Cutting device for textile ceramic structural part machining
By introducing a movable platform and a dust absorption mechanism into the cutting device, the problem of dust pollution during the cutting of textile ceramic structural parts is solved, achieving a clean cutting environment and good visibility, ensuring cutting accuracy and safety.
Patent Information
- Application Number
- CN202423040107.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-10
AI Technical Summary
Dust generated during the cutting of textile ceramic structural components interferes with the operator's vision and pollutes the processing environment, and existing technologies are unable to effectively solve this problem.
A cutting device was designed, comprising a movable platform and a dust absorption mechanism. Through the combination structure of the absorption element and the supporting rotating rod, the height and orientation of the absorption element can be adjusted, and the dust generated during cutting can be absorbed by a negative pressure dust collection device.
It effectively avoids dust interfering with vision and polluting the environment, ensuring cutting accuracy and operational safety.
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Figure CN223589758U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cutting device technical field, concretely is a kind of cutting device for textile ceramic structural member processing. BACKGROUND
[0002] Textile ceramic structural member, also known as textile porcelain ceramic material made of various guide wire members, such as guide wire hook, guide wire, guide wire tube, guide wire ring, guide wire block, etc. Textile ceramic structural member is generally made of hard porcelain, high-alumina porcelain, corundum porcelain, chrome corundum or artificial sapphire. These materials have the characteristics of fine porcelain, high hardness, good wear resistance, smooth working surface, small friction coefficient to fiber. Textile ceramic structural member may have dimensional deviation after preparation, so it sometimes needs to be cut to meet the actual use requirements.
[0003] The utility model with publication number CN221850717U discloses a cutting device for ceramic structural member, which corrects the position of saw blade and ceramic through infrared corrector during work, plays the role of high cutting precision and improves cutting efficiency, ensures the size accuracy of cut-out ceramic parts, and the infrared corrector can monitor the cutting process in real time, automatically adjusts the sawtooth speed and feed speed according to the cutting condition, and improves the cutting efficiency.
[0004] When cutting ceramic structural member, the high-speed rotating saw blade will generate a large amount of dust by friction, which will interfere with the operator's vision, making it impossible to clearly view the specific situation of the cutting position. At the same time, the scattered dust will also pollute the cutting workbench and diffuse in the air to pollute the processing environment, affecting the health of the operator. Therefore, a cutting device for textile ceramic structural member processing is proposed to solve the above problems. UTILITY MODEL CONTENTS
[0005] The technical problem to be solved by the utility model is to provide a cutting device for textile ceramic structural member processing. The cutting device places the ceramic structural member on the movable storage table and can push it to the cutting wheel to complete the cutting. Dust absorption mechanisms are provided on both sides of the cutting position of the cutting wheel, which can absorb the dust generated during cutting to avoid interfering with the operator's vision and polluting the processing environment. The sliding table can move up and down, and the absorption member can support the rotating rod to rotate as an axis to adjust the height and orientation of the absorption member, ensuring that it can play a better dust absorption role. The technical problem of the prior art that a large amount of dust is generated during cutting of ceramic structural member, which interferes with the operator's vision and pollutes the processing environment, is solved.
[0006] The technical solution adopted by the embodiment of the present application to solve the technical problem is:
[0007] The utility model provides a kind of cutting device for processing textile ceramic structure, including base plate, which is provided with movable storage table, ceramic piece clamp for clamping textile ceramic structure is installed on movable storage table, rack, cutting motor is installed on it, cutting motor output shaft is fixedly connected with cutting wheel, movable storage table is used to place ceramic structure, and it can be pushed to cutting wheel to complete cutting, dust absorption mechanism, it is arranged in cutting wheel side, to absorb the dust generated by cutting, avoid its interference operator vision, avoid its pollution processing environment, wherein, the dust absorption mechanism includes adjusting screw rod rotationally arranged on base plate, sliding table is threadedly connected on it, support rotating rod is slidably arranged on sliding table, and absorbing member is fixedly arranged on the end of rod, based on the above structure, sliding table can move up and down, absorbing member can support rotating rod as shaft rotation, to this adjusting absorbing member height and orientation, ensure that it can play better dust absorption effect.
[0008] In a possible implementation, the absorbing member includes an absorbing cover fixedly connected with the support rotating rod, a connecting port in communication with a space in the cover is hermetically connected to the absorbing cover, a panel is hermetically connected to a port of the absorbing cover, and a plurality of absorbing holes are formed in the panel. Based on the above structure, an external dust collection device can generate negative pressure in the absorbing cover through the connecting port. Under the action of the negative pressure, dust is sucked into the absorbing holes and discharged from the connecting port, thereby completing dust collection.
[0009] In a possible implementation, a connecting pipe is hermetically connected to the connecting port. The connecting pipe includes a hose, a pipe joint is hermetically connected to one end of the hose and arranged on the connecting pipe, and the other end of the hose is hermetically connected to a suction interface of an external dust collection device. When the external dust collection device is in operation, negative pressure can be generated in the absorbing cover, and dust generated by cutting can be sucked into the device through the hose.
[0010] In a possible implementation, a matching cylinder is fixedly arranged on the sliding table, and the support rotating rod passes through the sliding table and the matching cylinder and is in sliding contact with both. The above structure enables the support rotating rod to rotate freely, thereby providing a necessary structural basis for adjusting the angle of the absorbing member. A clamping piece is fixedly arranged on the support rotating rod, and a locking nut is threadedly connected to the end of the rod away from the absorbing member. When the angle of the absorbing member needs to be fixed after being adjusted, the locking nut is tightened, so that the clamping piece is pressed and clamped, and the angle of the absorbing member is fixed by the pressing friction with the sliding table.
[0011] In a possible implementation, a vertical rod is fixedly arranged on the base plate, a matching groove corresponding in size to the vertical rod is formed in the rear end of the sliding table, and the vertical rod is fitted with the matching groove. Based on the clamping action between the vertical rod and the matching groove, the sliding table cannot rotate during upward and downward sliding, so that the sliding table can slide up and down to adjust the height under the transmission action of thread engagement when the adjusting screw rod is twisted.
[0012] In a possible implementation, the movable placement platform comprises a guide rod and a platform plate, the guide rod is fixedly arranged on the base plate through two end-joined fixing end pieces, and the platform plate is slidably connected with the guide rod through a guide cylinder fixedly arranged at the bottom, and the above structure can realize sliding installation of the platform plate, facilitating movement of the ceramic structure to the cutting wheel to complete cutting.
[0013] In a possible implementation, the base plate is fixedly provided with a mounting end piece, a driving threaded rod is rotatably mounted on the mounting end piece, a hand wheel is fixedly connected to the end of the driving threaded rod, the upper end surface of the platform plate is fixedly provided with a driving platform, the driving threaded rod passes through the driving platform and is threadedly connected therewith, and when the driving threaded rod is rotated by screwing the hand wheel, the driving platform threadedly connected with the driving threaded rod can be driven to move back and forth, thereby driving the platform plate fixedly connected with the driving platform to move back and forth, and realizing the feeding function.
[0014] In a possible implementation, the rack comprises a support plate, a U-shaped frame is fixedly arranged on the support plate, a locking plate is fixedly arranged at the front end of the U-shaped frame, and a mounting groove for mounting the cutting motor is formed between the U-shaped frame and the locking plate, and the above structure can realize fixed installation of the cutting motor.
[0015] In summary, the utility model has the following beneficial technical effects:
[0016] The cutting device places the ceramic structure on the movable placement platform, and can push the ceramic structure to the cutting wheel to complete cutting, dust absorption mechanisms are arranged on both sides of the cutting position of the cutting wheel, which can absorb the dust generated during cutting, avoid the dust from diffusing from the cutting position to interfere with the vision of the operator, and avoid pollution of the processing environment;
[0017] The absorption member generates negative pressure during work to absorb dust, the sliding table can move up and down, and the absorption member can rotate about the support rotating rod, so that the height and direction of the absorption member during work can be adjusted, and better dust absorption effect can be ensured. BRIEF DESCRIPTION OF DRAWINGS
[0018] The accompanying drawings are used to provide a further understanding of the utility model, and constitute a part of the specification, and are used to explain the utility model together with embodiments of the utility model, and do not constitute a limitation to the utility model. In the drawings:
[0019] Figure 1 It is a whole structure schematic view of the utility model;
[0020] Figure 2 It is a dust absorption mechanism structure schematic view of the utility model;
[0021] Figure 3 It is an absorption member structure schematic view of the utility model;
[0022] Figure 4 The utility model discloses a movable storage table structure schematic diagram;
[0023] Figure 5 The utility model discloses a rack structure schematic diagram.
[0024] In the drawing: 1, base plate, 2, movable storage table, 21, guide rod, 22, fixed end piece, 23, table board, 24, guide cylinder, 25, installation end piece, 26, drive threaded rod, 27, drive table, 28, hand wheel, 3, ceramic piece clamp, 4, rack, 41, support plate, 42, U-shaped frame, 43, locking plate, 5, cutting motor, 6, cutting wheel, 7, dust absorption mechanism, 71, adjusting screw rod, 72, sliding table, 721, cooperation cylinder, 73, support rotary rod, 731, clamping piece, 74, absorption piece, 741, absorption cover, 742, connecting port, 743, panel, 744, absorption hole, 75, connecting pipe, 751, hose, 752, pipe joint, 76, locking nut, 77, vertical rod. Specific embodiments
[0025] The technical scheme in the embodiments of the application is to solve the problems in the background art, and the general idea is as follows:
[0026] As Figure 1 - Figure 2 The cutting device for processing textile ceramic structural parts provided by the embodiment includes a base plate 1, a movable storage table 2 is arranged on the base plate 1, a ceramic piece clamp 3 for clamping a textile ceramic structural part is arranged on the movable storage table 2, a rack 4 is arranged on the base plate 1, a cutting motor 5 is arranged on the rack 4, a cutting wheel 6 is fixedly connected to an output shaft of the cutting motor 5, the movable storage table 2 is used to place a ceramic structural part and can push the ceramic structural part to the cutting wheel 6 to complete cutting, and a dust absorption mechanism 7 is arranged on the side of the cutting wheel 6 and is used to absorb dust generated in cutting, so as to avoid the dust from interfering with the sight of an operator and from polluting the processing environment.
[0027] The dust absorption mechanism 7 includes an adjusting screw rod 71 rotatably arranged on the base plate 1, a sliding table 72 is threadedly connected to the adjusting screw rod 71, a support rotary rod 73 is slidably arranged on the sliding table 72, and an absorption piece 74 is fixedly arranged at the end of the support rotary rod 73. Based on the above structure, the sliding table 72 can move up and down, and the absorption piece 74 can rotate around the support rotary rod 73 as an axis, so as to adjust the height and direction of the absorption piece 74 and ensure that the absorption piece 74 can play a better dust absorption role.
[0028] As Figure 3As shown, the absorption member 74 includes an absorption cover 741 fixedly connected with the support rotating rod 73, a connecting port 742 in close connection with the cover inner space is connected with the absorption cover 741, a face plate 743 in close connection with the absorption cover 741 is provided with a plurality of absorption holes 744, based on the above structure, the external dust collection equipment can generate negative pressure in the absorption cover 741 through the connecting port 742, under the action of the negative pressure, the dust will be sucked into the absorption holes 744 and discharged from the connecting port 742, and the dust collection is completed.
[0029] As shown in the figure, Figure 2 The sliding table 72 is fixedly provided with a matching barrel 721, the support rotating rod 73 passes through the sliding table 72 and the matching barrel 721 and is in sliding contact with both, the above structure form makes the support rotating rod 73 freely rotate, and further provides the necessary structural basis for the angle adjustment of the absorption member 74, the support rotating rod 73 is fixedly provided with a clamping piece 731, and the rod end away from the absorption member 74 is threadedly connected with a locking nut 76, when the angle adjustment of the absorption member 74 is completed and needs to be fixed, the locking nut 76 is tightened, which can generate extrusion clamping action with the clamping piece 731, and the angle of the absorption member 74 is fixed by extrusion friction with the sliding table 72.
[0030] As shown in the figure, Figure 2 - Figure 3 The connecting port 742 is in close connection with a connecting pipe 75, the connecting pipe 75 includes a hose 751, one end of the hose 751 is in close connection with a pipe joint 752 sleeved on the connecting pipe 75, and the other end is in close connection with the air suction interface of the external dust collection equipment, when the external dust collection equipment works, negative pressure can be generated in the absorption cover 741, and the dust generated by cutting is sucked into the equipment through the hose 751.
[0031] As shown in the figure, Figure 2 The base plate 1 is fixedly provided with a vertical rod 77, the rear end of the sliding table 72 is provided with a matching groove corresponding in size with the vertical rod 77, and the vertical rod 77 is in abutment with the matching groove, based on the clamping action between the vertical rod 77 and the matching groove, the sliding table 72 cannot rotate in the process of sliding up and down, therefore, when the adjusting screw 71 is twisted, the sliding table 72 can slide up and down to adjust the height under the transmission action of the threaded engagement.
[0032] As shown in the figure, Figure 4As shown, the movable storage platform 2 comprises a guide rod 21 and a platform 23, the guide rod 21 is fixedly arranged on the base plate 1 through the fixed end piece 22 connected at both ends, the platform 23 is slidably connected with the guide rod 21 through the guide cylinder 24 fixedly arranged at the bottom, the above structure can realize the sliding installation of the platform 23, which is convenient for driving the ceramic structure to move towards the cutting wheel 6 to complete the cutting, wherein the base plate 1 is fixedly provided with the mounting end piece 25, the driving threaded rod 26 is rotatably mounted on the mounting end piece 25, the hand wheel 28 is fixedly connected to the end of the driving threaded rod 26, the driving platform 27 is fixedly arranged on the upper end surface of the platform 23, the driving threaded rod 26 penetrates through the driving platform 27 and is threadedly connected therewith, when the driving threaded rod 26 is screwed to rotate through the hand wheel 28, it can drive the driving platform 27 to move back and forth, thereby driving the platform 23 fixedly connected thereto to move back and forth, realizing the feeding function.
[0033] As shown in the figure, Figure 5 As shown, the rack 4 comprises a support plate 41, a U-shaped frame 42 is fixedly arranged on the support plate 41, a locking plate 43 is fixedly arranged at the front end of the U-shaped frame 42, an installation groove for installing the cutting motor 5 is formed between the U-shaped frame 42 and the locking plate 43, and the above structure can realize the fixed installation of the cutting motor 5.
[0034] The use principle and use process of the utility model are as follows:
[0035] The cutting device places the ceramic structure through the movable storage platform 2, and can push it to the cutting wheel 6 to complete the cutting, and the dust absorption mechanism 7 is arranged on both sides of the cutting position of the cutting wheel 6, which can absorb the dust generated in the cutting process, avoid the dust from diffusing from the cutting position to interfere with the operator's vision, and avoid the dust from diffusing to pollute the processing environment; the dust absorption mechanism 7 absorption principle is that the external dust collection equipment can generate negative pressure in the absorption cover 741 through the connecting port 742, under the action of negative pressure, the dust will be sucked into the absorption hole 744 and discharged from the connecting port 742, and the dust collection is completed.
[0036] Among them, the absorption piece 74 generates negative pressure during work, which plays a role in absorbing dust, because the sliding table 72 can move up and down, and the absorption piece 74 can rotate around the support rotating rod 73 as the shaft, so the height and direction of the absorption piece 74 during work can be adjusted to ensure that it can play a better dust collection effect, which is specifically manifested as follows: based on the clamping action between the vertical rod 77 and the matching groove, the sliding table 72 cannot rotate during the up and down sliding process, so when the adjusting screw 71 is screwed, the sliding table 72 can slide up and down under the transmission action of the screw thread to adjust the height, when the angle adjustment of the absorption piece 74 is completed and needs to be fixed, the locking nut 76 is tightened, which can generate extrusion clamping action with the clamping piece 731, and the angle of the absorption piece 74 is fixed through the extrusion friction with the sliding table 72.
[0037] Finally, it should be noted that: apparently, the above embodiments are merely examples for clearly illustrating the utility model, and are not limited to the implementation. For ordinary skilled in the art, on the basis of the above description, other different forms of changes or variations can be made. Here, it is not necessary and impossible to exhaust all the implementation. The obvious changes or variations derived from it are still within the protection scope of the utility model.
Claims
1. A cutting device for processing textile ceramic structural parts, characterized in that, Include: The base plate (1) is provided with a movable storage table (2), and a ceramic part clamp (3) for clamping a textile ceramic structure part is installed on the movable storage table (2); The rack (4) is provided with a cutting motor (5), and the output shaft of the cutting motor (5) is fixedly connected with a cutting wheel (6); The dust absorption mechanism (7) is arranged on the side of the cutting wheel (6) and is used for absorbing the dust generated by cutting; Wherein, the dust absorption mechanism (7) includes an adjusting screw (71) rotatably arranged on the base plate (1), a sliding table (72) threadedly connected with the adjusting screw (71), a supporting rotating rod (73) slidably arranged on the sliding table (72), and an absorption member (74) fixedly arranged at the end of the supporting rotating rod (73).
2. The cutting device for processing of textile ceramic structural elements according to claim 1, characterized in that: The absorption member (74) includes an absorption cover (741) fixedly connected with the supporting rotating rod (73), a connecting port (742) hermetically connected with the space in the cover, and a panel (743) hermetically connected with the port of the absorption cover (741) and provided with a plurality of absorption holes (744).
3. The cutting device for processing of textile ceramic structural elements according to claim 2, characterized in that: The connecting port (742) is hermetically connected with a connecting pipe (75), and the connecting pipe (75) includes a hose (751) hermetically connected with a pipe joint (752) sleeved on the connecting pipe (75) at one end and hermetically connected with the air suction interface of an external dust collection equipment at the other end.
4. The cutting apparatus for processing of textile ceramic structural members according to claim 1, characterized in that: The sliding table (72) is fixedly provided with a matching cylinder (721), the supporting rotating rod (73) passes through the sliding table (72) and the matching cylinder (721) and is in sliding contact with both, the supporting rotating rod (73) is fixedly provided with a clamping piece (731), and the rod end away from the absorption member (74) is threadedly connected with a locking nut (76).
5. The cutting apparatus for processing of textile ceramic structural members according to claim 1, characterized in that: The base plate (1) is fixedly provided with a vertical rod (77), and the rear end of the sliding table (72) is provided with a matching groove corresponding in size to the vertical rod (77), and the vertical rod (77) is fitted with the matching groove.
6. The cutting apparatus for processing of textile ceramic structural members according to claim 1, characterized in that: The movable storage table (2) includes a guide rod (21) and a table plate (23), the guide rod (21) is fixedly arranged on the base plate (1) through two end-connected fixed end pieces (22), and the table plate (23) is slidably connected with the guide rod (21) through a guide cylinder (24) fixedly arranged at the bottom.
7. The cutting apparatus for processing of textile ceramic structural members according to claim 6, characterized in that: The base plate (1) is fixedly provided with a mounting end piece (25), a driving threaded rod (26) is rotatably mounted on the mounting end piece (25), a hand wheel (28) is fixedly connected with the end of the driving threaded rod (26), the table plate (23) is fixedly provided with a driving table (27) on the upper end face, and the driving threaded rod (26) passes through the driving table (27) and is threadedly connected therewith.
8. The cutting apparatus for processing of textile ceramic structural members according to claim 1, characterized in that: The rack (4) includes a supporting plate (41) fixedly provided with a U-shaped frame (42), a locking plate (43) fixedly arranged at the front end of the U-shaped frame (42), and a mounting groove for mounting the cutting motor (5) formed between the U-shaped frame (42) and the locking plate (43).
Citation Information
Patent Citations
Cutting device for ceramic structural part
CN221850717U