A discharging track for half thread screw processing of a thread rolling rod
Patent Information
- Application Number
- CN202522293851.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-30
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-10-30
AI Technical Summary
[0005]本实用新型的目的在于提供一种搓牙杆半牙螺丝加工用下料轨道,解决了无法对金属碎屑和杂质进行清理的问题
[0011]This utility model discloses a feeding track for machining semi-threaded screws, comprising a support frame, a mounting assembly, and a buffer assembly. The mounting assembly includes a feeding slide plate, a limiting baffle, a vibration motor, a dust collection hopper, a connecting baffle, a dust collection box, a sealed rotating door, a dust collection pipe, a dust collection fan, and a collection component. The collection component includes a disassembly sleeve and a collection net bag. One end of the dust collection pipe has an external thread, and the disassembly sleeve has an internal thread. The buffer assembly includes a buffer frame, a telescopic rod, and a buffer plate. The buffer assembly also includes a buffer spring and a damper. The feeding slide plate is fixedly connected to the support frame and located on the... On one side of the support frame, the limiting baffle is fixedly connected to the feeding slide plate and located on one side of the feeding slide plate; the vibration motor is fixedly connected to the limiting baffle and located on one side of the limiting baffle; the dust collection hopper is fixedly connected to the feeding slide plate and passes through the feeding slide plate; the connecting baffle is fixedly connected to the dust collection hopper and located on one side of the dust collection hopper; the dust collection box is fixedly connected to the support frame and located on one side of the support frame; the sealed rotating door is rotatably connected to the dust collection box and located on one side of the dust collection box; one end of the dust collection pipe is connected to the dust collection hopper. The other end of the suction pipe passes through the suction box. The suction fan is fixedly connected to the suction box and passes through it. The collection component is connected to the suction pipe. In use, the threaded rod half-thread screw falls onto the feed slide plate. The limiting baffle prevents the threaded rod half-thread screw from falling off. The threaded rod half-thread screw slides on the feed slide plate due to its tilt angle. At the same time, the vibration motor and the suction fan are activated. The vibration motor drives the screw on the feed slide plate to vibrate, accelerating the sliding of the screw and removing metal shavings and debris attached to the screw. When screws, metal shavings, and impurities slide above the connecting baffle, the vacuum cleaner will suck them into the collection component through the vacuum bucket and the vacuum pipe. When screws fall into the collection container, the buffer component cushions the screws, reducing the impact force and preventing damage due to excessive impact. After the entire structure is in use, the sealed rotating door can be opened to remove the collection component from the vacuum box, facilitating the unified processing of metal shavings and impurities, thus solving the problem of not being able to clean metal shavings and impurities.
Smart Images

Figure CN224727957U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of machining semi-threaded screws with thread rolling rods, and in particular to a blanking track for machining semi-threaded screws with thread rolling rods. Background Technology
[0002] A threaded shank semi-threaded screw is a special fastener that combines a semi-threaded design with a thread-rolling process. Its characteristic is that part of the shank is fully threaded (processed by thread rolling), while the other part is a threadless shank or a semi-threaded structure. This design helps to avoid the problem of thread stripping in certain applications.
[0003] After the semi-threaded screws are processed, a feeding track is needed to facilitate subsequent storage and reduce the intensity of manual handling. The feeding track is mainly used to feed the processed semi-threaded screws into the designated container in an orderly manner.
[0004] However, after the threaded rod semi-threaded screw is processed, some metal shavings and impurities are easily attached to its surface. The existing feeding slide cannot clean the metal shavings and impurities during use, causing the shavings to enter the storage container with the screw, affecting subsequent processing and making it inconvenient to use. Utility Model Content
[0005] The purpose of this invention is to provide a feed rail for machining semi-threaded screws with thread rolling rods, which solves the problem of not being able to clean metal shavings and impurities.
[0006] To achieve the above objectives, this utility model provides a feeding track for machining threaded screws, comprising a support frame, a mounting assembly, and a buffer assembly. The mounting assembly includes a feeding slide plate, a limiting baffle, a vibration motor, a dust collection hopper, a connecting baffle, a dust collection box, a sealed rotating door, a dust collection pipe, a dust collection fan, and a collection component. The feeding slide plate is fixedly connected to the support frame and located on one side of the support frame. The limiting baffle is fixedly connected to the feeding slide plate and located on one side of the feeding slide plate. The vibration motor is fixedly connected to the limiting baffle. The following components are connected and located on one side of the limiting baffle: the dust collection hopper is fixedly connected to the discharge slide plate and passes through the discharge slide plate; the connecting baffle is fixedly connected to the dust collection hopper and located on one side of the dust collection hopper; the dust collection box is fixedly connected to the support frame and located on one side of the support frame; the sealing rotating door is rotatably connected to the dust collection box and located on one side of the dust collection box; one end of the dust collection pipe communicates with the dust collection hopper, and the other end of the dust collection pipe passes through the dust collection box; the dust collection fan is fixedly connected to the dust collection box. The collection component, connected to the suction pipe, runs through the dust collection box. During use, the half-threaded screw of the thread-rolling rod rests on the feeding slide plate. A limiting baffle prevents the screw from falling off. The screw slides on the feeding slide plate due to its tilt angle. Simultaneously, the vibration motor and the suction fan are activated. The vibration motor drives the screw on the feeding slide plate to vibrate, accelerating its sliding and shaking off metal debris and impurities. When the screw, metal debris, and impurities slide above the connecting baffle, the suction fan draws them into the collection component through the suction hopper and suction pipe. When the screw falls into the collection container, the buffer component cushions it, reducing the impact force and preventing damage. After the entire structure is in use, the sealed rotating door can be opened to remove the collection component from the dust collection box, facilitating the unified processing of metal debris and impurities, thus solving the problem of not being able to clean metal debris and impurities.
[0007] The collecting component includes a disassembly sleeve and a collecting net bag. The disassembly sleeve is detachably connected to the vacuum pipe and is fitted onto the vacuum pipe. The collecting net bag is fixedly connected to the disassembly sleeve and is located at one end of the disassembly sleeve.
[0008] The vacuum tube has an external thread at one end, which is located on the outside of the vacuum tube. The disassembly sleeve has an internal thread, which is located on the inside of the disassembly sleeve. The external thread and the internal thread cooperate with each other.
[0009] The buffer assembly includes a buffer frame, a telescopic rod, and a buffer plate. The buffer frame is fixedly connected to the limiting baffle and is located on one side of the limiting baffle. The telescopic rod is fixedly connected to the buffer frame and is located on one side of the buffer frame. The buffer plate is fixedly connected to the telescopic rod and is located at one end of the telescopic rod.
[0010] The buffer assembly further includes a buffer spring and a damper. One end of the buffer spring is fixedly connected to the buffer frame, and the other end of the buffer spring is fixedly connected to the buffer plate. The damper is fixedly connected to the buffer frame and to the buffer plate.
[0011] This utility model discloses a feeding track for machining semi-threaded screws, comprising a support frame, a mounting assembly, and a buffer assembly. The mounting assembly includes a feeding slide plate, a limiting baffle, a vibration motor, a dust collection hopper, a connecting baffle, a dust collection box, a sealed rotating door, a dust collection pipe, a dust collection fan, and a collection component. The collection component includes a disassembly sleeve and a collection net bag. One end of the dust collection pipe has an external thread, and the disassembly sleeve has an internal thread. The buffer assembly includes a buffer frame, a telescopic rod, and a buffer plate. The buffer assembly also includes a buffer spring and a damper. The feeding slide plate is fixedly connected to the support frame and located on the... On one side of the support frame, the limiting baffle is fixedly connected to the feeding slide plate and located on one side of the feeding slide plate; the vibration motor is fixedly connected to the limiting baffle and located on one side of the limiting baffle; the dust collection hopper is fixedly connected to the feeding slide plate and passes through the feeding slide plate; the connecting baffle is fixedly connected to the dust collection hopper and located on one side of the dust collection hopper; the dust collection box is fixedly connected to the support frame and located on one side of the support frame; the sealed rotating door is rotatably connected to the dust collection box and located on one side of the dust collection box; one end of the dust collection pipe is connected to the dust collection hopper. The other end of the suction pipe passes through the suction box. The suction fan is fixedly connected to the suction box and passes through it. The collection component is connected to the suction pipe. In use, the threaded rod half-thread screw falls onto the feed slide plate. The limiting baffle prevents the threaded rod half-thread screw from falling off. The threaded rod half-thread screw slides on the feed slide plate due to its tilt angle. At the same time, the vibration motor and the suction fan are activated. The vibration motor drives the screw on the feed slide plate to vibrate, accelerating the sliding of the screw and removing metal shavings and debris attached to the screw. When screws, metal shavings, and impurities slide above the connecting baffle, the vacuum cleaner will suck them into the collection component through the vacuum bucket and the vacuum pipe. When screws fall into the collection container, the buffer component cushions the screws, reducing the impact force and preventing damage due to excessive impact. After the entire structure is in use, the sealed rotating door can be opened to remove the collection component from the vacuum box, facilitating the unified processing of metal shavings and impurities, thus solving the problem of not being able to clean metal shavings and impurities. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0013] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present utility model.
[0014] Figure 2This is a schematic diagram showing the connection between the dust collection bucket and the feeding slide plate in an embodiment of this utility model.
[0015] Figure 3 This is a schematic diagram showing the connection between the disassembly sleeve and the vacuum tube in an embodiment of this utility model.
[0016] Figure 4 This is a schematic diagram of the connection between the buffer plate and the telescopic rod in an embodiment of this utility model.
[0017] In the diagram: 101-Support frame, 102-Discharge slide plate, 103-Limit baffle, 104-Vibration motor, 105-Dust suction hopper, 106-Connecting baffle, 107-Dust suction box, 108-Sealed rotating door, 109-Dust suction pipe, 110-Dust suction fan, 111-Disassembly sleeve, 112-Collection net bag, 113-External thread, 114-Internal thread, 115-Buffer frame, 116-Telescopic rod, 117-Buffer plate, 118-Buffer spring, 119-Damper. Detailed Implementation
[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0019] The first embodiment of this application is as follows:
[0020] Please see Figures 1-4 , Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present utility model. Figure 2 This is a schematic diagram showing the connection between the dust collection bucket and the feeding slide plate according to an embodiment of this utility model. Figure 3 This is a schematic diagram showing the connection between the disassembly sleeve and the vacuum tube in an embodiment of this utility model. Figure 4 This is a schematic diagram of the connection between the buffer plate and the telescopic rod in an embodiment of the present invention. The feed track for processing the thread rolling rod half-thread screw includes a support frame 101, an installation component, and a buffer component. The installation component includes a feed slide plate 102, a limit baffle 103, a vibration motor 104, a dust collection hopper 105, a connecting baffle 106, a dust collection box 107, a sealed rotating door 108, a dust collection pipe 109, a dust collection fan 110, and a collection component. The collection component includes a disassembly sleeve 111 and a collection net bag 112. One end of the dust collection pipe 109 has an external thread 113, and the disassembly sleeve 111 has an internal thread 114. The buffer component includes a buffer frame 115, a telescopic rod 116, and a buffer plate 117. The buffer component also includes a buffer spring 118 and a damper 119. The aforementioned solution solves the problem of not being able to clean metal shavings and impurities, and also solves the problem of buffering the thread rolling rod half-thread screw.
[0021] In this specific embodiment, during use, the half-threaded screw of the thread-rolling rod falls onto the feeding slide plate 102. The limiting baffle 103 prevents the half-threaded screw from falling off. The half-threaded screw slides on the feeding slide plate 102 due to its tilt angle. Simultaneously, the vibration motor 104 and the vacuum fan 110 are activated. The vibration motor 104 drives the screw on the feeding slide plate 102 to vibrate, accelerating the sliding of the screw and shaking off metal debris and impurities attached to the screw. When the screw, metal debris, and impurities slide to the connecting... When the screw is above the baffle 106, the vacuum fan 110 will suck the metal debris and impurities into the collection component through the vacuum hopper 105 and the vacuum pipe 109. When the screw falls into the collection container, the buffer component will cushion the screw, reducing the impact force when it falls into the container and preventing the screw from being damaged due to the large impact force. After the overall structure is used, the sealed rotating door 108 can be opened to remove the collection component from the vacuum box 107, which facilitates the unified treatment of metal debris and impurities, thereby solving the problem of not being able to clean metal debris and impurities.
[0022] First, the feeding slide plate 102 is fixedly connected to the support frame 101 and located on one side of the support frame 101. The limiting baffle 103 is fixedly connected to the feeding slide plate 102 and located on one side of the feeding slide plate 102. The vibration motor 104 is fixedly connected to the limiting baffle 103 and located on one side of the limiting baffle 103. The dust collection hopper 105 is fixedly connected to the feeding slide plate 102 and passes through the feeding slide plate. The connecting baffle 106 is fixedly connected to the dust collection hopper 105 and located on one side of the dust collection hopper 105. The dust collection box 107 is fixedly connected to the support frame 101 and located on one side of the support frame 101. The sealed rotating door 108 is connected to the dust collection box 107. 7. A rotating connection is made and located on one side of the dust collection box 107. One end of the suction pipe 109 is connected to the suction hopper 105, and the other end of the suction pipe 109 passes through the dust collection box 107. The suction fan 110 is fixedly connected to the dust collection box 107 and passes through the dust collection box. The collecting component is connected to the suction pipe 109. The discharge slide plate 102 is located on the upper side of the support frame 101. The limiting baffle 103 is located on the upper side of the discharge slide plate 102. The vibration motor 104 is installed on one side of the limiting baffle 103. The suction hopper 105 passes through the discharge slide plate. The connecting baffle 106 is located on the upper side of the suction hopper 105. The dust collection box 107 is located on the upper side of the bottom plate of the support frame 101. The sealed rotating door 108 is located on one side of the dust collection box 107. The upper end of the suction pipe 109 is connected to the lower side of the suction hopper 105, and the other end of the suction pipe 109 passes through the dust collection box 107. The suction fan 110 passes through the dust collection box 107 and is located on the side of the dust collection box 107 away from the suction pipe 109. In use, the thread rolling rod half-thread screw falls on the feed slide plate 102. The limiting baffle 103 prevents the thread rolling rod half-thread screw from falling off. The thread rolling rod half-thread screw slides on the feed slide plate 102 due to the tilt angle of the feed slide plate 102. At the same time, the vibration motor 104 and the suction fan 110 are started. The vibration motor 104 drives the feed slide plate 107. The vibration of the screw on the 2nd screw accelerates its sliding and shakes off metal debris and impurities attached to it. When the screw, metal debris, and impurities slide above the connecting baffle 106, the vacuum fan 110 sucks them into the collection component through the vacuum bucket 105 and the vacuum pipe 109. When the screw falls into the collection container, the buffer component cushions it, reducing the impact force and preventing damage due to the impact. After the overall structure is in use, the sealed rotating door 108 can be opened to remove the collection component from the vacuum box 107 for unified processing of metal debris and impurities, thus solving the problem of not being able to clean metal debris and impurities.
[0023] The disassembly sleeve 111 is detachably connected to the suction pipe 109 and is fitted onto the suction pipe 109; the collection net bag 112 is fixedly connected to the disassembly sleeve 111 and is located at one end of the disassembly sleeve 111. The disassembly sleeve 111 is fitted onto the suction pipe 109 and is located inside the suction box 107. The collection net bag 112 is located on one side of the disassembly sleeve 111. The suction pipe 109 sucks metal debris and impurities into the collection net bag for collection and storage.
[0024] Secondly, one end of the suction pipe 109 has an external thread 113, which is located on the outside of the suction pipe 109. The disassembly sleeve 111 has an internal thread 114, which is located on the inside of the disassembly sleeve 111. The external thread 113 and the internal thread 114 cooperate with each other. After use, the disassembly sleeve 111 is rotated to disconnect the connection between the internal thread 114 and the external thread 113, and the disassembly sleeve 111 is removed from the suction pipe 109. The collection net bag 112 is then removed from the dust collection box 107 for unified treatment of metal scraps and impurities.
[0025] Then, the buffer frame 115 is fixedly connected to the limiting baffle 103 and is located on one side of the limiting baffle; the telescopic rod 116 is fixedly connected to the buffer frame 115 and is located on one side of the buffer frame 115; the buffer plate 117 is fixedly connected to the telescopic rod 116 and is located at one end of the telescopic rod 116. The buffer frame 115 is located on one side of the limiting baffle 103, the telescopic rod 116 is located inside the buffer frame 115, and the buffer plate 117 is located on the side of the telescopic rod 116 near the unloading slide plate 102. When the screw falls into the collection container, the bolt hits the buffer plate 117. The telescopic rod 116 extends and retracts, squeezing the buffer spring 118 and the damper 119. The buffer spring 118 and the damper 119 cooperate to buffer the screw, reduce the impact force when it falls into the container, and prevent the screw from being damaged due to the large impact force.
[0026] Finally, one end of the buffer spring 118 is fixedly connected to the buffer frame 115, and the other end of the buffer spring 118 is fixedly connected to the buffer plate 117; the damper 119 is fixedly connected to the buffer frame 115 and the buffer plate 117. The buffer spring 118 and the damper 119 work together to buffer the screw, reduce the impact force when it falls into the container, and prevent the screw from being damaged due to the large impact force.
[0027] When using the feed rail for machining half-thread screws with a thread rolling bar in this embodiment, the half-thread screw falls onto the feed slide plate 102. The limiting baffle 103 prevents the half-thread screw from falling off. The half-thread screw slides on the feed slide plate 102 due to its tilt angle. Simultaneously, the vibration motor 104 and the vacuum fan 110 are activated. The vibration motor 104 drives the screw on the feed slide plate 102 to vibrate, accelerating the sliding of the screw and shaking off metal debris and impurities attached to the screw. When the screw, metal debris, and impurities slide above the connecting baffle 106, the vacuum fan 110 sucks the metal debris and impurities into the collection bag 112 through the vacuum hopper 105 and the vacuum pipe 109, thus cleaning the metal debris and impurities. When a screw falls into the collection container, it impacts the buffer plate 117. The telescopic rod 116 extends and retracts, compressing the buffer spring 118 and the damper 119. The buffer spring 118 and the damper 119 work together to cushion the screw, reducing the impact force when it falls into the container and preventing damage to the screw due to the large impact force. After the overall structure is in use, the sealed rotating door 108 can be opened, and the disassembly sleeve 111 can be rotated to disconnect the connection between the internal thread 114 and the external thread 113. The disassembly sleeve 111 can then be removed from the suction pipe 109, and the collection net bag 112 can be taken out of the vacuum box 107. This facilitates the unified treatment of metal scraps and impurities, thus solving the problem of not being able to clean metal scraps and impurities.
[0028] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A blanking track for machining semi-threaded screws, comprising a support frame and a buffer assembly, characterized in that: It also includes installation components; The installation assembly includes a feeding slide plate, a limiting baffle, a vibration motor, a dust collection hopper, a connecting baffle, a dust collection box, a sealed rotating door, a dust collection pipe, a dust collection fan, and a collection component. The feeding slide plate is fixedly connected to the support frame and located on one side of the support frame. The limiting baffle is fixedly connected to the feeding slide plate and located on one side of the feeding slide plate. The vibration motor is fixedly connected to the limiting baffle and located on one side of the limiting baffle. The dust collection hopper is fixedly connected to the feeding slide plate and passes through the feeding slide plate. The connecting baffle is fixedly connected to the dust collection hopper and located on one side of the dust collection hopper. The dust collection box is fixedly connected to the support frame and located on one side of the support frame. The sealed rotating door is rotatably connected to the dust collection box and located on one side of the dust collection box. One end of the dust collection pipe is connected to the dust collection hopper, and the other end of the dust collection pipe passes through the dust collection box. The dust collection fan is fixedly connected to the dust collection box and passes through the dust collection box. The collection component is connected to the dust collection pipe.
2. The blanking track for machining semi-threaded screws as described in claim 1, characterized in that: The collection component includes a disassembly sleeve and a collection net bag. The disassembly sleeve is detachably connected to the vacuum pipe and is fitted onto the vacuum pipe. The collection net bag is fixedly connected to the disassembly sleeve and is located at one end of the disassembly sleeve.
3. The blanking track for machining semi-threaded screws as described in claim 2, characterized in that: One end of the suction tube has an external thread, which is located on the outside of the suction tube. The disassembly sleeve has an internal thread, which is located on the inside of the disassembly sleeve. The external thread and the internal thread cooperate with each other.
4. The blanking track for machining semi-threaded screws as described in claim 1, characterized in that: The buffer assembly includes a buffer frame, a telescopic rod, and a buffer plate. The buffer frame is fixedly connected to the limiting baffle and is located on one side of the limiting baffle. The telescopic rod is fixedly connected to the buffer frame and is located on one side of the buffer frame. The buffer plate is fixedly connected to the telescopic rod and is located at one end of the telescopic rod.
5. The blanking track for machining semi-threaded screws as described in claim 4, characterized in that: The buffer assembly further includes a buffer spring and a damper. One end of the buffer spring is fixedly connected to the buffer frame, and the other end of the buffer spring is fixedly connected to the buffer plate. The damper is fixedly connected to the buffer frame and to the buffer plate.