape part (22), under described bell body (9) being risen to high-order state at described eccentric wheel (2), described acute angle shape part (22) tip down, and left surface is vertical direction, the outer circumference surface of right flank and described eccentric wheel (2) is tangent, and intersects acute angle with left surface; The described left surface of acute angle shape part (22) is the drive surface for engaging with the right-hand member of resiliency urged pin (4), and described right flank is for carrying the loading end of described bell body (9) when described bell body (9) is down to low level by described eccentric wheel (2);
The right-hand member of resiliency urged pin (4) is rounded shape, and left end is connected with promotion spring (41), and the rounded shape of described right-hand member is used for engaging with drive surface, the position, middle part of stop pin (3) is fixedly installed voussoir (31), the upper side of described voussoir (31) is tapered ramp (311), described tapered ramp (311) is parallel to the axis direction of described drive shaft (21), and acutangulates with horizontal plane, resiliency urged pin (4) is near its right-hand member, the inclined-plane notch (43) inserted for described voussoir (31) is provided with between its right-hand member and left end, the left surface on described inclined-plane notch (43) is the engagement ramp (44) for coordinating with described tapered ramp (311), when stop pin (3) is in the lock-out state stretched in described lock hole (23), stop pin (3) is coordinated with the engagement ramp (44) of resiliency urged pin (4) by described tapered ramp (311) and resiliency urged pin (4) is pressed to left side simultaneously against promoting spring (41), thus it is moved right lock, now, between the right-hand member of resiliency urged pin (4) and the drive surface of acute angle shape part (22), there is gap and do not engage,
When latch-release pull-down member (33) applies transient state effect to stop pin (3), and when it is drop-down, the upper end of stop pin (3) departs from from the lock hole (23) of eccentric wheel (2), simultaneously, voussoir (31) to exit and tapered ramp (311) is disengaged with engagement ramp (44) from inclined-plane notch (43), thus, the right-hand member of resiliency urged pin (4) engages the described drive surface of acute angle shape part (22), eccentric wheel (2) is rotated counterclockwise, thus, bell body (9) is down to low level gradually; Described limited post (5) is connected to frame (1) by spacing flexible member (51), when eccentric wheel (2) rotates counterclockwise and makes bell body (9) be down to low level, horizontally, and the outer end of loading end contacts with limited post (5) thus carries out spacing the loading end of acute angle shape part (22);
When needs make bell body (9) rise to a high position from described low level, drive shaft (21) drives eccentric wheel (2) to rotate clockwise, in the process, slide along the circumferential outer surface of eccentric wheel (2) in the upper end of stop pin (3) under the top pressure effect of its stop pin spring (32), and the drive surface of acute angle shape part (22) can turn to and be combined with the right-hand member of resiliency urged pin (4), thus gradually it is pushed up pressure to the left; When the upper end of stop pin (3) starts to fall into lock hole (23), stop pin (3) moves straight up in the top of stop pin spring (32) pressure entirety, now, voussoir (31) can insert the inclined-plane notch (43) of resiliency urged pin (4) thus be promoted left further by resiliency urged pin (4); Realize the locking of bell body (9) in a high position thus;
Described latch-release pull-down member (33) is electromagnetic attraction device; Stop pin (3) is irony; Described drive shaft motor connects with drive shaft (21), for driving the rotation of described drive shaft (21);
Described controller controls electromagnetic attraction device to the attraction behavior of stop pin (3) by electromagnetic attraction device drive circuit, is controlled the rotation of described drive shaft motor by motor-drive circuit.
2. heating kiln furnace cover lifting control system as claimed in claim 1, wherein, the face relative with engagement ramp (44) of the inclined-plane notch (43) of resiliency urged pin (4) is vertical wall (42), and itself and engagement ramp (44) interval separate thus form described inclined-plane notch (43) between engagement ramp (44) and vertical wall (42).
3. heating kiln furnace cover lifting control system as claimed in claim 1, wherein, latch-release pull-down member (33) is manual pulling mechanism.
CN201410388088.9A 2014-08-08 2014-08-08 Heating kiln cover lifting control system Expired - Fee Related CN104121781B (en)

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CN201410388088.9A CN104121781B (en) 2014-08-08 2014-08-08 Heating kiln cover lifting control system

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CN201410388088.9A CN104121781B (en) 2014-08-08 2014-08-08 Heating kiln cover lifting control system

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CN104121781B true CN104121781B (en) 2015-03-25

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109811510B (en) * 2017-11-21 2022-07-22 青岛海尔洗涤电器有限公司 Ventilation device of washing machine and washing machine

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3533575A (en) * 1968-11-07 1970-10-13 Breeze Corp Intermittent level wind
CN1080370A (en) * 1992-02-25 1994-01-05 努弗彼格诺工业机械及铸造有限公司 Improved cam for revolving dobby
CN202705422U (en) * 2012-08-07 2013-01-30 中冶东方工程技术有限公司 Furnace lid position control device for soaking pit furnace lid opening machine
CN103101753A (en) * 2012-11-15 2013-05-15 江苏天奇物流系统工程股份有限公司 Cam climbing mechanism
CN203375158U (en) * 2013-06-19 2014-01-01 长沙瑞翔科技有限公司 Cam-style lifting mechanism

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3533575A (en) * 1968-11-07 1970-10-13 Breeze Corp Intermittent level wind
CN1080370A (en) * 1992-02-25 1994-01-05 努弗彼格诺工业机械及铸造有限公司 Improved cam for revolving dobby
CN202705422U (en) * 2012-08-07 2013-01-30 中冶东方工程技术有限公司 Furnace lid position control device for soaking pit furnace lid opening machine
CN103101753A (en) * 2012-11-15 2013-05-15 江苏天奇物流系统工程股份有限公司 Cam climbing mechanism
CN203375158U (en) * 2013-06-19 2014-01-01 长沙瑞翔科技有限公司 Cam-style lifting mechanism

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