Cutting device for dust collector shell production
By designing a cutting device including a shell placing mechanism and a shell cutting mechanism, the problem of poor flexibility of the shear device in the production of vacuum cleaner shells is solved, and stable cutting and efficient processing of shells of various shapes is achieved, and processing quality and production efficiency are improved.
Patent Information
- Application Number
- CN202421354265.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-14
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-06-14
AI Technical Summary
During the production process of existing vacuum cleaner shells, the shear device has poor flexibility and is difficult to effectively cut shells of various shapes, resulting in unstable cutting and affecting processing quality.
A cutting device including a housing placing mechanism and a housing cutting mechanism is designed. The housing placing mechanism realizes stable clamping and limiting of the vacuum cleaner housing through the support seat, operating table, redirecting assembly, limiting assembly and clamping member. The housing cutting mechanism achieves precise cutting operations through a fixture, control panel and laser cutting assembly.
This device can effectively improve the cutting stability and processing quality of the vacuum cleaner shell, and is suitable for cutting shells of various shapes, improving production efficiency and product dimensional accuracy.
Smart Images

Figure CN222843330U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of shell cutting, in particular to a cutting device for producing vacuum cleaner shells. Background Art
[0002] The working principle of a vacuum cleaner is to use an electric motor to drive the blades to rotate at high speed, generate negative air pressure in the sealed shell, and absorb dust. The outer shell is one of the most common materials in vacuum cleaners. Its main features are lightness, corrosion resistance, and easy processing and molding. In the production process of vacuum cleaners, some parts usually need to be precisely cut, such as filters and exhaust ports. At this time, a laser cutting machine will be used for cutting. Laser cutting has the advantages of high precision and high speed, which can ensure the dimensional accuracy and suction performance of the product.
[0003] The current Chinese patent application number CN202020489691.7 discloses a shearing device for the production of vacuum cleaner shells. The utility model discloses a shearing device for the production of vacuum cleaner shells, which relates to the technical field of vacuum cleaner shell production. In order to solve the problem that shearing operations need to be performed on vacuum cleaner shells during the existing production process, general shearing devices have poor flexibility and cannot well cut various shapes of vacuum cleaner shells. We need to strengthen this problem.
[0004] During the production and processing of the existing vacuum cleaner shell, it is necessary to cut the corresponding position of the shell, and the above-mentioned comparative document solves the problem that the existing vacuum cleaner shell needs to be sheared during the production process. The general shearing device has poor flexibility and cannot cut the various shapes of the vacuum cleaner shell well. For this problem, we need to strengthen it. However, during use, the above-mentioned device is inconvenient to clamp the vacuum cleaner shell, which is not conducive to stable cutting of the vacuum cleaner shell, affecting the stability of the vacuum cleaner shell during the processing process and reducing the quality of the cutting process of the vacuum cleaner shell. Therefore, we need to provide a cutting device for the production of vacuum cleaner shells. Summary of the invention
[0005] The utility model provides a cutting device for producing a vacuum cleaner shell, which has the advantage of being able to firmly clamp and cut the vacuum cleaner shell, thereby solving the problems raised in the above-mentioned background technology.
[0006] To achieve the above objectives, the utility model is implemented through the following technical solutions: a cutting device for producing vacuum cleaner shells, comprising: a shell placement mechanism, the shell placement mechanism comprising a support seat, the top of the support seat is fixedly connected to an operating table, one side of the operating table is installed with a control panel, the surface of the operating table is installed with a transfer component, the top of the transfer component is provided with a vacuum cleaner shell body, one side of the surface of the transfer component is installed with a front end limit component, the other side of the surface of the transfer component is installed with a rear end limit component, and both sides of the top of the transfer component are installed with side pressure components; and
[0007] The shell cutting mechanism includes a fixing frame, the fixing frame is fixedly connected to the top of the operating table, a control panel is installed on one side of the fixing frame, a laser cutting component is installed on the surface of the fixing frame, and the laser cutting component is used in conjunction with the vacuum cleaner shell body.
[0008] As a cutting device for producing vacuum cleaner shells of the utility model, the transfer assembly includes a fixed seat, a servo motor, a transfer controller, a mounting table and a placement slot, the fixed seat is fixedly installed in the operating table, the servo motor is fixedly installed in the fixed seat, the transfer controller is installed on the surface of the fixed seat, the mounting table is fixedly connected to the output end of the servo motor, and the placement slot is opened on the surface of the mounting table.
[0009] As a cutting device for producing vacuum cleaner shells of the utility model, the front end limiting assembly includes a front end servo electric cylinder, a first holding controller, a front end top plate and a front side clamping member. The front end servo electric cylinder is fixedly installed on a mounting table, and the number of the front end servo electric cylinders is two. The first holding controller is installed on the front end servo electric cylinder, the front end top plate is fixedly installed on the output end of the front end servo electric cylinder, and the front side clamping member is installed on the front end top plate.
[0010] As a cutting device for producing vacuum cleaner shells of the utility model, the rear end limiting assembly includes a rear end servo electric cylinder, a second top holding controller, a rear end top holding plate and a rear end clamping member. The rear end servo electric cylinder is fixedly installed on a mounting table, and the number of rear end servo electric cylinders is two. The second top holding controller is installed on the rear end servo electric cylinder, the rear end top holding plate is fixedly installed on the output end of the rear end servo electric cylinder, and the rear end clamping member is installed on the rear end top holding plate.
[0011] As a cutting device for producing vacuum cleaner shells of the utility model, the side pressing assembly includes a connecting seat, a connecting column, an electrically controlled telescopic rod, a telescopic controller, a movable connecting piece and a pressing side plate. The connecting seat is fixedly installed on a mounting table, the connecting column is rotatably installed on the connecting seat, the electrically controlled telescopic rod is fixedly installed in the mounting table, the telescopic controller is installed on the electrically controlled telescopic rod, the movable connecting piece is connected to the output end of the electrically controlled telescopic rod, and one end of the movable connecting piece is connected to the surface of the connecting column, and the pressing side plate is installed at one end of the connecting column.
[0012] As a cutting device for producing vacuum cleaner shells of the utility model, the laser cutting assembly includes a transverse electric control rail, a first slide rail controller, a longitudinal electric control rail, a second slide rail controller, an electric control lifting rod, a lifting controller, a laser cutter and a cutting controller. The transverse electric control rail is installed on a fixed frame, the first slide rail controller is installed on the surface of the transverse electric control rail, the longitudinal electric control rail is installed on the transverse electric control rail, the second slide rail controller is installed on the surface of the longitudinal electric control rail, the electric control lifting rod is installed on the longitudinal electric control rail, the lifting controller is installed on the electric control lifting rod, the lifting controller is fixedly installed on the output end of the electric control lifting rod, and the laser cutter is installed on the lifting controller.
[0013] As a cutting device for producing vacuum cleaner shells of the utility model, the front clamping component includes a first electrically controlled two-way telescopic rod, a first clamping controller, a first folding rod and a first clamping plate. The first electrically controlled two-way telescopic rod is fixedly installed in the front end top plate, the first clamping controller is installed on the first electrically controlled two-way telescopic rod, the first folding rod is fixedly connected to both ends of the first electrically controlled two-way telescopic rod, and the first folding rod is slidably connected to the front end top plate, and the first clamping plate is fixedly connected to one end of the first folding rod.
[0014] As a cutting device for producing vacuum cleaner shells of the utility model, the rear end clamping component includes a second electrically controlled two-way telescopic rod, a second clamping controller, a second folding rod and a second clamping plate. The second electrically controlled two-way telescopic rod is fixedly installed in the rear end top holding plate, the second clamping controller is installed on the second electrically controlled two-way telescopic rod, the second folding rod is fixedly connected to both ends of the second electrically controlled two-way telescopic rod, and the second folding rod is slidably connected to the rear end top holding plate, and the second clamping plate is fixedly connected to one end of the second folding rod.
[0015] The utility model provides a cutting device for producing vacuum cleaner shells, which has the following beneficial effects:
[0016] The cutting device for producing vacuum cleaner shells can place and limit the vacuum cleaner shell body through the arrangement of the shell placement mechanism, the support seat, the operating table, the control panel, the transfer assembly, the vacuum cleaner shell body, the front end limit assembly, the rear end limit assembly and the side pressure assembly, which is conducive to comprehensive limit of the vacuum cleaner shell body, improves the stability of the vacuum cleaner shell body installation operation, and improves the stability of the vacuum cleaner shell body in subsequent cutting, thereby ensuring the quality of the vacuum cleaner shell body cutting process;
[0017] Through the setting of the shell cutting mechanism, the fixing frame, the control panel and the laser cutting component, the vacuum cleaner shell body can be cut, which is conducive to adjusting the cutting position of the vacuum cleaner shell body, improving the efficiency of the vacuum cleaner shell body cutting processing, and saving working time. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a three-dimensional structural schematic diagram of the utility model;
[0019] Figure 2 It is a side view of the three-dimensional structure of the utility model;
[0020] Figure 3 It is a three-dimensional diagram of the first partial structure of the utility model;
[0021] Figure 4 It is an exploded view of the local structure of the utility model;
[0022] Figure 5 It is a third partial structural perspective view of the second embodiment of the present invention;
[0023] Figure 6 It is a three-dimensional diagram of the third partial structure of the utility model;
[0024] Figure 7 It is a first partial structural cross-sectional view of the utility model;
[0025] Figure 8 It is a second partial structural cross-sectional view of the utility model;
[0026] Fig. 9 It is a three-dimensional structural diagram of the fourth part of the utility model.
[0027] In the figure: 1. housing placement mechanism; 101. support seat; 102. operating table; 103. control panel; 104. transfer assembly; 1041. fixing seat; 1042. servo motor; 1043. transfer controller; 1044. mounting table; 1045. placement slot; 105. vacuum cleaner housing body; 106. front end limit assembly; 1061. front end servo electric cylinder; 1062. first top holding controller; 1063. front end top plate; 1064. front side clamping member; 107. rear end limit assembly; 1071. rear end servo electric cylinder; 1072. second top holding controller; 1073. rear end top holding plate; 1074. rear end clamping member; 108. side pressure assembly; 1081. connecting seat; 1082. connecting column; 1083. electric control Telescopic rod; 1084, telescopic controller; 1085, movable connecting piece; 1086, pressure side plate; 2, shell cutting mechanism; 201, fixed frame; 202, control panel; 203, laser cutting assembly; 2031, horizontal electric control guide rail; 2032, first slide rail controller; 2033, longitudinal electric control guide rail; 2034, second slide rail controller; 2035, electric control lifting rod; 2036, lifting controller; 2037, laser cutter; 2038, cutting controller; 111, first electric control two-way telescopic rod; 112, first clamping controller; 113, first folding rod; 114, first clamping plate; 121, second electric control two-way telescopic rod; 122, second clamping controller; 123, second folding rod; 124, second clamping plate. DETAILED DESCRIPTION
[0028] The following will be combined with the drawings in the practical embodiment to clearly and completely describe the technical solution in the practical embodiment. Obviously, the described embodiment is only a part of the embodiment of the practical embodiment, not all of the embodiments. Based on the embodiment in the practical embodiment, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this practical embodiment.
[0029] See also Figure 1-Figure 9The utility model provides a technical solution: a cutting device for producing vacuum cleaner shells, including a shell placing mechanism 1, the shell placing mechanism 1 includes a support seat 101, the top of the support seat 101 is fixedly connected with an operating table 102, one side of the operating table 102 is installed with a control panel 103, the surface of the operating table 102 is installed with a transfer component 104, the top of the transfer component 104 is provided with a vacuum cleaner shell body 105, one side of the surface of the transfer component 104 is installed with a front end limit component 106, the other side of the surface of the transfer component 104 is installed with a rear end limit component 107, both sides of the top of the transfer component 104 are A side pressure component 108 is installed. Through the arrangement of the shell placement mechanism 1, the support seat 101, the operating table 102, the control panel 103, the adjustment component 104, the vacuum cleaner shell body 105, the front end limit component 106, the rear end limit component 107 and the side pressure component 108, the vacuum cleaner shell body 105 can be placed and limited, which is conducive to comprehensive limit of the vacuum cleaner shell body 105, improves the stability of the installation operation of the vacuum cleaner shell body 105, and improves the stability of the vacuum cleaner shell body 105 in subsequent cutting, thereby ensuring the quality of the cutting process of the vacuum cleaner shell body 105; and
[0030] The shell cutting mechanism 2 includes a fixing frame 201, which is fixedly connected to the top of the operating table 102. A control panel 202 is installed on one side of the fixing frame 201. A laser cutting component 203 is installed on the surface of the fixing frame 201, and the laser cutting component 203 is used in conjunction with the vacuum cleaner shell body 105. Through the arrangement of the shell cutting mechanism 2, the fixing frame 201, the control panel 202 and the laser cutting component 203, the vacuum cleaner shell body 105 can be cut, which is beneficial to adjust the cutting position of the vacuum cleaner shell body 105, improve the efficiency of the cutting process of the vacuum cleaner shell body 105, and save working time.
[0031] See also Figure 4 The adjustment component 104 includes a fixed seat 1041, a servo motor 1042, a adjustment controller 1043, a mounting table 1044 and a placement slot 1045. The fixed seat 1041 is fixedly installed in the operating table 102, the servo motor 1042 is fixedly installed in the fixed seat 1041, the adjustment controller 1043 is installed on the surface of the fixed seat 1041, the mounting table 1044 is fixedly connected to the output end of the servo motor 1042, and the placement slot 1045 is opened on the surface of the mounting table 1044. Through the arrangement of the fixed seat 1041, the servo motor 1042, the adjustment controller 1043, the mounting table 1044 and the placement slot 1045, the adjustment of the vacuum cleaner housing body 105 can be rotated and adjusted, which is beneficial to adjust the overall installation position of the vacuum cleaner housing body 105 and facilitates the adjustment of the subsequent processing position of the vacuum cleaner housing body 105.
[0032] See also Figure 5 The front end limiting assembly 106 includes a front end servo electric cylinder 1061, a first holding controller 1062, a front end top plate 1063 and a front side clamping member 1064. The front end servo electric cylinder 1061 is fixedly mounted on the mounting platform 1044, and the number of the front end servo electric cylinders 1061 is two. The first holding controller 1062 is mounted on the front end servo electric cylinder 1061, the front end top plate 1063 is fixedly mounted on the output end of the front end servo electric cylinder 1061, and the front side clamping member 1064 is mounted on the front end top plate 1063. By arranging the front end servo electric cylinder 1061, the first holding controller 1062, the front end top plate 1063 and the front side clamping member 1064, the front end of the vacuum cleaner housing body 105 can be held and limited, which is beneficial to maintaining the stability of the front end of the vacuum cleaner housing body 105 when it is installed, and is convenient for the subsequent cutting and processing of the vacuum cleaner housing body 105.
[0033] See also Figure 5 The rear end limit assembly 107 includes a rear end servo electric cylinder 1071, a second holding controller 1072, a rear end holding plate 1073 and a rear end clamping member 1074. The rear end servo electric cylinder 1071 is fixedly mounted on the mounting table 1044, and the number of the rear end servo electric cylinders 1071 is two. The second holding controller 1072 is mounted on the rear end servo electric cylinder 1071, the rear end holding plate 1073 is fixedly mounted on the output end of the rear end servo electric cylinder 1071, and the rear end clamping member 1074 is mounted on the rear end holding plate 1073. Through the arrangement of the rear end servo electric cylinder 1071, the second holding controller 1072, the rear end holding plate 1073 and the rear end clamping member 1074, the rear end of the vacuum cleaner housing body 105 can be held and limited, which is beneficial to maintaining the stability of the rear end of the vacuum cleaner housing body 105 when it is installed, and is convenient for subsequent cutting and processing of the vacuum cleaner housing body 105.
[0034] See also Figure 6The side pressure assembly 108 includes a connecting seat 1081, a connecting column 1082, an electric telescopic rod 1083, a telescopic controller 1084, a movable connecting piece 1085 and a pressure side plate 1086. The connecting seat 1081 is fixedly mounted on the mounting platform 1044, the connecting column 1082 is rotatably mounted on the connecting seat 1081, the electric telescopic rod 1083 is fixedly mounted in the mounting platform 1044, the telescopic controller 1084 is mounted on the electric telescopic rod 1083, and the movable connecting piece 1085 is connected to the input of the electric telescopic rod 1083. The output end is connected to the output end, and one end of the movable connecting piece 1085 is connected to the surface of the connecting column 1082, and the pressing side plate 1086 is installed at one end of the connecting column 1082. Through the arrangement of the connecting seat 1081, the connecting column 1082, the electric-controlled telescopic rod 1083, the telescopic controller 1084, the movable connecting piece 1085 and the pressing side plate 1086, the pressing operation can be performed on both sides of the vacuum cleaner shell body 105, which is beneficial to maintaining the stability of the middle part of the vacuum cleaner shell body 105, thereby improving the stability of the overall installation of the vacuum cleaner shell body 105.
[0035] See also Fig. 9 The laser cutting assembly 203 includes a transverse electric-controlled guide rail 2031, a first slide rail controller 2032, a longitudinal electric-controlled guide rail 2033, a second slide rail controller 2034, an electric-controlled lifting rod 2035, a lifting controller 2036, a laser cutter 2037 and a cutting controller 2038. The transverse electric-controlled guide rail 2031 is installed on the fixed frame 201, the first slide rail controller 2032 is installed on the surface of the transverse electric-controlled guide rail 2031, the longitudinal electric-controlled guide rail 2033 is installed on the transverse electric-controlled guide rail 2031, the second slide rail controller 2034 is installed on the surface of the longitudinal electric-controlled guide rail 2033, the electric-controlled lifting rod 2035 is installed on the longitudinal electric-controlled guide rail 2033, and the lifting controller 2036 is installed on the electric lifting rod 2035, the lifting controller 2036 is fixedly installed on the output end of the electric lifting rod 2035, and the laser cutter 2037 is installed on the lifting controller 2036. Through the setting of the horizontal electric control guide rail 2031, the first slide rail controller 2032, the longitudinal electric control guide rail 2033, the second slide rail controller 2034, the electric lifting rod 2035, the lifting controller 2036, the laser cutter 2037 and the cutting controller 2038, the surface of the vacuum cleaner shell body 105 can be cut accordingly, which is beneficial to the cutting adjustment of the surface of the vacuum cleaner shell body 105 and improves the cutting effect of the vacuum cleaner shell body 105.
[0036] See also Figure 7The front clamping member 1064 includes a first electrically-controlled two-way telescopic rod 111, a first clamping controller 112, a first folding rod 113 and a first clamping plate 114. The first electrically-controlled two-way telescopic rod 111 is fixedly installed in the front end top plate 1063. The first clamping controller 112 is installed on the first electrically-controlled two-way telescopic rod 111. The first folding rod 113 is fixedly connected to both ends of the first electrically-controlled two-way telescopic rod 111, and the first folding rod 113 is slidably connected to the front end top plate 1063. The first clamping plate 114 is fixedly connected to one end of the first folding rod 113. Through the arrangement of the first electrically-controlled two-way telescopic rod 111, the first clamping controller 112, the first folding rod 113 and the first clamping plate 114, the two sides of the front end of the vacuum cleaner housing body 105 can be clamped, which is beneficial to improving the effect of fixing the front end of the vacuum cleaner housing body 105.
[0037] See also Figure 8 The rear end clamping component 1074 includes a second electrically controlled two-way telescopic rod 121, a second clamping controller 122, a second folding rod 123 and a second clamping plate 124. The second electrically controlled two-way telescopic rod 121 is fixedly installed in the rear end top holding plate 1073. The second clamping controller 122 is installed on the second electrically controlled two-way telescopic rod 121. The second folding rod 123 is fixedly connected to both ends of the second electrically controlled two-way telescopic rod 121, and the second folding rod 123 is slidably connected to the rear end top holding plate 1073. The second clamping plate 124 is fixedly connected to one end of the second folding rod 123. Through the arrangement of the second electrically controlled two-way telescopic rod 121, the second clamping controller 122, the second folding rod 123 and the second clamping plate 124, the two sides of the rear end of the vacuum cleaner shell body 105 can be clamped, which is beneficial to improving the effect of fixing the rear end of the vacuum cleaner shell body 105.
[0038] When in use, the staff first places the vacuum cleaner shell body 105 that needs to be processed on the surface of the adjustment component 104. At this time, the vacuum cleaner shell body 105 is moved and placed in the placement groove 1045, and then the side of the vacuum cleaner shell body 105 that needs to be cut is adjusted to the top, and then the front end limit component 106, the rear end limit component 107 and the side pressure component 108 are started through the control panel 103. At this time, the front end servo electric cylinder 1061 is controlled to extend by the first holding controller 1062, and then the front end top plate 1063 is driven to support the front end of the vacuum cleaner shell body 105. At the same time, the rear end servo electric cylinder 1071 is controlled to extend by the second holding controller 1072, and then the rear end holding plate 1073 is driven to support the rear end of the vacuum cleaner shell body 105, thereby holding and limiting the vacuum cleaner shell body 105, and then the first clamping controller 11 2. The first electrically controlled bidirectional telescopic rod 111 is controlled to be retracted, and then the two ends of the first electrically controlled bidirectional telescopic rod 111 drive the two first folding rods 113 to move toward each other, thereby driving the first clamping plate 114 to clamp the two sides of the front end of the vacuum cleaner housing body 105. Then, the second electrically controlled bidirectional telescopic rod 121 is controlled to be retracted through the second clamping controller 122, and then the two ends of the second electrically controlled bidirectional telescopic rod 121 drive the two second folding rods 123 to move toward each other, thereby driving the second clamping plate 124 to clamp the two sides of the rear end of the vacuum cleaner housing body 105. Then, the electrically controlled telescopic rod 1083 is controlled to be retracted through the telescopic controller 1084, and then the connecting column 1082 is driven to rotate through the movable connecting member 1085, thereby pressing the side plate 1086 against the surface of the vacuum cleaner housing body 105 to fix the vacuum cleaner housing body 105.
[0039] When the vacuum cleaner housing body 105 is fixed, the staff starts the transfer assembly 104 to work through the control panel 103 according to the installation adjustment of the vacuum cleaner housing body 105. At this time, the servo motor 1042 is controlled to rotate through the transfer controller 1043, so as to adjust the angle of the mounting table 1044. Then, the laser cutting assembly 203 is controlled to work through the control panel 202. At this time, the horizontal electric control rail 2031 is controlled by the first slide rail controller 2032, and the longitudinal electric control rail 2033 is controlled by the second slide rail controller 2034, and the working position of the laser cutter 2037 is moved and adjusted accordingly, and the electric control lifting rod 2035 is controlled to extend through the lifting controller 2036 to drive the laser cutter 2037 to move down to the cutting height, and then the laser cutter 2037 is controlled by the cutting controller 2038 to perform corresponding cutting on the surface of the vacuum cleaner housing body 105;
[0040] Finally, after the surface cutting of the vacuum cleaner housing body 105 is completed, the front end stopper assembly 106, the rear end stopper assembly 107 and the side pressure assembly 108 are opened by controlling the control panel 103 to take out the vacuum cleaner housing body 105 after the cutting.
[0041] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A cutting device for producing vacuum cleaner housings, characterized in that: include: A shell placement mechanism (1), the shell placement mechanism (1) comprising a support seat (101), the top of the support seat (101) being fixedly connected to an operating table (102), one side of the operating table (102) being mounted with a control panel (103), a surface of the operating table (102) being mounted with a transfer component (104), a vacuum cleaner shell body (105) being arranged on the top of the transfer component (104), a front end stop component (106) being mounted on one side of the surface of the transfer component (104), a rear end stop component (107) being mounted on the other side of the surface of the transfer component (104), and side pressure components (108) being mounted on both sides of the top of the transfer component (104); and A shell cutting mechanism (2), the shell cutting mechanism (2) comprising a fixing frame (201), the fixing frame (201) being fixedly connected to the top of an operating table (102), a control panel (202) being mounted on one side of the fixing frame (201), a laser cutting assembly (203) being mounted on the surface of the fixing frame (201), and the laser cutting assembly (203) being used in conjunction with a vacuum cleaner shell body (105).
2. A cutting device for producing a vacuum cleaner housing according to claim 1, characterized in that: The modulation assembly (104) comprises a fixing seat (1041), a servo motor (1042), a modulation controller (1043), a mounting platform (1044) and a placement slot (1045); the fixing seat (1041) is fixedly mounted in the operating platform (102); the servo motor (1042) is fixedly mounted in the fixing seat (1041); the modulation controller (1043) is mounted on the surface of the fixing seat (1041); the mounting platform (1044) is fixedly connected to the output end of the servo motor (1042); and the placement slot (1045) is opened on the surface of the mounting platform (1044).
3. A cutting device for producing a vacuum cleaner housing according to claim 2, characterized in that: The front end limit assembly (106) comprises a front end servo electric cylinder (1061), a first holding controller (1062), a front end top plate (1063) and a front side clamping member (1064); the front end servo electric cylinder (1061) is fixedly mounted on the mounting platform (1044), and the number of the front end servo electric cylinders (1061) is two; the first holding controller (1062) is mounted on the front end servo electric cylinder (1061); the front end top plate (1063) is fixedly mounted on the output end of the front end servo electric cylinder (1061); and the front side clamping member (1064) is mounted on the front end top plate (1063).
4. A cutting device for producing a vacuum cleaner housing according to claim 2, characterized in that: The rear end limit assembly (107) comprises a rear end servo electric cylinder (1071), a second holding controller (1072), a rear end holding plate (1073) and a rear end clamping member (1074); the rear end servo electric cylinder (1071) is fixedly mounted on the mounting platform (1044), and the number of the rear end servo electric cylinders (1071) is two; the second holding controller (1072) is mounted on the rear end servo electric cylinder (1071); the rear end holding plate (1073) is fixedly mounted on the output end of the rear end servo electric cylinder (1071); and the rear end clamping member (1074) is mounted on the rear end holding plate (1073).
5. A cutting device for producing a vacuum cleaner housing according to claim 2, characterized in that: The side pressure assembly (108) comprises a connecting seat (1081), a connecting column (1082), an electrically controlled telescopic rod (1083), a telescopic controller (1084), a movable connecting piece (1085) and a pressure side plate (1086); the connecting seat (1081) is fixedly mounted on the mounting platform (1044); the connecting column (1082) is rotatably mounted on the connecting seat (1081); the electrically controlled telescopic rod (1083) is fixedly mounted in the mounting platform (1044); the telescopic controller (1084) is mounted on the electrically controlled telescopic rod (1083); the movable connecting piece (1085) is connected to the output end of the electrically controlled telescopic rod (1083); one end of the movable connecting piece (1085) is connected to the surface of the connecting column (1082); and the pressure side plate (1086) is mounted on one end of the connecting column (1082).
6. A cutting device for producing a vacuum cleaner housing according to claim 1, characterized in that: The laser cutting assembly (203) comprises a transverse electric-controlled guide rail (2031), a first slide rail controller (2032), a longitudinal electric-controlled guide rail (2033), a second slide rail controller (2034), an electric-controlled lifting rod (2035), a lifting controller (2036), a laser cutter (2037) and a cutting controller (2038); the transverse electric-controlled guide rail (2031) is mounted on a fixed frame (201); the first slide rail controller (2032) is mounted on the surface of the transverse electric-controlled guide rail (2031); and the longitudinal The electric control rail (2033) is installed on the transverse electric control rail (2031), the second slide rail controller (2034) is installed on the surface of the longitudinal electric control rail (2033), the electric control lifting rod (2035) is installed on the longitudinal electric control rail (2033), the lifting controller (2036) is installed on the electric control lifting rod (2035), the lifting controller (2036) is fixedly installed on the output end of the electric control lifting rod (2035), and the laser cutter (2037) is installed on the lifting controller (2036).
7. A cutting device for producing a vacuum cleaner housing according to claim 3, characterized in that: The front clamping member (1064) comprises a first electrically controlled bidirectional telescopic rod (111), a first clamping controller (112), a first folding rod (113) and a first clamping plate (114); the first electrically controlled bidirectional telescopic rod (111) is fixedly installed in the front end top plate (1063); the first clamping controller (112) is installed on the first electrically controlled bidirectional telescopic rod (111); the first folding rod (113) is fixedly connected to both ends of the first electrically controlled bidirectional telescopic rod (111); the first folding rod (113) is slidably connected to 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. A cutting device for producing a vacuum cleaner housing according to claim 4, characterized in that: The rear end clamping member (1074) comprises a second electrically controlled bidirectional telescopic rod (121), a second clamping controller (122), a second folding rod (123) and a second clamping plate (124); the second electrically controlled bidirectional telescopic rod (121) is fixedly installed in the rear end top holding plate (1073); the second clamping controller (122) is installed on the second electrically controlled bidirectional telescopic rod (121); the second folding rod (123) is fixedly connected to both ends of the second electrically controlled bidirectional telescopic rod (121); the second folding rod (123) is slidably connected to the rear end top holding plate (1073); and the second clamping plate (124) is fixedly connected to one end of the second folding rod (123).
Citation Information
Patent Citations
Shearing device for dust collector shell production
CN212286073U