Ink jet printer for forging die
By designing an inkjet printer with a spraying component group, a position moving component group, and a height adjustment component group, the problems of mold height adjustment and dead-angle spraying were solved, achieving efficient demolding and flexible application of forging molds.
Patent Information
- Application Number
- CN202423004055.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-06
AI Technical Summary
Existing inkjet printers for forging dies cannot adjust their position according to dies of different heights, resulting in reduced applicability. Furthermore, they have poor spraying effects on the dead corners inside the dies, which can easily lead to die sticking.
An inkjet printer comprising a spraying component group, a position moving component group, and a height adjusting component group was designed. The spraying component is moved by a threaded rod driven by a servo motor, and a manual operation mode is provided to cover blind spots, enabling height adjustment and flexible spraying.
It improves the applicability and coating effect of inkjet printers, ensures that the release agent is evenly covered in all positions in the mold, avoids sticking to the mold, and improves the efficiency of use.
Smart Images

Figure CN223571068U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to forging die technical field, concretely is a kind of inkjet machine for forging die. BACKGROUND
[0002] The inkjet machine for forging die is a kind of equipment specially designed for forging die, which can automatically spray release agent into the die, can effectively avoid the phenomenon of sticking film between high-temperature forged parts and forging die, and improve the forging efficiency and service life of the die.
[0003] The current inkjet machine for forging die lacks adjustable structure, which cannot adjust the position according to the height of different forging dies in actual use, thereby reducing the applicability of the overall inkjet machine, and the current inkjet machine has poor spraying effect on the dead angle position inside the die, which can cause insufficient coverage of release agent at these positions, resulting in difficulty in smoothly releasing the forged parts from the die, and easy to appear sticking die phenomenon. UTILITY MODEL CONTENTS
[0004] In order to overcome the above technical problems, the purpose of the utility model is to provide an inkjet machine for forging die to solve the problem that the current inkjet machine for forging die cannot adjust the height position according to the size of different height dies.
[0005] To achieve the above purpose, the utility model provides the following technical scheme:
[0006] An inkjet machine for forging die, comprising a main component group, the main component group comprising a forging die part and a die base, the forging die part being installed on the die base, an external part of the main component group being provided with a spraying component group and a position moving component group, the spraying component group and the position moving component group being used for spraying release agent on the forging die part, the spraying component group comprising a nozzle part, one end of the nozzle part being connected with a front end pipe, one end of the front end pipe being connected with a rear end pipe, an external surface of the rear end pipe being connected with a counterweight, a top part of the nozzle part being provided with an upper cross plate, a bottom part of the upper cross plate being connected with a tip holder body, a plug rod part and a wire harness holder; the position moving component group comprising a servo motor part, a side surface of the servo motor part being provided with a frame box, an internal part of the frame box being provided with a threaded rod part and a moving seat, a top part of the moving seat being provided with an upper housing, one side of the upper housing being provided with a handle part, an internal part of the upper housing being provided with a horizontal rod part and a clamping block part; a bottom part of the position moving component group being provided with a height adjusting component group, the height adjusting component group being used for adaptively adjusting the height of the spraying component group and the position moving component group, the height adjusting component group comprising a bottom seat holder, a top part of the bottom seat holder being connected with a fixed holder body, an internal part of the fixed holder body being provided with a movable holder body and a bolt part, a side surface of the movable holder body being provided with a pipeline side holder.
[0007] Preferably, the front-end pipe is connected between the nozzle and the rear-end pipe, the top of the upper transverse plate is provided with a handle, the end head frame body is connected through the support and the nozzle, the end of the rear-end pipe away from the front-end pipe is connected with a release agent pumping pump, and the wire harness frame is connected through the through hole and the front-end pipe.
[0008] Preferably, the servo motor is connected through the support and the side of the frame box, the working end of the servo motor is connected through the frame box and one end of the threaded rod, the other end of the threaded rod is connected through the rotating shaft and the frame box, and the working end of the servo motor is connected through the bearing and the frame box.
[0009] Preferably, the threaded rod is connected through the thread and the moving seat, the moving seat is in sliding contact with the frame box through the sliding groove, and the top of the upper shell is connected with the moving seat.
[0010] Preferably, the horizontal rod is connected between the handle and the clamping block, the clamping block is in contact with the insertion rod through the clamping groove, the insertion rod is in contact with the upper shell through the insertion groove, the upper shell is in sliding contact with the horizontal rod through the through hole, the horizontal rod is sleeved with a spring, and the spring is connected between the upper shell and the clamping block.
[0011] Preferably, the upper shell is in contact with the upper transverse plate through the groove, and the clamping block is in sliding contact with the upper shell through the sliding groove.
[0012] Preferably, the bottom seat frame is used for contacting the ground, the fixed frame body is in sliding contact with the movable frame body through the sliding groove, the fixed frame body is provided with threads at positions corresponding to the bolts, the fixed frame body and the bolts are connected through the threads, the movable frame body is provided with a plurality of threaded holes at positions corresponding to the bolts, the movable frame body and the bolts are connected through the threaded holes, the pipeline side frame is connected with the side of the movable frame body, the pipeline side frame is provided with a guide roller, the pipeline side frame is in contact with the rear-end pipe through the guide roller, and the movable frame body is connected with the bottom of the frame box.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] 1. The inkjet machine for forging die is provided with spraying component group, position moving component group and height adjusting component group, the current forging die inkjet machine lacks adjustable structure, in actual use, the position cannot be adjusted according to the height of different forging dies, and then the applicability of the whole inkjet machine is reduced, corresponding to the spraying component group, position moving component group and height adjusting component group, before using each time forging die piece, the servo motor piece in the position moving component group is started by controlling, the servo motor piece work end of the servo motor piece rotates, and then drives the threaded rod piece to rotate, the threaded rod piece drives the moving seat to slide in the frame box through thread, and then drives the upper shell on the moving seat and the spraying component group to move towards the direction of the forging die piece, then the demolding agent is input into the rear-end pipe by controlling the demolding agent liquid pump connected with one end of the rear-end pipe, the rear-end pipe is transported to the nozzle piece through the front-end pipe, the nozzle piece sprays the demolding agent into the forging die piece, the demolding machine spraying work of the forging die piece is completed, after spraying, the servo motor piece is controlled to reverse, and the demolding agent liquid pump is stopped, the moving seat and the spraying component group return to the original position, at this time, the spraying work of the forging die piece is completed, when facing different height forging die pieces, the bolt piece is unscrewed from the fixed frame body and the movable frame body, then the movable frame body moves up and down in the fixed frame body, the height of the position moving component group and the spraying component group on the movable frame body can be adjusted, after adjusting to the appropriate position, the bolt piece is connected to the fixed frame body and the movable frame body through thread, the height position is locked, this design can adjust the height of the spraying component group and the position moving component group according to the height size of different forging die pieces, improve the applicability of the whole inkjet machine;
[0015] 2、The inkjet machine for forging die is provided with a spraying component group, a position moving component group and a height adjusting component group, the current inkjet machine has poor spraying effect on the dead angle positions in the die, which can cause insufficient coverage of the die release agent at these positions, leading to difficulty in smoothly taking out the forgings from the die and easy occurrence of die sticking phenomenon, in the corresponding designed spraying component group, position moving component group and height adjusting component group, there can be four corner positions in some forging die parts which are difficult to be sprayed, in order to ensure the die release effect, the servo motor part can not be started, and the spraying component group is directly moved by manual control, the position of the spraying component group is controlled by hand, the dead angle positions which are difficult to be sprayed in place in the forging die part are effectively sprayed, and the specific operation is that, when spraying, the handle on the upper horizontal plate is held and the pull handle part is pulled to move away from the upper housing, the spring outside the horizontal rod part is stretched to store power, and the clamping block part is separated from the clamping groove of the insertion rod part, then the nozzle part, the front end tube, the upper horizontal plate, the wire harness rack, the insertion rod part and the end head rack body can be moved by holding the upper horizontal plate, so that the nozzle part can enter the forging die part to spray the dead angle positions, when the upper horizontal plate is pulled to move, the rear end tube is guided to move by the pipeline side rack, and due to the action of the counterweight block, the front end tube and the rear end tube are always kept in tension, so that the problem that the cable can be wound when the front end tube and the rear end tube are pulled to move and are retracted is avoided, and after the spraying of the spraying component group is completed, the spraying component group can be directly placed back on the position moving component group, the insertion rod part connected to the bottom of the upper horizontal plate is inserted into the upper housing slot, the clamping block part is opened during the insertion process, the spring is contracted to store power, when the insertion rod part is completely inserted into the frame box slot, the spring releases the stored power, the clamping block part is opened, the clamping block part is in contact with the insertion rod part through the clamping groove, and then the clamping block part is limited, at this time, the spraying component group and the position moving component group are connected, the whole design can effectively spray the dead angle positions which are difficult to be automatically sprayed in the die, so that the die release agent is fully covered at these key positions, and at the same time, the simple disassembly and assembly structure can ensure the flexibility of the spraying component group and improve the use efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a whole structure schematic view of the utility model;
[0017] Figure 2 It is a structure schematic view of the spraying component group, the position moving component group and the height adjusting component group part of the utility model;
[0018] Figure 3 It is a sectional structure schematic view of the spraying component group, the position moving component group and the height adjusting component group part of the utility model;
[0019] Figure 4 It is a structure schematic view of the spraying component group and the position moving component group part of the utility model;
[0020] Figure 5 The sectional view structure schematic diagram of the spraying component group and the position moving component group part of the utility model.
[0021] In the drawing: 01, main body component group; 11, forging die piece; 12, die base; 02, spraying component group; 21, nozzle piece; 22, front end tube; 23, rear end tube; 24, counterweight; 25, upper cross plate; 26, end head frame body; 27, wire harness frame; 28, insertion rod piece; 03, position moving component group; 31, servo motor piece; 32, frame box; 33, threaded rod piece; 34, moving seat; 35, upper shell; 36, handle piece; 37, cross rod piece; 38, clamping block piece; 04, height adjusting component group; 41, bottom seat frame; 42, fixed frame body; 43, movable frame body; 44, bolt piece; 45, pipeline side frame. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0023] Please refer to Figures 1-5The utility model provides an embodiment: a kind of inkjet machine for forging die, including main component group 01, main component group 01 includes forging die piece 11 and mould base 12, forging die piece 11 is installed on mould base 12, the outside of main component group 01 is provided with spraying component group 02 and position moving component group 03, spraying component group 02 and position moving component group 03 are used to spray release agent to forging die piece 11, spraying component group 02 includes nozzle piece 21, one end of nozzle piece 21 is connected with front end tube 22, one end of front end tube 22 is connected with rear end tube 23, the outer surface of rear end tube 23 is connected with counterweight 24, the top of nozzle piece 21 is provided with upper cross plate 25, the bottom of upper cross plate 25 is connected with end head frame body 26, plug rod piece 28 and wire harness frame 27;Position moving component group 03 includes servo motor piece 31, the side of servo motor piece 31 is provided with frame box 32, the inside of frame box 32 is provided with threaded rod piece 33 and moving seat 34, the top of moving seat 34 is provided with upper shell 35, one side of upper shell 35 is provided with handle piece 36, the inside of upper shell 35 is provided with cross bar piece 37 and clamping block piece 38;The bottom of position moving component group 03 is provided with height adjusting component group 04, and height adjusting component group 04 is used to adaptively adjust the height of spraying component group 02 and position moving component group 03, and height adjusting component group 04 includes bottom seat frame 41, the top of bottom seat frame 41 is connected with fixed frame body 42, the inside of fixed frame body 42 is provided with movable frame body 43 and bolt piece 44, the side of movable frame body 43 is provided with pipeline side frame 45.
[0024] Front end tube 22 is connected between nozzle piece 21 and rear end tube 23, the top of upper cross plate 25 is provided with handle, end head frame body 26 is connected by support and nozzle piece 21, rear end tube 23 is connected with release agent pumping unit at the end away from front end tube 22, wire harness frame 27 is connected by through-hole and front end tube 22.
[0025] Servo motor piece 31 is connected by support and the side of frame box 32, the working end of servo motor piece 31 is connected by passing through frame box 32 and one end of threaded rod piece 33, the other end of threaded rod piece 33 is connected by pivot and frame box 32, the working end of servo motor piece 31 is connected by bearing and frame box 32.
[0026] Threaded rod piece 33 is connected by thread and moving seat 34, moving seat 34 is slidably contacted by sliding groove and frame box 32, the top of upper shell 35 and moving seat 34 is connected.
[0027] Cross bar piece 37 is connected between handle piece 36 and clamping block piece 38, clamping block piece 38 is contacted by clamping groove and plug rod piece 28, plug rod piece 28 is contacted by insertion slot and upper shell 35, upper shell 35 is slidably contacted by through-hole and cross bar piece 37, and spring is sleeved on the outside of cross bar piece 37, and the spring is connected between upper shell 35 and clamping block piece 38.
[0028] The upper shell 35 is in contact with the upper horizontal plate 25 through a groove, and the clamping block 38 is in sliding contact with the upper shell 35 through a sliding groove.
[0029] The bottom seat frame 41 is used to contact the ground, the fixed frame body 42 is in sliding contact with the movable frame body 43 through a sliding groove, the fixed frame body 42 is provided with a thread corresponding to the position of the bolt 44, and the fixed frame body 42 and the bolt 44 are connected through the thread, the movable frame body 43 is provided with a plurality of threaded holes corresponding to the position of the bolt 44, and the movable frame body 43 and the bolt 44 are connected through the threaded holes, the pipeline side frame 45 is connected with the side surface of the movable frame body 43, the pipeline side frame 45 is provided with a guide roller, and the pipeline side frame 45 is in contact with the rear end pipe 23 through the guide roller, and the movable frame body 43 is connected with the bottom of the frame box 32.
[0030] Working principle: the current forging die inkjet machine lacks adjustable structure, in actual use, can not be adjusted according to the height of different forging die position, and then reduces the overall applicability of inkjet machine, corresponding to the design of spraying parts group 02, position moving parts group 03 and height adjusting parts group 04, before using each time forging die piece 11, through the control of servo motor piece 31 in position moving parts group 03 start, servo motor piece 31 start servo motor piece 31 work end will rotate, and then drive screw rod piece 33 rotation, screw rod piece 33 through thread drive moving seat 34 in frame box 32 slide, and then drive moving seat 34 on the upper shell 35 and spraying parts group 02 to the direction of forging die piece 11 move, then through the control of back-end pipe 23 one end connected with demolding agent pump demolding agent input into the back-end pipe 23, back-end pipe 23 again through the front-end pipe 22 delivery to nozzle piece 21, nozzle piece 21 will demolding agent spray out to forging die piece 11, complete the demolding machine forging die piece 11 spraying work, after spraying, control servo motor piece 31 reverse, and let demolding agent pump stop, let moving seat 34 and spraying parts group 02 back to the original position, at this time, complete the spraying work of forging die piece 11, when facing different height of forging die piece 11, through let bolt piece 44 from the fixed frame body 42 and moving frame body 43 unscrew, then let moving frame body 43 in fixed frame body 42 up and down movement, can let moving frame body 43 on the position moving parts group 03 and spraying parts group 02 height adjustment, adjust to the appropriate position, again through the thread connection of bolt piece 44 to fixed frame body 42 and moving frame body 43, complete the height position locking, this design can according to different height size of forging die piece 11, the height of spraying parts group 02 and position moving parts group 03 adaptively adjust, improve the overall applicability of inkjet machine;The current inkjet machine has poor spraying effect on the dead angle position inside the mold, which can cause insufficient coverage of the release agent at these positions, resulting in difficulty in smoothly removing the forged piece from the mold, and easy occurrence of sticking phenomenon. In the spraying component group 02, the position moving component group 03 and the height adjusting component group 04 designed correspondingly, there can be four corner positions in some forging die pieces 11 that are difficult to be sprayed. In order to ensure the release effect, the servo motor piece 31 can not be started, and the spraying component group 02 can be directly moved by manual control. The position of the spraying component group 02 is controlled by hand, and the dead angle position in the forging die piece 11 that is difficult to be sprayed in place is effectively sprayed. The specific operation is as follows: when spraying, the handle on the upper cross plate 25 is held and the pull handle piece 36 is pulled away from the upper shell 35. The spring outside the cross rod piece 37 is stretched, and the clamping block piece 38 is separated from the clamping groove of the insertion rod piece 28. Then the nozzle piece 21, the front end pipe 22, the upper cross plate 25, the wire harness bracket 27, the insertion rod piece 28 and the end head frame body 26 can be moved by holding the upper cross plate 25, so that the nozzle piece 21 can enter the forging die piece 11 to spray the dead angle position. When the upper cross plate 25 is pulled, the rear end pipe 23 moves under the guidance of the pipeline side bracket 45. Due to the action of the counterweight block 24, the front end pipe 22 and the rear end pipe 23 are always kept in tension, avoiding the problem that the cable can be wound when the front end pipe 22 and the rear end pipe 23 are pulled and moved. After the spraying of the spraying component group 02 is completed, the spraying component group 02 can be directly placed back on the position moving component group 03. The insertion rod piece 28 connected to the bottom of the upper cross plate 25 is inserted into the slot of the upper shell 35. During the disassembly process, the clamping block piece 38 is opened, the spring is contracted, and when the insertion rod piece 28 is completely inserted into the slot of the frame box 32, the spring releases the stored energy, opens the clamping block piece 38, and makes the clamping block piece 38 contact with the insertion rod piece 28, thereby limiting the position. At this time, the spraying component group 02 and the position moving component group 03 are connected. This overall design can effectively spray the dead angle position inside the mold that is difficult to be automatically sprayed, so that the release agent is fully covered at these key positions. At the same time, through the simple disassembly structure, the flexibility of the spraying component group 02 can be ensured, and the use efficiency is improved.
[0031] It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the claims involved.
Claims
1. An inkjet printer for forging dies, comprising a main component assembly (01), the main component assembly (01) including a forging die component (11) and a die base (12), the forging die component (11) being mounted on the die base (12), characterized in that: The main component group (01) is provided with a spraying component group (02) and a position moving component group (03) on its exterior. The spraying component group (02) and the position moving component group (03) are used to spray a release agent onto the forging die (11). The spraying component group (02) includes a nozzle component (21). One end of the nozzle component (21) is connected to a front end tube (22). One end of the front end tube (22) is connected to a rear end tube (23). The outer surface of the rear end tube (23) is connected to a counterweight block (24). The top of the nozzle component (21) is provided with an upper horizontal plate (25). The bottom of the upper horizontal plate (25) is connected to an end frame (26), a plug rod component (28), and a wire harness frame (27). The position moving component group (03) includes a servo motor component (31), a frame box (32) is provided on the side of the servo motor component (31), a threaded rod component (33) and a moving seat (34) are provided inside the frame box (32), an upper shell (35) is provided on the top of the moving seat (34), a handle component (36) is provided on one side of the upper shell (35), and a crossbar component (37) and a locking block component (38) are provided inside the upper shell (35). The bottom of the position moving component group (03) is provided with a height adjusting component group (04). The height adjusting component group (04) is used to adaptively adjust the height of the spraying component group (02) and the position moving component group (03). The height adjusting component group (04) includes a bottom bracket (41). A fixed frame (42) is connected to the top of the bottom bracket (41). A movable frame (43) and bolts (44) are provided inside the fixed frame (42). A pipeline side frame (45) is provided on the side of the movable frame (43).
2. The inkjet printer for forging dies according to claim 1, characterized in that: The front end tube (22) is connected between the nozzle component (21) and the rear end tube (23). The top of the upper horizontal plate (25) is provided with a handle. The end frame (26) is connected to the nozzle component (21) through a bracket. The end of the rear end tube (23) away from the front end tube (22) is connected to a mold release agent pump. The wire harness frame (27) is connected to the front end tube (22) through a through hole.
3. An inkjet printer for forging dies according to claim 1, characterized in that: The servo motor component (31) is connected to the side of the bracket and the frame box (32). The working end of the servo motor component (31) passes through the frame box (32) and is connected to one end of the threaded rod (33). The other end of the threaded rod (33) is connected to the frame box (32) through a rotating shaft. The working end of the servo motor component (31) is connected to the frame box (32) through a bearing.
4. An inkjet printer for forging dies according to claim 1, characterized in that: The threaded rod (33) is connected to the movable seat (34) by threads, the movable seat (34) slides in contact with the frame box (32) through a groove, and the top of the upper shell (35) is connected to the movable seat (34).
5. An inkjet printer for forging dies according to claim 1, characterized in that: The crossbar (37) is connected between the handle (36) and the locking block (38). The locking block (38) contacts the insert rod (28) through the slot. The insert rod (28) contacts the upper housing (35) through the slot. The upper housing (35) slides in contact with the crossbar (37) through the through hole. The crossbar (37) is fitted with a spring, and the spring is connected between the upper housing (35) and the locking block (38).
6. An inkjet printer for forging dies according to claim 1, characterized in that: The upper housing (35) contacts the upper horizontal plate (25) through a groove, and the locking block (38) slides in contact with the upper housing (35) through a sliding groove.
7. An inkjet printer for forging dies according to claim 1, characterized in that: The bottom bracket (41) is used to contact the ground. The fixed bracket (42) slides in contact with the movable bracket (43) through a sliding groove. The fixed bracket (42) is provided with threads at the position corresponding to the bolt (44), and the fixed bracket (42) and the bolt (44) are connected by threads. The movable bracket (43) is provided with multiple threaded holes at the position corresponding to the bolt (44), and the movable bracket (43) and the bolt (44) are connected by threaded holes. The pipeline side bracket (45) is connected to the side of the movable bracket (43). The pipeline side bracket (45) is equipped with guide rollers, and the pipeline side bracket (45) contacts the rear pipe (23) through the guide rollers. The movable bracket (43) is connected to the bottom of the frame box (32).