CN201042832Y - High-efficiency ceramic tile thickness setting machine - Google Patents

High-efficiency ceramic tile thickness setting machine Download PDF

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Publication number
CN201042832Y
CN201042832Y CNU2007200526915U CN200720052691U CN201042832Y CN 201042832 Y CN201042832 Y CN 201042832Y CN U2007200526915 U CNU2007200526915 U CN U2007200526915U CN 200720052691 U CN200720052691 U CN 200720052691U CN 201042832 Y CN201042832 Y CN 201042832Y
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CN
China
Prior art keywords
pin bushing
guide pin
guide
guide shaft
ceramic tile
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CNU2007200526915U
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Chinese (zh)
Inventor
袁子科
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FOSHAN KELIDE MECHINE Co Ltd
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FOSHAN KELIDE MECHINE Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CNU2007200526915U priority Critical patent/CN201042832Y/en
Application granted granted Critical
Publication of CN201042832Y publication Critical patent/CN201042832Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model discloses a high efficiency ceramic tile thickness defining machine. The structure of the ceramic tile thickness defining machine has the advantages of sound rigidness and can eliminate the knife mark stably and rapidly. The ceramic tile thickness defining machine is an oscillating transverse mechanism consisting of a guide shaft, a guide sleeve, a guide sleeve supporting base, a fixing supporting base, a moving beam, a gap regulating mechanism, a cushion board, a motor and a crank link mechanism; wherein the guide shaft is fixedly connected with the fixing base through a bolt. The guide sleeve slidingly sleeved with the guide shaft is tightly fixed on the guide sleeve supporting base. The guide sleeve supporting base is fixedly arranged on the moving beam. The gap regulating mechanism is embedded in the guide sleeve supporting base and is connected with the fixing supporting base through a cushion block. The axial line of the guide shaft is vertical to the transmission direction of a transferring belt and parallels the axial line of a knife shaft. A milling head component is arranged on the two sides of the moving beam. The utility model is mainly used for screeding a flat board building material and a ceramic polished tile and defining the thicknesses thereof.

Description

A kind of efficient ceramic tile thicknessing machine
Technical field
The utility model relates to flat building materials smoothing thicknessing machine tool technical field, particularly a kind of efficient ceramic tile thicknessing machine.
Background technology
At present, the smoothing thicknessing machine that uses in the ceramic polished brick production process (abbreviation Slicking apparatus) is to adopt its axis drum type brake diamant tube parallel with processed adobe surface that processed adobe surface is cut, and realizes that smoothing is fixed thick.Adopt the smoothing thicknessing machine of drum type brake diamant tube when the cutting adobe, can have following defective: to stay the deep mixed straight line scratch of a rule on processed adobe surface.The grinding tool ability cancellation that these scratch consumption are a large amount of has increased production cost.
For solving the problem of above-mentioned tool marks, publication number is on the frame that proposes in the disclosed application documents of Chinese patent communique of CN2762997 swing mechanism to be set, and the scraper assembly is fixed on the swing mechanism; Swing mechanism is a slider-crank mechanism, wherein slide block be one be seated on the frame, with the framework that frame is slidingly connected, the total Chengdu of all scrapers is fixed on the same framework; Two ends on the lengths of frame direction are respectively arranged with the gear that the number of teeth equates.Two gears are fixed in the same rotating shaft, are fixed with two tooth bars on frame, two tooth bars parallel with the glide direction of framework and respectively with two gears engaged.Adopt the Slicking apparatus of this swing mechanism to have following defective: (1) all scraper assemblies are fixed on that then to swing inertia on the same framework big, at its reciprocating reversal point swing mechanism is produced enormous impact, make swing frame generation flutter, thereby diamant can not balanced be cut, stay the cutting chatter mark.Blade poor impact resistance on the diamant tube comes off under powerful impact force action easily.The loss of each diamant tube on framework has the branch of speed, and cutter tube of every replacing all must make framework stop swinging and could change, thereby reduce production efficiency.(2) swing of framework is guiding by the rack-and-pinion at its two ends, and its defective is the guide and limit low precision, and the gap after the between cog wearing and tearing is difficult to realize compensation, does not have spacing in the section of swaying direction.When the full depth amount, framework is play upwards easily, batters down adobe easily, has greatly influenced cutting effect.Because the normal cutting output of diamant tube is generally about 0.1mm, adobe is difficult for breaking, and the far super 0.2-0.3mm of play that causes of the gap of rack-and-pinion in fact, thus during the framework play cutting output of diamant tube can increase be twice above, cause adobe to be broken, increased the production loss.These defectives have seriously limited the promotion and application of this kind thicknessing machine.
Summary of the invention
The purpose of this utility model is to provide a kind of simple in structure, low cost of manufacture, and structural rigidity is good, can stablize, eliminate fast the efficient ceramic tile thicknessing machine of tool marks.
The technical solution that the utility model proposed is such: a kind of efficient ceramic tile thicknessing machine, comprise by frame 15, conveyer belt 13, driving motor 11, drive roll 12, the horizontal feed system that driven cylinder 14 and supporting member thereof are formed, by knife rest 16, Buddha's warrior attendant hobboing cutter 17, cutter shaft 18, motor 19, the milling head assembly 10 that elevating mechanism 20 is formed, also be provided with by guide shaft 5, guide pin bushing 4, guide pin bushing bearing 7, hold-down support 9, moving beam 3, gap adjusting mechanism 6, backing plate 8, motor 2, the reciprocally swinging mechanism that toggle 1 is formed, guide shaft 5 is fixedly connected on the hold-down support 9 by screw, the guide pin bushing 4 that slip cap is connected on the guide shaft 5 is fastened on the guide pin bushing bearing 7, this guide pin bushing bearing 7 is packed on the moving beam 3, gap adjusting mechanism 6 is embedded in the guide pin bushing bearing 7 and by cushion block 8 and hold-down support 9 and joins, the axial line of guide shaft 5 is perpendicular to the transmission direction of conveyer belt 13 and be parallel to the axial line of cutter shaft 18, and milling head assembly 10 is installed in the both sides of moving beam 3.
Guide shaft 5 and guide pin bushing 4 are divided into many groups and are installed in parallel to each other on each hold-down support 9.Hold-down support 9 is a sheet frame overall structure, and is provided with grease-box on the installation position of guide shaft 5 and guide pin bushing 4.
Compared with prior art, the utlity model has following beneficial effect;
(1) the milling head assembly 10 reciprocally swinging mechanisms of this efficient ceramic tile thicknessing machine are supporting with many guide pillars 5 that are parallel to swaying direction, with a plurality of microgaps guide pin bushing 4 is guide and limit, in plane perpendicular to swaying direction, can both suppress moving beam 3 play in any direction and beating, and can prevent vibration and vexed cutter phenomenon that stop beam 3 produces because of beating effectively when cutting output greatly; The milling head assembly 10 that can effectively prevent stop beam 3 both sides produces because of cutting force is uneven when cutting and tumbles, and causes the phenomenon generation of adobe breakage, thereby has improved production efficiency and yield rate.
(2) hold-down support 9 is a sheet frame overall structure, and its two ends are provided with the oil groove of lubricated guide shaft 5, guide pin bushing 4, thereby swing has better rigidity, and member is more durable.
(3) the diamant tube is changed easily, need not shut down handled easily.
(4) two milling cutter assemblies of design are one group, and are easy to manufacture, safeguard more convenient.
Description of drawings
Fig. 1 is that the master of the efficient ceramic tile thicknessing machine of an embodiment of the utility model looks schematic diagram.
Fig. 2 is the left view of Fig. 1.
Fig. 3 is the vertical view of reciprocally swinging shown in Figure 1 mechanism.
Fig. 4 is the A-A cutaway view of Fig. 3.
Fig. 5 is the B-B cutaway view of Fig. 3.
The specific embodiment
By following embodiment the utility model is further elaborated.
Referring to Fig. 1, Fig. 2, Fig. 3, Fig. 4, shown in Figure 5, a kind of efficient ceramic tile thicknessing machine is made up of following several parts: the horizontal feed system that is made up of frame 15, conveyer belt 13, driving motor 11, drive roll 12, driven cylinder 14 and supporting member thereof, the milling head assembly of forming by knife rest 16, Buddha's warrior attendant hobboing cutter 17, cutter shaft 18, motor 19, elevating mechanism 20 10, the reciprocally swinging mechanism that forms by guide shaft 5, guide pin bushing 4, guide pin bushing bearing 7, hold-down support 9, moving beam 3, gap adjusting mechanism 6, backing plate 8, motor 2, toggle 1.Guide shaft 5 is fixedly connected on the hold-down support 9 by screw, and guide pin bushing 4 slides on guide shaft 5, and guide pin bushing 4 is fastened on the guide pin bushing bearing and links to each other with moving beam 3 for 7 li again.Gap adjusting mechanism 6 is embedded in 7 li of guide pin bushing bearings, and joins by cushion block 8 and hold-down support 9.The axial line of guide shaft 5 is perpendicular to the transmission direction of conveyer belt 13 and be parallel to the axial line of cutter shaft 18.Milling head assembly 10 is installed in the both sides of moving beam 3.Guide shaft 5 is organized parallel being installed on each hold-down support 9 with guide pin bushing more 4 minutes.Hold-down support 9 is a sheet frame overall structure, and is provided with grease-box on the installation position of guide shaft 5 and guide pin bushing 4.
During work, drive toggle 1 by motor 2 and do gyration, the moving beam 3 of toggle 1 pulling, moving beam 3 drives milling head assembly 10 and does reciprocally swinging by guide pin bushing 4 along guide shaft 5.For the gravity of preventing stop beam 3 all acts on the guide shaft 5; by the gap between gap adjusting mechanism 6 adjusting guide shafts 5 and the guide pin bushing 4; can return to good sliding mode as early as possible after making guide pin bushing 4, guide shaft 5 because of the long-term work wearing and tearing; simultaneously; this gap adjusting mechanism 6 also can bear sub-load; thereby can alleviate the load of guide shaft 5, reach the purpose of protection guide shaft 5.The horizontal feed system is transported to adobe under the milling head assembly 10 continuously, and milling head assembly 10 drives Buddha's warrior attendant hobboing cutters 17 successively to the adobe cutting of rolling.Simultaneously, the Buddha's warrior attendant hobboing cutter 17 that the reciprocally swinging mechanism that is made up of guide shaft 5, guide pin bushing 4, guide pin bushing bearing 7, hold-down support 9, moving beam 3, gap adjusting mechanism 6, backing plate 8, motor 2, toggle 1 drives in the milling head assembly 10 carries out the reciprocally swinging cutting to adobe successively, reaches the purpose of quick elimination scratch.

Claims (3)

1. efficient ceramic tile thicknessing machine, comprise by frame (15), conveyer belt (13), driving motor (11), drive roll (12), the horizontal feed system that driven cylinder (14) and supporting member thereof are formed, by knife rest (16), Buddha's warrior attendant hobboing cutter (17), cutter shaft (18), motor (19), the milling head assembly (10) that elevating mechanism (20) is formed, it is characterized in that: also be provided with by guide shaft (5), guide pin bushing (4), guide pin bushing bearing (7), hold-down support (9), moving beam (3), gap adjusting mechanism (6), backing plate (8), motor (2), the reciprocally swinging mechanism that toggle (1) is formed, guide shaft (5) is fixedly connected on the hold-down support (9) by screw, the guide pin bushing (4) that slip cap is connected on the guide shaft (5) is fastened on the guide pin bushing bearing (7), this guide pin bushing bearing (7) is packed on the moving beam (3), described gap adjusting mechanism (6) is embedded in the guide pin bushing bearing (7) and by cushion block (8) and hold-down support (9) and joins, the axial line of described guide shaft (5) is perpendicular to the transmission direction of conveyer belt (13) and be parallel to the axial line of cutter shaft (18), and described milling head assembly (10) is installed in the both sides of moving beam (3).
2. efficient ceramic tile thicknessing machine according to claim 1 is characterized in that: described guide shaft (5) and guide pin bushing (4) are divided into many groups and are installed in parallel to each other on each hold-down support (9).
3. efficient ceramic tile thicknessing machine according to claim 1 is characterized in that: described hold-down support (9) is a sheet frame overall structure, and is provided with grease-box on the installation position of guide shaft (5) and guide pin bushing (4).
CNU2007200526915U 2007-06-08 2007-06-08 High-efficiency ceramic tile thickness setting machine Expired - Lifetime CN201042832Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2007200526915U CN201042832Y (en) 2007-06-08 2007-06-08 High-efficiency ceramic tile thickness setting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2007200526915U CN201042832Y (en) 2007-06-08 2007-06-08 High-efficiency ceramic tile thickness setting machine

Publications (1)

Publication Number Publication Date
CN201042832Y true CN201042832Y (en) 2008-04-02

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Application Number Title Priority Date Filing Date
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102700008A (en) * 2012-06-29 2012-10-03 山东大学 Stair handrail processing equipment capable of processing stones with abnormal surfaces
CN105313229A (en) * 2015-11-27 2016-02-10 简军 Automatic planing equipment for foamed ceramic insulation board
WO2019085583A1 (en) * 2017-10-30 2019-05-09 广东科达洁能股份有限公司 Ceramic foam plane processing device and method

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102700008A (en) * 2012-06-29 2012-10-03 山东大学 Stair handrail processing equipment capable of processing stones with abnormal surfaces
CN102700008B (en) * 2012-06-29 2014-12-17 山东大学 Stair handrail processing equipment capable of processing stones with abnormal surfaces
CN105313229A (en) * 2015-11-27 2016-02-10 简军 Automatic planing equipment for foamed ceramic insulation board
CN105313229B (en) * 2015-11-27 2018-01-02 简军 A kind of foamed ceramic insulation board is planished equipment automatically
WO2019085583A1 (en) * 2017-10-30 2019-05-09 广东科达洁能股份有限公司 Ceramic foam plane processing device and method

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Granted publication date: 20080402

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