Material beating equipment
By designing multiple independent shooting mechanisms and coordinating control through controllers, the existing automatic shooting equipment is solved for complex transmission and cannot meet the needs of special scenes, and efficient and flexible shooting operations are achieved.
Patent Information
- Application Number
- CN202421725769.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-20
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-20
AI Technical Summary
The transmission process of existing automatic picking equipment is complex and inefficient, and cannot meet the needs of single or asynchronous picking motion in special scenarios.
The design of a slap device consisting of two or more slap mechanisms. Each slap mechanism is equipped with a driving motor and a swing shaft. The driving of the slap parts is realized through a simple transmission structure, and the coordinated control of multiple working modes is realized through the controller.
It improves transmission efficiency and meets the needs of various working modes in special scenarios, including simultaneous work, alternating work and interval work, improving the flexibility and efficiency of the shooting equipment.
Smart Images

Figure CN222941850U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of clothing, and in particular relates to a material-beating device. Background Art
[0002] When making down jackets or cotton jackets, the clothes need to be filled with warm filling materials such as down and / or cotton, so that the clothes have higher thermal insulation performance. However, when the filling materials are filled into the clothes, the filling materials are often unevenly distributed. Therefore, after the filling materials are filled, they need to be patted to make the filling materials more evenly distributed.
[0003] In the traditional way, people usually hold a clapboard and manually complete the material shaving. Obviously, this method is inefficient and a burden for workers. In order to replace manual shaving, automatic shaving equipment has begun to be widely used.
[0004] In the prior art, the automatic material-beating equipment generally includes a clapper board symmetrically arranged on the left and right sides and a driving structure for driving the clapper board to move. In addition, the driving structure is also connected to the symmetrically arranged clapper board in a transmission manner, so as to ensure that the symmetrically arranged clapper board can work in coordination. The automatic material-beating equipment in the prior art can refer to: Application No. 202210096045.8, and the name is, a fully automatic cotton lint smoothing machine.
[0005] However, the applicant has found in practice that the above-mentioned automatic filming equipment has some shortcomings, which are mainly reflected in:
[0006] First, a driving structure is used to drive the clappers on both sides to move at the same time, which requires the configuration of a complex transmission mechanism, resulting in a more complicated transmission process and lower efficiency;
[0007] Second, since the clappers on both sides are driven by a driving structure, when the driving structure is working, the clappers on both sides will be driven at the same time. In some special usage scenarios, the user may only want one of the clappers on both sides to move (i.e., single clapper movement), or want one of the clappers on both sides to work first and the other clapper to work later (i.e., asynchronous movement). Obviously, in these usage scenarios, since conventional automatic clapper equipment can only drive the clappers on both sides to move at the same time, it cannot meet the above usage needs. Utility Model Content
[0008] The utility model provides a material shooting device, which, on the first hand, aims to solve the problem that the automatic material shooting device in the prior art uses a complex transmission mechanism for transmission, the transmission process is complex, and the transmission efficiency is also low; on the second hand, aims to solve the problem that the automatic material shooting device in the prior art cannot meet the requirements of use in special scenarios.
[0009] In order to achieve the above-mentioned purpose, the utility model provides a material shooting device, including:
[0010] Two or more filming agencies;
[0011] The material-beating mechanism comprises a driving motor, a swing shaft and a material-beating component, wherein the driving motor is in transmission connection with the swing shaft, the driving motor can drive the swing shaft to make reciprocating motion, and the material-beating component is installed on the swing shaft;
[0012] The controller, the driving motors of each material-shooting mechanism are respectively connected to the controller for communication.
[0013] In this solution, each material-beating mechanism is equipped with a driving motor. Each driving motor can drive the corresponding material-beating component through a simple transmission structure, which has a higher transmission efficiency than the driving through a complex transmission mechanism in the prior art.
[0014] In this solution, a controller is used to control two or more material-shooting mechanisms to work in coordination. The controller can control the material-shooting mechanisms to realize multiple working modes such as simultaneous working, alternating working or intermittent working, thereby solving the problem in the prior art that conventional dynamic material-shooting equipment cannot meet the needs of special scenarios.
[0015] Preferably, in order to realize automatic driving of the clothes, automatic material patting and automatic completion of material patting of the clothes are realized. The present solution further comprises a conveying mechanism, the material patting mechanism is arranged on both sides of the conveying mechanism; the conveying mechanism is respectively connected to the controller for communication.
[0016] This solution configures a conveying mechanism to drive the clothes. The clothes can be driven by the conveying mechanism to move to the working area of the material-beating mechanism, and after the material-beating is completed, the clothes are driven to move out of the working position of the material-beating mechanism. The automatic driving of the clothes by the conveying mechanism can realize automatic and continuous processing of the clothes, which is more efficient than manual picking and placing of clothes. Secondly, the conveying mechanism can be controlled to work or stop by the controller, thereby avoiding the problem of the clothes being damaged when the conveying mechanism transports the clothes while the material-beating mechanism is beating the clothes.
[0017] Preferably, in order to solve the problem of the center of gravity shifting due to the material patting mechanism being arranged on one side and also to achieve a better material patting effect, the material patting mechanisms described in this scheme 1 are two, and the two material patting mechanisms are symmetrically arranged on both sides of the conveying mechanism.
[0018] In the first solution, two symmetrical material-beating mechanisms are provided, so that when the material-beating device is working, both sides of the material-beating device are subjected to force, thus solving the problem of center of gravity offset. In addition, since the symmetrically provided material-beating mechanisms can process the clothes, the beating forces on the left and right sides of the clothes are roughly the same. Compared with using a single-sided material-beating mechanism, the filling material inside the clothes will not move to one side, and the filling material is more uniform.
[0019] Preferably, in order to solve the problem of interference between the material-beating components on both sides, the material-beating components on both sides are arranged in a staggered distribution.
[0020] In this solution, since the material-beating mechanism is arranged on both sides, the material-beating parts on both sides may collide and scratch. However, in this solution, the material-beating parts are staggered, so that the material-beating parts on both sides can be staggered, thereby solving the problem of possible interference between the material-beating parts on both sides.
[0021] Preferably, in order to achieve a better material-beating effect, the swing shaft described in this solution is provided with two or more material-beating components.
[0022] By configuring two or more material-beating components, this solution obviously has a larger working area of the material-beating mechanism than a single material-beating component, and can adapt to more clothes and a larger fabric area. Since it can adapt to more clothes and a larger fabric area, the material-beating effect of clothes is better.
[0023] Preferably, in order to achieve a better material-beating effect, the swing shaft described in the second solution is provided with two or more types of material-beating components.
[0024] In the second solution, two or more types of patting components are used, and compared with a single type of patting component, the problem of missing patting areas on the clothes caused by a single type of patting component will not occur. Therefore, two or more types of patting components work together to achieve a better patting effect.
[0025] Preferably, in order to realize the installation of the material-beating component on the swing shaft, the swing shaft in this solution is connected to the material-beating component through a fixing member.
[0026] This solution is connected to the material-beating component through a fixing piece, so that the swing shaft and the material-beating component are stably fixed.
[0027] Preferably, in order to facilitate the installation, maintenance and replacement of the material-beating components, the fixing member described in this solution is detachably connected to the swing shaft.
[0028] This solution is connected to the swing shaft by a detachable connection between the fixing member and the swing shaft, and when maintenance or replacement is required, only the fixing member and the swing shaft need to be disassembled. At the same time, when the material-shooting component needs to be installed on the swing shaft, the fixing member can be directly installed on the swing shaft.
[0029] In order to solve the problem of sliding between the swing shaft and the fixing member when the swing shaft reciprocates, the fixing member of the present solution is configured with a polygonal hole, and the cross section of the swing shaft is polygonal, and the polygonal hole is adapted to the swing shaft.
[0030] In this solution, the polygonal hole and the polygonal shaft are adapted to each other, and the polygonal hole and the polygonal shaft are adapted to each other to achieve mutual limitation. Therefore, compared with the use of a cylindrical shaft, the polygonal shaft will not slide. The problem of sliding between the cylindrical shaft and the circular hole is solved.
[0031] Preferably, in order to drive the swing shaft to reciprocate, the drive motor in this solution is connected to the swing shaft via an eccentric swing structure.
[0032] Preferably, in order to realize transmission, the eccentric swinging structure described in this scheme includes an eccentric shaft, a transmission member and a connecting member, the eccentric shaft is installed on the output shaft of the driving motor, and the connecting member is fixedly connected to the swinging shaft; the two ends of the transmission member are rotatably connected to the eccentric shaft and the connecting member respectively.
[0033] The beneficial effects of the utility model are as follows: first, each material-beating mechanism is equipped with a driving motor. Each driving motor can drive the corresponding material-beating component through simple transmission, which has higher transmission efficiency than the driving through complex transmission mechanisms in the prior art.
[0034] Second, by controlling two or more material-shooting mechanisms to work in coordination through the controller, the controller can control the material-shooting mechanisms to realize multiple working modes such as simultaneous working, alternating working or intermittent working, thus solving the problem that conventional dynamic material-shooting equipment in the prior art cannot meet the requirements of special scenarios. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 It is a structural diagram of the filming equipment.
[0036] Figure 2 It is a structural diagram of the material shooting mechanism.
[0037] Figure 3 A schematic diagram of the structure of the fixing parts.
[0038] Figure 4 It is a structural schematic diagram of the eccentric swing structure.
[0039] Figure 5 It is a connection diagram of the eccentric shaft, transmission parts and connecting parts.
[0040] Figure 6 This is a schematic diagram of the first type of material-shooting component in Example 2.
[0041] Figure 7 This is a schematic diagram of the second material shooting component in Example 2.
[0042] Figure 8 Schematic diagram of the staggered material-shooting mechanism in Example 3.
[0043] The accompanying drawings include: frame 1, conveying device 2, material-shooting mechanism 3, swing shaft 31, material-shooting component 32, connecting column 321, material-shooting block 322, material-shooting rod 323, connecting rod 324, fixing part 33, constraint hole 331, opening groove 332, fixing hole 333, eccentric swinging structure 34, eccentric shaft 341, retaining ring 341a, transmission part 342, mounting component 343, connecting part 344, driving motor 35. DETAILED DESCRIPTION
[0044] In order to make the purpose, technical solutions and advantages of the embodiments more clear, the utility model is further described in detail below in conjunction with the accompanying drawings and embodiments. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present disclosure. Instead, they are only examples of devices and methods consistent with some aspects of the present disclosure as detailed in the attached claims.
[0045] In the present disclosure, unless otherwise stated, the directional words used, such as "inside" and "outside", are defined according to the corresponding parts' own contours. The terms used in the present disclosure, such as "first" and "second", etc., are used to distinguish one element from another element and do not have order and importance. Example 1
[0046] Basically as attached Figure 1 As shown, a material beating device is used to automatically beat the clothes after the filling material is loaded into the clothes, so that the filling material inside the clothes is more evenly distributed and the clothes are smoother. The filling material includes but is not limited to down and cotton.
[0047] The material-shooting device in the embodiment of the present disclosure specifically includes a frame 1, a conveying device 2, a material-shooting mechanism 3 and a controller.
[0048] like Figure 1As shown, in the embodiment of the present disclosure, the conveying device 2 is installed on the frame 1, and the frame 1 can be a frame formed by a combination of a plurality of columns and a plurality of beams, and the frame 1 is made of steel as a whole. The conveying device 2 is preferably a conveyor belt, and the conveyor belt is preferably arranged in a horizontal state. The conveying device 2 can be installed on the frame 1 by welding or configuring fasteners, so that the frame 1 stably supports the conveying device 2. The frame 1 serves as the installation base of the conveying device 2, and the clamping is more stable.
[0049] The conveyor belt in the embodiment of the present disclosure can specifically directly adopt the conventional conveyor belt in the prior art, and the conveyor belt mainly includes a power motor, a roller and a belt. There are two or more rollers, and at least one roller is provided at each of the head and tail ends of the conveyor belt. The roller is rotatably mounted on the frame 1 by configuring a bearing. The roller located at the head end or the tail end is connected to the output shaft of the power motor, and the power motor can drive the roller to rotate. The belt is annular and is arranged around the roller. When the power motor is working, the power motor drives the roller to rotate, and the roller then drives the belt to rotate accordingly. Clothes can be placed on the upper surface of the belt so that the clothes can be driven to move by the belt.
[0050] It should be noted that in addition to the above-mentioned structure, the conveyor belt also needs to be equipped with other parts. However, since the structure of the conveyor belt is a prior art, the more specific structure and more specific installation method of the conveyor belt can refer to the conveyor belt in the prior art, so the specific structure and installation method of the conveyor belt are not described in more detail in the embodiments of the present disclosure.
[0051] In the embodiment of the present disclosure, it is preferred that two material shooting mechanisms 3 are provided, such as Figure 1 As shown, the two material-snapping mechanisms 3 are symmetrically arranged on the left and right sides of the conveying device 2 , that is, the two material-snapping mechanisms 3 are respectively arranged on the left and right sides of the conveying direction of the conveying device 2 .
[0052] Take an application scenario as an example: when it is necessary to beat the clothes, the clothes are placed on the surface of the conveying device 2, and the conveying device 2 can convey the clothes to move. When the clothes on the top of the conveying device 2 move to the working position of the beating mechanism 3, the beating mechanism 3 beats the clothes, so that the filling material inside the clothes is more uniform and flat during the beating process.
[0053] It should be noted that: there are two material-shooting mechanisms 3 disclosed in the embodiment of the present disclosure, but obviously, the number of material-shooting mechanisms 3 is not limited to two, and the number of material-shooting mechanisms 3 can also be 3, 4, 5, etc. When the number of material-shooting mechanisms 3 exceeds two, the material-shooting mechanisms 3 can be installed in sequence along the conveying direction of the conveying device 2.
[0054] like Figure 2As shown, the material-snapping mechanism 3 in the embodiment of the present disclosure specifically includes a driving motor 35, a swing shaft 31, an eccentric swing structure 34 and a material-snapping component 32. The swing shaft 31 is mounted on the frame 1, and can be rotatably mounted through a bearing seat. The bearing seat is fixed by welding or fixedly mounted on the frame 1 with fasteners. When the swing shaft 31 is mounted on the bearing seat, the swing shaft 31 can rotate in the rotating shaft seat. When the swing shaft 31 is mounted on the frame 1, the swing shaft 31 is parallel to the conveying direction of the conveying mechanism. In the embodiment of the present disclosure, the material-snapping component 32 is further fixedly mounted on the swing shaft 31 through a fixing member 33, so when the swing shaft 31 performs reciprocating motion, the swing shaft 31 performs a swinging motion accordingly. In the embodiment of the present disclosure, the driving motor 35 is also connected to the frame 1. The output shaft of the driving motor 35 is transmission-connected to the swing shaft 31 through the eccentric swing structure 34.
[0055] Take an application scenario as an example: when it is necessary to make the material-beating component 32 perform a beating motion. The driving motor 35 drives the swing shaft 31 to reciprocate through the eccentric swing structure 34. When the swing shaft 31 reciprocates, since the material-beating component 32 is installed on the swing shaft 31, the material-beating component 32 can reciprocate with the swing shaft 31. After the reciprocating swing shaft 31 acts on the clothes, the filling material is flattened.
[0056] In order to realize the connection between the material-beating component 32 and the swing shaft 31, as shown in FIG. Figure 3 As shown, the fixing member 33 in the embodiment of the present disclosure is constructed with a constraint hole 331, and the constraint hole 331 is preferably a polygonal hole, and the inside of the polygonal hole can accommodate the swing shaft 31, and the polygonal hole can be a quadrilateral hole, a pentagonal hole, a hexagonal hole or a heptagonal hole, etc. At the same time, it is also preferred to set the swing shaft 31 as a polygonal axis, and the cross-section of the polygonal axis is a polygon, for example: a quadrilateral, a pentagon, a hexagon or a heptagon, etc. When the polygonal axis is accommodated in the polygonal hole, the polygonal axis and the polygonal hole limit each other, so as to achieve a stable connection between the fixing member 33 and the swing shaft 31. The material-shooting component 32 can be directly fixed to the fixing member 33 by welding or configuring fasteners.
[0057] At the same time, in the embodiment of the present disclosure, the fixing member 33 is preferably detachably connected to the swing shaft 31. When implemented, an opening slot 332 is configured on the polygonal hole, and fixing holes 333 are configured on the side walls on both sides of the opening slot 332. Figure 3As shown. Therefore, when the polygonal hole needs to be stably connected to the swing shaft 31, it is only necessary to use bolts to tighten the side walls on both sides of the opening slot 332, and the width of both sides of the opening slot 332 is reduced, and the polygonal hole can hold the swing shaft 31 tightly. When the polygonal hole needs to be disengaged from the swing shaft 31, it is only necessary to remove the bolts from the fixing hole 333, and the width of both sides of the opening slot 332 is automatically expanded, the polygonal hole and the swing shaft 31 are loosened, and the fixing member 33 and the swing shaft 31 can be disengaged.
[0058] It should be noted that: in the embodiment of the present disclosure, the swing shaft 31 is set as a polygonal shaft, so when the polygonal hole and the polygonal shaft are adapted, mutual limitation is achieved between the polygonal hole and the swing shaft 31, the swing shaft 31 is not easy to slide inside the polygonal hole, and the connection between the fixing part 33 and the swing shaft 31 is more tightly.
[0059] It should be noted that: in the embodiment of the present disclosure, the swing shaft 31 is set as a polygonal shaft, but obviously, in some other embodiments, the swing shaft 31 can also be a cylindrical shaft. At the same time, the constraint hole 331 can also be a circular hole. The cylindrical shaft and the circular hole are adapted to be installed.
[0060] In the embodiment of the present disclosure, the material-beating component 32 for beating clothes is a material-beating plate. The material-beating plate is mounted on the fixing member 33 by welding or configuring fasteners. The material-beating plate is in contact with the clothes, and the filling material inside the clothes is distributed more evenly, and the clothes are smoother. At the same time, Figure 2 As shown, in the embodiment of the present disclosure, two or more fixing members 33 are preferably arranged on the swing shaft 31, and each fixing member 33 is connected to a material beating member 32. By beating the clothes with two or more material beating members 32, the filling material is smoothed better and more uniformly.
[0061] Since the two material-beating mechanisms 3 are symmetrically arranged on both sides of the conveying device 2, in order to avoid collision or scratching of the material-beating components 32 in the material-beating mechanisms 3 on both sides, the material-beating components 32 on both sides are staggered in the embodiment of the present disclosure. The staggered material-beating components 32 can avoid each other, so that the material-beating components 32 on both sides will not collide or scratch each other.
[0062] like Figure 2 As shown, the output shaft of the driving motor 35 in the embodiment of the present disclosure is connected to the swing shaft 31 through the eccentric swing structure 34. The eccentric swing structure 34 specifically includes an eccentric shaft 341, a transmission member 342, a connecting member 344 and a mounting member 343, as shown in FIG. Figure 4 and Figure 5As shown. The mounting component 343 is fixedly welded or configured with fasteners and mounted on the frame 1. The drive motor 35 is fixedly mounted on the mounting component 343, and the mounting component 343 can be fixedly mounted by welding. The mounting component 343 is in the shape of a U-shaped plate, and the output shaft of the drive motor 35 is arranged through the mounting component 343, so that the output shaft can remain stable. At the same time, a bearing is provided at the connection between the output shaft and the mounting component 343, so as to ensure that the output shaft can be driven to rotate normally while being stably mounted.
[0063] In the embodiment disclosed herein, an eccentric shaft 341 is fixedly mounted on the output shaft of the driving motor 35. When the driving motor 35 is working, the eccentric shaft 341 deviates from the center of the output shaft and rotates eccentrically. A bearing is sleeved and mounted on the surface of the eccentric shaft 341, and a rotating opening is provided at one end of the connecting member 344, in which a bearing can be accommodated, so that one end of the connecting member 344 is rotatably connected to the eccentric shaft 341. In order to avoid movement and misalignment of the connecting member 344 when the connecting member 344 is installed on the eccentric shaft 341. In the embodiment disclosed herein, preferably, retaining rings 341a are fixedly mounted on both sides of the connection between the connecting member 344 and the eccentric shaft 341.
[0064] In the embodiment of the present disclosure, the connecting member 344 is installed on the swing shaft 31. When implemented, it can be stably connected to the swing shaft 31 by configuring the fixing hole 333. At the same time, a rotating shaft is configured on the connecting member 344, and a rotating shaft hole is provided at the other end of the transmission member 342. The rotating shaft hole is adapted to the rotating shaft to realize the rotatable connection between the transmission member 342 and the connecting member 344.
[0065] Take an application scenario as an example: when the output shaft of the driving motor 35 rotates, the eccentric shaft 341 installed on the output shaft is driven to rotate eccentrically. Since the transmission member 342 is installed on the eccentric shaft 341, the transmission member 342 can rotate eccentrically following the eccentric shaft 341. Since the transmission member 342 and the connecting member 344 are in a rotatable connection state, the eccentrically rotating transmission member 342 drives the connecting member 344 to swing back and forth. Finally, since the connecting member 344 is in a connected state with the swing shaft 31, the swinging connecting member 344 can drive the swing shaft 31 to swing accordingly.
[0066] In the embodiment of the present disclosure, the conveying device 2 and the material-snapping mechanism 3 symmetrically arranged on both sides of the conveying device 2 are both connected to the controller for communication, and the controller is not shown in the figure. During implementation, the electrical connection can be made directly through the circuit, or the communication connection can be made through a wireless connection. The controller can be a PLC control module, a single-chip microcomputer control module, or an industrial computer control module in the prior art.
[0067] Since the slapping mechanisms 3 symmetrically arranged on both sides are electrically connected to the controller, the slapping mechanisms 3 on both sides can be controlled through the control program of the controller. For example, when the slapping mechanisms 3 on both sides need to work at the same time, the slapping mechanisms 3 on both sides can be controlled by the controller to work at the same time; when the slapping mechanisms 3 on both sides need to work alternately at the same time, the slapping mechanisms on both sides can be controlled by the controller to work alternately; when the slapping mechanisms 3 on both sides need to work alternately in front and back, the slapping mechanisms 3 on both sides can be controlled by the controller to work alternately.
[0068] In addition to the above technical effects, in the embodiment of the present disclosure, the driving motor 35 can drive the material-snapping component 32 to work through simple transmission. At the same time, the driving motors 35 of the material-snapping mechanisms 3 on both sides are controlled by the controller to work. Obviously, compared with the complex transmission method in the prior art, the transmission efficiency is higher and the structure is simpler.
[0069] It should be noted that: since the controller is also connected to the conveying device 2, when the patting mechanism is patting the clothes, the conveying device 2 can be in a stopped moving state under the control of the controller, thereby solving the problem that the conveying device 2 drives the clothes to move, while the patting mechanism 3 pats the clothes, and the clothes are damaged under the dual effects of the conveying device 2 and the patting mechanism 3. When the patting mechanism stops patting the clothes, the conveying device 2 conveys the clothes to move under the control of the controller, so that the clothes are continuously moved to achieve automated production.
[0070] The following is a further detailed description through a specific implementation method: when it is necessary to pat the clothes, the clothes are placed on the conveying device 2, and the conveying device 2 transports the clothes to the working position of the patting mechanism 3. When the clothes arrive at the working position of the patting mechanism 3, the patting mechanism 3 works and pats the clothes.
[0071] The material-patting mechanism 3 and the conveying device 2 work alternately under the control of the controller, that is, when the material-patting component 32 of the material-patting mechanism 3 is separated from the clothes, the controller controls the conveying device 2 to convey the clothes forward; when the material-patting component 32 of the material-patting mechanism 3 is in contact with the clothes or is about to be in contact with the clothes, the controller controls the conveying device 2 to stop moving the clothes.
[0072] Finally, the clothes move past the working position of the material patting mechanism 3 and are output from the outlet end of the material patting mechanism 3 . Example 2
[0073] The difference between the embodiment of the present disclosure and the embodiment 1 is that in the embodiment of the present disclosure, two or more types of material beating components 32 are arranged on each swing shaft 31. The two or more types of material beating components 32 make the filling material more uniform and the clothes smoother.
[0074] like Figure 6 As shown, the first type of the material-shooting component 32 may include a connecting column 321 and a long strip-shaped material-shooting block 322. The connecting column 321 is in a long strip shape, and the connecting column 321 is used to be fixedly connected to the fixing member 33. At the same time, a plurality of material-shooting blocks 322 are evenly arranged at the bottom of the connecting column 321. The material-shooting blocks 322 may be installed at an angle at the bottom of the connecting column 321, or the material-shooting blocks 322 may be installed at the bottom of the connecting column 321 in a horizontal and vertical manner. The connecting column 321 and the material-shooting blocks 322 are combined to form the material-shooting component 32.
[0075] like Figure 7 As shown, the second type of the material-shooting component 32 may include a connecting column 321 and an elongated material-shooting rod 323, wherein the connecting column 321 is elongated and used for being fixedly connected to the fixing member 33. At the same time, two or more elongated material-shooting rods 323 are provided. The two or more material-shooting rods 323 are arranged in parallel with the connecting column 321. A connecting rod 324 is also provided between the material-shooting rod 323 and the connecting column 321, and the connection between the material-shooting rod 323 and the connecting column 321 is realized by the connecting rod 324, so that the material-shooting rod 323 and the connecting column 321 are connected together. The connecting column 321, the material-shooting rod 323 and the connecting rod 324 are combined to form the material-shooting component 32.
[0076] It should be noted that: two types of beating material components 32 are provided in the embodiment of the present disclosure, but it is obvious that the type of the beating material component 32 can also be other types of beating material components 32 in the prior art. Example 3
[0077] The difference between the embodiment of the present disclosure and embodiment 1 is that: Figure 8 As shown, in the embodiment of the present disclosure, the material-shooting mechanisms 3 are not symmetrically arranged on both sides, but the material-shooting mechanisms 3 are staggered on both sides of the conveying mechanism. By staggered arrangement of the material-shooting mechanisms 3, compared with symmetrical arrangement of the material-shooting mechanisms 3 on both sides of the conveying device 2, the material-shooting mechanisms 3 symmetrically arranged on both sides will not interfere with each other.
[0078] The above is only an embodiment of the utility model, and the common knowledge such as the known specific structure and characteristics in the scheme is not described in detail here. It should be pointed out that for those skilled in the art, several deformations and improvements can be made without departing from the structure of the utility model, which should also be regarded as the protection scope of the utility model, and these will not affect the effect of the implementation of the utility model and the practicality of the patent. The scope of protection required by this application shall be based on the content of its claims, and the specific implementation methods and other records in the specification can be used to interpret the content of the claims.
Claims
1. A material shooting device, characterized in that: include; Two or more filming agencies; The material-beating mechanism comprises a driving motor, a swing shaft and a material-beating component, wherein the driving motor is in transmission connection with the swing shaft, the driving motor can drive the swing shaft to make reciprocating motion, and the material-beating component is installed on the swing shaft; It also includes a conveying mechanism, and the material-beating mechanism is respectively arranged on both sides of the conveying mechanism; The driving motors of the various material-shooting mechanisms are respectively connected to the controller for communication, and the conveying mechanism is connected to the controller for communication.
2. The material shooting device according to claim 1, characterized in that: The number of the material patting mechanisms is two, and the two material patting mechanisms are symmetrically arranged on both sides of the conveying mechanism.
3. The material shooting device according to claim 2, characterized in that: The material-beating parts on both sides are arranged in a staggered distribution.
4. The material shooting device according to claim 1, characterized in that: The swing shaft is provided with two or more material-beating components.
5. The material shooting device according to claim 1, characterized in that: The swing shaft is provided with two or more types of material-beating components.
6. The material shooting device according to claim 1, characterized in that: The swing shaft is connected to the material-beating component through a fixing member.
7. The material shooting device according to claim 6, characterized in that: The fixing member is detachably connected to the swing shaft; and / or; The fixing piece is configured with a polygonal hole, and the cross section of the swing shaft is polygonal, and the polygonal hole is adapted to the swing shaft.
8. The material shooting device according to claim 1, characterized in that: The driving motor is connected to the swing shaft through an eccentric swing structure.
9. The material shooting device according to claim 8, characterized in that: The eccentric swing structure comprises an eccentric shaft, a transmission member and a connecting member, wherein the eccentric shaft is mounted on the output shaft of the driving motor, and the connecting member is fixedly connected to the swing shaft; The two ends of the transmission member are rotatably connected to the eccentric shaft and the connecting member respectively.
Citation Information
Patent Citations
Full-automatic velveteen temper mill
CN114468443A