CN222830937U - An automated groove cutting device for seamless steel pipe processing - Google Patents
An automated groove cutting device for seamless steel pipe processing Download PDFInfo
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- CN222830937U CN222830937U CN202421390371.0U CN202421390371U CN222830937U CN 222830937 U CN222830937 U CN 222830937U CN 202421390371 U CN202421390371 U CN 202421390371U CN 222830937 U CN222830937 U CN 222830937U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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Abstract
The utility model relates to the technical field of groove cutting equipment, in particular to automatic groove cutting equipment for seamless steel tube processing, which comprises a machine case, a clamping mechanism, a laser cutting mechanism, a control panel and a purifying component, wherein the purifying component comprises a processing box, an absorption channel, a filter plate, an activated carbon adsorption frame, a guiding-out component, a cleaning component and a collecting component, the processing box is fixedly connected with the machine case, one side of the absorption channel is connected with the machine case, the other side of the absorption channel is connected with the processing box, the filter plate is fixedly connected with the processing box, the activated carbon adsorption frame is connected with the processing box and is positioned in the processing box, the guiding-out component is connected with the processing box, the cleaning component is connected with the processing box, and the collecting component is connected with the processing box, so that the smoke and harmful gas generated in the laser cutting process can be absorbed and treated by the components, and the cleaning of the whole workshop environment can be improved, and the body health of operators can be ensured.
Description
Technical Field
The utility model relates to the technical field of groove cutting equipment, in particular to automatic groove cutting equipment for seamless steel tube processing.
Background
The groove is mainly a groove with a certain geometric shape machined on the welding piece, and the groove is arranged to facilitate the subsequent work piece to be welded to be tightly matched, so that good welding degree is ensured.
The existing groove cutting equipment for seamless steel tube processing generally directly adopts laser to cut, clamps the tube through a clamping mechanism, and drives the laser cutting equipment for cutting through a control mechanism such as a mechanical arm and the like, so that the clamped tube is automatically cut into grooves.
But adopt above-mentioned mode, when cutting tubular product through current groove cutting equipment, because laser cutting can produce more dust and waste gas, there is harmful chemical substance in these waste gas dust, consequently directly diverges in the air when dust waste gas and very easily causes the influence to whole processing environment, still can directly threat operating personnel's healthy simultaneously.
Disclosure of utility model
The utility model aims to provide automatic groove cutting equipment for seamless steel tube processing, which can absorb and treat smoke and harmful gas generated in the laser cutting process through a component, thereby improving the cleaning of the whole workshop environment and ensuring the physical health of operators.
In order to achieve the above purpose, the utility model provides an automatic groove cutting device for seamless steel tube processing, which comprises a machine case, a clamping mechanism, a laser cutting mechanism and a control panel, wherein the clamping mechanism is arranged in the machine case, the laser cutting mechanism is arranged in the machine case, and the control panel is arranged on one side of the machine case and further comprises a purifying component;
The purifying component comprises a processing box, an absorption channel, a filter plate, an activated carbon adsorption frame, a guiding-out component, a cleaning component and a collecting component, wherein the processing box is fixedly connected with the machine box and is positioned on one side of the machine box, one side of the absorption channel is connected with the machine box, the other side of the absorption channel is connected with the processing box, the filter plate is fixedly connected with the processing box and is positioned in the processing box, the activated carbon adsorption frame is connected with the processing box and is positioned in the processing box, the guiding-out component is connected with the processing box, the cleaning component is connected with the processing box, and the collecting component is connected with the processing box.
The guiding-out component comprises an air detector, a communicating pipeline and an absorption fan, wherein the air detector is connected with the processing box and is positioned on one side of the processing box, the communicating pipeline is connected with the processing box and is positioned on one side of the processing box, and the absorption fan is connected with the communicating pipeline and is fixedly arranged on one side of the chassis.
The cleaning component comprises a guide rail frame, a driving plate, a brush plate and a driving part, wherein the guide rail frame is fixedly connected with the processing box and is positioned on one side of the processing box, the driving plate is in sliding connection with the guide rail frame and is positioned on one side of the guide rail frame, the brush plate is fixedly connected with the driving plate and is positioned on one side of the driving plate, and the driving part is connected with the driving plate.
The driving component comprises a driving screw rod and a driving motor, the driving screw rod is in threaded connection with the driving plate and is rotatably arranged on one side of the treatment box, an output shaft of the driving motor is connected with the driving screw rod, and the driving motor is fixedly arranged on one side of the treatment box.
The collecting component comprises a storage box, a backflow filter screen, a turnover cover and a blocking component, wherein the storage box is fixedly connected with the processing box and is located on one side of the processing box, the backflow filter screen is fixedly connected with the storage box and is located on one side of the storage box, the turnover cover is rotatably connected with the storage box and is located on one side of the storage box, and the blocking component is connected with the processing box.
The blocking component comprises a connecting frame, a shielding frame, a lifting screw and a lifting motor, wherein the connecting frame is fixedly connected with the processing box and is positioned on one side of the processing box, the shielding frame is in sliding connection with the connecting frame and is positioned on one side of the storage box, the lifting screw is in threaded connection with the shielding frame and is rotatably arranged on the connecting frame, an output shaft of the lifting motor is connected with the lifting screw, and the lifting motor is fixedly arranged on one side of the connecting frame.
According to the automatic groove cutting equipment for seamless steel pipe machining, the clamping mechanism is matched with the laser cutting mechanism to automatically cut the groove, a user can close the transparent sealing door leaf arranged on the machine case when the laser cutting machining is carried out, waste gas generated in the machining process is prevented from being dispersed into the external environment, when the laser cutting machining is carried out in the machine case, the absorption fan can guide the gas generated in the machining into the treatment box through the absorption channel by guiding airflow, then secondary filtering and purification are carried out through the filter plate and the active carbon adsorption frame arranged in the treatment box, so that most harmful substances in the gas are conveniently treated, after the gas is filtered and purified through the filter plate and the active carbon adsorption frame, the air detector can monitor the quality of the discharged gas, once the quality of the discharged gas is detected to start to be reduced, an operator is prompted to timely check the purification function of the active carbon adsorption frame and corresponding cleaning and maintenance of the active carbon adsorption frame through the corresponding pre-lamp, and the quality of the discharged gas can be guaranteed to be finally filtered and purified through the filter plate and the active carbon adsorption frame, and the quality of the smoke can be further improved by the laser treatment device, and the whole body can be further treated by the laser in the treatment workshop.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below.
Fig. 1 is a schematic view showing the overall structure of an automated groove cutting apparatus for seamless steel pipe processing according to a first embodiment of the present utility model.
Fig. 2 is a schematic view of a treatment tank according to a first embodiment of the present utility model in a cut-away configuration.
Fig. 3 is an enlarged view at a of fig. 2 of a first embodiment of the present utility model.
Fig. 4 is a schematic view showing the overall structure of an automated groove cutting apparatus for seamless steel pipe processing according to a second embodiment of the present utility model.
Fig. 5 is a schematic sectional view of a storage box according to a second embodiment of the present utility model.
In the figure, a machine box 101-a clamping mechanism 102-a laser cutting mechanism 103-a control panel 104-a processing box 105-an absorption channel 106-a filter plate 107-an activated carbon adsorption frame 108-an air detector 109-a communication pipeline 110-an absorption fan 111-a guide rail frame 112-a drive plate 113-a brush plate 114-a drive screw 115-a drive motor 116-a storage box 201-a reflux filter screen 202-a 203-a turnover cover 204-a connecting frame 205-a shielding frame 206-a lifting screw and a 207-lifting motor.
Detailed Description
The following detailed description of embodiments of the utility model, examples of which are illustrated in the accompanying drawings and, by way of example, are intended to be illustrative, and not to be construed as limiting, of the utility model.
The first embodiment of the application is as follows:
referring to fig. 1 to 3, fig. 1 is a schematic view showing the whole structure of an automated groove cutting apparatus for seamless steel pipe processing, fig. 2 is a schematic view showing a process tank 105 in section, and fig. 3 is an enlarged view of fig. 2 at a.
The utility model provides automatic groove cutting equipment for seamless steel tube processing, which comprises a machine case 101, a clamping mechanism 102, a laser cutting mechanism 103, a control panel 104 and a purifying component, wherein the purifying component comprises a processing box 105, an absorption channel 106, a filter plate 107, an activated carbon adsorption frame 108, a guiding-out component, a cleaning component and a collecting component, the guiding-out component comprises an air detector 109, a communicating pipeline 110 and an absorption fan 111, the cleaning component comprises a guide rail frame 112, a driving plate 113, a brush plate 114 and a driving part, the driving part comprises a driving screw 115 and a driving motor 116, and the problems that when the existing groove cutting equipment is used for cutting a tube, as more dust and waste gas are generated in laser cutting, harmful chemical substances exist in the waste gas and the dust and the waste gas are easy to influence the whole processing environment when the dust and the waste gas are directly diffused into the air, and meanwhile, the body health of operators is also directly threatened are solved.
In this embodiment, the clamping mechanism 102 is installed in the chassis 101, the laser cutting mechanism 103 is installed in the chassis 101, the control panel 104 is installed on one side of the chassis 101, the clamping mechanism 102 is disposed inside the chassis 101, the clamping mechanism 102 is composed of a chuck and a corresponding driving box, the laser cutting mechanism 103 is composed of a mechanical arm and a laser generating device for cutting, and the control panel 104 is an operation template for controlling the whole cutting device to work, and since the corresponding mechanisms are all of the very mature prior art, the edges are not repeated in this scheme.
Wherein the processing box 105 is fixedly connected with the case 101 and is positioned at one side of the case 101, one side of the absorption channel 106 is connected with the case 101, the other side of the absorption channel 106 is connected with the processing box 105, the filter plate 107 is fixedly connected with the processing box 105 and is positioned in the processing box 105, the activated carbon adsorption frame is connected with the processing box 105 and is positioned in the processing box 105, the guiding-out member is connected with the processing box 105, the cleaning member is connected with the processing box 105, the collecting member is connected with the processing box 105, the air detector 109 is connected with the processing box 105 and is positioned at one side of the processing box 105; the suction fan 111 is connected with the communication pipe 110 and is fixedly arranged at one side of the case 101, the processing case 105 is arranged at the side of the case 101, the processing case 105 is communicated with the inside of the case 101 through the suction channel 106, the bottom of the processing case 105 is communicated with the air inlet end of the suction fan 111 through the communication pipe 110, the filter plate 107 is fixedly arranged below the communication port of the processing case 105 and the suction channel 106, the activated carbon adsorption frame 108 is arranged below the filter plate 107 through the cooperation with the supporting boss in the processing case 105, the air detector 109 is arranged at the opening of the processing case 105 communicated with the communication pipe 110, so that when the whole cutting equipment cuts, a user can guide the air flow through the suction fan 111, the flue gas generated in the processing case 101 enters the processing case 105 through the suction channel 106, then through the filter plate 107 that processing box 105 was equipped with filters the separation to great granule impurity and dust, later rethread activated carbon adsorption frame 108 carries out secondary purification to the air that filters, and sets up processing box 105 side air detector 109 can detect after the purification, simultaneously the air detector 109 outside still is equipped with corresponding early warning lamp, when detecting the air quality variation, the early warning lamp in the air detector 109 outside just can constantly flash to the suggestion user, so that the user can in time be right activated carbon adsorption frame 108 is changed or is cleared up, owing to be provided with activated carbon adsorption frame 108 side is through the bolt-mounting board, so the user can be right through dismantling the mounting board activated carbon adsorption frame 108 removes and subsequent installation.
Secondly, the guide rail frame 112 is fixedly connected with the processing box 105 and is positioned at one side of the processing box 105; the device comprises a guide rail frame 112, a driving plate 113, a brush plate 114, a driving component, a driving screw 115, a driving motor 116, a filter plate frame 113, a filter plate 107, a filter plate frame 114, a filter plate 107, a filter plate 114, a brush plate 114, a guide rail frame 112, a brush plate 114 and the like, wherein the driving plate 113 is in sliding connection with the guide rail frame 112 and is positioned on one side of the guide rail frame 112, the brush plate 114 is fixedly connected with the driving plate 113 and is positioned on one side of the guide rail frame 113, the driving component is connected with the driving plate 113, the driving screw 115 is in threaded connection with the driving plate 113 and is rotatably arranged on one side of the processing box 105, an output shaft of the driving motor 116 is connected with the driving screw 115, the driving motor 116 is fixedly arranged on one side of the processing box 105, the guide rail frame 112 and the driving plate 113 are provided with two groups, the brush plate 114 is fixedly arranged at the bottom of the two brush plates 113, brush bristles at the bottom of the brush plate 114 are attached to the filter plate 107, threaded holes matched with the driving screw 115 are arranged on one surface of the two brush plates 113, and when the driving screw 115 drives the driving screw 115 to drive the driving screw 115 to the driving screw 113 to the one filter plate 114, and the filter plate 114 to drive the filter plate 114 to move along the surface to the surface of the filter plate 107 by the brush plate 107.
When the automatic groove cutting device for seamless steel pipe processing of the embodiment is used, the clamping mechanism 102 cooperates with the laser cutting mechanism 103 to cut the steel pipe automatically, and when the laser cutting processing is performed, a user can close the transparent sealing door leaves arranged on the case 101 to avoid the generated waste gas generated in the processing process from being dispersed into the external environment, and when the laser cutting processing is performed in the case 101, the absorption fan 111 can guide the gas generated in the processing into the processing case 105 through the absorption channel 106 by guiding the air flow, then perform secondary filtration and purification through the filter plate 107 and the activated carbon adsorption frame arranged in the processing case 105, so that handle most harmful substance in the gas, in addition gas passes through filter plate 107 with after the active carbon adsorption frame 108 filters the purification, air detector 109 just can monitor exhaust gas quality, in case detect that exhaust gas quality begins to descend alright in time through corresponding early warning lamp sending signal suggestion operating personnel in time to the purification performance of active carbon adsorption frame 108 carries out inspection and corresponding clean maintenance, guarantees final exhaust gas's quality, has realized can absorb and handle smog and harmful gas that produces in the laser cutting process through the component that is equipped with, and then improves the clean assurance operating personnel's of whole workshop environment healthy.
Second embodiment:
Referring to fig. 4 and 5, fig. 4 is a schematic structural view of the whole automated groove cutting apparatus for seamless steel tube processing according to the second embodiment, and fig. 5 is a schematic structural view of a storage box 201 of the second embodiment, where the collecting member provided by the present utility model includes a storage box 201, a backflow screen 202, a flip cover 203, and a blocking component, and the blocking component includes a connecting frame 204, a blocking frame 205, a lifting screw 206, and a lifting motor 207.
The filter plate 107 is characterized in that the storage box 201 is fixedly connected with the processing box 105 and is positioned on one side of the processing box 105, the backflow filter screen 202 is fixedly connected with the storage box 201 and is positioned on one side of the storage box 201, the overturning cover 203 is rotatably connected with the storage box 201 and is positioned on one side of the storage box 201, the blocking component is connected with the processing box 105, the storage box 201 is arranged on the front side of the processing box 105, an upper conducting groove and a lower conducting groove are arranged on one side of the storage box 201, which is connected with the processing box 105, at the same time, a communicating groove is formed in a position matched with the conducting groove of the storage box 201, the conducting groove positioned above the storage box 201 is matched with the position of the filter plate 107 mounted inside the processing box 105, impurities on the surface of the filter plate 107 can be concentrated into the storage box 201 through the matching of the conducting groove above the storage box 201, the conducting groove 202 at the bottom of the storage box is fixedly provided with the upper conducting groove 202, and the backflow filter screen 202 can be prevented from being sucked into the filter plate 107 again when the filter plate 201 is in a normal work state, and the dust can be prevented from being sucked into the filter plate 107.
The connecting frame 204 is fixedly connected with the processing box 105 and is positioned on one side of the processing box 105, the shielding frame 205 is slidably connected with the connecting frame 204 and is positioned on one side of the containing box 201, the lifting screw 206 is in threaded connection with the shielding frame 205 and is rotatably mounted on the connecting frame 204, an output shaft of the lifting motor 207 is connected with the lifting screw 206, the lifting motor 207 is fixedly mounted on one side of the connecting frame 204, the connecting frame 204 is fixedly mounted on the top of the processing box 105, a baffle plate at the bottom of the shielding frame 205 arranged on the connecting frame 204 is matched with an insertion groove arranged above the containing box 201, a threaded hole matched with the lifting screw 206 is formed in a boss on the top of the shielding frame 205, the lifting screw 206 is fixedly connected with an output shaft of the lifting motor 207, a user can drive the shielding frame 205 through the cooperation of the lifting screw 206, and further the shielding frame 205 is fixedly mounted on one side of the connecting frame 204, the bottom baffle plate of the processing box 105 is matched with the containing box 201, and the user can conveniently clean the containing box 201 by opening the containing box 201 through the guide groove.
When the automatic groove cutting equipment for seamless steel pipe machining is used, the containing box 201 is matched with the reflux filter plate 107 at the bottom of the containing box 201 to collect impurities in the sweeping and discharging process of the brush plate 114, when a user needs to clean and discharge impurities in the containing box 201, the lifting screw 206 is matched with the lifting motor 207 to drive the shielding frame 205 to move up and down through the connecting frame 204, the shielding frame 205 moves down to seal the containing box 201 and the processing box 105, the guide groove for communication is formed, then the overturning cover 203 is opened to clean impurities in the containing box 201, and the shielding frame 205 is used for blocking the impurities in the containing box 201 so that the user can not influence the normal waste gas purification of the whole equipment when cleaning the impurities in the containing box 201, so that the device is more convenient in practical operation, and the practicability of the whole device is greatly enhanced.
The foregoing disclosure is only illustrative of one or more preferred embodiments of the present application, and it is not intended to limit the scope of the claims hereof, as persons of ordinary skill in the art will understand that all or part of the processes for practicing the embodiments described herein may be practiced with equivalent variations in the claims, which are within the scope of the application.
Claims (6)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421390371.0U CN222830937U (en) | 2024-06-18 | 2024-06-18 | An automated groove cutting device for seamless steel pipe processing |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421390371.0U CN222830937U (en) | 2024-06-18 | 2024-06-18 | An automated groove cutting device for seamless steel pipe processing |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222830937U true CN222830937U (en) | 2025-05-06 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202421390371.0U Active CN222830937U (en) | 2024-06-18 | 2024-06-18 | An automated groove cutting device for seamless steel pipe processing |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222830937U (en) |
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- 2024-06-18 CN CN202421390371.0U patent/CN222830937U/en active Active
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