FOCKE-FX lifting turret adjusting device
By designing the FOCKE-FX lifting turret adjustment device, which uses an adjustment bracket, rotating seat, and cam to simulate the movement of the chuck, offline precise adjustment of the lifting turret is achieved, solving problems such as chuck deformation and improving maintenance efficiency.
Patent Information
- Application Number
- CN202520289257.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-21
AI Technical Summary
After prolonged operation, the FOCKE-FX lifting turret suffers from problems such as jaw deformation, breakage, and bearing aging, resulting in substandard cigarette pack formation, frequent cigarette jamming, low maintenance efficiency, and difficulties in adjustment due to the lack of specialized adjustment tools and limited space.
Design a FOCKE-FX lifting turret adjustment device, including an adjustment bracket, a rotating seat, a pressure plate, and a cam. Offline adjustment is performed by removing the lifting turret. The cam and the chuck work together to simulate motion, achieving multi-angle adjustment and precise calibration.
It improves the convenience and accuracy of calibration, reduces the labor intensity of operators, shortens calibration time, and enhances the efficiency of equipment use.
Smart Images

Figure CN223703260U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tobacco production equipment technology, specifically to a FOCKE-FX lifting turret adjustment device. Background Technology
[0002] The lifting turret is an important component of packaging equipment, designed based on the principles of cigarette packaging to facilitate the smooth formation and transfer of cigarette packs. It requires regular maintenance and repair.
[0003] As operating time increases, the lifting turret may experience problems such as jaw deformation, jaw breakage, and bearing aging. This leads to the cigarette packs failing to meet shape requirements during the forming process, frequent cigarette jamming, and significant material waste. Therefore, regular and timely maintenance of the lifting turret is necessary. After maintenance, the mold box jaws need to be adjusted. However, due to the lack of dedicated adjustment tools and the fact that the adjustment of the lifting turret is quite precise, it can only be performed after installation. The limited space at the installation location hinders the operator's adjustment work. Furthermore, the lifting turret has 10 sets of mold boxes, making the adjustment operation time-consuming and resulting in low maintenance efficiency.
[0004] Therefore, a FOCKE-FX lifting turret adjustment device is urgently needed, which is the key to solving the above problems. Summary of the Invention
[0005] In view of the many defects and shortcomings existing in the above-mentioned background technology, this utility model has made improvements and innovations, aiming to provide a FOCKE-FX lifting turret adjustment device, which allows for offline adjustment after the lifting turret is removed, providing a larger operating space, which is more conducive to the operator's fine adjustment work, reducing the operator's labor intensity, shortening the adjustment time, and effectively improving the efficiency of equipment use.
[0006] Another objective of this invention is to simulate the movement of the pawls by setting a cam, on which a first protrusion and a second protrusion are provided, and which work in conjunction with a first pawl and a second pawl provided on the lifting turret, thereby enabling faster detection of problems and more precise adjustment operations during the adjustment process.
[0007] Another objective of this invention is to fix the lifting turret between the rotating seat and the pressure plate by setting a rotating seat and a pressure plate, and to enable the operator to flexibly adjust the lifting turret at multiple angles by rotating it, without being limited by the operating space.
[0008] To solve the above problems and achieve the above-mentioned invention objectives, the present invention provides a FOCKE-FX lifting turret adjustment device by adopting the following design mechanism and the following technical solution;
[0009] A FOCKE-FX lifting turret adjustment device, characterized in that it includes an adjustment bracket (1) for fixing the lifting turret (2), the adjustment bracket (1) comprising:
[0010] The base (11) is provided with a mounting shaft (112) and a fixing groove (111) opened on the mounting shaft (112), the fixing groove (111) being arranged parallel to the mounting shaft (112);
[0011] The fixing key (12) is partially embedded in the fixing groove (111) and partially protrudes from the outer wall of the mounting shaft (112).
[0012] Rotary seat (13) is sleeved on mounting shaft (112) and has several internal threaded grooves on its end face, so that it can rotate around mounting shaft (112);
[0013] The pressure plate (14) has the same diameter as the rotating seat (13) and has a hole corresponding to the rotating seat (13). The pressure plate (14), the lifting turret (2) and the rotating seat (13) are connected as a whole to realize the movement of the lifting turret around the mounting shaft (112).
[0014] The cam (15) has a hole in the middle that can be fitted onto the mounting shaft (112) and limited by a fixing key (12). The fixing key (12) works in conjunction with the limiting hole in the middle of the cam (15) so that the cam (15) is fixed on the mounting shaft (112) and will not rotate.
[0015] Preferably, the rotating seat (13) comprises:
[0016] The snap ring (131) is a pair of symmetrically mounted snap rings, which are installed at both ends of the rotating seat (13) and used in conjunction with the symmetrically designed snap ring grooves of the rotating seat (13).
[0017] There are two bearings (132), which are symmetrically designed and embedded at both ends of the rotating seat (13) and limited by snap rings (131);
[0018] Spacer (133) has the same diameter as the inner ring diameter of bearing (132) and is installed between the two bearings (132) to limit the bearing (132).
[0019] Preferably, the cam (15) is a cylinder, and the cam (15) has a protrusion symmetrically arranged on its arc surface, the height of which is half the height of the cam (15);
[0020] The protrusion includes a first protrusion (151) and a second protrusion (152), which are respectively attached to the two symmetrical end faces of the cam (15).
[0021] Preferably, the several internal threaded grooves on the end face of the rotating seat (13) are used in conjunction with the waist-shaped holes provided on the mounting surface of the lifting turret (2), and are connected as a whole by the fixing bolts (141) passing through the holes of the pressure plate (14), the waist-shaped holes of the lifting turret (2) and the internal threaded grooves on the end face of the rotating seat (13) in sequence.
[0022] Preferably, the distance between the fixing groove (111) and the base (11) is greater than the height of the rotating shaft (13).
[0023] Preferably, the fixing groove (111) is an oblong groove, which is arranged parallel to the mounting shaft (112);
[0024] The fixing key (12) is a "waist-shaped" structure used in conjunction with the waist-shaped groove.
[0025] Preferably, the snap ring (131), bearing (132), spacer (133) and rotating seat (13) are connected as a whole to the mounting shaft (112) through a sleeve.
[0026] Preferably, the first protrusion (151) is used in conjunction with the first claw (21) provided on the lifting turret (2); when the lifting turret (2) rotates, the first claw (21) moves along the arc-shaped protrusion structure of the first protrusion (151) to realize the rocker arm swing process of the first claw (21), thereby realizing the opening and closing movement of the mold box groove (23);
[0027] The second protrusion (152) works in conjunction with the second claw (22) provided on the lifting turret (2); when the lifting turret (2) rotates, the second claw (22) moves along the arc-shaped protrusion structure of the second protrusion (152), realizing the swing process of the second claw (22), thereby realizing the opening and closing movement of the mold box groove (23).
[0028] Preferably, the base (11) is composed of a bottom plate, a vertical plate and a mounting shaft (112) that are vertically connected in a fixed manner;
[0029] At least one set of reinforcing ribs is provided at the connection between the base plate and the vertical plate.
[0030] Preferably, the first protrusion (151) and the second protrusion (152) are arc-shaped protrusion structures that gradually increase inward from both ends.
[0031] The working principle is as follows: Before using the FOCKE-FX lifting turret adjustment device with the above-mentioned design structure, the operator first assembles the adjustment bracket;
[0032] During assembly, the operator first places the base (11) on the operating table, installs the bearing (132) inside one end of the rotating seat (13), and then installs the snap ring (131) so that the bearing (132) is tightly attached to the snap ring (131). From the other end of the rotating seat (13), the spacer (133), the bearing (132) and the snap ring (133) are installed in sequence. The mounting shaft (112) set on the base (11) passes through the snap ring (131), the bearing (132), the spacer (133), the bearing (132) and the snap ring (131) in sequence, so that the rotating seat (13) is sleeved on the mounting shaft (13) and can rotate around the mounting shaft (112) through the setting of the bearing (132). At this time, one end of the rotating seat (13) is in contact with the vertical plate of the base (11). Then, the operator uses tools to remove the lifting turret (2) from the equipment. After maintenance, it is fitted onto the mounting shaft (112), at which point the mounting surface of the lifting turret (2) is in contact with the rotating seat (13). Next, the operator uses tools to pass the fixing bolts (141) sequentially through the holes provided on the pressure plate (14), the holes provided on the mounting surface of the lifting turret (2), and the internal thread groove on the rotating seat (13), connecting the above components into a whole. The fixing key (12) is embedded into the fixing groove (111), and the cam (15) is fitted onto the mounting shaft (112). The protruding part of the mounting shaft (112) and the fixing key (12) are tightly fitted into the hole in the middle of the cam (15). Finally, the operator pushes the cam (15) towards one side of the base (11) and slowly rotates the lifting turret (2) so that the first protrusion (151) of the cam (15) contacts the first pawl (21), and the second protrusion (152) contacts the second pawl (22). At this time, the cam (15) is installed inside the lifting turret (2) and is limited by the fixing key (12). Thus, the installation of this utility model is completed.
[0033] During use, the operator uses tools to loosen the jaw bolts, places the adjustment module (3) into the mold box slot (23), and rotates the lifting turret (2) to make the first jaw (21) move along the arc-shaped protrusion structure of the first protrusion (151), thereby realizing the rocker arm swing process of the first jaw (21) and thus realizing the opening and closing movement of the mold box slot (23). At the closed position, tighten the jaw bolts and take out the adjustment module (3) to complete the adjustment work at this position. When adjusting the second jaw (22), rotate the lifting turret (2) to make the second jaw (22) move along the arc-shaped protrusion structure of the second protrusion (152), thereby realizing the rocker arm swing process of the second jaw (22). By repeating the above operation, after adjusting all the jaws, use a knife or square to check the flatness after adjustment. If it is not flat, repeat the above operation. If it is flat, the adjustment operation ends.
[0034] Finally, the operator removes the cam (15) and the fixing key (12), loosens the fixing bolt (141), separates the pressure plate (14), the lifting turret (2) and the rotating seat (13), removes the pressure plate (14) and the lifting turret (2), and installs the adjusted lifting turret (2) back into the original position of the equipment, thus completing the adjustment operation.
[0035] After the process is completed, the operator uses fixing bolts (141) to fix the pressure plate (14) to the rotating seat (13) and stores the adjustment bracket (1) in a fixed position for the next use.
[0036] In summary, the beneficial effects of this utility model compared with the prior art are as follows:
[0037] 1. Because of the support provided, the operator can remove the lifting turret from the equipment for offline adjustment, thus avoiding the difficulties in operation caused by the original limited operating space, which would waste time and affect the efficiency of equipment use.
[0038] 2. This utility model is equipped with a rotating seat and pressure plate for use with the lifting turret, so that the adjustment operation can be achieved more conveniently by rotating the lifting turret during the adjustment process;
[0039] 3. This utility model is equipped with a cam, which can simulate the opening and closing of the first and second jaws of the lifting turret during operation during the adjustment process, making the adjustment by the operator more convenient and accurate.
[0040] 4. This utility model uses a fixed key to limit the cam, so that the cam is fixed relative to the lifting turret during the rotation of the lifting turret around the mounting shaft, thereby realizing the adjustment of the first and second jaws. Attached Figure Description
[0041] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:
[0042] Figure 1 This is one of the schematic diagrams showing the usage state of this utility model;
[0043] Figure 2 This is the second schematic diagram of the usage state of this utility model;
[0044] Figure 3 This is one of the schematic diagrams of the overall structure of this utility model;
[0045] Figure 4 This is the second schematic diagram of the overall structure of this utility model;
[0046] Figure 5 This is a schematic diagram of the overall exploded structure of this utility model;
[0047] Figure 6 This is a schematic diagram of the overall structure of the lifting turret (2) of this utility model;
[0048] Figure 7 This is a schematic diagram of the overall disassembled structure of the lifting turret (2) of this utility model;
[0049] Figure 8 This is a perspective view of the present invention;
[0050] In the figure, the numbers are: 1—adjustment bracket, 11—base, 12—fixing key, 13—rotating seat, 14—pressure plate, 15—cam, 111—fixing groove, 112—mounting shaft, 131—circlip, 132—bearing, 133—spacer, 141—fixing bolt, 151—first protrusion, 152—second protrusion;
[0051] 2—Lifting turret, 21—First chuck, 22—Second chuck, 23—Mold box slot;
[0052] 3—Adjustment module. Detailed Implementation
[0053] To make the technical means, inventive features, and achieved objectives and effects of this utility model readily understandable, the technical solution of this utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other. The present utility model will now be described in detail with reference to the accompanying drawings and embodiments.
[0054] Example 1
[0055] like Figures 1 to 8The FOKE-FX lifting turret adjustment device shown is characterized by including an adjustment bracket 1 for fixing the lifting turret 2, the adjustment bracket 1 comprising:
[0056] The base 11 is provided with a mounting shaft 112 and a fixing groove 111 formed on the mounting shaft 112, wherein the fixing groove 111 is arranged parallel to the mounting shaft 112.
[0057] The fixing key 12 is partially embedded in the fixing groove 111 and partially protrudes from the outer wall of the mounting shaft 112.
[0058] Rotary seat 13 is sleeved on mounting shaft 112 and has several internal threaded grooves on its end face, allowing it to rotate around mounting shaft 112;
[0059] The pressure plate 14 has the same diameter as the rotating seat 13 and has holes corresponding to the rotating seat 13. The pressure plate 14, the lifting turret 2 and the rotating seat 13 are connected as a whole to realize the movement of the lifting turret around the mounting shaft 112.
[0060] The cam 15 has a hole in the middle that can be fitted onto the mounting shaft 112 and is limited by a fixing key 12. The fixing key 12 works in conjunction with the limiting hole in the middle of the cam 15 to fix the cam 15 onto the mounting shaft 112 and prevent it from rotating.
[0061] Furthermore, the rotating seat 13 includes:
[0062] Snap ring 131 consists of two symmetrically mounted snap rings, which are installed at both ends of the rotating seat 13 and are used in conjunction with the symmetrically designed snap ring grooves of the rotating seat 13.
[0063] There are two bearings 132, which are symmetrically designed and embedded at both ends of the rotating seat 13, and are limited by snap rings 131.
[0064] Spacer 133, the diameter of which is the same as the inner ring diameter of bearing 132, is installed between the two bearings 132 to limit the bearings 132.
[0065] In this utility model, such as Figure 5 As shown, a spacer 133 with the same diameter as the inner ring of the bearing 132 is installed between the two bearings 132 to support and limit the bearing 132 installed in the rotating seat 13.
[0066] Furthermore, the cam 15 is a cylinder, and the cam 15 has a protrusion symmetrically arranged on its arc surface. The height of the protrusion is half the height of the cam 15.
[0067] The protrusion includes a first protrusion 151 and a second protrusion 152, which are respectively attached to the two symmetrical end faces of the cam 15.
[0068] In this invention, the cam 15 facilitates the adjustment and observation of the opening and closing of the first pawl 21 and the second pawl 22 during the calibration process.
[0069] Before use, the operator must first assemble the calibration bracket;
[0070] During assembly, the operator first places the base 11 on the worktable, such as... Figure 5 As shown, the bearing 132 is installed inside one end of the rotating seat 13, and then the retaining ring 131 is installed, so that the bearing 132 is tightly against the retaining ring 131. From the other end of the rotating seat 13, the spacer 133, the bearing 132, and the retaining ring 133 are installed in sequence. The mounting shaft 112 provided on the base 11 passes through the retaining ring 131, the bearing 132, the spacer 133, the bearing 132, and the retaining ring 131 in sequence, so that the rotating seat 13 is sleeved on the mounting shaft 13. The bearing 132 enables it to rotate around the mounting shaft 112. At this time, one end of the rotating seat 13 is in contact with the vertical plate of the base 11. Then, the operator uses tools to remove the lifting turret 2 from the equipment. After maintenance, it is sleeved on the mounting shaft 112, as shown. Figure 1 As shown, at this time, the mounting surface of the lifting turret 2 is in contact with the rotating base 13. Then, the operator uses tools to sequentially pass the fixing bolts 141 through the holes on the pressure plate 14, the holes on the mounting surface of the lifting turret 2, and the internal thread groove on the rotating base 13, connecting these components into a single unit. The fixing key 12 is embedded into the fixing groove 111, and the cam 15 is fitted onto the mounting shaft 112, with the protruding part of the mounting shaft 112 and the middle hole of the cam 15 tightly fitted. Finally, the operator pushes the cam 15 towards one side of the base 11 and slowly rotates the lifting turret 2 so that the first protrusion 151 of the cam 15 contacts the first pawl 21, and the second protrusion 152 contacts the second pawl 22, as shown. Figure 8 As shown, the cam 15 is now installed inside the lifting turret 2 and is limited by the fixing key 12. This completes the installation of this utility model.
[0071] During use, the operator uses tools to loosen the jaw bolts, such as... Figure 2As shown, after placing the adjustment module 3 into the mold box slot 23, the first jaw 21 moves along the arc-shaped protrusion structure of the first protrusion 151 by rotating the lifting turret 2, realizing the rocker arm swing process of the first jaw 21, thereby realizing the opening and closing movement of the mold box slot 23. At the closed position, tighten the jaw bolt and remove the adjustment module 3 to complete the adjustment work at this position. When adjusting the second jaw 22, rotate the lifting turret 2 to move the second jaw 22 along the arc-shaped protrusion structure of the second protrusion 152, realizing the rocker arm swing process of the second jaw 22. By repeating the above operation, after adjusting all jaws, use a cutting tool or square to check the flatness after adjustment. If it is not flat, repeat the above operation. If it is flat, the adjustment operation ends.
[0072] Finally, the operator removes the cam 15 and the fixing key 12, loosens the fixing bolt 141, separates the pressure plate 14, the lifting turret 2 and the rotating seat 13, removes the pressure plate 14 and the lifting turret 2, and installs the adjusted lifting turret 2 back into the original position of the equipment, thus completing the adjustment operation.
[0073] After the process is completed, the operator uses fixing bolts 141 to fix the pressure plate 14 to the rotating seat 13 and stores the adjustment bracket 1 in a fixed position for the next use.
[0074] Example 2
[0075] This embodiment 2 is the same as embodiment 1, except that the fixing groove 111 is provided with an array of springs. After the fixing key 12 is embedded in the fixing groove 112, it can be pressed to make the fixing key 12 flush with the surface of the fixing groove 111. Under normal non-stressed conditions, the fixing key 12 protrudes from the surface of the fixing groove 112. During the installation of the rotating shaft 13, the operator only needs to press the fixing key 12 to make the surface of the fixing key 12 flush with the surface of the fixing groove 111. After the installation is completed, the pressing is stopped, and the fixing key 12 protrudes from the surface of the fixing groove 111, thereby achieving the limiting function of the cam 15.
[0076] The several internal threaded grooves on the end face of the rotating seat 13 are used in conjunction with the waist-shaped holes provided on the mounting surface of the lifting turret 2, and are connected as a whole by the fixing bolts 141 passing through the holes of the pressure plate 14, the waist-shaped holes of the lifting turret 2 and the internal threaded grooves on the end face of the rotating seat 13 in sequence.
[0077] Furthermore, the distance between the fixing groove 111 and the base 11 is greater than the height of the rotating shaft 13.
[0078] Furthermore, the fixing groove 111 is an oblong groove, which is set parallel to the mounting shaft 112;
[0079] The fixing key 12 is a "waist-shaped" structure used in conjunction with the waist-shaped groove.
[0080] In this invention, the distance between the fixing groove 111 and the base 11 is greater than the height of the rotating shaft 13, which ensures that the protruding fixing part 12 will not affect the installation of the rotating seat 13 and the lifting turret 2 during the installation process.
[0081] Furthermore, the snap ring 131, bearing 132, spacer 133 and rotating seat 13 are connected as a whole to the mounting shaft 112 through a sleeve.
[0082] Furthermore, the first protrusion 151 is used in conjunction with the first claw 21 provided on the lifting turret 2; so that when the lifting turret 2 rotates, the first claw 21 moves along the arc-shaped protrusion structure of the first protrusion 151, realizing the rocker arm swing process of the first claw 21, thereby realizing the opening and closing movement of the mold box groove 23.
[0083] The second protrusion 152 works in conjunction with the second claw 22 provided on the lifting turret 2; when the lifting turret 2 rotates, the second claw 22 moves along the arc-shaped protrusion structure of the second protrusion 152, realizing the rocker arm swing process of the second claw 22, thereby realizing the opening and closing movement of the mold box groove 23.
[0084] Furthermore, the base 11 is composed of a base plate, a vertical plate, and a mounting shaft 112, which are vertically connected in pairs and fixedly connected.
[0085] At least one set of reinforcing ribs is provided at the connection between the base plate and the vertical plate.
[0086] In this utility model, such as Figure 4 As shown, the reinforcing ribs on the base 11 make the adjustment operation of the lifting turret 2 more stable during the adjustment process, which is conducive to the operator's fine adjustment operation.
[0087] Furthermore, the first protrusion 151 and the second protrusion (152) are arc-shaped protrusion structures that gradually increase inward from both ends.
[0088] In this utility model, such as Figure 8 As shown, the first protrusion 151 and the second protrusion 152 are gently sloping, centrally protruding structures that allow the first claw 21 and the second claw 22 to open and close as the height of the protrusions changes during the rotation of the lifting turret 2. When the first claw 21 is at the highest point of the first protrusion 151, the first claw 21 is in the open state; when the first claw 21 is at the lowest point of the first protrusion 151, the first claw 21 is in the closed state. The movement relationship between the second protrusion 152 and the second claw 22 is the same as described above, and will not be repeated here.
[0089] Example 3
[0090] This embodiment 2 is the same as embodiment 1, except that the base 11 has an anti-slip pad on the bottom plate, which makes the adjustment bracket 1 more stable during use and prevents displacement due to the operator's installation and removal operations during the adjustment process.
[0091] In summary, a more specific embodiment of this utility model is as follows:
[0092] like Figure 1 As shown, a FOCKE-FX lifting turret adjustment device includes a base 11, a fixed key 12, a rotating seat 13, a pressure plate 14, and a cam 15.
[0093] Before use, the operator must first assemble the calibration bracket;
[0094] During assembly, firstly, the operator places the base 11 stably on the operating table, installs the bearing 132 inside one end of the rotating seat 13, and then installs the retaining ring 131, ensuring the bearing 132 is tightly against the retaining ring 131. From the other end of the rotating seat 13, the spacer 133, bearing 132, and retaining ring 133 are installed sequentially. The mounting shaft 112 on the base 11 is then passed sequentially through the retaining ring 131, bearing 132, spacer 133, bearing 132, and retaining ring 131, so that the rotating seat 13 is fitted onto the mounting shaft 13. Figure 5 As shown, the bearing 132 enables the turret to rotate around the mounting shaft 112, at which point one end of the rotating seat 13 is in contact with the vertical plate of the base 11. Then, the operator uses tools to remove the lifting turret 2 from the equipment. After maintenance according to the operating procedures, it is fitted onto the mounting shaft 112. At this point, the mounting surface of the lifting turret 2 is in contact with the rotating seat 13, as shown. Figure 1 As shown. Next, the operator uses tools to sequentially pass the fixing bolts 141 through the holes on the pressure plate 14, the holes on the mounting surface of the lifting turret 2, and the internal thread groove on the rotating seat 13, connecting the above components into a whole. The fixing key 12 is embedded into the fixing groove 111, and the cam 15 is fitted onto the mounting shaft 112. The portion of the mounting shaft 112 and the fixing key 12 protruding from the surface of the fixing shaft 112 tightly fits into the hole in the middle of the cam 15. Finally, the operator pushes the cam 15 towards one side of the base 11 and slowly rotates the lifting turret 2 so that the first protrusion 151 of the cam 15 contacts the first pawl 21, and the second protrusion 152 contacts the second pawl 22. At this point, the cam 15 is installed inside the lifting turret 2 and is limited by the fixing key 12. Thus, the installation of this utility model is completed.
[0095] During use, the operator uses tools to loosen the jaw bolts, such as... Figure 2 As shown, after the adjustment module 3 is placed into the mold slot 23, the first claw 21 moves along the arc-shaped protrusion structure of the first protrusion 151 by rotating the lifting turret 2, as shown. Figure 8 As shown, the first jaw 21 swings its rocker arm, thereby opening and closing the mold slot 23. At the closed position, tighten the jaw bolts and remove the adjustment module 3 to complete the adjustment at that position. When adjusting the second jaw 22, rotate the lifting turret 2 to move the second jaw 22 along the arc-shaped protrusion structure of the second protrusion 152, thus swinging the second jaw 22's rocker arm. Repeat the above operations to adjust all jaws. Use a cutting tool or square to check the flatness after adjustment. If it is not flat, repeat the above operations; if it is flat, the adjustment operation ends.
[0096] Finally, the operator removes the cam 15 and the fixing key 12, loosens the fixing bolt 141, separates the pressure plate 14, the lifting turret 2 and the rotating seat 13, removes the pressure plate 14 and the lifting turret 2, and installs the adjusted lifting turret 2 back into the original position of the equipment, thus completing the adjustment operation.
[0097] After the process is completed, the operator uses fixing bolts 141 to fix the pressure plate 14 to the rotating seat 13, such as... Figure 3 As shown, the adjustment bracket 1 is stored in a fixed position for future use.
[0098] In this utility model, the connection is either a fixed connection or a detachable connection. The fixed connection is either a welded connection or a directly machined integral structure, while the detachable connection is either an internal or external threaded connection, a snap-fit connection, or a plug-in structure connection.
[0099] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of this utility model without departing from its technical solution shall still fall within the protection scope of this utility model.
Claims
1. A FOCKE-FX lift turret setting device, characterized in that Comprising, The adjusting support (1) for fixing the lifting turret (2) comprises: a base (11) provided with a mounting shaft (112) and a fixing groove (111) opened on the mounting shaft (112), the fixing groove (111) being arranged in parallel with the mounting shaft (112); a fixing key (12) partially embedded in the fixing groove (111) and partially protruding from the outer wall of the mounting shaft (112); a rotating seat (13) sleeved on the mounting shaft (112) and provided with a plurality of internal thread grooves on the end face thereof, so as to rotate around the mounting shaft (112); a pressing plate (14) having the same diameter as the rotating seat (13) and provided with a hole corresponding to the rotating seat (13), the pressing plate (14), the lifting turret (2) and the rotating seat (13) being connected as a whole to realize the movement of the lifting turret around the mounting shaft (112); a cam (15) provided with a hole in the middle portion thereof, the hole being sleeved on the mounting shaft (112) and limited by the fixing key (12), so that the cam (15) is fixed on the mounting shaft (112) and cannot rotate.
2. A FOCKE-FX lift turret alignment device according to claim 1, characterized in that The rotating seat (13) comprises: a clamping spring (131) arranged in a symmetrical manner and installed at two ends of the rotating seat (13) and matched with the clamping ring groove of the rotating seat (13); a bearing (132) arranged in a symmetrical manner and embedded in the two ends of the rotating seat (13) and limited by the clamping spring (131); a spacer sleeve (133) having the same diameter as the inner ring diameter of the bearing (132) and installed between the two bearings (132) to limit the bearing (132).
3. A FOCKE-FX lift turret alignment device according to claim 1, characterized in that The cam (15) is a cylindrical body, and the cam (15) is provided with a protruding portion in the arc surface thereof, the height of the protruding portion being half of the height of the cam (15); wherein the protruding portion comprises a first protruding portion (151) and a second protruding portion (152), and the first protruding portion (151) and the second protruding portion (152) are respectively attached to the two symmetrical end faces of the cam (15).
4. A FOCKE-FX lift turret alignment device according to claim 1, characterized in that The plurality of internal thread grooves opened on the end face of the rotating seat (13) are matched with the waist-shaped holes arranged on the mounting surface of the lifting turret (2) and connected as a whole by the fixing bolts (141) in sequence through the hole of the pressing plate (14), the waist-shaped holes of the lifting turret (2) and the internal thread grooves on the end face of the rotating seat (13).
5. A FOCKE-FX lift turret alignment device according to claim 1, characterized in that The distance between the fixing groove (111) and the base (11) is greater than the height of the rotating shaft (13).
6. A FOCKE-FX lift turret alignment device according to claim 1, characterized in that The fixing groove (111) is a waist-shaped groove arranged in parallel with the mounting shaft (112); The fixing key (12) is a "waist-shaped" structure matched with the waist-shaped groove.
7. A FOCKE-FX lift turret alignment device according to claim 2, characterized in that The whole connected by the clamping spring (131), the bearing (132), the spacer sleeve (133) and the rotating seat (13) is sleeved on the mounting shaft (112).
8. A FOCKE-FX lift turret alignment device according to claim 3, characterized in that The first protruding part (151) is used in cooperation with the first clamping jaw (21) arranged on the lifting turret (2); when the lifting turret (2) rotates, the first clamping jaw (21) moves along the arc-shaped protruding structure of the first protruding part (151), the swinging process of the first clamping jaw (21) is realized, and the opening and closing movement of the mold box groove (23) is realized; The second protruding part (152) is used in cooperation with the second clamping jaw (22) arranged on the lifting turret (2); when the lifting turret (2) rotates, the second clamping jaw (22) moves along the arc-shaped protruding structure of the second protruding part (152), the swinging process of the second clamping jaw (22) is realized, and the opening and closing movement of the mold box groove (23) is realized.
9. A FOCKE-FX lift turret alignment device according to claim 1, wherein, The base (11) is composed of a bottom plate, a vertical plate and a mounting shaft (112) which are vertically connected in pairs and fixedly connected. At least one group of reinforcing ribs is arranged at the connection between the bottom plate and the vertical plate.
10. A FOCKE-FX lift turret alignment device according to claim 3, characterized in that The first protruding part (151) and the second protruding part (152) are arc-shaped protruding structures gradually increasing in height from both ends inward.