Automatic oiling mechanism for stamping strip

CN224749358UActive Publication Date: 2026-09-15ZHEJIANG UNIVERSE FILTER
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Patent Information

Application Number
CN202521860778.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-29
Publication Date
2026-09-15
Estimated Expiration
2035-08-29

AI Technical Summary

Technical Problem

[0002]目前,滤清器一般包括外壳、滤芯、螺密板及止回阀、旁通阀等,其中外壳由不锈钢料带经过冲压拉伸工艺而成型,在冲压拉伸过程中需要对此不锈钢料带的表面进行涂油处理,现冲压料带涂油方式为利用布料进行表面涂抹油,存在涂油不均匀、油层厚度不一的情况,致使冲压料带表面会有被氧化腐蚀、磨损划伤、灰尘污渍附着等风险,缩短其使用寿命

Benefits of technology

[0006]With the technical solution of this invention, the stamping strip passes between the upper and lower oiling rollers, and between the upper and lower guide shafts. Oil from the upper oil tank is transferred to the oiling surface of the upper oiling roller, and oil from the lower oil tank is transferred to the oiling surface of the lower oiling roller. Through rolling action, the oil on the oiling surfaces of the upper and lower oiling rollers is respectively transferred to the front and back surfaces of the stamping strip, achieving comprehensive and uniform oil coating on both sides of the stamping strip with consistent oil layer thickness. This effectively eliminates the risks of oxidation and corrosion, wear and scratches, and dust and dirt adhesion to the surface of the stamping strip, ensuring the quality of the filter housing and extending its service life.

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Abstract

The application discloses a stamping material belt automatic oiling mechanism applied to filter production, which comprises a rack, an upper oiling roller and a lower oiling roller which are arranged in an up-down rolling mode on the rack, the lower oiling roller is connected with a driving power source, the driving power source is connected with the upper oiling roller through a synchronous transmission assembly, an oil tank is arranged on the top of the rack, the oil tank is connected with an oiling surface of the upper oiling roller, a lower oil tank is arranged on the bottom of the rack, and the lower oil tank is connected with an oiling surface of the lower oiling roller. The stamping material belt automatic oiling mechanism can realize comprehensive and uniform oiling on the front and back surfaces of the stamping material belt, unify the thickness of the oil layer, effectively eliminate the risks of oxidation corrosion, wear and tear, scratches, dust and stain adhesion on the surface of the stamping material belt, guarantee the quality of the filter shell and prolong the service life of the filter shell.
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Description

Technical Field

[0001] This invention relates to an oiling tooling device, specifically to an oiling mechanism for stamped conveyor belts used in filter production. Background Technology

[0002] Currently, filters generally include a housing, filter element, screw plate, check valve, bypass valve, etc. The housing is formed by stamping and stretching stainless steel strip. During the stamping and stretching process, the surface of the stainless steel strip needs to be oiled. The current method of oiling the stamped strip is to apply oil to the surface with cloth, which has the problems of uneven oiling and inconsistent oil layer thickness. This leads to the risk of oxidation and corrosion, wear and scratches, and dust and dirt adhesion on the surface of the stamped strip, which shortens its service life. Summary of the Invention

[0003] The purpose of this invention is to overcome the above-mentioned technical deficiencies and provide an automatic oiling mechanism for stamping strips that can uniformly coat the surface of the stamping strip with oil of uniform thickness.

[0004] The objective of this invention is achieved through the following technical solution: an automatic oiling mechanism for stamping strips, comprising a frame, on which are mounted an upper oiling roller and a lower oiling roller arranged in an up-and-down rolling configuration. The lower oiling roller is connected to a drive power source, which is connected to the upper oiling roller via a synchronous transmission assembly. An upper oil tank is mounted at the top of the frame, in contact with the oiling surface of the upper oiling roller. A lower oil tank is mounted at the bottom of the frame, in contact with the oiling surface of the lower oiling roller. The space between the upper and lower oiling rollers is used for the passage of the stamping strip. The drive power source is mounted on the frame via a mounting base.

[0005] The synchronous transmission assembly consists of a lower synchronous pulley mounted on the shaft of the lower oiling roller, an upper synchronous pulley mounted on the shaft of the upper oiling roller, and a synchronous belt connecting the upper and lower synchronous pulleys. The upper oil tank is connected to the lower oil tank via an oil pipe, which is connected to an oil pump. An upper guide shaft and a lower guide shaft are mounted on the frame, on the sides of the upper and lower oiling rollers, arranged in an up-and-down rolling configuration. A side synchronous pulley is mounted on the lower guide shaft, and the side synchronous pulley is connected to the synchronous belt. The upper oil tank is connected to the oiling surface of the upper oiling roller via a filter screen.

[0006] With the technical solution of this invention, the stamping strip passes between the upper and lower oiling rollers, and between the upper and lower guide shafts. Oil from the upper oil tank is transferred to the oiling surface of the upper oiling roller, and oil from the lower oil tank is transferred to the oiling surface of the lower oiling roller. Through rolling action, the oil on the oiling surfaces of the upper and lower oiling rollers is respectively transferred to the front and back surfaces of the stamping strip, achieving comprehensive and uniform oil coating on both sides of the stamping strip with consistent oil layer thickness. This effectively eliminates the risks of oxidation and corrosion, wear and scratches, and dust and dirt adhesion to the surface of the stamping strip, ensuring the quality of the filter housing and extending its service life. Attached Figure Description

[0007] Figure 1 This is a schematic diagram of the automatic oiling mechanism for stamping strips of the present invention.

[0008] Figure 2 for Figure 1 A schematic diagram of the structure excluding the drive power source, side synchronous pulley, oil pump, oil pipes, etc. Detailed Implementation

[0009] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0010] like Figure 1 , Figure 2 As shown, the present invention relates to an automatic oiling mechanism for stamped conveyor belts used in filter production. The mechanism includes a frame 1, on which are mounted an upper oiling roller 6 (upper position) and a lower oiling roller 8 (lower position) arranged in an up-and-down rolling configuration. The lower oiling roller 8 is connected to a drive power source 4 (a drive motor), which is connected to the upper oiling roller 6 via a synchronous transmission assembly. An upper oil tank 9 is mounted at the top of the frame 1, contacting the oiling surface of the upper oiling roller 6. A lower oil tank 11 is mounted at the bottom of the frame 1, contacting the oiling surface of the lower oiling roller 8. The upper and lower oiling rollers 6 and 8 are used for the rolling of the stamped conveyor belt 7. The drive power source 4 is mounted on the frame 1 via a mounting base 3.

[0011] The synchronous transmission assembly consists of a lower synchronous pulley 15 mounted on the shaft of the lower oiling roller 8, an upper synchronous pulley 5 mounted on the shaft of the upper oiling roller 6, and a synchronous belt 2 connecting the upper synchronous pulley 5 and the lower synchronous pulley 15. The upper oil tank 9 is connected to the lower oil tank 11 via an oil pipe 14, which is connected to an oil pump 10. Oil in the lower oil tank can be transferred to the upper oil tank via the oil pipe 14 and the oil pump 10. On the frame 1, and on the sides of the upper oiling roller 6 and the lower oiling roller 8, are upper guide shafts 13 and lower guide shafts 12 (one set on each side) arranged in an up-and-down rolling configuration. A side synchronous pulley 16 is mounted on the lower guide shaft 12, and the side synchronous pulley 16 is connected to the synchronous belt 2. The upper guide shaft 13 and the lower guide shaft 12 are used to guide and roll the stamping material belt 7 through. Figure 2 As shown, the upper oil tank 9 is connected to the oiling surface of the upper oiling roller 6 through a filter screen 17 (built-in, with very small filter holes), and the oil in the upper oil tank permeates to the oiling surface of the upper oiling roller through the filter screen 17.

[0012] Referring to the accompanying drawings, during operation, the stamping strip 7 passes between the upper oiling roller 6 and the lower oiling roller 8, and between the upper guide shaft 13 and the lower guide shaft 12. The driving power source 4 (a drive motor) operates, driving the lower oiling roller 8 and the upper oiling roller 6, as well as the upper guide shaft 13 and the lower guide shaft 12, to rotate and roll via a synchronous transmission assembly, thereby causing the stamping strip to be rolled and conveyed to the left. Simultaneously, oil from the upper oil tank is transferred to the oiling surface of the upper oiling roller 6, and oil from the lower oil tank is transferred to the oiling surface of the lower oiling roller 8. The oiling surfaces of the upper and lower oiling rollers correspond to the width of the stamping strip. Thus, through the rolling action, the oil on the oiling surfaces of the upper and lower oiling rollers is respectively transferred to the front and back surfaces of the stamping strip, achieving comprehensive and uniform oiling on both sides of the stamping strip, with a uniform oil layer thickness.

Claims

1. An automatic oiling mechanism for stamping strips, including a frame, characterized in that: An upper oiling roller and a lower oiling roller are mounted on the frame in an up-and-down rolling configuration. The lower oiling roller is connected to a drive power source, which is connected to the upper oiling roller via a synchronous transmission assembly. An upper oil tank is mounted on the top of the frame, which is in contact with the oiling surface of the upper oiling roller. A lower oil tank is mounted on the bottom of the frame, which is in contact with the oiling surface of the lower oiling roller.

2. The automatic oiling mechanism for stamping strips as described in claim 1, characterized in that: The synchronous transmission assembly consists of a lower synchronous pulley mounted on the shaft of the lower oiling roller, an upper synchronous pulley mounted on the shaft of the upper oiling roller, and a synchronous belt connecting the upper and lower synchronous pulleys.

3. The automatic oiling mechanism for stamping strips as described in claim 1 or 2, characterized in that: The upper oil tank is connected to the lower oil tank via an oil pipe, which is connected to the oil pump.

4. The automatic oiling mechanism for stamping strips as described in claim 2, characterized in that: An upper guide shaft and a lower guide shaft are mounted on the frame and on the sides of the upper and lower oiling rollers, respectively, in an up-and-down rolling arrangement. A side synchronous pulley is mounted on the lower guide shaft and is connected to a synchronous belt.

5. The automatic oiling mechanism for stamping strips as described in claim 3, characterized in that: The upper oil tank is connected to the oiling surface of the upper oiling roller through a filter screen.