CN222843330U - Cutting device is used in dust catcher shell production - Google Patents
Cutting device is used in dust catcher shell production Download PDFInfo
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- CN222843330U CN222843330U CN202421354265.7U CN202421354265U CN222843330U CN 222843330 U CN222843330 U CN 222843330U CN 202421354265 U CN202421354265 U CN 202421354265U CN 222843330 U CN222843330 U CN 222843330U
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Abstract
The utility model discloses a cutting device for producing a dust collector shell, and relates to the technical field of shell cutting. The utility model can place and limit the dust collector shell body, is favorable for comprehensively limiting the dust collector shell body, improves the stability of the mounting operation of the dust collector shell body, and improves the stability of the subsequent cutting of the dust collector shell body, thereby guaranteeing the cutting quality of the dust collector shell body, cutting the dust collector shell body, being favorable for adjusting the cutting position of the dust collector shell body, improving the cutting efficiency of the dust collector shell body and saving the working time.
Description
Technical Field
The utility model relates to the technical field of shell cutting, in particular to a cutting device for producing a dust collector shell.
Background
The working principle of the dust collector is that the motor is used for driving the blades to rotate at high speed, air negative pressure is generated in the sealed shell, and dust is sucked. The material shell is one of the most common materials in the dust collector, and is mainly characterized by portability, corrosion resistance, convenient processing and forming and the like. During the production of a vacuum cleaner, it is often necessary to precisely cut parts, such as a filter screen, an exhaust port, etc. At this time, a laser cutting machine is used for cutting, and the laser cutting has the advantages of high precision, high speed and the like, and can ensure the dimensional precision, suction and other performances of products.
The utility model discloses a shearing device for producing a dust collector shell, which relates to the technical field of dust collector shell production and aims to solve the problems that the shearing operation is needed in the production process of the existing dust collector shell, the general shearing device is poor in flexibility, various shapes of the dust collector shell cannot be sheared well, and the dust collector shell needs to be reinforced.
When the existing dust collector shell is manufactured, the corresponding position of the shell needs to be cut, the problem that the general shearing device is poor in flexibility and cannot well shear various shapes of the dust collector shell is solved, the problem that the general shearing device is required to be reinforced is solved, however, the device is inconvenient to clamp the dust collector shell in the use process, is unfavorable for stably cutting the dust collector shell, influences the stability of the dust collector shell in the manufacturing process, and reduces the quality of the cutting process of the dust collector shell, so that the cutting device for the dust collector shell production is needed.
Disclosure of Invention
The utility model provides a cutting device for producing a dust collector shell, which has the advantage of being capable of firmly clamping and cutting the dust collector shell, thereby solving the problems in the background technology.
The utility model is realized by the following technical scheme that the cutting device for producing the dust collector shell comprises a shell placing mechanism, wherein the shell placing mechanism comprises a supporting seat, an operation table is fixedly connected to the top of the supporting seat, a control panel is arranged on one side of the operation table, a modulation component is arranged on the surface of the operation table, a dust collector shell body is arranged on the top of the modulation component, a front end limiting component is arranged on one side of the surface of the modulation component, a rear end limiting component is arranged on the other side of the surface of the modulation component, side pressing components are arranged on two sides of the top of the modulation component, and
The shell cutting mechanism comprises a fixing frame which is fixedly connected to the top of the operating platform, a control panel is installed on one side of the fixing frame, a laser cutting assembly is installed on the surface of the fixing frame, and the laser cutting assembly is matched with the shell body of the dust collector.
The utility model relates to a cutting device for producing a dust collector shell, which comprises a fixed seat, a servo motor, a modulation controller, an installation table and a placing groove, wherein the fixed seat is fixedly arranged in an operation table, the servo motor is fixedly arranged in the fixed seat, the modulation controller is arranged on the surface of the fixed seat, the installation table is fixedly connected with the output end of the servo motor, and the placing groove is formed in the surface of the installation table.
The utility model relates to a cutting device for producing a dust collector shell, which comprises a front end servo electric cylinder, a first jacking controller, a front end top plate and a front side clamping member, wherein the front end servo electric cylinder is fixedly arranged on a mounting table, the number of the front end servo electric cylinders is two, the first jacking controller is arranged on the front end servo electric cylinder, the front end top plate is fixedly arranged at the output end of the front end servo electric cylinder, and the front side clamping member is arranged on the front end top plate.
The utility model relates to a cutting device for producing a dust collector shell, which comprises a rear end servo electric cylinder, a second jacking controller, a rear end jacking plate and a rear end clamping member, wherein the rear end servo electric cylinder is fixedly arranged on a mounting table, the number of the rear end servo electric cylinders is two, the second jacking controller is arranged on the rear end servo electric cylinder, the rear end jacking plate is fixedly arranged at the output end of the rear end servo electric cylinder, and the rear end clamping member is arranged on the rear end jacking plate.
The utility model relates to a cutting device for producing a dust collector shell, which comprises a connecting seat, a connecting column, an electric control telescopic rod, a telescopic controller, a movable connecting piece and a pressing side plate, wherein the connecting seat is fixedly arranged on a mounting table, the connecting column is rotatably arranged on the connecting seat, the electric control telescopic rod is fixedly arranged in the mounting table, the telescopic controller is arranged on the electric control telescopic rod, the movable connecting piece is communicated with the output end of the electric control telescopic rod, one end of the movable connecting piece is connected with the surface of the connecting column, and the pressing side plate is arranged at one end of the connecting column.
The utility model relates to a cutting device for producing a dust collector shell, which comprises a transverse electric control guide rail, a first sliding rail controller, a longitudinal electric control guide rail, a second sliding rail controller, an electric control lifting rod, a lifting controller, a laser cutter and a cutting controller, wherein the transverse electric control guide rail is arranged on a fixed frame, the first sliding rail controller is arranged on the surface of the transverse electric control guide rail, the longitudinal electric control guide rail is arranged on the transverse electric control guide rail, the second sliding rail controller is arranged on the surface of the longitudinal electric control guide rail, the electric control lifting rod is arranged on the longitudinal electric control guide rail, the lifting controller is arranged on the electric control lifting rod, the lifting controller is fixedly arranged at the output end of the electric control lifting rod, and the laser cutter is arranged on the lifting controller.
As the cutting device for producing the dust collector shell, the front side clamping member comprises the first electric control bidirectional telescopic rod, the first clamping controller, the first folding rod and the first clamping plate, wherein the first electric control bidirectional telescopic rod is fixedly arranged in the front end top plate, the first clamping controller is arranged on the first electric control bidirectional telescopic rod, the first folding rod is fixedly connected with two ends of the first electric control bidirectional telescopic rod, the first folding rod is in sliding connection with the front end top plate, and the first clamping plate is fixedly connected with one end of the first folding rod.
The utility model relates to a cutting device for producing a dust collector shell, which comprises a rear end clamping member, a rear end supporting plate and a rear end supporting plate, wherein the rear end clamping member comprises a second electric control bidirectional telescopic rod, a second clamping controller, a second folding rod and a second clamping plate, the second electric control bidirectional telescopic rod is fixedly arranged in the rear end supporting plate, the second clamping controller is arranged on the second electric control bidirectional telescopic rod, the second folding rod is fixedly connected with two ends of the second electric control bidirectional telescopic rod, the second folding rod is in sliding connection with the rear end supporting plate, and the second clamping plate is fixedly connected with one end of the second folding rod.
The utility model provides a cutting device for producing a dust collector shell. The beneficial effects are as follows:
According to the cutting device for the production of the dust collector shell, through the arrangement of the shell placement mechanism, the supporting seat, the operation table, the control panel, the rotating adjustment assembly, the dust collector shell body, the front end limiting assembly, the rear end limiting assembly and the side edge pressing assembly, the dust collector shell body can be placed and limited, the dust collector shell body can be comprehensively limited, the stability of the installation operation of the dust collector shell body is improved, the stability of the dust collector shell body in subsequent cutting is improved, and therefore the cutting quality of the dust collector shell body is guaranteed;
Through shell cutting mechanism, mount, control panel and laser cutting assembly's setting, can cut dust catcher shell body, be favorable to adjusting dust catcher shell body's cutting position, promote dust catcher shell body cutting process's efficiency, save operating time.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a side view of a three-dimensional structure of the present utility model;
FIG. 3 is a perspective view of a first partial structure of the present utility model;
FIG. 4 is an exploded view of a partial structure of the present utility model;
FIG. 5 is a perspective view of a second partial structure of the present utility model;
FIG. 6 is a perspective view of a third partial structure of the present utility model;
FIG. 7 is a cross-sectional view of a first partial structure of the present utility model;
FIG. 8 is a cross-sectional view of a second partial structure of the present utility model;
Fig. 9 is a perspective view of a partial fourth construction of the present utility model.
In the figure, 1, a housing mounting mechanism; 101, a supporting seat; 102, an operation table; 103, a control panel, 104, a tuning assembly, 1041, a fixed seat, 1042, a servo motor, 1043, a tuning controller, 1044, a mounting table, 1045, a placing groove, 105, a dust collector shell body, 106, a front end limiting assembly, 1061, a front end servo cylinder, 1062, a first jacking controller, 1063, a front end top plate, 1064, a front side clamping member, 107, a rear end limiting assembly, 1071, a rear end servo cylinder, 1072, a second jacking controller, 1073, a rear end jacking plate, 1074, a rear end clamping member, 108, a side pressing assembly, 1081, a connecting seat, 1082, a connecting column, 1083, an electric control telescopic rod, 1084, a telescopic controller, 1085, a movable connecting piece, 1086, a pressing side plate, 2, a shell cutting mechanism, 201, a fixed frame, 202, a control panel, 203, a laser cutting assembly, 2031, a transverse electric control rail, 2032, a first slide rail controller, 3, a longitudinal electric control rail, 2034, a second slide rail controller, 1074, a second slide rail controller, 1075, a telescopic controller, 1086, a telescopic rod, a clamp, a first telescopic rod, a clamp, a first, a telescopic rod, and a telescopic rod, a clamp, and a control, and a clamp, and a two-type, and a telescopic rod, a control, and a clamp, and a control, respectively, and a 1084, and a roll, respectively, and a roll, and a, and roll, by, and roll, and stand, and stand.
Detailed Description
The technical solutions of the present embodiments will be clearly and completely described below with reference to the drawings in the present embodiments, and it is apparent that the described embodiments are only some embodiments of the present invention, not all embodiments. All other embodiments, based on the embodiments herein, which would be within the purview of one of ordinary skill in the art without the creative effort, are contemplated as falling within the scope of the present invention.
Referring to fig. 1-9, the utility model provides a cutting device for producing a dust collector shell, which comprises a shell placing mechanism 1, wherein the shell placing mechanism 1 comprises a supporting seat 101, an operation table 102 is fixedly connected to the top of the supporting seat 101, a control panel 103 is installed on one side of the operation table 102, a rotating and adjusting component 104 is installed on the surface of the operation table 102, a dust collector shell body 105 is arranged on the top of the rotating and adjusting component 104, a front end limiting component 106 is installed on one side of the surface of the rotating and adjusting component 104, a rear end limiting component 107 is installed on the other side of the surface of the rotating and adjusting component 104, side edge pressing components 108 are installed on two sides of the top of the rotating and adjusting component 104, and the dust collector shell body 105 can be placed and limited by the arrangement of the shell placing mechanism 1, the supporting seat 101, the operation table 102, the control panel 103, the rotating and adjusting component 104, the dust collector shell body 105, the front end limiting component 106, the rear end limiting component 107 and the side edge pressing components 108, so that the dust collector shell body 105 is beneficial to comprehensively limiting the dust collector shell body 105, the stability of the installation operation of the dust collector shell body 105 is improved, the stability of the dust collector shell body 105 is ensured, and the quality of the cut dust collector shell 105 is ensured, and the quality of the dust collector is processed and the dust collector shell is processed and the quality
The shell cutting mechanism 2, the shell cutting mechanism 2 includes the mount 201, mount 201 fixed connection is in the top of operation panel 102, control panel 202 is installed to one side of mount 201, the surface mounting of mount 201 has laser cutting subassembly 203, and laser cutting subassembly 203 and dust catcher shell body 105 cooperation use, through the setting of shell cutting mechanism 2, mount 201, control panel 202 and laser cutting subassembly 203, can cut dust catcher shell body 105, be favorable to adjusting dust catcher shell body 105's cutting position, promote dust catcher shell body 105 cutting process's efficiency, save operating time.
Referring to fig. 4, the tuning assembly 104 includes a fixing base 1041, a servo motor 1042, a tuning controller 1043, a mounting table 1044 and a placing groove 1045, the fixing base 1041 is fixedly installed in the operating table 102, the servo motor 1042 is fixedly installed in the fixing base 1041, the tuning controller 1043 is installed on the surface of the fixing base 1041, the mounting table 1044 is fixedly connected to the output end of the servo motor 1042, the placing groove 1045 is opened on the surface of the mounting table 1044, and the adjustment of the dust collector housing body 105 can be performed through the setting of the fixing base 1041, the servo motor 1042, the tuning controller 1043, the mounting table 1044 and the placing groove 1045, which is favorable for adjusting the overall position of the installation of the dust collector housing body 105, and is convenient for adjusting the subsequent processing position of the dust collector housing body 105.
Referring to fig. 5, the front end limiting assembly 106 includes a front end servo cylinder 1061, a first supporting controller 1062, a front end top plate 1063 and a front side clamping member 1064, the front end servo cylinder 1061 is fixedly mounted on the mounting table 1044, and the number of the front end servo cylinders 1061 is two, the first supporting controller 1062 is mounted on the front end servo cylinder 1061, the front end top plate 1063 is fixedly mounted at the output end of the front end servo cylinder 1061, the front side clamping member 1064 is mounted on the front end top plate 1063, and the front end of the cleaner housing body 105 can be supported and limited by the arrangement of the front end servo cylinder 1061, the first supporting controller 1062, the front end top plate 1063 and the front side clamping member 1064, so that the stability of the front end of the cleaner housing body 105 is maintained when the cleaner housing body 105 is mounted, and the cleaner housing body 105 is cut and processed later.
Referring to fig. 5, the rear end limiting assembly 107 includes a rear end servo cylinder 1071, a second supporting controller 1072, a rear end supporting plate 1073 and a rear end clamping member 1074, the rear end servo cylinder 1071 is fixedly mounted on the mounting table 1044, the number of the rear end servo cylinders 1071 is two, the second supporting controller 1072 is mounted on the rear end servo cylinder 1071, the rear end supporting plate 1073 is fixedly mounted at the output end of the rear end servo cylinder 1071, the rear end clamping member 1074 is mounted on the rear end supporting plate 1073, and the rear end supporting limiting of the rear end supporting plate 1073 and the rear end clamping member 1074 of the dust collector housing body 105 can be realized through the arrangement of the rear end servo cylinder 1071, the second supporting controller 1073 and the rear end clamping member 1074, so that the stability of the rear end of the dust collector housing body 105 during mounting can be maintained, and the subsequent cutting of the dust collector housing body 105 can be conveniently performed.
Referring to fig. 6, the side pressing assembly 108 includes a connection seat 1081, a connection post 1082, an electrically controlled telescopic rod 1083, a telescopic controller 1084, a movable connection member 1085 and a pressing side plate 1086, the connection seat 1081 is fixedly installed on the installation table 1044, the connection post 1082 is rotatably installed on the connection seat 1081, the electrically controlled telescopic rod 1083 is fixedly installed in the installation table 1044, the telescopic controller 1084 is installed on the electrically controlled telescopic rod 1083, the movable connection member 1085 is communicated with an output end of the electrically controlled telescopic rod 1083, one end of the movable connection member 1085 is connected with a surface of the connection post 1082, the pressing side plate 1086 is installed at one end of the connection post 1082, and through the arrangement of the connection seat 1081, the connection post 1082, the electrically controlled telescopic rod 1083, the telescopic controller 1084, the movable connection member 1085 and the pressing side plate 1086, pressing operations can be performed on two sides of the cleaner housing body 105, so that the stability of the middle part of the cleaner housing body 105 can be maintained, and the stability of the overall installation of the cleaner housing body 105 is improved.
Referring to fig. 9, the laser cutting assembly 203 includes a transverse electric control rail 2031, a first slide rail controller 2032, a longitudinal electric control rail 2033, a second slide rail controller 2034, an electric control lifting rod 2035, a lifting controller 2036, a laser cutter 2037 and a cutting controller 2038, wherein the transverse electric control rail 2031 is mounted on a fixing frame 201, the first slide rail controller 2032 is mounted on the surface of the transverse electric control rail 2031, the longitudinal electric control rail 2033 is mounted on the surface of the transverse electric control rail 2031, the second slide rail controller 2034 is mounted on the surface of the longitudinal electric control rail 2033, the electric control lifting rod 2035 is mounted on the longitudinal electric control rail 2033, the lifting controller 2036 is mounted on the electric control lifting rod 2035, the lifting controller 2036 is fixedly mounted at the output end of the electric control lifting controller 2035, the laser cutter 2037 is mounted on the lifting controller 2036, and the surface of the housing body 203105 can be cut by the transverse electric control rail 2031, the longitudinal electric control rail 2033, the second slide rail controller 2034, the electric control lifting controller 2035, the lifting controller 2036, the laser cutter 2037 and the cutting controller 2038 are mounted on the housing body, and the housing 105 can be processed correspondingly, and the housing 105 can be cut, and the housing body 105 can be processed.
Referring to fig. 7, the front clamping member 1064 includes a first electrically controlled bi-directional telescopic rod 111, a first clamping controller 112, a first folding rod 113 and a first clamping plate 114, where the first electrically controlled bi-directional telescopic rod 111 is fixedly installed in the front top plate 1063, the first clamping controller 112 is installed on the first electrically controlled bi-directional telescopic rod 111, the first folding rod 113 is fixedly connected to two ends of the first electrically controlled bi-directional telescopic rod 111, and the first folding rod 113 is slidably connected to the front top plate 1063, the first clamping plate 114 is fixedly connected to one end of the first folding rod 113, and by the arrangement of the first electrically controlled bi-directional telescopic rod 111, the first clamping controller 112, the first folding rod 113 and the first clamping plate 114, two sides of the front end of the cleaner housing body 105 can be clamped, which is favorable for improving the fixing effect of the front end of the cleaner housing body 105.
Referring to fig. 8, the rear end holding member 1074 includes a second electrically controlled bi-directional telescopic rod 121, a second holding controller 122, a second folding rod 123 and a second holding plate 124, the second electrically controlled bi-directional telescopic rod 121 is fixedly installed in the rear end holding plate 1073, the second holding controller 122 is installed on the second electrically controlled bi-directional telescopic rod 121, the second folding rod 123 is fixedly connected to two ends of the second electrically controlled bi-directional telescopic rod 121, the second folding rod 123 is slidably connected with the rear end holding plate 1073, the second holding plate 124 is fixedly connected to one end of the second folding rod 123, and the two sides of the rear end of the cleaner housing body 105 can be clamped through the arrangement of the second electrically controlled bi-directional telescopic rod 121, the second holding controller 122, the second folding rod 123 and the second holding plate 124, so that the effect of fixing the rear end of the cleaner housing body 105 is facilitated to be improved.
When in use, firstly, a worker places the cleaner housing body 105 to be processed on the surface of the modulation component 104, at this time, the cleaner housing body 105 is moved and placed in the placement groove 1045, then the surface of the cleaner housing body 105 to be cut is adjusted to the top, then the front end limiting component 106, the rear end limiting component 107 and the side pressing component 108 are started through the control panel 103, at this time, the front end servo cylinder 1061 is controlled to extend through the first propping controller 1062, then the front end top plate 1063 is driven to prop up the front end of the cleaner housing body 105, meanwhile, the rear end servo cylinder 1071 is controlled to extend through the second propping controller 1072, then the rear end propping plate 1073 is driven to prop up the rear end of the cleaner housing body 105, so as to prop up and limit the cleaner housing body 105, then the first clamping controller 112 controls the first electric control bidirectional telescopic rod 111 to shrink, then two ends of the first electric control bidirectional telescopic rod 111 drive the two first folding rods 113 to move oppositely, so as to drive the first clamping plate 114 to clamp two sides of the front end of the dust collector shell body 105, then the second clamping controller 122 controls the second electric control bidirectional telescopic rod 121 to shrink, then two ends of the second electric control bidirectional telescopic rod 121 drive the two second folding rods 123 to move oppositely, so as to drive the second clamping plate 124 to clamp two sides of the rear end of the dust collector shell body 105, then the electric control telescopic rod 1083 is controlled to shrink by the telescopic controller 1084, then the movable connecting piece 1085 drives the connecting column 1082 to rotate, so that the pressing side plate 1086 is pressed on the surface of the dust collector shell body 105, and the dust collector shell body 105 is fixed;
When the fixing of the cleaner housing body 105 is completed, a worker starts the rotating and adjusting assembly 104 to work through the control panel 103 according to the installation and adjustment of the cleaner housing body 105, at this time, the rotating and adjusting controller 1043 controls the servo motor 1042 to rotate so as to adjust the angle of the mounting table 1044, then the control panel 202 controls the laser cutting assembly 203 to work, at this time, the first slide rail controller 2032 controls the transverse electric control guide rail 2031 and the second slide rail controller 2034 controls the longitudinal electric control guide rail 2033, then the working position of the laser cutter 2037 is moved and adjusted, the lifting controller 2036 controls the electric control lifting rod 2035 to stretch so as to drive the laser cutter 2037 to move downwards to the cutting height, and then the cutting controller 2038 controls the laser cutter 2037 to correspondingly cut the surface of the cleaner housing body 105;
Finally, after the surface of the cleaner housing body 105 is cut, the front end limiting assembly 106, the rear end limiting assembly 107 and the side pressing assembly 108 are controlled to be opened through the control panel 103, and the cleaner housing body 105 after the cutting is taken out.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.
Claims (8)
1. A cutting device for producing a cleaner housing, comprising:
The shell placing mechanism (1), the shell placing mechanism (1) comprises a supporting seat (101), an operation table (102) is fixedly connected to the top of the supporting seat (101), a control panel (103) is installed on one side of the operation table (102), a rotating and adjusting component (104) is installed on the surface of the operation table (102), a dust collector shell body (105) is arranged on the top of the rotating and adjusting component (104), a front end limiting component (106) is installed on one side of the surface of the rotating and adjusting component (104), a rear end limiting component (107) is installed on the other side of the surface of the rotating and adjusting component (104), side pressing and positioning components (108) are installed on two sides of the top of the rotating and adjusting component (104), and
Shell cutting mechanism (2), shell cutting mechanism (2) include mount (201), mount (201) fixed connection is in the top of operation panel (102), control panel (202) are installed to one side of mount (201), the surface mounting of mount (201) has laser cutting subassembly (203), and laser cutting subassembly (203) and dust catcher shell body (105) cooperation use.
2. The cutting device for producing the dust collector shell according to claim 1, wherein the modulation component (104) comprises a fixed seat (1041), a servo motor (1042), a modulation controller (1043), a mounting table (1044) and a placing groove (1045), the fixed seat (1041) is fixedly arranged in the operation table (102), the servo motor (1042) is fixedly arranged in the fixed seat (1041), the modulation controller (1043) is arranged on the surface of the fixed seat (1041), the mounting table (1044) is fixedly connected with the output end of the servo motor (1042), and the placing groove (1045) is arranged on the surface of the mounting table (1044).
3. The cutting device for producing the dust collector shell according to claim 2, wherein the front end limiting assembly (106) comprises a front end servo electric cylinder (1061), a first jacking controller (1062), a front end top plate (1063) and a front side clamping member (1064), the front end servo electric cylinder (1061) is fixedly installed on the installation table (1044), the number of the front end servo electric cylinders (1061) is two, the first jacking controller (1062) is installed on the front end servo electric cylinder (1061), the front end top plate (1063) is fixedly installed at the output end of the front end servo electric cylinder (1061), and the front side clamping member (1064) is installed on the front end top plate (1063).
4. The cutting device for producing the dust collector shell according to claim 2, wherein the rear end limiting assembly (107) comprises a rear end servo electric cylinder (1071), a second jacking controller (1072), a rear end jacking plate (1073) and a rear end clamping member (1074), the rear end servo electric cylinder (1071) is fixedly mounted on the mounting table (1044), the number of the rear end servo electric cylinders (1071) is two, the second jacking controller (1072) is mounted on the rear end servo electric cylinder (1071), the rear end jacking plate (1073) is fixedly mounted at the output end of the rear end servo electric cylinder (1071), and the rear end clamping member (1074) is mounted on the rear end jacking plate (1073).
5. The cutting device for producing the shell of the dust collector, as set forth in claim 2, characterized in that the side pressing assembly (108) comprises a connecting seat (1081), a connecting column (1082), an electric control telescopic rod (1083), a telescopic controller (1084), a movable connecting piece (1085) and a pressing side plate (1086), wherein the connecting seat (1081) is fixedly installed on the installation table (1044), the connecting column (1082) is rotatably installed on the connecting seat (1081), the electric control telescopic rod (1083) is fixedly installed in the installation table (1044), the telescopic controller (1084) is installed on the electric control telescopic rod (1083), the movable connecting piece (1085) is communicated with the output end of the electric control telescopic rod (1083), one end of the movable connecting piece (1085) is connected with the surface of the connecting column (1082), and the pressing side plate (1086) is installed at one end of the connecting column (1082).
6. The cutting device for producing the dust collector shell is characterized in that the laser cutting assembly (203) comprises a transverse electric control guide rail (2031), a first sliding rail controller (2032), a longitudinal electric control guide rail (2033), a second sliding rail controller (2034), an electric control lifting rod (2035), a lifting controller (2036), a laser cutter (2037) and a cutting controller (2038), the transverse electric control guide rail (2031) is mounted on a fixing frame (201), the first sliding rail controller (2032) is mounted on the surface of the transverse electric control guide rail (2031), the longitudinal electric control guide rail (2033) is mounted on the transverse electric control guide rail (2031), the second sliding rail controller (2034) is mounted on the surface of the longitudinal electric control guide rail (2033), the electric control lifting rod (2035) is mounted on the longitudinal electric control guide rail (2033), the lifting controller (2036) is mounted on the electric control lifting rod (2035), and the lifting controller (2036) is fixedly mounted on the output end (2037) of the electric control rod (2036).
7. The cutting device for producing the shell of the dust collector according to claim 3, wherein the front side clamping member (1064) comprises a first electric control bidirectional telescopic rod (111), a first clamping controller (112), a first folding rod (113) and a first clamping plate (114), the first electric control bidirectional telescopic rod (111) is fixedly arranged in the front end top plate (1063), the first clamping controller (112) is arranged on the first electric control bidirectional telescopic rod (111), the first folding rod (113) is fixedly connected to two ends of the first electric control bidirectional telescopic rod (111), the first folding rod (113) is in sliding connection with the front end top plate (1063), and the first clamping plate (114) is fixedly connected to one end of the first folding rod (113).
8. The cutting device for producing the dust collector shell according to claim 4, wherein the rear end clamping member (1074) comprises a second electric control bidirectional telescopic rod (121), a second clamping controller (122), a second folding rod (123) and a second clamping plate (124), the second electric control bidirectional telescopic rod (121) is fixedly arranged in the rear end supporting plate (1073), the second clamping controller (122) is arranged on the second electric control bidirectional telescopic rod (121), the second folding rod (123) is fixedly connected to two ends of the second electric control bidirectional telescopic rod (121), the second folding rod (123) is in sliding connection with the rear end supporting plate (1073), and the second clamping plate (124) is fixedly connected to one end of the second folding rod (123).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421354265.7U CN222843330U (en) | 2024-06-14 | 2024-06-14 | Cutting device is used in dust catcher shell production |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421354265.7U CN222843330U (en) | 2024-06-14 | 2024-06-14 | Cutting device is used in dust catcher shell production |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222843330U true CN222843330U (en) | 2025-05-09 |
Family
ID=95571608
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202421354265.7U Active CN222843330U (en) | 2024-06-14 | 2024-06-14 | Cutting device is used in dust catcher shell production |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222843330U (en) |
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2024
- 2024-06-14 CN CN202421354265.7U patent/CN222843330U/en active Active
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