An automatic demoulding device for the forming of transformer accessories for an air compressor
By designing an automatic mold release device, the automatic disassembly of the air compressor transformer mold is realized, which solves the problem of low manual operation efficiency, improves production efficiency and reduces labor intensity.
Patent Information
- Application Number
- CN202310724095.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-19
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2043-06-19
AI Technical Summary
The installation and disassembly of existing air compressor transformer molds rely entirely on manual operations, especially the high weight of the epoxy resin coil, which leads to low production efficiency and high labor intensity.
An automatic mold release device for transformer accessories molding for air compressors is designed. Through the cooperation of the upper disassembly assembly and the first side disassembly assembly, the synchronous disassembly of multiple tensioning screws and the loosening of the clamps is realized. Combined with the connection between the inner mold, the annular sealing plate and the fixed bracket, the pre-demolding is achieved by the rotation of the tensioning screw, and the rapid disassembly and positioning of the mold is realized through the matching transmission of the guide and the drive.
It improves the disassembly efficiency of the mold, reduces the labor intensity of manual work, simplifies the structure, realizes the automatic disassembly and assembly of the mold, and improves the production efficiency.
Smart Images

Figure CN116619637B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of molds, and in particular to an automatic demoulding device for forming transformer accessories for air compressors. Background Art
[0002] An air compressor is a device used to compress gas. Its structure is similar to that of a water pump. Most air compressors use a reciprocating piston mechanism with rotating blades or a rotating screw. In today's industry, air compressors are increasingly used in harsh and inconvenient environments such as mines and the field. However, existing air compressors are often fixed in place, making them difficult to move. Furthermore, unstable input voltage is common in field and mine environments.
[0003] At the same time, the Chinese patent publication number CN217813928U discloses an air compressor with a magnetic saturation transformer, including a vehicle body and an air compressor device arranged on the vehicle body; the air compressor device includes a screw air compressor, a magnetic saturation transformer, an air filter assembly, an oil and gas barrel and an oil filter; the screw air compressor and the magnetic saturation transformer are connected by a wire, the air filter assembly is connected to the air inlet of the screw air compressor through a connecting pipe with an air inlet valve, and the oil and gas outlet of the screw air compressor is connected to the inlet of the oil and gas barrel; a pressure valve is provided at the air outlet of the oil and gas barrel, and the pressure valve is connected to the air outlet pipe; the oil outlet of the oil and gas barrel is connected to the oil cooler through an oil pipe, the oil cooler is connected to the oil filter, and the oil filter is connected to the oil port of the screw air compressor.
[0004] During the actual production process, it was found that the installation or disassembly of the transformer mold was entirely done manually, and automated assembly or disassembly could not be achieved. In addition, the transformer epoxy resin coil was heavy and required the cooperation of multiple people to install or disassemble it, which was time-consuming, labor-intensive and labor-intensive. As a result, the production efficiency of the dry-type transformer epoxy resin coil was low and there were many shortcomings. Summary of the Invention
[0005] The purpose of the present invention is to address the deficiencies of the prior art and to provide an automatic demolding device for transformer accessories for air compressors. Through the mutual cooperation of the upper disassembly component and the first side disassembly component, multiple tensioning screws are synchronized to improve the disassembly efficiency of the mold and reduce the intensity of manual labor. At the same time, since the inner mold, the annular sealing plate, the fixed bracket and the fixed plate are connected, and the epoxy resin product is heavy, the tensioning screw is driven to rotate and rise, which will cause the inner mold and the annular sealing plate to be driven to rise synchronously to achieve pre-demolding. After the tensioning screw is screwed into the base and locked, the first main transmission member, the second main drive member and the second slave drive member do not rotate to achieve the locking of the two splints, thereby solving the problem of slow manual demolding of complex molds and high labor intensity of disassembly.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: an automatic demolding device for forming transformer accessories for air compressors, used for removing the outer mold of an epoxy resin product, the mold comprising a base, an annular sealing plate, an inner mold, an outer mold, a front panel, a fixing bracket, a tightening screw, and a clamping plate; the annular sealing plate, the inner mold, and the outer mold are fixed to the base by a fixing bracket and a tightening screw, and the outer mold and the front panel are clamped and fixed by a clamping plate; comprising:
[0007] The upper disassembly assembly for synchronously disassembling a plurality of vertically arranged tension screws around the mold is arranged above the mold;
[0008] A first side disassembly assembly, which is used to loosen the clamping plate and is arranged on the front panel and is in transmission connection with the upper disassembly assembly;
[0009] The upper disassembly assembly includes:
[0010] A first main transmission member and a plurality of first transmission members slidably disposed on the fixed bracket are used to drive the plurality of tightening screws to simultaneously separate the corresponding first transmission members connected to the base and to be respectively connected to the corresponding tightening screws;
[0011] A fixing plate, connected to the fixing bracket, for limiting the first main transmission member from being separated from the fixing bracket;
[0012] As an improvement, in this mold, the annular sealing plate, the inner mold and the fixed bracket are connected, and the annular sealing plate, the inner mold and the fixed bracket are all detachably connected; four first screw holes are provided on the base, and the four first screw holes correspond to four first transmission members; the tightening screw is provided with a thread only on the lower end axial surface, and the tightening screws are evenly distributed around the fixed bracket and are slidably connected to the fixed bracket; a step is provided on the tightening screw at the lower end of the fixed bracket; the first transmission member is connected to the top of the tightening screw, and the first main transmission member and the first transmission member are gears; the four first transmission members are evenly distributed around the first main transmission member and mesh with the first main transmission member; the fixed plate is connected to the fixed bracket through an arc connecting plate; one side of the fixed plate is rotatably connected There is a main power gear, which is engaged with the first main transmission member for transmission; the annular sealing plate, inner mold and outer mold are fixed to the base by a fixing bracket and a tightening screw, and the outer mold is fixed to the front panel by a clamping plate, and the clamping plate is slidably set on the front panel. The two clamping plates are close to each other to clamp the end of the outer mold and the front panel, and an elastomer is set on the opposite side of the clamping plates; the elastomer is a spring or rubber material; the front panel is installed on the base, and when the epoxy resin product is removed, the front panel is generally not removed, so that the high-voltage coil can be directly installed on the front panel later. A plurality of second holes are set on the front panel, and the second holes are used for the multiple terminal ends of the high-voltage coil to pass through, and are fixed and installed accordingly by bolts set at the other end of the front panel.
[0013] As an improvement, the first side disassembly assembly includes:
[0014] a second main driving member, the second main driving member vertically penetrating into the front panel and being rotationally connected to the front panel;
[0015] The second slave drive members, one end of the two second slave drive members is transmission-connected to the second main drive member, and the other ends of the two second slave drive members are respectively connected to the corresponding clamping plates; the second slave drive members are slidingly connected to the front panel.
[0016] As an improvement, the second main driving member is a gear shaft, the second slave driving member is a rack, the second slave driving member is two groups, each group is two racks, the two racks are respectively located on both sides of the gear shaft and mesh with the gear shaft.
[0017] As an improvement, a third transmission assembly is provided between the upper disassembly assembly and the first side disassembly assembly; the third transmission assembly includes:
[0018] a third transmission member, the third transmission member being in transmission connection with the upper disassembly assembly;
[0019] The third guide member is used for guiding the connection between the upper disassembly assembly and the first side disassembly assembly to realize the transmission connection between the third guide member and the upper disassembly assembly.
[0020] As an improvement, the upper part of the third guide member is a transmission shaft, and the third transmission member which is a gear is coaxially connected to the third guide member; the third guide member is rotatably connected to the edge of the fixed plate; the third transmission member is meshed with the first main transmission member for transmission.
[0021] As an improvement, the third guide member includes:
[0022] The lower end of the rod is tapered;
[0023] The axial surface of the rod body is evenly surrounded by a plurality of arc-shaped plates which are integrally formed with the rod body so that the cross section of the upper portion of the rod body is polygonal; the lower end of the arc-shaped plate is a pointed end.
[0024] As an improvement, a groove matching the shape of the lower end of the third guide member is provided on the top of the second main drive member; the rod body with a cone-shaped lower end can realize the center positioning of the rod body; multiple arc-shaped plates with pointed ends at the lower ends realize the positioning of the rotational orientation of the rod body, thereby realizing that the lower end of the third guide member is inserted into the top of the second main drive member and engaged, thereby realizing the transmission connection between the third guide member and the second main drive member.
[0025] As an improvement, the invention further includes a second side disassembly assembly for synchronously disassembling multiple bolts on the front panel; the second side disassembly assembly includes:
[0026] Fourth mounting frame; Fourth main rotating member;
[0027] A plurality of fourth slave transmission members are all transmission-connected to the fourth main rotation member, and the fourth main rotation member and the fourth slave transmission member are both rotationally mounted on the fourth mounting frame.
[0028] Furthermore, the fourth main rotating member is a toothed belt with teeth on both the inner and outer sides; it is driven to rotate by a toothed pulley, and the fourth mounting bracket extends into the inner side of the toothed belt to support the inner side of the toothed belt and better transmit the transmission to the fourth slave transmission member, and the toothed belt drives multiple fourth slave transmission members with gears at the ends to rotate, and the cross-section of the other end of the fourth slave transmission member is polygonal, which matches the polygonal groove at the center of rotation of the bolt; thereby realizing the synchronous and rapid disassembly or installation of multiple bolts distributed in parallel or linearly, and the disassembly of the bolts only requires the separation and fixation of the terminal head from the high-voltage coil, and the bolts remain on the front panel and are not removed, thereby avoiding the trouble of manually or by another mechanism to install the bolts on the front panel and the problem of bolt loss.
[0029] As an improvement, it further comprises: a first moving component;
[0030] and a fifth transmission assembly mounted on the first moving assembly;
[0031] The fifth transmission assembly matches the second side disassembly assembly for transmission; the first moving assembly, which is used to drive the second side disassembly assembly close to the front panel and make the fifth transmission assembly close to the upper disassembly assembly or the third transmission assembly, is moved to the side of the front panel away from the mold.
[0032] As an improvement, the first moving component includes: a first slide rail, a first skateboard, a second skateboard, a first elastic member, and a first pushing member; the first elastic member, which is a spring, is arranged between and connected to the first skateboard and the second skateboard; the first skateboard and the second skateboard are slidingly connected to the first slide rail; the first skateboard is connected to the fourth mounting bracket; the fifth transmission component is a conventional gear set, including a spur gear, a transmission shaft and a worm gear, and the fifth transmission component connects the third transmission component and the fourth main rotating member for power transmission; the first pushing member, which is a cylinder or a hydraulic cylinder or an electric telescopic rod, pushes the first skateboard and the second sliding movement to achieve the fifth transmission component approaching the third transmission component for engagement.
[0033] As an improvement, a second moving member is provided at the lower end of the base, and a sixth guide assembly is provided on the side in the conveying direction of the mold;
[0034] The sixth guide assembly includes a transverse guide member and a longitudinal guide member; the second moving member cooperates with the sixth guide assembly to transport the mold to a predetermined position and stop.
[0035] As an improvement, the second moving part is a universal wheel or a ball, so that the base can move slightly. The lateral guiding part is a baffle, and the baffle is connected to the first slide plate. When the mold is transported to the designated position, the first moving component drives the baffle to extend to prevent the mold from being continuously transported, so as to stop the mold at the designated position for disassembly or assembly.
[0036] As an improvement, it further includes a third side disassembly component. The third side disassembly component for separating the two ends of the outer mold first and then removing the outer mold from the epoxy resin product is arranged on one side of the front panel close to the mold.
[0037] As an improvement, since the outer mold is hoop-shaped outside the epoxy resin product, first separate the two ends of the outer mold, and then remove the outer mold from one side to achieve disassembly.
[0038] As an improvement, the third side disassembly component includes:
[0039] A pipe rack, one end of the pipe rack facing the mold direction is in a U shape with an inward flanging, and the pipe rack is filled with fluid;
[0040] A first driving part, one end of the first driving part extends into the middle of the pipe rack;
[0041] A cylinder located at the end of the flanging inside the pipe rack;
[0042] A sliding column located in the middle of the pipe rack and vertically connected to the pipe rack;
[0043] Gripping parts are arranged on both the end of the cylinder outside the pipe rack and the sliding column on the side facing the mold direction;
[0044] A limiting part. The limiting part that cooperates with the sliding column to enable the first driving part with one end inside the pipe rack to move ahead of the pipe rack when moving away from the mold, so that the gripping part掰开 the outer mold and then removes it, is arranged at the end of the stroke of the sliding column close to the mold direction;
[0045] The limiting part is used to limit the bidirectional movement of the sliding column.
[0046] As an improvement, the first driving member is a driving rack or a hydraulic telescopic rod that can move back and forth; the cross-section of one end of the driving rack extending into the pipe rack is cylindrical; the end of the first driving member moves in the pipe body in the middle of the pipe rack to squeeze the fluid in the pipe rack, thereby realizing the extension or retraction of the columns at both ends of the pipe rack, and when the first driving member approaches the pipe body to squeeze the end of the outer mold to fit on the front panel, when the first driving member moves away from the pipe body, the grabbing member at the end of the sliding column grabs the end of the outer mold and breaks it apart, and then realizes the removal of the outer mold; the grabbing member is a first electromagnet, and the corresponding position of the outer mold is a material that can be adsorbed by the electromagnet, such as The outer mold is made of iron material, and the rest of the outer mold is made of non-electromagnetically adsorbed material; the limiting part is a groove set at the predetermined disassembly or installation position of the mold; the bottom of the sliding column is made of rubber material, and the edge has a rounded chamfer. When the first driving member moves away from the mold, when the first driving member moves a small distance, the bottom of the sliding column can be stuck in the groove, so that the first driving member can move relative to the pipe rack and the sliding column is retracted into the pipe rack. When the sliding column retracts and the distance between the ends of the outer mold is opened to the maximum width of the mold along the X-axis direction, the first driving member just drives the pipe rack to move and the sliding column is separated from the limiting part.
[0047] As an improvement, the invention further comprises: a first conveying assembly, a second conveying assembly and a third conveying assembly which are arranged in parallel and used for conveying the various components of the mold;
[0048] A handling assembly used to disperse disassembled mold components.
[0049] As an improvement, the second conveying assembly is located between the first conveying assembly and the third conveying assembly, and the transporting assembly is used to transport the upper disassembly assembly from the first conveying assembly and the second conveying assembly; the second conveying assembly is used to transport or place the mold that has completed the epoxy resin product molding or the base to be installed, as well as the front panel installed on the base, and the internal structure of the product installed with the front panel; the third conveying assembly is used to transport or place the external mold; the first conveying assembly, the second conveying assembly and the third conveying assembly are all conveyor belts, and the inner side of the conveyor belt is provided with a support member for supporting the inner side of the conveyor belt.
[0050] As an improvement, the transport assembly includes a telescopic part, a conical chassis, and a servo motor arranged on the side of the conical chassis. The telescopic part is a pneumatic cylinder or a hydraulic cylinder; the conical chassis is arranged at the lower end of the telescopic part, and the shaft of the servo motor follows the conical chassis downward and extends into the groove at the top of the main power gear to realize transmission; the conical chassis has a guiding function, and the edge of the conical chassis is a second electromagnet.
[0051] The beneficial effects of the present invention are:
[0052] (1) The present invention realizes the simultaneous disassembly of multiple tensioning screws and the loosening of the clamping plates through the mutual cooperation of the upper disassembly component and the first side disassembly component, thereby improving the disassembly efficiency of the mold and reducing the intensity of manual labor; at the same time, since the inner mold, the annular sealing plate, the fixed bracket and the fixed plate are connected, and since the epoxy resin product is heavy, the tensioning screw is driven to rotate and rise, which will cause the inner mold and the annular sealing plate to be driven to rise synchronously to achieve pre-demolding, thereby improving the demolding effect; in addition, since the thread has a locking function, after the tensioning screw is screwed into the base and locked, the first main transmission member, the second main driving member and the second slave driving member do not rotate, thereby achieving the locking of the two clamping plates, avoiding the problem of increasing the complexity of the structure by re-setting the locking structure;
[0053] (3) The present invention realizes the center positioning of the rod body and the positioning of the rotational orientation of the rod body by providing a third guide member matching the second main driving member, thereby realizing the transmission connection between the third guide member and the top of the second main driving member, and further realizing the smooth transmission between the upper disassembly assembly and the first side disassembly assembly, so that multiple parts of the mold can be quickly disassembled at the same time, thereby improving the disassembly efficiency;
[0054] (4) The present invention cooperates with the first moving assembly, the fifth transmission assembly, and the second side disassembly assembly to drive the second side disassembly assembly close to the front panel and the fifth transmission assembly close to the third transmission assembly to achieve transmission connection, and drives the fourth slave transmission member having multiple ends as gears to rotate through a toothed belt, so that the second side disassembly assembly can synchronously and quickly disassemble or install multiple bolts distributed in parallel or linearly;
[0055] (5) The present invention realizes that the mold is transported to a predetermined position and stops by cooperating with the second conveying component and the sixth guide component, and the current position of the mold is fine-tuned by cooperating with the third guide member and the second moving member, thereby realizing accurate positioning of the mold and better connection and positioning of the various transmission components of the automatic demoulding device for epoxy resin molding;
[0056] In summary, the present invention has the advantages of simple structure, high degree of automation, high efficiency in disassembly and assembly of complex molds, etc.
[0057] advantage. BRIEF DESCRIPTION OF THE DRAWINGS
[0058] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0059] Figure 2 This is a schematic diagram of the overall structure of the mold involved in the present invention;
[0060] Figure 3 This is a state diagram of the mold of the present invention before disassembly;
[0061] Figure 4 This is a state diagram of the mold after disassembly of the present invention;
[0062] Figure 5 This is a schematic diagram of the connection between the mold and the upper disassembly assembly of the present invention;
[0063] Figure 6 for Figure 5 Exploded diagram;
[0064] Figure 7 This is a diagram showing the position relationship between the second side disassembly component and the front panel of the present invention;
[0065] Figure 8 This is a schematic structural diagram of the third guide member of the present invention;
[0066] Figure 9 This is a schematic diagram of the installation of the first side disassembly component, the front panel and the base of the present invention;
[0067] Figure 10 This is a detailed structural diagram of the second side disassembly assembly of the present invention;
[0068] Figure 11 This is a schematic structural diagram of a second moving member arranged at the bottom of the base of the present invention;
[0069] Figure 12 This is a schematic diagram of the disassembly assembly structure on the third side of the present invention;
[0070] Figure 13 Schematic diagram of the structural change state of epoxy resin products.
[0071] Figure 1: Epoxy resin product 10, mold 1, base 11, second moving part 111, annular sealing plate 12, inner mold 13, outer mold 14, front panel 15, fixing bracket 16, tightening screw 17, clamping plate 18, bolt 19, upper disassembly assembly 2, first main transmission member 21, first transmission member 22, fixing plate 23, main power gear 24, first side disassembly assembly 3, second main driving member 31, second slave driving member 32, third transmission assembly 4, third transmission member 41, third guide member 42, rod body 421, arc-shaped plate body 422, second side disassembly assembly 5, fourth installation Frame 51, fourth main rotating member 52, fourth slave transmission member 53, first moving assembly 6, fifth transmission assembly 61, first slide rail 62, first slide 63, second slide 64, first elastic member 65, first push member 66, sixth guide assembly 67, transverse guide member 671, longitudinal guide member 672, third side disassembly assembly 8, pipe rack 81, first driving member 82, column 83, sliding column 84, grabbing member 85, limiting part 86, first conveying assembly 9, second conveying assembly 91, third conveying assembly 92, handling assembly 93, conical chassis 931, servo motor 932. DETAILED DESCRIPTION
[0072] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0073] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like to indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, "multiple" means two or more, unless otherwise clearly and specifically defined.
[0074] Example 1
[0075] like Figure 1-3 As shown, the present invention provides an automatic demolding device for forming transformer accessories for air compressors, which is used to remove the mold 1 outside the epoxy resin product 10. The mold 1 includes a base 11, an annular sealing plate 12, an inner mold 13, an outer mold 14, a front panel 15, a fixing bracket 16, a tightening screw 17 and a clamping plate 18; the annular sealing plate 12, the inner mold 13, and the outer mold 14 are fixed to the base 11 by the fixing bracket 16 and the tightening screw 17, and the outer mold 14 and the front panel 15 are clamped and fixed by the clamping plate 18; it includes:
[0076] The upper disassembly assembly 2 for synchronously disassembling a plurality of vertically arranged tension screws 17 around the mold 1 is arranged above the mold 1;
[0077] A first side disassembly assembly 3 for loosening the clamping plate 18 is provided on the front panel 15 and is in transmission connection with the upper disassembly assembly 2;
[0078] Further, if Figure 4-6 As shown, the upper disassembly assembly 2 includes:
[0079] A first main transmission member 21 and a plurality of first transmission members 22 slidably disposed on the fixed bracket 16 are used to drive the plurality of tensioning screws 17 to simultaneously disengage the corresponding first transmission members 22 connected to the base 11 and to be transmission-connected to the corresponding tensioning screws 17;
[0080] A fixing plate 23 is connected to the fixing bracket 16 for preventing the first main transmission member 21 from being separated from the fixing bracket 16;
[0081] The annular sealing plate 12 and the inner mold 13 are connected to the fixed bracket 16 .
[0082] Furthermore, the annular sealing plate 12 and the inner mold 13 are connected to the fixed bracket 16, and the annular sealing plate 12, the inner mold 13 and the fixed bracket 16 are all detachably connected; four first screw holes are provided on the base 11, and the four first screw holes correspond to four first transmission members 22; the tightening screw 17 is provided with a thread only on the lower end axial surface, and the tightening screw 17 is evenly distributed around the fixed bracket 16 and is slidably connected to the fixed bracket 16; a step is provided on the tightening screw 17 at the lower end of the fixed bracket 16; the first transmission member 22 is connected to the top of the tightening screw 17, and the first main transmission member 21 and the first transmission member 22 are both gears; the four first transmission members 22 are evenly distributed around the first main transmission member 21 and mesh with the first main transmission member 21; the fixed plate 23 is connected to the fixed bracket 16 through an arc connecting plate; one side of the fixed plate 23 is rotatably connected to the main power gear Wheel 24, the main power gear 24 is meshed with the first main transmission member 21 for transmission; the annular sealing plate 12, the inner mold 13, and the outer mold 14 are fixed to the base 11 by a fixing bracket 16 and a tightening screw 17, and the outer mold 14 is fixed to the front panel 15 by a clamping plate 18, and the clamping plate 18 is slidably set on the front panel 15. The two clamping plates 18 are close to each other to clamp the end of the outer mold 14 and the front panel 15, and an elastomer is provided on the opposite side of the clamping plate 18; the elastomer is a spring or rubber material; the front panel 15 is installed on the base 11, and when the epoxy resin product 10 is taken out, the front panel 15 is generally not disassembled, so that the high-voltage coil can be directly installed on the front panel 15 later. A plurality of second holes are provided on the front panel 15, and the second holes are used for the multiple terminal ends of the high-voltage coil to pass through, and are fixedly installed correspondingly by bolts 19 provided at the other end of the front panel 15.
[0083] Further, if Figure 1-2 As shown in FIG. 9 , the first side disassembly component 3 includes:
[0084] a second main driving member 31 , the second main driving member 31 vertically penetrating into the front panel 15 and being rotationally connected to the front panel 15 ;
[0085] The second slave driving members 32 , one end of the two second slave driving members 32 is transmission-connected to the second main driving member 31 , and the other end of the two second slave driving members 32 is respectively connected to the corresponding clamping plates 18 ; the second slave driving members 32 are slidingly connected to the front panel 15 .
[0086] Furthermore, the second main driving member 31 is a gear shaft, the second slave driving member 32 is a rack, the second slave driving member 32 is two groups, each group is two racks, and the two racks are respectively located on both sides of the gear shaft and meshed with the gear shaft.
[0087] Furthermore, by driving the main power gear 24, the first main transmission member 21 and multiple first transmission members 22, multiple tensioning screws 17 are disassembled synchronously, and since the inner mold 13, the annular sealing plate 12, the fixed bracket 16, and the fixed plate 23 are connected, and the epoxy resin product 10 is heavy, the tensioning screw 17 is driven to rotate and rise, which will cause the inner mold 13 and the annular sealing plate 12 to be driven to rise synchronously to achieve pre-demolding. The first main transmission member 21 drives the second slave drive member 32 through the second main drive member 31 to achieve the two clamping plates 18 to move away from and release the clamped outer mold 14 and the front panel 15; similarly, the reversal of the main power gear 24 can achieve the installation of multiple tensioning screws 17 and the base 11 and the clamping of the clamping plates 18; since the thread has a locking function, after the tensioning screw 17 is screwed into the base 11 and locked, the first main transmission member 21, the second main drive member 31 and the second slave drive member 32 do not rotate to achieve the locking of the two clamping plates 18, thereby simplifying the structure.
[0088] Further, if Figure 6-8 As shown, it includes a third transmission assembly 4 provided between the upper disassembly assembly 2 and the first side disassembly assembly 3; the third transmission assembly 4 includes:
[0089] A third transmission member 41, the third transmission member 41 is in transmission connection with the upper disassembly assembly 2;
[0090] The third guide member 42 is connected to the upper disassembly assembly 2 and the first side disassembly assembly 3 for guiding the connection to realize transmission.
[0091] Furthermore, the upper portion of the third guide member 42 is a transmission shaft, and the third transmission member 41 which is a gear is coaxially connected to the third guide member 42; the third guide member 42 is rotatably connected to the edge of the fixed plate 23; the third transmission member 41 is meshed with the first main transmission member 21 for transmission.
[0092] Further, if Figure 8 As shown, the third guide member 42 includes:
[0093] The lower end of the rod body 421 is tapered;
[0094] The axial surface of the rod body 421 is evenly surrounded by a plurality of arc-shaped plates 422 which are integrally formed with the rod body 421 so that the cross section of the upper portion of the rod body 421 is polygonal; the lower end of the arc-shaped plate 422 is a pointed end.
[0095] Furthermore, a groove matching the shape of the lower end of the third guide member 42 is provided at the top of the second main driving member 31; the rod body 421 with a tapered lower end can realize the center positioning of the rod body 421; multiple arc-shaped plates 422 with pointed lower ends realize the positioning of the rotational orientation of the rod body 421, thereby realizing that the lower end of the third guide member 42 is inserted into the top of the second main driving member 31 and engaged, realizing the transmission connection between the third guide member 42 and the second main driving member 31.
[0096] Further, if Figure 7 、 9 -10, further comprising a second side disassembly assembly 5 for synchronously disassembling a plurality of bolts 19 on the front panel 15; the second side disassembly assembly 5 comprises:
[0097] Fourth mounting frame 51; fourth main rotating member 52;
[0098] A plurality of fourth slave transmission members 53 are all transmission-connected to the fourth main rotation member 52 . The fourth main rotation member 52 and the fourth slave transmission members 53 are both rotationally mounted on the fourth mounting frame 51 .
[0099] Furthermore, the fourth main rotating member 52 is a toothed belt with teeth on both the inner and outer sides; it is driven to rotate by a toothed pulley, and the fourth mounting frame 51 extends into the inner side of the toothed belt to support the inner side of the toothed belt and better transmit the transmission to the fourth slave transmission member 53. The fourth slave transmission member 53 with multiple ends as gears is driven to rotate by the toothed belt, and the cross-section of the other end of the fourth slave transmission member 53 is polygonal, which matches the polygonal groove at the rotation center of the bolt 19; thereby realizing the synchronous and rapid disassembly or installation of multiple bolts 19 distributed in parallel or linearly, and the disassembly of the bolt 19 only requires the separation and fixation of the terminal head from the high-voltage coil, and the bolt 19 remains on the front panel 15 without being removed, thereby avoiding the trouble of manually or by another mechanism to install the bolt 19 on the front panel 15 and the problem of losing the bolt 19.
[0100] Further, if Figure 7 As shown, it also includes: a first moving component 6;
[0101] and a fifth transmission assembly 61 mounted on the first moving assembly 6;
[0102] The fifth transmission component 61 matches the second side disassembly component 5 for transmission; the first moving component 6, which is used to drive the second side disassembly component 5 close to the front panel 15 and make the fifth transmission component 61 close to the upper disassembly component 2 or the third transmission component 4 and the transmission connection, is moved and arranged on the side of the front panel 15 away from the mold 1.
[0103] Furthermore, the first moving assembly 6 includes: a first slide rail 62, a first slide plate 63, a second slide plate 64, a first elastic member 65, and a first pusher 66; the first elastic member 65, which is a spring, is arranged between and connected to the first slide plate 63 and the second slide plate 64; the first slide plate 63 and the second slide plate 64 are slidably connected to the first slide rail 62; the first slide plate 63 is connected to the fourth mounting bracket 51; the fifth transmission assembly 61 is a conventional gear set, including a spur gear, a transmission shaft and a worm gear, and the fifth transmission assembly 61 connects the third transmission assembly 4 and the fourth main rotating member 52 for power transmission. ; The first pushing member 66 of the cylinder or hydraulic cylinder or electric telescopic rod pushes the first slide plate 63 and the second sliding movement to realize the engagement of the fifth transmission component 61 close to the third transmission component 4. Even if the teeth of the third transmission component 4 and the fifth transmission component 61 cannot be exactly engaged, due to the presence of the first elastic member 65, the teeth of the third transmission component 4 and the fifth transmission component 61 can be engaged and transmitted during the transmission process; thereby realizing the linkage of the upper disassembly component 2, the first side disassembly component 3 and the second side disassembly component 5, and synchronously disassembling the mold 1, thereby improving the disassembly efficiency and reducing the use of the motor.
[0104] Example 2
[0105] like Figure 1-12 As shown, the components identical or corresponding to those in the first embodiment are marked with the same reference numerals as those in the first embodiment. For the sake of simplicity, only the differences from the first embodiment are described below. The difference between the second embodiment and the first embodiment is that: Figure 1-4 As shown, a second moving member 111 is provided at the lower end of the base 11, and a sixth guide assembly 67 is provided on the side of the conveying direction of the mold 1;
[0106] The sixth guide assembly 67 includes a transverse guide member 671 and a longitudinal guide member 672 ; the second moving member 111 cooperates with the sixth guide assembly 67 to transport the mold 1 to a predetermined position and stop.
[0107] Further, such as Figure 11As shown, the second moving part 111 is a universal wheel or a ball, so that the base 11 can move slightly, thereby facilitating better matching connection in various guiding connection processes, rather than just facilitating manual pushing of the mold 1 to move; the longitudinal guiding part 672 is two guiding blocks, so that the base 11 is located in the accurate conveying direction, and the transverse guiding part 671 is a baffle plate. The baffle plate is connected to the first sliding plate 63 to realize that when the mold 1 is conveyed to the designated position, the first moving component 6 drives the baffle plate to extend out to prevent the mold 1 from being continuously conveyed, thereby realizing that the mold 1 stops at the designated position for disassembly or assembly.
[0108] Further, as Figure 12 shown, there is also a third side disassembly component 8, which is used to first掰开 the two ends of the outer mold 14 and then remove the outer mold 14 from the epoxy resin product 10. The third side disassembly component 8 is arranged on one side of the front panel 15 close to the mold 1.
[0109] Further, since the outer mold 14 is箍 on the outside of the epoxy resin product 10, therefore, first掰开 the two ends of the outer mold 14, and then remove the outer mold 14 from one side to realize disassembly.
[0110] Further, as Figure 12 shown, the third side disassembly component 8 includes:
[0111] A pipe rack 81, one end of the pipe rack 81 facing the mold 1 is in a匚 shape with an inward flanging, and the pipe rack 81 is filled with fluid;
[0112] A first driving part 82, one end of the first driving part 82 extends into the middle of the pipe rack 81;
[0113] A cylinder 83 located at the flanging end of the pipe rack 81;
[0114] A sliding column 84 located in the middle of the pipe rack 81 and vertically connected to the pipe rack 81;
[0115] Gripping parts 85 are arranged on both the end of the cylinder 83 outside the pipe rack 81 and the sliding column 84 on the side facing the mold 1;
[0116] A limiting part 86, which cooperates with the sliding column 84 to realize that the first driving part 82 with one end located in the pipe rack 81 moves ahead of the pipe rack 81 when moving away from the mold 1, so that the gripping part 85掰开 the outer mold 14 and then removes it. The limiting part 86 is arranged at the end of the stroke of the sliding column 84 close to the mold 1 direction;
[0117] The limiting part 86 is used to limit the bidirectional movement of the sliding column 84.
[0118] It should be noted that the Chinese characters "掰开" and "箍" in the original text seem to be incorrect or incomplete expressions. It is recommended to check and correct them to ensure the accuracy of the technical content. The above translation is based on the existing text.Furthermore, the first driving member 82 is a driving rack or a hydraulic telescopic rod that can move back and forth; the cross-section of one end of the driving rack extending into the pipe rack 81 is cylindrical; the end of the first driving member 82 moves in the pipe body in the middle of the pipe rack 81 to squeeze the fluid in the pipe rack 81, thereby realizing the extension or retraction of the columns 83 at both ends of the pipe rack 81, and when the first driving member 82 is close to the pipe body to squeeze the end of the outer mold 14 to fit on the front panel 15, when the first driving member 82 is away from the pipe body, the grabbing member 85 at the end of the sliding column 84 grabs the end of the outer mold 14 and breaks it apart, and then the outer mold 14 is removed; the grabbing member 85 is a first electromagnet, and the corresponding position of the outer mold 14 is a material that can be adsorbed by the electromagnet, such as iron The outer mold 14 is made of a material other than an electromagnet; the limiting portion 86 is a groove provided at the predetermined disassembly or installation position of the mold 1; the bottom of the sliding column 84 is made of rubber material, and the edge has a rounded chamfer. When the first driving member 82 moves away from the mold 1, when the first driving member 82 moves a small distance, the bottom of the sliding column 84 can be stuck in the groove, so that the first driving member 82 can move relative to the pipe rack 81 and the sliding column 84 is retracted into the pipe rack 81. When the sliding column 84 is retracted and the distance between the ends of the outer mold 14 is opened to the maximum width of the mold 1 along the X-axis, the first driving member 82 just drives the pipe rack 81 to move and the sliding column 84 is disengaged from the limiting portion 86.
[0119] Further, such as Figure 1-4 As shown, it also includes: a first conveying assembly 9, a second conveying assembly 91 and a third conveying assembly 92 which are arranged in parallel and used to convey the various components of the mold 1;
[0120] A transport assembly 93 is used to disperse and place the disassembled components of the mold 1.
[0121] Furthermore, the second conveying assembly 91 is located between the first conveying assembly 9 and the third conveying assembly 92, and the transporting assembly 93 is used to transport the upper disassembly assembly 2 from the first conveying assembly 9 and the second conveying assembly 91; the second conveying assembly 91 is used to transport or place the mold 1 that has completed the molding of the epoxy resin product 10 or the base 11 to be installed, as well as the front panel 15 installed on the base 11, and the internal structure of the product installed with the front panel 15, such as a coil; the third conveying assembly 92 is used to transport or place the outer mold 14; the first conveying assembly 9, the second conveying assembly 91 and the third conveying assembly 92 are all conveyor belts, and the inner side of the conveyor belt is provided with a support member for supporting the inner side of the conveyor belt.
[0122] Furthermore, the transport assembly 93 includes a telescopic part, a conical chassis 931, and a servo motor 932 provided on the side of the conical chassis 931. The telescopic part is a cylinder or a hydraulic cylinder; the conical chassis 931 is arranged at the lower end of the telescopic part, and the shaft of the servo motor 932 follows the conical chassis 931 to move downward and extends into the groove at the top of the main power gear 24 to realize transmission; the conical chassis 931 has a guiding function, and the edge of the conical chassis 931 is a second electromagnet.
[0123] Working steps
[0124] Mold assembly steps:
[0125] The front panel 15 mounted on the base 11 and the high-voltage coil mounted on the front panel 15 are transported toward a predetermined position along with the base 11 on the second transport assembly 91 ;
[0126] The first moving assembly 6 drives the sixth guiding assembly 67 to guide the base 11 and stop the base 11 at a predetermined position;
[0127] The third side disassembly assembly 8 moves to push the outer mold 14 on the third conveying assembly 92 toward the base 11 where it stops at a predetermined position. At the same time, the grabbing member 85 grabs the corresponding portion of the outer mold 14 and breaks the outer mold 14 apart so that the outer mold 14 is stuck on the front panel 15.
[0128] The transport assembly 93 transports the connected inner mold 13, annular sealing plate 12, fixing bracket 16, and fixing plate 23 to the top of the outer mold 14 and lowers them, aligning the tensioning screw 17 with the screw hole on the base 11. Then, the third side disassembly assembly 8 squeezes the outer mold 14 until it completely contacts and presses against the front panel 15.
[0129] The first moving assembly 6 drives the second side disassembly assembly 5 and the fifth transmission assembly 61 to approach the mold 1 and make the fifth transmission assembly 61 contact with the third transmission assembly 4, so that the fourth slave transmission member 53 extends into the corresponding bolt 19;
[0130] The driving power gear 24 is driven to synchronously drive the upper disassembly assembly 2, the first side disassembly assembly 3, and the second side disassembly assembly 5, thereby screwing the tightening screw 17 into the base 11, fixing the outer mold 14, and tightening the multiple nuts;
[0131] Subsequently, the assembled mold 1 is transported to the next station.
[0132] Mold disassembly steps:
[0133] After the mold 1 filled with epoxy resin is cooled for a predetermined time, it is transported to a predetermined position by the second transport assembly 91;
[0134] The first moving assembly 6 drives the sixth guiding assembly 67 to guide the base 11 and stop the base 11 at a predetermined position;
[0135] The transport assembly 93 moves to the predetermined position just above the mold 1, and the main power gear 24 rotates to synchronously drive the upper disassembly assembly 2, the first side disassembly assembly 3, and the second side disassembly assembly 5, thereby achieving the tightening screw 17 being screwed out of the base 11;
[0136] The clamping plate 18 is loosened, and the multiple bolts 19 on the front panel 15 are rotated to separate from the epoxy resin product 10. The transport assembly 93 transports the connected inner mold 13, annular sealing plate 12, fixing bracket 16, fixing plate 23, and tensioning screw 17 to the first conveying assembly 9 and puts them down;
[0137] The third side disassembly assembly 8 moves to grab the outer mold 14 and moves it to the third conveying assembly 92 to release and separate from the outer mold 14;
[0138] The front panel 15 mounted on the base 11 and the epoxy resin product 10 mounted on the front panel 15 are transported to the next station by the second transport assembly 91 , and the epoxy resin product 10 is taken away.
[0139] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An automatic demoulding device for forming transformer accessories for air compressors, used to disassemble the mold outside the epoxy resin product, the mold includes a base, an annular sealing plate, an inner mold, an outer mold, a front panel, a fixing bracket, a tightening screw and a clamping plate, characterized in that: include: An upper disassembly assembly, used for synchronously disassembling a plurality of vertically arranged tensioning screws around the mold, and arranged above the mold; The first side disassembly assembly is used to loosen the clamping plate from the side of the mold. The first side disassembly assembly is arranged on the front panel and is in transmission connection with the upper disassembly assembly; the upper disassembly assembly includes: A first main transmission member and a plurality of first transmission members slidably disposed on the fixed bracket are used to drive the plurality of tightening screws to simultaneously separate the corresponding first transmission members connected to the base and to be respectively connected to the corresponding tightening screws; A fixed plate, used to limit the first main transmission member from being separated from the fixed bracket, is connected to the fixed bracket; the annular sealing plate and the inner mold are connected to the fixed bracket; The first side disassembly assembly includes: a second main driving member, the second main driving member vertically penetrating into the front panel and being rotationally connected to the front panel; Second slave driving members, one end of the two second slave driving members is drivingly connected to the second main driving member, and the other ends of the two second slave driving members are respectively connected to the corresponding clamping plates; the second slave driving members are slidably connected to the front panel; The third transmission assembly is provided between the upper disassembly assembly and the first side disassembly assembly; the third transmission assembly includes: a third transmission member, the third transmission member being in transmission connection with the upper disassembly assembly; A third guide member is used for guiding the upper disassembly assembly and the first side disassembly assembly to realize the transmission of the third guide member connected to the upper disassembly assembly; The upper portion of the third guide member is a transmission shaft, and the third transmission member, which is a gear, is coaxially connected to the third guide member; the third guide member is rotatably connected to the edge of the fixed plate; the third transmission member is meshed with the first main transmission member for transmission; The third guide member comprises: The lower end of the rod is tapered; The axial surface of the rod body is evenly surrounded by a plurality of arc-shaped plates which are integrally formed with the rod body so that the cross section of the upper portion of the rod body is polygonal; the lower end of the arc-shaped plate is a pointed end.
2. The automatic demoulding device for forming transformer accessories for air compressors according to claim 1 is characterized in that: It also includes a second side disassembly assembly for synchronously disassembling multiple bolts on the front panel; the second side disassembly assembly includes: a fourth mounting bracket; a fourth main rotating member; A plurality of fourth slave transmission members are all transmission-connected to the fourth main rotation member, and the fourth main rotation member and the fourth slave transmission member are both rotationally mounted on the fourth mounting frame.
3. The automatic demoulding device for forming transformer accessories for air compressors according to claim 2, characterized in that: Also included: a first moving assembly; and a fifth transmission assembly mounted on the first moving assembly; The fifth transmission assembly matches the second side disassembly assembly for transmission; the first moving assembly, which is used to drive the second side disassembly assembly close to the front panel and make the fifth transmission assembly close to the upper disassembly assembly or the third transmission assembly, is moved to the side of the front panel away from the inner mold.
4. The automatic demoulding device for forming transformer accessories for air compressors according to claim 1 is characterized in that: A second moving member is provided at the lower end of the base, and a sixth guide assembly is provided on the side of the mold conveying direction; The sixth guide assembly includes a transverse guide member and a longitudinal guide member; the second moving member cooperates with the sixth guide assembly to transport the mold to a predetermined position and stop.
5. The automatic demoulding device for forming transformer accessories for air compressors according to claim 4, characterized in that: It also includes a third side disassembly component, which is used to first break the two ends of the outer mold apart and then disassemble and remove the outer mold from the epoxy resin product. The third side disassembly component is arranged on a side of the front panel close to the mold.
6. An automatic demolding device for the forming of transformer accessories for an air compressor according to claim 5, characterized in that the third-side disassembly component includes: a pipe rack, one end of the pipe rack facing the die direction is in a U-shape with an inward flanging, and the pipe rack is filled with fluid; a first driving member, one end of the first driving member extends into the middle of the pipe rack; a cylinder located at the flanging end inside the pipe rack; a sliding column located in the middle of the pipe rack and vertically connected to the pipe rack; gripping members are provided on both the end of the cylinder outside the pipe rack and the sliding column on the side facing the die direction; a limiting portion, a limiting portion that cooperates with the sliding column to enable the first driving member with one end inside the pipe rack to move away from the die first before the pipe rack moves, so that the gripping member掰开 the outer die and then moves away is provided at the end of the stroke of the sliding column close to the die direction.
7. The automatic demoulding device for forming transformer accessories for air compressors according to claim 1 is characterized in that: It further includes: a first conveying component, a second conveying component and a third conveying component arranged in parallel and used for conveying each component of the die; a handling component for disassembling each component of the die and placing them separately. It should be noted that the Chinese word "掰开" in the original text seems to be an incorrect or non-standard expression. I translated it as "掰开" as it is in the original, but it might need to be corrected to a more appropriate term in the context.
Citation Information
Patent Citations
Air compressor with magnetic saturation transformer
CN217813928U
Dry -type transformer casting mold
CN207542066U