Conveying device
By using friction and guides in the conveying device, combined with the control of the drive and synchronous parts, the problem of difficult to control the discharge speed of the stamping parts is solved, and the stable and uniform transmission of the finished product is achieved.
Patent Information
- Application Number
- CN202422418855.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-09-30
AI Technical Summary
In the production of existing stamping parts, the discharge speed of stamping parts is difficult to control, resulting in the speed of the finished product being discharged too fast and easily hit the operator.
Using the design of friction and guide, friction is applied through the circumference of the first roller and the second roller, and combined with the control of the drive and synchronous members, the finished product moves at a stable speed.
Effectively control the discharge speed of stamping parts to ensure that the finished product moves stably and at a constant speed during the transmission process, and avoid hitting the operator.
Smart Images

Figure CN223250403U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of stamping equipment, and in particular to a conveying device. Background Art
[0002] Currently, in the field of stamping parts production, labor costs are increasing day by day. In order to reduce production costs, stamping lines have become an increasingly popular option. In order to increase stamping output, stamping lines usually increase the speed of product movement within the stamping line.
[0003] In existing technology, stamping parts are primarily discharged through a die core guide, making the discharge speed difficult to control. Finished parts can sometimes exit the press line at high speeds, making it easy for end-user operators to be struck by the high-speed discharge of finished parts while palletizing and boxing them. Controlling the discharge speed of stamping parts is a challenge for those skilled in the art. Utility Model Content
[0004] The present application provides a conveying device to solve the problem of how to control the discharge speed of stamping parts.
[0005] An embodiment of the present application provides a conveying device comprising a friction member and a guide member. The friction member comprises a first roller and a second roller, the first roller and the second roller being spaced apart, the circumference of the first roller corresponding to the circumference of the second roller. The guide member extends along a first direction and is disposed between the first roller and the second roller. The guide member is used to guide finished products, and the circumferences of the first roller and the second roller are configured to contact the finished products to reduce their movement speed.
[0006] Compared with the prior art, the conveying device provided in this embodiment guides the finished product along the first direction through a guide member. When the finished product moves along the first direction, the circumferential surface of the first roller and the circumferential surface of the second roller adhere to the finished product to apply friction to the finished product, thereby reducing the moving speed of the finished product to achieve the effect of controlling the discharge speed of the stamping part.
[0007] In a possible embodiment, the conveying device also includes a driving member, which includes a first motor and a second motor. The output shaft of the first motor is connected to the first roller to drive the first roller to rotate, and the output shaft of the second motor is connected to the second roller to drive the second roller to rotate.
[0008] In a possible implementation, there are a plurality of first rollers, and the plurality of first rollers are spaced apart along the first direction; there are a plurality of second rollers, and the plurality of second rollers are spaced apart along the first direction.
[0009] In a possible embodiment, the conveying device further includes a synchronization member, which includes a first synchronization belt and a second synchronization belt, wherein the first synchronization belt is used to drive the plurality of the first rollers to rotate synchronously, and the second synchronization belt is used to drive the plurality of the second rollers to rotate synchronously.
[0010] In a possible embodiment, the synchronous component further includes a first synchronous wheel and a second synchronous wheel, the first synchronous wheel is fixedly connected to the first roller, the first synchronous belt is connected to the circumference of the first synchronous wheel, the second synchronous wheel is fixedly connected to the second roller, and the second synchronous belt is connected to the circumference of the second synchronous wheel.
[0011] In a possible implementation manner, the interval between the first rollers is smaller than the length of the finished product.
[0012] In a possible embodiment, the friction member further includes a rotating shaft, a bearing and a fixed seat, the fixed seat is spaced apart from the first roller, the outer ring of the bearing is fixedly connected to the fixed seat, one end of the rotating shaft is connected to the first roller, and the other end is connected to the inner ring of the bearing.
[0013] In a possible embodiment, the guide member includes a guide plate, a guide rail is protruding from the surface of the guide plate, the guide rail extends along the first direction, and the guide rail is used to cooperate with the finished product to enable the finished product to move along the guide rail. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings in the embodiments will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0015] Figure 1 This is a schematic structural diagram of a conveying device according to an embodiment of the present application;
[0016] Figure 2 for Figure 1 A schematic structural diagram of a driving wheel of a transmission device;
[0017] Figure 3 for Figure 1 A schematic structural diagram of a driven wheel of a transmission device;
[0018] Figure 4 for Figure 1 A cross-sectional view of the conveying device along line II.
[0019] Description of main component symbols:
[0020] 1. Conveying device; 11. Friction member; 111. First roller; 1111. Driving wheel; 1112. Driven wheel; 112. Second roller; 113. Rotating shaft; 114. Bearing; 115. Fixed seat; 12. Guide member; 121. Guide plate; 122. Guide rail; 13. First direction; 14. Driving member; 141. First motor; 142. Second motor; 15. Synchronizing member; 151. First synchronous belt; 152. Second synchronous belt; 153. First synchronous wheel. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments.
[0022] Some embodiments of the present application are described in detail. In the absence of conflict, the following embodiments and features of the embodiments can be combined with each other.
[0023] Example
[0024] See also Figures 1 to 4 As shown, this embodiment provides a conveying device 1, comprising a friction member 11 and a guide member 12. The friction member 11 comprises a first roller 111 and a second roller 112, which are spaced apart from each other, with the circumference of the first roller 111 corresponding to the circumference of the second roller 112. The guide member 12 extends along a first direction 13 and is disposed between the first roller 111 and the second roller 112. The guide member 12 is used to guide the finished product. The circumference of the first roller 111 and the circumference of the second roller 112 are used to bond the finished product to reduce the moving speed of the finished product.
[0025] The conveying device 1 provided in this embodiment guides the finished product along the first direction 13 through the guide member 12. When the finished product moves along the first direction 13, the circumferential surface of the first roller 111 and the circumferential surface of the second roller 112 adhere to the finished product to apply friction to the finished product, thereby reducing the moving speed of the finished product to control the discharge speed of the stamping part.
[0026] In this embodiment, a first roller 111 is rotatably provided on one side of the finished product, and a second roller 112 is rotatably provided on the other side. When the finished product moves along the first direction 13, the circumferential surface of the first roller 111 and the circumferential surface of the second roller 112 roll along the surface of the finished product, so that the first roller 111 and the second roller 112 apply rolling friction to the finished product, thereby reducing the moving speed of the finished product to control the discharge speed of the stamping part.
[0027] In a possible embodiment, the conveying device 1 also includes a driving member 14, which includes a first motor 141 and a second motor 142. The output shaft of the first motor 141 is connected to the first roller 111 to drive the first roller 111 to rotate, and the output shaft of the second motor 142 is connected to the second roller 112 to drive the second roller 112 to rotate.
[0028] In this embodiment, the first motor 141 is used to control the rotational speed of the first roller 111, and the second motor 142 is used to control the rotational speed of the second roller 112. The output shaft speed of the first motor 141 is the same as the output shaft speed of the second motor 142, so that the rotational speed of the first roller 111 is the same as the rotational speed of the second roller 112. The finished product is subjected to the friction force between the circumference of the first roller 111 and the circumference of the second roller 112, so that the movement speed of the finished product tends to be the same as the linear velocity of the circumference of the first roller 111. Therefore, the movement speed of the finished product is controlled by the first motor 141 and the second motor 142 to control the discharge speed of the stamped part.
[0029] In a possible implementation, there are multiple first rollers 111 , which are spaced apart along the first direction 13 ; there are multiple second rollers 112 , which are spaced apart along the first direction 13 .
[0030] In this embodiment, multiple first rollers 111 are set on one side of the finished product and multiple second rollers 112 are set on the other side. The first rollers 111 correspond to the second rollers 112 one by one, so that the two sides of the finished product are evenly stressed, thereby improving the stability of controlling the moving speed of the finished product.
[0031] In a possible embodiment, the conveying device 1 further includes a synchronous member 15, which includes a first synchronous belt 151 and a second synchronous belt 152. The first synchronous belt 151 is used to drive the multiple first rollers 111 to rotate synchronously, and the second synchronous belt 152 is used to drive the multiple second rollers 112 to rotate synchronously.
[0032] In this embodiment, one first roller 111 is a driving roller 1111, and the other first rollers 111 are driven rollers 1112. A first motor 141 is in transmission connection with the driving roller 1111, and a first synchronous belt 151 drives the driven rollers 1112 to rotate synchronously. This arrangement can reduce the number of first motors 141 and the manufacturing cost of the conveyor device 1. Furthermore, the first synchronous belt 151 drives the multiple first rollers 111 to rotate synchronously, and the linear speed of the circumference of the multiple first rollers 111 is consistent, so that the finished product maintains a uniform speed during its movement along the first direction 13, thereby controlling the discharge speed of the stamped parts to remain consistent.
[0033] In a possible embodiment, the synchronizer 15 further includes a first synchronizer wheel 153 and a second synchronizer wheel, the first synchronizer wheel 153 is fixedly connected to the first roller 111, the first synchronizer belt 151 is connected to the circumference of the first synchronizer wheel 153, the second synchronizer wheel is fixedly connected to the second roller 112, and the second synchronizer belt 152 is connected to the circumference of the second synchronizer wheel.
[0034] In this embodiment, the first synchronous belt 151 is connected to the circumference of the first synchronous wheel 153. The first synchronous belt 151 drives the first synchronous wheel 153 to rotate, and the first synchronous wheel 153 drives the first roller 111 to rotate. Such a setting is conducive to the stable rotation of multiple first rollers 111.
[0035] In a possible implementation, the interval between the first rollers 111 is smaller than the length of the finished product.
[0036] In this embodiment, the finished product is in the shape of a long strip, and the length of the finished product is greater than the distance between two adjacent first rollers 111, so that during the movement, the head and tail ends of the finished product are subjected to friction, which is conducive to uniform force on the finished product, so as to control the uniform movement of the finished product and the discharge speed of the stamping part.
[0037] In a possible embodiment, the friction member 11 further includes a rotating shaft 113, a bearing 114 and a fixed seat 115, the fixed seat 115 is spaced apart from the first roller 111, the outer ring of the bearing 114 is fixedly connected to the fixed seat 115, one end of the rotating shaft 113 is connected to the first roller 111, and the other end is connected to the inner ring of the bearing 114.
[0038] In this embodiment, the structure of the fixing base 115 is configured based on the first roller 111. When the first roller 111 is a driving wheel 1111, the first roller 111 is connected to the first motor 141 via the rotating shaft 113. The first motor 141 is disposed at one end of the fixing base 115, and the first roller 111 is disposed at the other end. When the first roller 111 is a driven wheel 1112, the first roller 111 is connected to the driving wheel 1111 via the first synchronous wheel 153.
[0039] In a possible embodiment, the guide member 12 includes a guide plate 121 , a guide rail 122 protruding from a surface of the guide plate 121 , and the guide rail 122 extends along the first direction 13 . The guide rail 122 is used to cooperate with the finished product to move the finished product along the guide rail 122 .
[0040] In this embodiment, the guide plate 121 is fixedly placed on the workbench, and the guide plate 121 is arranged between the first roller 111 and the second roller 112. The guide rail 122 of the guide plate 121 cooperates with the finished product to enable the finished product to move along the guide rail 122, so that the finished product moves stably along the guide plate 121 at a set speed to control the discharge speed of the stamping part.
[0041] In summary, the conveying device 1 provided in this embodiment guides the finished product along the first direction 13 through the guide member 12. When the finished product moves along the first direction 13, the circumference of the first roller 111 and the circumference of the second roller 112 adhere to the finished product to apply friction to the finished product, thereby reducing the moving speed of the finished product to control the discharge speed of the stamping part. The conveying device 1 controls the rotation speed of the first roller 111 through the first motor 141 and the rotation speed of the second roller 112 through the second motor 142. The output shaft speed of the first motor 141 is the same as the output shaft speed of the second motor 142, so that the rotation speed of the first roller 111 is the same as the rotation speed of the second roller 112. The finished product is subjected to the friction force between the circumference of the first roller 111 and the circumference of the second roller 112, so that the moving speed of the finished product tends to be the same as the linear speed of the circumference of the first roller 111. Therefore, the moving speed of the finished product is controlled by the first motor 141 and the second motor 142 to control the discharge speed of the stamping part.
[0042] The above embodiments are only used to illustrate the technical solutions of the present application and are not intended to limit the present application. Although the present application has been described in detail with reference to the above preferred embodiments, those skilled in the art should understand that modifications or equivalent replacements of the technical solutions of the present application should not depart from the spirit and scope of the technical solutions of the present application.
Claims
1. A conveying device, characterized in that: include: The friction member includes a first roller and a second roller, wherein the first roller is spaced apart from the second roller, and a circumferential surface of the first roller corresponds to a circumferential surface of the second roller; A guide member extends along a first direction and is arranged between the first roller and the second roller. The guide member is used to guide the finished product. The circumferential surface of the first roller and the circumferential surface of the second roller are used to fit the finished product to reduce the moving speed of the finished product.
2. The conveying device according to claim 1, characterized in that: The conveying device also includes a driving member, which includes a first motor and a second motor. The output shaft of the first motor is connected to the first roller to drive the first roller to rotate, and the output shaft of the second motor is connected to the second roller to drive the second roller to rotate.
3. The conveying device according to claim 1, characterized in that: There are a plurality of first rollers, and the plurality of first rollers are arranged at intervals along the first direction. There are a plurality of second rollers, and the plurality of second rollers are arranged at intervals along the first direction.
4. The conveying device according to claim 3, characterized in that: The transmission device further includes a synchronous member, which includes a first synchronous belt and a second synchronous belt. The first synchronous belt is used to drive the plurality of first rollers to rotate synchronously, and the second synchronous belt is used to drive the plurality of second rollers to rotate synchronously.
5. The conveying device according to claim 4, characterized in that: The synchronous component also includes a first synchronous wheel and a second synchronous wheel, the first synchronous wheel is fixedly connected to the first roller, the first synchronous belt is connected to the circumference of the first synchronous wheel, the second synchronous wheel is fixedly connected to the second roller, and the second synchronous belt is connected to the circumference of the second synchronous wheel.
6. The conveying device according to claim 3, characterized in that: The interval between the first rollers is smaller than the length of the finished product.
7. The conveying device according to claim 1, characterized in that: The friction member also includes a rotating shaft, a bearing and a fixed seat. The fixed seat is spaced apart from the first roller. The outer ring of the bearing is fixedly connected to the fixed seat. One end of the rotating shaft is connected to the first roller, and the other end is connected to the inner ring of the bearing.
8. The conveying device according to claim 1, characterized in that: The guide member includes a guide plate, a guide rail is protruding from the surface of the guide plate, and the guide rail extends along the first direction. The guide rail is used to cooperate with the finished product to enable the finished product to move along the guide rail.