CN104002388A - Energy-gathered tile surface polishing machine - Google Patents

Energy-gathered tile surface polishing machine Download PDF

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Publication number
CN104002388A
CN104002388A CN201410218025.9A CN201410218025A CN104002388A CN 104002388 A CN104002388 A CN 104002388A CN 201410218025 A CN201410218025 A CN 201410218025A CN 104002388 A CN104002388 A CN 104002388A
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China
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energy
collecting tray
diamant
gathered
elastic construction
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CN201410218025.9A
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CN104002388B (en
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袁子科
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Abstract

The invention discloses an energy-gathered tile surface polishing machine. The energy-gathered tile surface polishing machine comprises a motor, a transmission structure, a cutting structure and a lifting mechanism driving the cutting structure to move up and down, wherein the motor, the transmission structure, the cutting structure and the lifting mechanism are connected in sequence. The cutting structure comprises an energy-gathered structure, a diamond knife fixedly connected with the energy-gathered structure and an elastic structure for pressing the diamond knife on the surface of a workpiece to be machined. The center mass of the energy-gathered structure is low, and the peripheral mass of the energy-gathered structure is high. The elastic structure is fixedly connected with the energy-gathered structure. The lifting mechanism drives the cutting structure to move downwards to compress the elastic structure, and then the elastic structure generates elasticity to extrude the diamond knife and enable the diamond knife to make contact with the surface of the workpiece to be machined. By the adoption of the energy-gathered tile surface polishing machine, the blade of the diamond knife can keep good self-sharpening performance in the working process, and the cutting capacity of the diamond knife is high; the machined workpiece is high in planeness, and noise is low in the machining process.

Description

A kind of energy gathering type tile strickle machine
Technical field
The present invention relates to a kind of Slicking apparatus, in particular a kind of energy gathering type tile strickle machine.
Background technology
Traditional tile strickle machine is drum-type Slicking apparatus, its structure as shown in Figure 1, comprise a cylinder 10, cylinder 10 surfaces are provided with cutter (not drawing in Fig. 1), when this Slicking apparatus work, cylinder 10 rotates, and the cutter on cylinder 10 surfaces cuts workpiece and strikes off (in figure, arrow is the rotation direction of cylinder 10 and the transporting direction of workpiece).Traditional this drum-type Slicking apparatus has following deficiency: (1) has profiling defect, supposes that surface of the work is wavy, utilizes the plane after the cutting of drum-type Slicking apparatus to be wavy, and the surface of the work flatness after processing is low; (2) the hollow setting of cylinder, quality is light, and when rotation, energy is little, and Tool in Cutting power is little, and processing noise is large; (3) workpiece of different size is processed to the cylinder that need to adopt different size, remove and install trouble, cylinder quantity in stock is large.
Therefore, prior art has yet to be improved and developed.
Summary of the invention
The object of the present invention is to provide a kind of energy gathering type tile strickle machine, be intended to solve traditional drum-type tile strickle machine and there is profiling defect, the flatness that is difficult to obtain, cutting power is low, the technical problem that noise is large.
Technical scheme of the present invention is as follows: a kind of energy gathering type tile strickle machine, comprise successively the elevating mechanism that the motor, drive mechanism, cutting structure and the drive cutting structure that connect move up and down, wherein, described cutting structure comprise cumulative structure, the diamant being fixedly connected with cumulative structure and the elastic construction that diamant is pressed in to workpiece to be processed surface;
Described cumulative structure centre quality is little, and surrounding quality is large; Described elastic construction is fixedly connected with cumulative structure; Described elevating mechanism drives cutting structure to move downward, elasticity of compression structure, and elastic construction produces elastic force extruding diamant and makes the Surface Contact of itself and workpiece to be processed.
Described energy gathering type tile strickle machine, wherein, described cumulative structure comprises Energy-collecting tray, described Energy-collecting tray top is by the line shaft of elastic construction connection for transmission structure; Described diamant is fixedly installed on the bottom of Energy-collecting tray.
Described energy gathering type tile strickle machine, wherein, described cumulative structure comprises Energy-collecting tray and scratch diskette, and described Energy-collecting tray top is fixedly connected with the line shaft of drive mechanism, Energy-collecting tray bottom connects scratch diskette by elastic construction, and described diamant is fixedly installed on the bottom of scratch diskette.
Described energy gathering type tile strickle machine, wherein, described elastic construction is any one in spring, shell fragment, rubber bodies or plastics.
Beneficial effect of the present invention: employing disc type cutting structure of the present invention, overcome the profiling defect of drum-type Slicking apparatus, the surface of the work flatness after the present invention's processing is high.Meanwhile, the present invention can adopt identical cutter to process the workpiece of different size, without frequently removing and installing, has reduced greatly the stock of cutter.
Cutting structure of the present invention comprises a cumulative structure, the quality of this cumulative structure is 10 times of traditional Slicking apparatus cylinder quality, and intermediate mass is little, surrounding quality large (being that its quality is dispersed in surrounding), in the time that cumulative arrangement works is rotated, the diamant kinetic energy that is arranged on cumulative structure surrounding is large, cutting power is strong, cutting structure not flutter of when work, do not shake, the Slicking apparatus that processing noise ratio is traditional reduces at least 40 decibels, user, without band earmuff, has improved the condition of production work greatly.
The present invention by arranging an elastic construction in cutting structure, in the time that elevating mechanism drives cutting structure to move downward, the compressed generation elastic force of elastic construction, this elastic force pushes diamant downwards, make diamant under certain continuous with the Surface Contact of workpiece to be processed, this structure can make the blade of diamant keep in the course of the work good self-sharpening, the continuous cutting ability of cutter is strong, workpiece flatness after processing is high, and process noise is little.
Brief description of the drawings
Fig. 1 is the structure diagram of traditional drum-type Slicking apparatus.
Fig. 2 is the structural representation of energy gathering type tile strickle machine in the present invention.
Fig. 3 is the structure diagram of the set-up mode of embodiment 2.
Fig. 4 is the structure diagram of the set-up mode of embodiment 3.
Detailed description of the invention
For making object of the present invention, technical scheme and advantage clearer, clear and definite, developing simultaneously referring to accompanying drawing, the present invention is described in more detail for embodiment.
Embodiment 1
The invention discloses a kind of energy gathering type tile strickle machine, as shown in Figure 2, comprise motor 100, drive mechanism, cutting structure and elevating mechanism, motor drives cutting structure action by drive mechanism, elevating mechanism drives cutting structure to move up and down, and workpiece 800 is processed.
In the present embodiment, drive mechanism comprises line shaft 210 and belt 220, and line shaft 210 vertically arranges, and line shaft 210 tops are connected with motor 100 by belt 220, and line shaft 210 bottoms connect cutting structure.In the present embodiment, the lifting motor 310 that elevating mechanism comprises fluctuating orbit, is arranged on the elevating bracket in fluctuating orbit and drives elevating bracket to move up and down, motor 100 and drive mechanism are all fixedly mounted on elevating bracket.
In the present embodiment, cutting structure comprises Energy-collecting tray 410, scratch diskette 420 and diamant 430, and Energy-collecting tray 410 tops are fixedly connected with line shaft 210, and motor 100 drives Energy-collecting tray 410 to rotate by drive mechanism; Scratch diskette 420 is arranged on Energy-collecting tray 410 bottoms, between scratch diskette 420 and Energy-collecting tray 410, elastic construction 440 is set; Diamant 430 is fixedly installed on the bottom of scratch diskette 420.By elastic construction 440 being set between scratch diskette 420 and Energy-collecting tray 410, make Energy-collecting tray 410 realize soft contact with scratch diskette 420, in the time that elevating mechanism drives cutting structure to move downward, diamant 430 and workpiece 800 Surface Contacts to be processed, now elastic construction 440 is compressed, produce elastic force, this elastic force ensured diamant 430 under certain continuous with the Surface Contact of workpiece 800, this structure can make the blade of diamant keep in the course of the work good self-sharpening, its cutting power is strong, workpiece flatness after processing is high, process noise is little.In addition, the pressure (elastic force) that elastic construction 440 provides can for example, automatically adjust according to the practical factor (varied in thickness of workpiece) of processing, can shield to workpiece on the one hand, can not damage because pressure is excessive workpiece by pressure; Can ensure on the other hand diamant and workpiece close contact, ensure self-sharpening and the cutting power of diamant.
In practical application, the quality of the cumulative structure of the present embodiment (being Energy-collecting tray 410 and scratch diskette 420) is 10 times of traditional cylinder quality, and therefore, in the time that cumulative structure is rotated, its kinetic energy is larger.Meanwhile, the quality at cumulative structure middle part is less, and the quality of surrounding is larger, diamant is fixedly mounted on the edge (actual is the edge of scratch diskette 420 bottoms) of Energy-collecting tray bottom, and therefore, in the time that cutting structure rotates, the kinetic energy of diamant is larger, cutting power is strong, and stability is high.Cutting structure not flutter of when work, do not shake, the traditional Slicking apparatus of processing noise ratio at least reduces by 40 decibels, and user, without band earmuff, has improved the condition of production work greatly.
In the present embodiment, Energy-collecting tray 410 is arranged to round table-like, referring to Fig. 2.Energy-collecting tray 410 marginal swells, to increase the quality at Energy-collecting tray 410 edges, line shaft 210 is fixedly connected with the top (center) of truncated cone-shaped Energy-collecting tray 400, in the time that elevating mechanism drives cutting structure to move downward, line shaft 210 has a downward pressure (acting on the center of Energy-collecting tray 410) to Energy-collecting tray 410, and round table-like Energy-collecting tray 410 can be dispersed in this pressure the edge of Energy-collecting tray 410 bottoms uniformly, reach the effect of dispersed pressure, be conducive to improve the cutting effect of diamant.Certainly, in actual applications, Energy-collecting tray also can be arranged to other shapes, such as disc, cylindrical etc.
In the present embodiment, elastic construction 440 is arranged on the edge of Energy-collecting tray 410 bottoms, referring to Fig. 2, this be due to round table-like Energy-collecting tray 410 by pressure uniformly respectively at the edge of bottom surface, and the elastic construction 440 that is arranged on the edge of Energy-collecting tray 410 bottoms can be compressed uniformly, ensure that each elastic construction 440 equates the downward pressure of scratch diskette 420, make diamant 430 under the uniform pressure condition continuing with workpiece 800 Surface Contacts, be conducive to ensure the flatness of processing.Certainly, in actual applications, elastic construction 440 also can be arranged on other places of Energy-collecting tray 410 bottoms, for example, be arranged on the center of Energy-collecting tray 410 bottoms.
Whether in the present embodiment, elastic construction 440 adopts spring, and this is due to the easy dismounting and change of spring, and be convenient to detect it and damage.In practical application, consider that Energy-collecting tray 410 and scratch diskette 420 are in the process starting or stop (rotation), can affect to spring structure: this is the edge that is arranged on Energy-collecting tray 410 due to spring, its startup or the change of line speed amount while stopping are larger, Energy-collecting tray 410 can be pullled spring in the horizontal direction energetically, when long-term use, easily cause spring to damage, shorten the service life of spring, also reduce the steadiness that scratch diskette is connected with Energy-collecting tray, have potential safety hazard simultaneously.Therefore the spring length in the present embodiment should not arrange oversize, generally be no more than 15CM, the many edges that are arranged on Energy-collecting tray 410 bottoms (surrounding toroidal) that spring is equidistant simultaneously, this setup, can extend on the one hand the service life of spring, be conducive on the other hand uniformly diamant is pressed in to surface of the work, improve self-sharpening and the cutting power of diamant.Certainly, in practical application, the position of spring and quantity can be self-defined, for example can be by the edge that is arranged on Energy-collecting tray 410 bottoms of many spring symmetries, and two of forming symmetry are circular-arc.
In other embodiments, elastic construction can adopt rubber layer, shell fragment, plastics etc. other have flexible structure.
The disclosed tile strickle machine of the present embodiment has changed the profiling defect of traditional cylinder hobboing cutter, when work, its not flutter of cutting structure, does not shake, and the blade of diamant is strong from sharp ability, and cutting power is strong, and the workpiece flatness after processing is high.Because the cutting power of diamant is strong, adding be more prone to man-hour workpiece is cut, the noise that adds man-hour is little simultaneously, and efficiency is high.Meanwhile, the tile strickle machine of the present embodiment uses identical cutter can the workpiece of different size be cut and be struck off, and without frequently removing and installing cutter, greatly reduces the stock of cutter.
Embodiment 2
In the disclosed tile strickle machine of the present embodiment and embodiment 1, structure is basic identical, different is, cutting structure in the present embodiment comprises Energy-collecting tray and diamant, and diamant is fixedly mounted on the edge of Energy-collecting tray bottom, and Energy-collecting tray top is connected with line shaft by elastic construction.
Concrete, referring to Fig. 3, line shaft connects the center of Energy-collecting tray, in the junction of line shaft and Energy-collecting tray, one deck elastic rubber layer is set, and this elastic rubber layer can utilize glue or screw to fix, and this setup cost is larger, and practicality is stronger.Because elastic rubber layer is arranged on the center of Energy-collecting tray, therefore, in the time that Energy-collecting tray starts rotate or stop, the horizontal frictional force of receiving is lower, can not impact elastic rubber layer, and the stability of this structure is strong.In addition, when line shaft drives Energy-collecting tray to move downward (pushing Energy-collecting tray downwards), by elastic rubber layer, this pressure is changed into a self-adjustable elastic pressure, can make equally the blade of diamant possess from sharp ability, its cutting effect is good, and flatness is high.
Embodiment 3
In the disclosed tile strickle machine of the present embodiment and embodiment 1, structure is basic identical, different is, two elastic constructions are set in the present embodiment, referring to Fig. 4, comprise the first elastic construction 441 and the second elastic construction 442, the first elastic construction is identical with arranging in embodiment 1, and the second elastic construction is arranged on Energy-collecting tray top and line shaft junction.
In the present embodiment, consider that Energy-collecting tray is in start and stop process, can produce the pulling force (frictional force) of horizontal plane to the first elastic construction and the second elastic construction, and the position arranging with reference to two elastic constructions, can find that the suffered pulling force of the first elastic construction is larger, the factor such as service life, production maintenance cost, device security steadiness of considering two elastic constructions, the first elastic construction adopts spring structure, and the second elastic construction adopts elastic rubber layer.
In the present embodiment, owing to being provided with two elastic constructions, therefore the adjustability of the suffered pressure of diamant is stronger, and the flatness of the workpiece of processing is higher.
Should be understood that, application of the present invention is not limited to above-mentioned giving an example, and for those of ordinary skills, can be improved according to the above description or convert, and all these improvement and conversion all should belong to the protection domain of claims of the present invention.

Claims (4)

1. an energy gathering type tile strickle machine, comprise successively the elevating mechanism that the motor, drive mechanism, cutting structure and the drive cutting structure that connect move up and down, it is characterized in that, described cutting structure comprises cumulative structure, the diamant being fixedly connected with cumulative structure and the elastic construction that diamant is pressed in to workpiece to be processed surface;
Described cumulative structure centre quality is little, and surrounding quality is large; Described elastic construction is fixedly connected with cumulative structure; Described elevating mechanism drives cutting structure to move downward, elasticity of compression structure, and elastic construction produces elastic force extruding diamant and makes the Surface Contact of itself and workpiece to be processed.
2. energy gathering type tile strickle machine according to claim 1, is characterized in that, described cumulative structure comprises Energy-collecting tray, and described Energy-collecting tray top is by the line shaft of elastic construction connection for transmission structure; Described diamant is fixedly installed on the bottom of Energy-collecting tray.
3. energy gathering type tile strickle machine according to claim 1, it is characterized in that, described cumulative structure comprises Energy-collecting tray and scratch diskette, described Energy-collecting tray top is fixedly connected with the line shaft of drive mechanism, Energy-collecting tray bottom connects scratch diskette by elastic construction, and described diamant is fixedly installed on the bottom of scratch diskette.
4. according to the energy gathering type tile strickle machine described in claim 1-3 any one, it is characterized in that, described elastic construction is any one in spring, shell fragment, rubber bodies or plastics.
CN201410218025.9A 2014-05-22 2014-05-22 A kind of energy gathering type tile strickle machine Expired - Fee Related CN104002388B (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104440468A (en) * 2014-10-13 2015-03-25 佛山市禾才科技服务有限公司 Semi-finished product surface treatment equipment
CN106363813A (en) * 2016-11-17 2017-02-01 绥阳县华夏陶瓷有限责任公司 Surface treatment device for ceramic tiles

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2006137453A1 (en) * 2005-06-21 2006-12-28 Kazumasa Ohnishi Grinding device using ultrasonic vibration
KR20080071526A (en) * 2007-01-30 2008-08-04 가부시키가이샤 에바라 세이사꾸쇼 Polishing apparatus
CN201120671Y (en) * 2007-10-19 2008-09-24 上海新型建材矿棉厂 Diamond knife tool for cutting circular hole on rock wool board
CN201769235U (en) * 2010-07-23 2011-03-23 福建省闽侯长荣石制品有限公司 Multi-cutter edge cutting machine
CN202200181U (en) * 2011-08-02 2012-04-25 中芯国际集成电路制造(上海)有限公司 Grinding pad trimmer
CN202862411U (en) * 2012-11-01 2013-04-10 唐山恒瑞自动化设备有限公司 Super flattening machine for pressure grouting model
CN203863852U (en) * 2014-05-22 2014-10-08 袁子科 Energy-gathering type tile slicking machine

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2006137453A1 (en) * 2005-06-21 2006-12-28 Kazumasa Ohnishi Grinding device using ultrasonic vibration
KR20080071526A (en) * 2007-01-30 2008-08-04 가부시키가이샤 에바라 세이사꾸쇼 Polishing apparatus
KR101095605B1 (en) * 2007-01-30 2011-12-19 가부시키가이샤 에바라 세이사꾸쇼 Polishing apparatus, connection sheet, control device therefor and polishing method thereof
CN201120671Y (en) * 2007-10-19 2008-09-24 上海新型建材矿棉厂 Diamond knife tool for cutting circular hole on rock wool board
CN201769235U (en) * 2010-07-23 2011-03-23 福建省闽侯长荣石制品有限公司 Multi-cutter edge cutting machine
CN202200181U (en) * 2011-08-02 2012-04-25 中芯国际集成电路制造(上海)有限公司 Grinding pad trimmer
CN202862411U (en) * 2012-11-01 2013-04-10 唐山恒瑞自动化设备有限公司 Super flattening machine for pressure grouting model
CN203863852U (en) * 2014-05-22 2014-10-08 袁子科 Energy-gathering type tile slicking machine

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104440468A (en) * 2014-10-13 2015-03-25 佛山市禾才科技服务有限公司 Semi-finished product surface treatment equipment
CN106363813A (en) * 2016-11-17 2017-02-01 绥阳县华夏陶瓷有限责任公司 Surface treatment device for ceramic tiles
CN106363813B (en) * 2016-11-17 2018-06-26 绥阳县华夏陶瓷有限责任公司 Ceramic tile surface processing unit

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Granted publication date: 20160330

Termination date: 20190522