Special-shaped connecting piece feeding device
The automated production of CHO cranksets and CHO connectors is achieved through a non-standard connector feeding device, which solves the problems of high labor costs and low production efficiency, improves production efficiency and reduces labor intensity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-28
- Publication Date
- 2026-04-07
AI Technical Summary
The existing production lines for CHO cranksets and CHO connectors suffer from high labor costs and production efficiency affected by human fatigue periods.
The use of a non-standard connector feeding device, including a feeder, press, mold, vibratory feeder and conveyor belt, enables automated stamping and conveying of CHO toothed discs and CHO connectors, forming a continuous production line.
It effectively reduces labor costs, improves production efficiency, reduces the intensity of manual labor, and enhances the overall efficiency of the CHO gearbox and CHO connector assembly line.
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Figure CN224087682U_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of material conveying devices, specifically relating to a feeding device for irregularly shaped connectors. Background Technology
[0002] like Figure 2 , 3 As shown, CHO toothed discs are commonly used in material conveying devices; CHO toothed disc connectors (irregular connectors) refer to the connectors between the foot pedal and the toothed disc.
[0003] In the existing production method, CHO cranksets and CHO connectors are produced by manual feeding. After the CHO cranksets and CHO connectors are connected as a whole, the product is formed, and then the formed product is transported to other places manually.
[0004] With rising production costs and falling product prices, the current CHO crankset and CHO connector assembly line has the following drawbacks: 1. High labor costs. 2. Worker fatigue affects actual production efficiency. Utility Model Content
[0005] To overcome the shortcomings of existing technologies, this invention discloses a feeding device for irregularly shaped connectors, aiming to reduce labor costs and improve the production efficiency of the CHO gearbox and CHO connector assembly line.
[0006] To achieve the above objectives, the technical solution of this invention is as follows:
[0007] A feeding device for irregularly shaped connectors includes a feeder, a first press, a CHO connector progressive die, a second press, a CHO toothed plate die, a toothed plate and CHO connector stamping die, a long conveyor belt for CHO connectors, a CHO connector vibratory plate, an automatic feeding device for CHO connectors, and a short discharge conveyor belt.
[0008] There are two feeders for conveying rolled material. One feeder is connected to the CHO connector continuous die mold. The first press is connected to the CHO connector continuous die mold and is used to stamp the CHO connector.
[0009] Another feeder 9 is connected to the CHO crankset mold. The CHO crankset mold is connected to the crankset and CHO connector stamping mold via a conveying mechanism. There are two second presses, which are respectively connected to the CHO crankset mold and the crankset and CHO connector stamping mold. The CHO crankset mold is used to stamp the CHO crankset, and the crankset and CHO connector stamping mold is used to stamp the crankset and CHO connector into one piece.
[0010] The CHO connector continuous die is connected to the CHO connector vibratory feeder via a long conveyor belt. The CHO connector vibratory feeder is connected to an automatic feeding device for CHO connectors. The automatic feeding device for CHO connectors is connected to the toothed disc and the CHO connector stamping die. The output end of the toothed disc and the CHO connector stamping die is connected to a short discharge conveyor belt.
[0011] Preferably, the length of the long conveyor belt of the CHO connector is 4.0m.
[0012] Preferably, the length of the short discharge conveyor belt is 1.1m.
[0013] The advantages of this novel irregular-shaped connector feeding device are as follows:
[0014] This new invention can effectively reduce labor costs and labor intensity, and improve the production efficiency of the CHO toothed disc and CHO connector assembly line. Attached Figure Description
[0015] Figure 1 A schematic diagram of the structure of this novel invention;
[0016] Figure 2 A schematic diagram of the front view structure of the CHO dental conduit involved in this invention;
[0017] Figure 3 A side view of the CHO dental disc structure involved in this invention;
[0018] Figure 4 , The structural schematic diagram of the CHO connector involved in this invention (in order: (1) front view, (2) side view and (3) top view);
[0019] 1. Closed-type double-point press; 2. Open-type fixed-table press; 3. CHO connector progressive die; 4. CHO connector stamping die; 5. CHO connector long conveyor belt; 6. Short discharge conveyor belt; 7. CHO connector vibratory feeder; 8. CHO connector automatic feeding equipment; 9. Feeder; 10. CHO crank die. Detailed Implementation
[0020] The following description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
[0021] Example 1:
[0022] A feeding device for irregularly shaped connectors, such as Figure 1As shown, it includes a feeder 9, an open fixed-table press 2 (i.e., the first press), a CHO connector progressive die 3, a closed double-point press 1 (i.e., the second press), a CHO toothed plate die 10, a toothed plate and CHO connector stamping die 4, a long CHO connector conveyor belt 5, a CHO connector vibratory feeder 7, an automatic CHO connector feeding device 8, and a short discharge conveyor belt 6.
[0023] There are two feeders 9, which are used to transport coiled material. One of the feeders 9 is connected to the CHO connector continuous die 3. The open fixed table press 2 is connected to the CHO connector continuous die 3 and is used to stamp the CHO connector.
[0024] Another feeder 9 is connected to the CHO crankset mold 10. The CHO crankset mold 10 is connected to the crankset and CHO connector stamping mold 4 via a conveying mechanism. There are two closed double-point presses 1. The two closed double-point presses 1 are respectively connected to the CHO crankset mold and the crankset and CHO connector stamping mold 4. The CHO crankset mold is used to stamp the CHO crankset, and the crankset and CHO connector stamping mold is used to stamp the crankset and CHO connector into one piece.
[0025] The CHO connector continuous die 3 is connected to the CHO connector vibratory feeder 7 via a long conveyor belt 5. The CHO connector vibratory feeder 7 is connected to an automatic CHO connector feeding device 8. The automatic CHO connector feeding device 8 is connected to a toothed disc and a CHO connector stamping die 4. The output end of the toothed disc and the CHO connector stamping die 4 is connected to a short discharge conveyor belt 6.
[0026] In this embodiment, the feeder 9 is a commercially available device capable of conveying rolled materials; the open-type fixed-table press 2 is model JH21-200G-1N1#221184 A. PART; The CHO connector progressive die 3, CHO gear plate die 10, and gear plate and CHO connector stamping die 4 adopt progressive stamping dies manufactured by Qingdao Zhenghe Industrial Co., Ltd. (no confidentiality measures are taken, which is prior art) or commercially available related dies or dies disclosed in existing patent documents that can realize related functions; the CHO connector vibratory feeder 7 adopts an automatic vibratory feeder customized by Qingdao Honghai Vibratory Feeder Co., Ltd. or other commercially available products; the CHO connector automatic feeding device 8 adopts equipment manufactured by Qingdao Zhenghe Industrial Co., Ltd. (no confidentiality measures are taken, which is prior art) or commercially available automatic feeding devices that can realize related functions or feeding devices that have been disclosed in the patent database that can realize related functions. The specific implementation method is to set a guide rail that enables the CHO connector to move in a set orientation, and to transport the CHO connector to the gear plate and CHO connector stamping die 4 through the guide rail. In the prior art, the vibratory feeder 7 is often equipped with various guide rails that are adapted to the required conveying parts. The simplest implementation of the CHO connector automatic feeding device 8 is a guide rail adapted to the shape and size of the CHO connector.
[0027] Example 2:
[0028] Based on Example 1, this example discloses:
[0029] like Figure 1 As shown, the length of the CHO connector long conveyor belt 5 is 4.0m.
[0030] The short discharge conveyor belt 6 has a length of 1.1m.
Claims
1. A feeding device for irregularly shaped connectors, characterized in that: Includes a feeder, a first press, a CHO connector progressive die, a second press, a CHO gear plate die, a gear plate and CHO connector stamping die, a long CHO connector conveyor belt, a CHO connector vibratory feeder, an automatic CHO connector feeding device, and a short discharge conveyor belt; There are two feeders for conveying rolled material. One feeder is connected to the CHO connector continuous die mold. The first press is connected to the CHO connector continuous die mold and is used to stamp the CHO connector. Another feeder 9 is connected to the CHO crankset mold. The CHO crankset mold is connected to the crankset and CHO connector stamping mold via a conveying mechanism. There are two second presses, which are respectively connected to the CHO crankset mold and the crankset and CHO connector stamping mold. The CHO crankset mold is used to stamp the CHO crankset, and the crankset and CHO connector stamping mold is used to stamp the crankset and CHO connector into one piece. The CHO connector continuous die is connected to the CHO connector vibratory feeder via a long conveyor belt. The CHO connector vibratory feeder is connected to an automatic feeding device for CHO connectors. The automatic feeding device for CHO connectors is connected to the toothed disc and the CHO connector stamping die. The output end of the toothed disc and the CHO connector stamping die is connected to a short discharge conveyor belt.
2. The feeding device for irregularly shaped connectors as described in claim 1, characterized in that: The length of the CHO connector long conveyor belt is 4.0m.
3. The feeding device for irregularly shaped connectors as described in claim 1, characterized in that: The length of the short discharge conveyor belt is 1.1m.