CN100586681C - Vertical-vibration gypsum board formative machine - Google Patents

Vertical-vibration gypsum board formative machine Download PDF

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Publication number
CN100586681C
CN100586681C CN200510031464A CN200510031464A CN100586681C CN 100586681 C CN100586681 C CN 100586681C CN 200510031464 A CN200510031464 A CN 200510031464A CN 200510031464 A CN200510031464 A CN 200510031464A CN 100586681 C CN100586681 C CN 100586681C
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CN
China
Prior art keywords
shake table
clamping
brake
gypsum board
vertical
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Expired - Fee Related
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CN200510031464A
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Chinese (zh)
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CN1853888A (en
Inventor
钟咯根
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Individual
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Individual
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Publication of CN1853888A publication Critical patent/CN1853888A/en
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Abstract

A vertical vibration type gypsum plate forming machine is composed of an endless track fixed to multiple supporters, multiple clamp moulds with slide wheel on its bottom for sliding on said endless track, steel cables for connecting adjacent clamp moulds, a vibrating table installed to said endless track and with vibrator, clutch brake and feeding hopper, and a drive mechanism consisting of motor,speed reducer, chain wheel and chain for driving said vibrating table and clamp moulds.

Description

Vertical-vibration gypsum board formative machine
Technical field:
The present invention relates to a kind of building mechanical equipment, be specifically related to a kind of vertical-vibration gypsum board formative machine.
Background technology:
Manufacturing of the little plasterboard of architectural decoration all is to adopt small workshop mode to make by hand now, gesso is added water stir pulping, pour in the mould that keeps flat, on workbench, tamp several times, to reach the purpose of vibration with portable mould, the plaster that elder generation uses with brickwork is floating, it is flat to place back of the body mold pressing more in the above, waits the reaction of gesso and water to condense the back with around the perching knife strickling, opens back of the body mould then, mould is propped up, the gypsum board products demoulding is taken out from inner face.This small workshop mode is made original backwardness by hand, and speed of production is slow, and efficient is low, compacted density is not enough, back of the body mould manual pressure, pressure imbalance, the plasterboard became uneven of extrusion is even, product strength and of poor quality: simultaneously, manual compacting will be lifted mould very high, and not only labour intensity is big, and dust from flying, pollute working environment, it is healthy to influence the workman.
Summary of the invention:
Technical problem to be solved by this invention is: solve the original backwardness of present small workshop mode manual production plasterboard, speed is slow, efficient is low, compacted density is not enough, the product gage distortion, of poor quality and labour intensity is big, dust flies upward, contaminated environment, influence the healthy problem of workman; And a kind of automation, mechanizeding continuous operation, production efficiency height are provided, labour intensity is low, environmental protection good, product compacted density height, even, the measured vertical-vibration gypsum board formative machine of matter of thickness.
The technical solution used in the present invention is: by a plurality of bracing frame support fixation circular orbits, a plurality of clampings bottom is contained on the circular orbit by pulley sleeve, be connected by cable wire between clamping and the clamping, cover is equipped with shake table on circular orbit, vibrator, clutch-brake, following funnel are installed on the shake table, motor, reductor, sprocket wheel, chain connect and compose transmission mechanism successively, and transmission mechanism connects transmission clamping and shake table.
In the technique scheme, the shake table below is equipped with the shake table orbit, and the shake table bottom is sleeved on the shake table orbit by castor.
In the technique scheme, another is located local both sides the die sinking divider is installed at circular orbit.
In the technique scheme, clutch-brake is made up of keep plate, spring, loop bar, block set, brake bar, it is an integral body that keep plate and loop bar are connected and fixed, loop bar one end is inserted in the block set, block set and shake table are connected and fixed, the outer pocketed springs of loop bar, roof pressure is on block set and keep plate respectively for both ends of the spring, and the brake bar lower end is movably connected on the loop bar.
In the technique scheme, the keep plate both sides are equipped with the braking point and close on chain, and shake table is by clutch-brake and chain and clamping clutch, and the shake table another side is mounted with top board and top plate stanchions.
In the technique scheme, the upper end, every limit of clamping is equipped with top sheave, and corresponding with it, bracing frame top is installed with annular rectangular clamping upper rail.
In the technique scheme, vibrator is a prior art, the electromagnetic vibrator or the mechanical vibrator that can adopt market to buy.
The present invention adopts the perpendicular formula machinery dither injection forming that shakes, with 600 * 600 moulds, form one group for per two, fixing back of the body mould, erect, one group of mould is organized between mould with another and is connected with cable wire, forms oval closed loop state, by motor, the chain that reductor drives drives, mould slides on the oval ring track by the bottom pulley, mould is filled with slurry and after jolt ramming, is broken away from shake table at high-frequency vibrating table, moves a few minutes on the elliptical perimeter track, after calcium plaster condenses, move to the die sinking divider, mould is opened and is leaned against on the die sinking divider by top sheave, takes out finished product, tighten up mould, continuation moves on circular orbit, gets back to high-frequency vibrating table slip casting at last, jolt ramming, break away from shake table, operation, in the circulating process of die sinking.Shake table adopts dither, the castor of shake table moves on the shake table orbit, during vibration, the operation brake bar, the chain interlock of the braking point of the keep plate of clutch-brake and direction of advance, drive shake table and one group of mould synchronous operation in orbit, after filling with slurry, dither stops, the operation brake bar, the braking point of the keep plate of clutch-brake breaks away from the direction of advance chain, break away from clamping, simultaneously, the braking point of keep plate opposite side and the interlock of Return-ing direction chain, shake table is reversed the chain drive and returns, to follow-up another group mould, operation brake bar, the shake table keep plate by clutch-brake again with the interlock of direction of advance chain, repeat the slip casting of last operation, vibration, move ahead, work so repeatedly.
The present invention is skillfully constructed, reasonable in design, work continuously, mechanization, automation, thoroughly changed the production of conventional gypsum plate and adopted the original backward state of small workshop mode home built, overcome that traditional-handwork makes that the workman is arduous, labour intensity is big, speed is slow, efficient is low, dust is big, contaminated environment, to influence the workman healthy and the product packing is poor, gage distortion, shortcoming that quality scale is low.The present invention greatly reduces labour intensity; changed production environment; protected the workman healthy; the product packing height of being produced; thickness is even; good quality of product, speed of production are 3-4 times that traditional-handwork is produced, for China's architectural decoration gypsum board manufacture provides a kind of technical performance good novel device.
Description of drawings:
Fig. 1 is a floor map of the present invention
Fig. 2 is that the A-A of Fig. 1 is to the section diagrammatic sketch
Fig. 3 is shake table, the clamping transmission schematic diagram that advances
Fig. 4 returns the transmission schematic diagram for shake table
The accompanying drawing marking explanation:
Funnel 18-keep plate 19-spring 20-loop bar 21-block set 22-brake bar 23-die sinking divider 24-mould dividing plate 25-top board 26-top plate stanchions under the 1-bracing frame 2-circular orbit 3-clamping 4-pulley 5-cable wire 6-top sheave 7-clamping upper rail 8-shake table 9-shake table orbit 10-castor 11-motor 12-reductor 13-sprocket wheel 14-chain 15-vibrator 16-clutch-brake 17-
The specific embodiment:
Referring to Fig. 1, Fig. 2, this vertical-vibration gypsum board formative machine has a plurality of bracing frames 1, install and fix oval-shaped circular orbit 2 on the bracing frame 1, clamping 3 also is a plurality of, clamping 3 bottoms are equipped with pulley 4, pulley 4 is sleeved on the circular orbit 2, clamping 3 is slided on circular orbit 2, be connected by cable wire 5 between clamping and the clamping, pulley 6 is installed in the upper end, every limit of clamping 3, and corresponding with it, bracing frame 1 top is fixed with two annular clamping upper rails 7, clamp unlikely unclamping with maintenance clamping upper end, and can slide along upper rail 7.One section cover at circular orbit is equipped with shake table 8, shake table 8 belows are equipped with shake table orbit 9, shake table 8 bottoms are equipped with castor 10, castor 10 is sleeved on the shake table orbit 9, the transmission mechanism of shake table 8 and clamping 3 is connected to form successively by motor 11, reductor 12, sprocket wheel 13, chain 14, vibrator 15, clutch-brake 16, following funnel 17 are installed on the shake table 8, and shake table 8 and clamping 3 are connected transmission by clutch-brake 16 with chain 14.Clutch-brake 16 is made up of keep plate 18, spring 19, loop bar 20, block set 21, brake bar 22, it is an integral body that keep plate 18 is connected and fixed with loop bar 20, loop bar 20 1 ends are inserted in the block set 21, loop bar 20 periphery pocketed springs 19, spring 19 two ends difference roof pressure is on block set 21 and keep plate 18, block set 21 is connected and fixed with shake table 8, and brake bar 22 lower ends are movably connected on the loop bar 20.The present invention is equipped with die sinking divider 23 in another section both sides of circular orbit 2, after clamping 3 runs to here, open from the trend both sides, and the top sheave 6 by clamping upper end leans against on the die sinking divider 23 and continues to slide, the clamping of opening is slided during this period of time on the die sinking divider, the workman takes out the molding of gypsum panel products in the clamping, and the clamping of closing again continues the operation circulation.From Fig. 2, we it can also be seen that the center also has a mould dividing plate 24 in the clamping, so that one-shot forming two block gypsum plate products in the clamping 3.Among Fig. 2, chain 14 is closed in keep plate 18 both sides, at the opposite side of clamping, also is connected and installed on the vibration stand and is fixed with top plate stanchions 26 and top board 25.
Referring to Fig. 3, Fig. 4, the both sides of chain 14 are closed in keep plate 18 both sides, Yi Bian be direction of advance, another side is a Return-ing direction.As shown in Figure 3, when operation brake bar 22 is pushed ahead, drive keep plate and compress direction of advance chain on one side forward, chain drives clamping and keep plate travels forward together, because keep plate 18 is by loop bar 20, block set 21 is connected and fixed with shake table 8, so, at this moment chain drives shake table, clamping travels forward together, after covering LAP, operation brake bar 22 retreats, as shown in Figure 4, brake bar 22 drives keep plate 18 and retreats, break away from direction of advance chain on one side, compress Return-ing direction chain on one side, keep plate 18 is by loop bar 20, block set 21 drives shake table 8 and returns synchronously, to original position.

Claims (5)

1. vertical-vibration gypsum board formative machine, it is characterized in that: by a plurality of bracing frame support fixation circular orbits, a plurality of clampings bottom is contained on the circular orbit by pulley sleeve, be connected by cable wire between clamping and the clamping, cover is equipped with shake table on circular orbit, vibrator, clutch-brake, following funnel are installed on the shake table, another is located local both sides the die sinking divider is installed at circular orbit, motor, reductor, sprocket wheel, chain connect and compose transmission mechanism successively, and transmission mechanism connects transmission clamping and shake table.
2. vertical-vibration gypsum board formative machine according to claim 1 is characterized in that the shake table below is equipped with the shake table orbit, and the shake table bottom is sleeved on the shake table orbit by castor.
3. vertical-vibration gypsum board formative machine according to claim 1, it is characterized in that clutch-brake is made up of keep plate, spring, loop bar, block set, brake bar, it is an integral body that keep plate and loop bar are connected and fixed, loop bar one end is inserted in the block set, block set and shake table are connected and fixed, the outer pocketed springs of loop bar, roof pressure is on block set and keep plate respectively for both ends of the spring, and the brake bar lower end is movably connected on the loop bar.
4. vertical-vibration gypsum board formative machine according to claim 3 is characterized in that the keep plate both sides are equipped with the braking point, closes on chain, and shake table is by clutch-brake and chain and clamping clutch, and the shake table another side is mounted with top board and top plate stanchions.
5. vertical-vibration gypsum board formative machine according to claim 1 is characterized in that the upper end, every limit of clamping is equipped with top sheave, and corresponding with it, bracing frame top is installed with annular rectangular clamping upper rail.
CN200510031464A 2005-04-20 2005-04-20 Vertical-vibration gypsum board formative machine Expired - Fee Related CN100586681C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN200510031464A CN100586681C (en) 2005-04-20 2005-04-20 Vertical-vibration gypsum board formative machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN200510031464A CN100586681C (en) 2005-04-20 2005-04-20 Vertical-vibration gypsum board formative machine

Publications (2)

Publication Number Publication Date
CN1853888A CN1853888A (en) 2006-11-01
CN100586681C true CN100586681C (en) 2010-02-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN200510031464A Expired - Fee Related CN100586681C (en) 2005-04-20 2005-04-20 Vertical-vibration gypsum board formative machine

Country Status (1)

Country Link
CN (1) CN100586681C (en)

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CN1853888A (en) 2006-11-01

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Granted publication date: 20100203

Termination date: 20110420