Upward rotation type brick setting machine
The design of the packing head, which combines a servo motor and a cylinder, solves the problems of poor driving accuracy and complex structure in existing technologies, and achieves efficient and convenient packing strap conveying and welding.
Patent Information
- Application Number
- CN202423076592.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-13
AI Technical Summary
Existing palletizer packing heads suffer from poor drive accuracy, complex structure, and high cost. In particular, pneumatic packing heads are greatly affected by changes in ambient temperature, while electric packing heads are inconvenient to maintain.
The system employs a servo motor to drive the friction wheel and a cylinder in conjunction with a forward and reverse motor. This allows for high-torque and high-precision control of the packing strap's conveying and welding, simplifying the structure and improving maintenance convenience.
It achieves high-precision strapping conveying and welding, simplifies the structure, reduces maintenance difficulty, and improves packaging efficiency and accuracy.
Smart Images

Figure CN223521132U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a brick making technical field, concretely relates to a kind of upper rotary type brick stacking machine. BACKGROUND
[0002] The packing head of the brick stacking machine is a device that can cooperate with the track frame of the brick stacking machine to wrap the stacked bricks placed thereon with plastic tape. The plastic tape is extracted through the packing head and guided by the track structure used in conjunction, so that the plastic tape is wrapped along the outer surface of the stacked bricks and then cut and adhered through the packing head. As a result, the bricks can be fixed and will not be limited and fixed by the plastic tape during transportation, and will not fall off. Compared with manual packing, the packing speed of the stacking machine is faster and more efficient, and the interval of each wrapped plastic tape is accurate, so that the effect of packing and fixing the bricks is better.
[0003] Although the above-mentioned prior art can solve the corresponding technical problems, it still has some defects. The packing head of the existing stacking machine is divided into a pneumatic packing head and an electric packing head. The pneumatic packing head drives the packing head by connecting with high-pressure gas and cooperating with a pneumatic motor. The structure is relatively simple, but the driving precision is poor, and a relatively stable high-pressure gas source is needed, which is easily affected by temperature changes in the use environment and produces errors, so the packaging precision is poor. The electric packing head drives the packing head by motor, has high precision and is less affected by environmental temperature changes, but its structure is complex, the cost is high, and there are many parts, so it is very inconvenient to replace and maintain. UTILITY MODEL CONTENTS
[0004] The utility model aims at the defects and deficiencies of the prior art, and provides an upper rotary type brick stacking machine that is easy to maintain and has high precision.
[0005] In order to achieve the above object, the utility model discloses the following technical scheme is: a kind of upper rotary type brick stacking machine, including support frame and the connecting plate being arranged on support frame, connecting plate below is movably clamped with horizontal moving beam, slidingly equipped with horizontal moving support on the horizontal moving beam, fixedly equipped with packing machine head on the horizontal moving support, horizontal moving support top is also equipped with upper horizontal guide rail on the both sides of packing machine head, horizontal moving support bottom is also equipped with lower horizontal guide rail, longitudinal guide rail is equipped between the both ends of lower horizontal guide rail and the both ends of upper horizontal guide rail, the packing machine head includes the machine body being fixedly arranged on horizontal moving support, the machine body includes inner plate and the bottom disc being arranged on the bottom of inner plate, the inner plate is penetrated and is equipped with belt roller frame, the top surface of bottom disc is equipped with fixed fuse device penetrating and fixedly arranged on inner plate, the fixed fuse device one side is equipped with belt conveying frame with through slot between belt roller frame bottom end, the inner plate is also penetrated and is equipped with friction wheel driven by servo motor, the outer wall of friction wheel is attached with belt roller frame middle section, the fixed fuse device includes the first cylinder being arranged on the upper surface of bottom disc and the connecting block penetrating and fixedly arranged on the surface of inner plate and being equipped with a plurality of sliding grooves, the telescopic rod middle section of first cylinder is movably clamped with welding rack, welding rack is movably clamped with connecting block both sides, second cylinder is equipped on the bottom disc, the telescopic rod middle section of second cylinder is movably clamped with first downholder, the telescopic rod middle section of first downholder is slidably connected with the inner wall of sliding groove of connecting block, third cylinder is also equipped on the bottom disc, the telescopic rod middle section of third cylinder is movably clamped with downholder welding device, the middle section of which is slidably connected with the inner wall of sliding groove of connecting block.
[0006] Further improvement is that: fourth cylinder is also equipped on the bottom disc, the telescopic rod middle section of fourth cylinder is movably clamped with second downholder, and the outer wall of the middle section of second downholder is slidably connected with the inner wall of sliding groove of connecting block.
[0007] Further improvement is that: the downholder welding device includes forward and reverse motor being arranged on the bottom disc and third downholder movably clamped with the telescopic rod middle section of third cylinder, the bottom of third downholder is movably clamped with friction block, one side of friction block is movably clamped with moving handle, and the other end of moving handle is sleeved on the rotating shaft of forward and reverse motor.
[0008] Further improvement is that: fifth cylinder is also equipped on the bottom disc, and the end of the telescopic rod of fifth cylinder is equipped with guide plate, which can extend to the welding table of welding rack.
[0009] Further improvement is that: belt guide piece is also equipped on the top of belt roller frame.
[0010] Further improvement is that: cover plate is also movably clamped with the bottom of the front of machine body.
[0011] Further improvement is that: horizontal moving rail frame for horizontal moving on support is equipped on the top of machine body.
[0012] Further improvement is that the bottom plate is provided with a belt return pipe below the belt conveying frame.
[0013] Further improvement is that the third pressing frame is provided with a cutter on the side of the friction block close to the belt entering end.
[0014] Further improvement is that the lower horizontal guide rail is provided with a cylinder guide rail fixedly connected with the horizontal moving support at both ends, and the lower horizontal guide rail can slide relative to the horizontal moving support through the cylinder guide rail.
[0015] Further improvement is that the horizontal moving support is further provided with a belt winding frame at the bottom.
[0016] After the above technical scheme is adopted, the packaging machine head of the utility model is driven by a servo motor to drive a friction wheel, high torque and high precision of the servo motor are used to guarantee the precision and tightening force of the conveying packaging belt, and the packaging machine head is conveniently reversed, a single reversing motor is driven by the first cylinder, the second cylinder, the third cylinder, the fourth cylinder and the fifth cylinder to drive the fixed fusing device with low precision requirement, the packaging belt is fixed by the cylinder, the overall structure is simplified, the high-torque reversing motor is used to guarantee the friction welding effect, the packaging machine head is accurately laid and welded with the packaging belt, the overall structure is relatively simple, and maintenance is more convenient. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained according to these drawings without creative labor for those skilled in the art.
[0018] Figure 1 is the three-dimensional structure schematic view of the brick stacking machine of the utility model;
[0019] Figure 2 is the three-dimensional structure schematic view of the brick stacking machine of the utility model after removing the support frame;
[0020] Figure 3 is the three-dimensional structure schematic view of the packaging machine head of the utility model;
[0021] Figure 4 is the front view structure schematic view of the machine body of the utility model after removing the shell;
[0022] Figure 5 is the front view structure schematic view of the machine body of the utility model after removing the inner plate;
[0023] Figure 6 is the structure diagram of the fixed fusing device cooperating with the chassis in perspective view of the utility model;
[0024] Figure 7 is the structure diagram of the fixed fusing device cooperating with the chassis in front view of the utility model;
[0025] Figure 8 is the structure diagram of the fixed fusing device cooperating with the chassis in rear view of the utility model;
[0026] Figure 9 is the structure diagram of the fixed fusing device cooperating with the chassis in rear view of the utility model; DETAILED DESCRIPTION
[0027] The utility model will be further explained in combination with the drawings and specific embodiments.
[0028] Referring to Figures 1-9The technical scheme adopted by the embodiment is shown as follows: an up-rotation type brick packing machine, comprising a support frame 10 and a connecting plate 20 arranged on the support frame 10, a transverse beam 30 movably clamped below the connecting plate 20, a transverse support 40 slidably arranged on the transverse beam 30, a packing head 50 fixedly arranged on the transverse support 40, upper horizontal guide rails 80 arranged on both sides of the packing head 50 on the transverse support 40, lower horizontal guide rails 70 further arranged on the transverse support 40, longitudinal guide rails 60 arranged between both ends of the lower horizontal guide rails 70 and both ends of the upper horizontal guide rails 80, the packing head 50 comprising a machine body 1 fixedly arranged on the transverse support 40, the machine body 1 comprising an inner plate 16 and a bottom plate 5 arranged on the bottom of the inner plate 16, a belt feeding roller frame 15 penetratingly arranged on the inner plate 16, a fixed fusing device 12 penetratingly and fixedly arranged on the inner plate 16 arranged on the top surface of the bottom plate 5, a belt conveying frame 13 with a through groove arranged between one side of the fixed fusing device 12 and the bottom end of the belt feeding roller frame 15, a friction wheel 11 driven by a servo motor and penetratingly arranged on the inner plate 16, the outer wall of the friction wheel 11 being attached to the middle section of the belt feeding roller frame 15, the fixed fusing device 12 comprising a first cylinder 121 arranged on the upper surface of the bottom plate 5 and a connecting block 900 penetratingly and fixedly arranged on the inner plate 16 and provided with a plurality of sliding grooves on the surface, a welding rack 125 movably clamped on the middle section of the telescopic rod of the first cylinder 121, the welding rack 125 being movably clamped on both sides of the connecting block 900, a second cylinder 122 arranged on the bottom plate 5, a first pressing frame 126 movably clamped on the middle section of the telescopic rod of the second cylinder 122, the middle section outer wall of the first pressing frame 126 being slidably connected with the inner wall of the sliding groove of the connecting block 900, a third cylinder 124 further arranged on the bottom plate 5, a pressing welding device movably clamped on the middle section of the telescopic rod of the third cylinder 124 and slidably connected with the inner wall of the sliding groove of the connecting block 900, the pressing welding device comprising a reversible motor 24 arranged on the bottom plate 5 and a third pressing frame 127 movably clamped on the middle section of the telescopic rod of the third cylinder 124, a friction block 21 movably clamped on the bottom of the third pressing frame 127, a moving handle 26 movably clamped on one side of the friction block 21, the other end of the moving handle 26 being sleeved on the rotating shaft of the reversible motor 24, in use, the packing head 50 is arranged on the transverse support 40 of the stacking machine, the machine body 1 is fixed on the transverse support 40 of the stacking machine, a placing plate with a through groove is arranged below the transverse support 40, a brick stack to be packed is placed on the placing plate, the position of the packing head 50 is adjusted by moving the transverse support 40 on the transverse beam 30, then the packing belt is fed into the belt feeding roller frame 15 through the top of the machine body 1, and is moved to the position between the belt feeding roller frame 15 and the friction wheel 11 driven by the servo motor, at this time, the servo motor is started to drive the friction wheel 11 to rotate, thereby moving the packing belt along the belt feeding roller frame 15,The packing tape is sent into the welding bench 125 of the fixed melting device 12 through the tape conveying frame 13, and passes through the welding bench 125. The packing tape is continuously inputted as the friction wheel 11 rotates, moves along the upper horizontal rail 80, is guided into the longitudinal rail 80 on one side from one end of the upper horizontal rail 80, moves, and finally arrives on the lower horizontal rail 70, moves along the lower horizontal rail 70, and moves upward from the longitudinal rail 80 on the other side, then reenters from the other end of the upper horizontal rail 80, is guided by the upper horizontal rail 80 to the other side of the body 1, and reenters into the body 1. At this time, the packing tape that rotates one circle is wound on the brick stack placed on the placing plate. Since the placing plate is provided with a slot, the packing tape can pass through the slot and directly contact the brick stack. The packing tape enters from the other side of the packing head. At this time, the second cylinder 122 is started, and the first pressing frame 126 is pressed downward, so that the first pressing frame 126 descends and abuts against the welding bench surface of the welding bench 125, thereby extruding and fixing the packing tape and preventing the packing tape from continuing to pass through. At the same time, the servo motor is reversed to reverse the friction wheel 11 and tighten the packing tape. Then, the servo motor is turned off to stop the friction wheel 11. At this time, the third cylinder 124 is started to drive the third pressing frame 127 to move downward, thereby synchronously driving the friction block 21 to move downward, and the forward-reverse motor 24 is started to generate rapid forward-reverse rotation and output power to the friction block 21 through the moving handle 26, so that the friction block 21 generates rapid reciprocating motion. At the same time, the welding bench of the welding bench 125 at the position corresponding to the friction block 21 can be provided with a rough anti-slip layer to prevent slipping during welding and contact the overlapping position of the packing tape to generate a large amount of heat through friction to heat and melt and weld. Then, the packing tape is cut off, and the first cylinder 121 is retracted, and the second cylinder 122 and the third cylinder 124 are synchronously raised, so that the first pressing frame 126 and the third pressing frame 127 no longer extrude the packing tape, the middle part of the welding bench 125 swings along the connecting block 900, thereby lifting the welding bench position upward, so that the welded packing tape is separated from the welding bench 125 and bound to the brick stack that needs to be packed. At this time, the single packing tape packing of the brick stack is completed. The above steps are repeated multiple times at different positions to wind multiple packing tapes on the brick stack. At the same time, the packing head is driven by the servo motor to drive the friction wheel 11, the high torque and high precision of the servo motor ensure the precision and tightening force of the conveying packing tape, facilitate forward-reverse rotation, and drive the fixed melting device 12 with lower precision requirement through the cylinder and a single forward-reverse motor 24. The cylinder ensures the fixation of the packing tape, simplifies the overall structure, and ensures the friction welding effect through the high-torque forward-reverse motor 12. While maintaining the accurate laying and welding of the packing tape by the packing head, the overall structure is relatively simple, and maintenance is more convenient.
[0029] The fourth cylinder 123 is arranged on the chassis 5, and the middle segment of the telescopic rod of the fourth cylinder 123 is movably clamped with a second pressing frame 128, and the middle segment of the outer wall of the second pressing frame 128 is slidably connected with the inner wall of the sliding groove of the connecting block 900. Before the packing belt is backflowed and welded, the fourth cylinder 123 can be started to drive the second pressing rod 128 to move downward, so that the backflowed packing belt is further fixed, and the packing belt is fixed in a small range interval in cooperation with the first pressing frame 126, so that the slipping phenomenon generated during hot melting welding is avoided, the packing belt is more easily welded, and the welding effect is better.
[0030] The fifth cylinder 23 is arranged on the chassis 5, and the end of the telescopic rod of the fifth cylinder 23 is provided with a guide plate 129 which can extend above the welding table of the welding table frame 125. When the packing belt is fed into the welding table frame 125, the fifth cylinder 23 can push out the guide plate to guide the entering packing belt, so that the packing belt can more conveniently pass through the welding table frame and prevent collision with other structures in the welding table frame 125 and cannot be output from the packing head. Meanwhile, the guide plate 129 is used for layering the backflowed packing belt, preventing abnormal stacking of the packing belt, and the fifth cylinder 23 is retracted to make the guide plate 129 retract, so that the welding process is not affected.
[0031] The top of the belt feeding roller frame 15 is further provided with a belt guide piece 14, which is conducive to guiding the input packing belt, so that the packing belt can be better guided into the belt feeding roller frame 15 and the friction wheel 11.
[0032] The front bottom of the machine body 1 is further movably clamped with a cover plate 4, which is conducive to covering the cover plate 4 to protect the internal structure of the machine body 1 during use.
[0033] The top of the machine body 1 is provided with a transverse rail frame 3 for transverse movement on the support 40, which is conducive to transverse movement of the machine body 1 after being installed on the support 40, so that the position of the packing head can be quickly adjusted.
[0034] The bottom of the chassis 5 is further provided with a belt backflow pipe 17 below the belt conveying frame 13, which is conducive to better positioning of the backflowed packing belt after passing through the stacking frame and inputting the packing belt into the welding table frame 125, so that the packing belt is more evenly layered, and abnormal stacking of the packing belt is prevented.
[0035] The bottom surface of the third pressing frame 127 is provided with a cutter 22 on the side close to the belt entering end of the friction block 21, which is conducive to automatic cutting of the packing belt after welding, and the degree of automation is higher.
[0036] The lower cross guide rail 70 is provided with a cylinder guide rail 90 fixedly connected with the transverse moving support 40, and the lower cross guide rail 70 can slide relative to the transverse moving support 40 through the cylinder guide rail 90, which is beneficial to control the extension and retraction of the lower cross guide rail 70 through the cylinder guide rail 90, and when the transverse moving beam 30 drives the transverse moving support 40 to rotate, the lower cross guide rail 70 is retracted so as not to be clamped into the brick pile to cause the phenomenon of obstruction and unable to rotate, and the use is more convenient.
[0037] The transverse moving support 40 is further provided with a ribbon winding frame 100 at the bottom, which is beneficial to better place and collect the packing ribbon.
[0038] The utility model discloses a working principle: the utility model uses, and the packing machine head 50 is installed to the transverse support 40 of the stacking machine, and makes the machine body 1 fixed on the transverse support 40 of the stacking machine, and the placement board with the through slot is placed below the transverse support 40, and the brick stack that needs to be packed is placed on the placement board, and the position of packing machine head 50 is adjusted through the transverse support 40 on the transverse beam 30, and then the packing belt can be sent into the tape feeding cylinder frame 15 through the top of machine body 1, and is moved to the tape feeding cylinder frame 15 and the friction wheel 11 driven by servo motor, at this moment, the servo motor can be started to drive the friction wheel 11 to rotate, and then the packing belt is moved along the tape feeding cylinder frame 15, and is sent into the welding gantry 125 position of fixed fusing device 12 through the belt conveying frame 13, and passes through the welding gantry 125, and the packing belt is continuously inputted along with the rotation of the friction wheel 11, and is moved along the upper horizontal rail 80, and is guided to be sent into the longitudinal rail 80 of one side from one end of the upper horizontal rail 80, and then moves, and finally reaches the lower horizontal rail 70, and moves along the lower horizontal rail 70 and moves upwards from the longitudinal rail 80 of the other side, and then reenters from the other end of the upper horizontal rail 80, and is guided to the other side of machine body 1 by the upper horizontal rail 80, and reenters into the machine body 1, at this moment, the packing belt that rotates a circle can be wound on the brick stack placed on the placement board, since the placement board is provided with the slot, and then the packing belt can pass through the slot and directly contact the brick stack, and the packing belt enters from the other side of the packing machine head, at this moment, the second cylinder 122 can be started, and the first pressing frame 126 is pressed down, and the first pressing frame 126 is lowered and abuts on the welding table surface of the welding gantry 125, and then the packing belt is extruded and fixed, and prevents the packing belt from continuing to pass through, simultaneously, the servo motor is reversed, the friction wheel 11 is reversed, and the packing belt is tightened, then the servo motor is turned off, and the friction wheel 11 stops rotating, at this moment, the third cylinder 124 is started, and the third cylinder 124 drives the third pressing frame 127 to move downwards, and then synchronously drives the friction block 21 to move downwards, and the forward and reverse motor 24 is started, and generates fast forward and reverse and outputs power to the friction block 21 through the moving handle 26, and the friction block 21 generates fast reciprocating motion, simultaneously, the welding table of the welding gantry 125 can be provided with rough anti -skid layer on the corresponding position of the friction block 21, prevents the slip when welding, and contacts the overlapping position of the packing belt and generates a large amount of heat through friction and hot melts and welds, then the packing belt is cut off, and the first cylinder 121 is retracted, and the second cylinder 122 and the third cylinder 124 are raised, and the first pressing frame 126 and the third pressing frame 127 do not extrude on the packing belt any more, and the middle section of the welding gantry 125 swings along the connecting block 900, and then the welding table position is lifted upwards, thereby the welded packing belt is separated from the welding gantry 125 and is bound on the brick stack that needs to be packed, at this moment, the single packing belt packing of the brick stack is completed, and the above steps are repeated in different positions, and a plurality of packing belts can be wound on the brick stack, simultaneously,The baling machine head drives the friction wheel 11 through a servo motor, guarantees the precision and tightening force of the conveying baling belt through the high torque and high precision of the servo motor, facilitates forward and reverse rotation, drives the fixed fusing device 12 with low precision requirement through a single forward and reverse motor 24 and a cylinder, guarantees the fixation of the baling belt through the cylinder, simplifies the overall structure, guarantees the friction welding effect through the high-torque forward and reverse motor 12, keeps the baling machine head accurately laying and welding the baling belt, and makes the overall structure simple and convenient to maintain,
[0039] The utility model discloses a structure of product, the model of each element is not the content of the utility model protection, is also the known art, and the element of market as long as can realize the function of the utility model above can be as a kind of selection application.Therefore the model of element and the parameter are not detailed in the utility model.The contribution of the utility model is that each element is combined scientifically together.
[0040] The basic principle and main features of the utility model and its advantages are shown and described above, and the skilled person in the art should understand that the utility model is not limited to the above examples, and the above examples and descriptions are only illustrative of the principle of the utility model, various changes and improvements can be made to the utility model without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed, and the scope of protection of the utility model is defined by the appended claims and their equivalents.The utility model is not detailed, and all are the known technology of the skilled person in the art.
Claims
1. A top-rotating brick stacking machine, comprising a support frame (10) and a connecting plate (20) disposed on the support frame (10), a transverse beam (30) movably engaged below the connecting plate (20), a transverse support (40) slidably disposed on the transverse beam (30), a baling head (50) fixedly disposed on the transverse support (40), upper transverse guide rails (80) disposed on both sides of the baling head (50) on the transverse support (40), a lower transverse guide rail (70) disposed at the bottom of the transverse support (40), and a longitudinal guide rail (60) disposed between the two ends of the lower transverse guide rail (70) and the two ends of the upper transverse guide rail (80), characterized in that: The packing machine head (50) includes a machine body (1) fixedly arranged on the transverse moving support (40), the machine body (1) includes an inner plate (16) and a bottom plate (5) arranged at the bottom of the inner plate (16), a tape feeding roller frame (15) is arranged through the inner plate (16), the top surface of the bottom plate (5) is provided with a fixed fusing device (12) arranged through and fixedly arranged on the inner plate (16), a tape conveying frame (13) with a through groove is arranged between one side of the fixed fusing device (12) and the bottom end of the tape feeding roller frame (15), a friction wheel (11) driven by a servo motor is further arranged through the inner plate (16), the outer wall of the friction wheel (11) is attached to the middle section of the tape feeding roller frame (15), the fixed fusing device (12) includes a first cylinder (121) arranged on the upper surface of the bottom plate (5) and a connecting block (900) arranged through and fixedly arranged on the inner plate (16) and provided with a plurality of sliding grooves on the surface, the middle section of the telescopic rod of the first cylinder (121) is movably clamped with a welding rack (125), the welding rack (125) is movably clamped on both sides of the connecting block (900), a second cylinder (122) is arranged on the bottom plate (5), the middle section of the telescopic rod of the second cylinder (122) is movably clamped with a first pressing frame (126), the middle section of the outer wall of the first pressing frame (126) is movably connected with the inner wall of the sliding groove of the connecting block (900), a third cylinder (124) is further arranged on the bottom plate (5), the middle section of the telescopic rod of the third cylinder (124) is movably clamped with a pressing welding device movably connected with the inner wall of the sliding groove of the connecting block (900).
2. A top rotary type brick molding machine according to claim 1, wherein: A fourth cylinder (123) is further arranged on the bottom plate (5), the middle section of the telescopic rod of the fourth cylinder (123) is movably clamped with a second pressing frame (128), the middle section of the outer wall of the second pressing frame (128) is movably connected with the inner wall of the sliding groove of the connecting block (900).
3. A top rotary type brick molding machine according to claim 1, wherein: The pressing welding device includes a forward and reverse motor (24) arranged on the bottom plate (5) and a third pressing frame (127) movably clamped with the middle section of the telescopic rod of the third cylinder (124), a friction block (21) is movably clamped at the bottom of the third pressing frame (127), one side of the friction block (21) is movably clamped with a moving handle (26), the other end of the moving handle (26) is sleeved on the rotating shaft of the forward and reverse motor (24).
4. A top rotary type brick molding machine according to claim 1, wherein: A fifth cylinder (23) is further arranged on the bottom plate (5), a guide plate (129) capable of extending above the welding table of the welding rack (125) is arranged on the end of the telescopic rod of the fifth cylinder (23).
5. A top rotary type brick molding machine according to claim 1, wherein: A tape guide piece (14) is further arranged at the top of the tape feeding roller frame (15).
6. A top rotary type brick molding machine according to claim 1, wherein: A cover plate (4) is further movably clamped at the bottom of the front surface of the machine body (1).
7. A top rotary type brick molding machine according to claim 1, wherein: A transverse moving rail frame (3) for transverse moving on the support (40) is arranged at the top of the machine body (1).
8. A top rotary type brick molding machine according to claim 1, wherein: A tape return pipe (17) is further arranged below the tape conveying frame (13) on the bottom plate (5).
9. A top rotary type brick molding machine according to claim 3, wherein: A cutter (22) is arranged on the bottom surface of the third pressing frame (127) on the side close to the tape entering end of the friction block (21).
10. A top rotary type brick molding machine according to claim 1, wherein: The lower cross rail (70) is provided with a cylinder guide rail (90) fixedly connected with the horizontal moving support (40) at both ends, and the lower cross rail (70) can slide relative to the horizontal moving support (40) through the cylinder guide rail (90).
11. A top rotary type brick molding machine according to claim 1, wherein: The horizontal moving support (40) is further provided with a belt winding frame (100) on the bottom.