A synchronous belt transmission cross slider mechanism

CN224621990UActive Publication Date: 2026-08-11SHANGHAI JINCHANG CARTON MASCH MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-26
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0002]现有印刷机中的上下输送轴依靠同步轮驱动,而同步轮依靠十字滑块机构驱动,在运行过程中,十字滑块机构会将润滑油溅射到同步轮上,造成同步带精度差、寿命短

Benefits of technology

[0008]由于采用了以上的技术方案,罩杯能够将十字滑块机构溅射的润滑油挡住,不会溅射到同步轮上。另外十字滑块机构中设置有储油槽,能够储存更多的润滑油,降低人力成本。

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Abstract

This utility model discloses a synchronous belt transmission cross-slider mechanism, including a conveyor shaft, a support plate, a synchronous pulley mounted on the conveyor shaft, and a cross-slider mechanism. The conveyor shaft is mounted on the support plate, and the synchronous pulley drives the conveyor shaft to rotate via the cross-slider mechanism. The key feature is the inclusion of a cover cup, which is installed on the synchronous pulley and encloses the cross-slider mechanism within the cover cup to prevent lubricating oil from splashing onto the synchronous pulley. The cover cup of this utility model effectively blocks splashed lubricating oil from the cross-slider mechanism, preventing it from splashing onto the synchronous pulley. Furthermore, the cross-slider mechanism includes an oil reservoir, which can store more lubricating oil, reducing labor costs.
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Description

Technical Field

[0001] This utility model relates to the field of printing press technology, and in particular to a synchronous belt transmission cross slider mechanism. Background Technology

[0002] In existing printing presses, the upper and lower conveyor shafts are driven by synchronous pulleys, which in turn are driven by a cross-slider mechanism. During operation, the cross-slider mechanism splashes lubricating oil onto the synchronous pulleys, resulting in poor timing belt accuracy and short lifespan. Furthermore, the existing cross-slider lacks an oil reservoir, requiring frequent lubrication replenishment and increasing labor costs. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a cross slider mechanism that prevents lubricating oil from splashing onto the timing belt while ensuring that the lubricating oil does not leak out, and the cross slider has an oil storage structure.

[0004] The technical problem to be solved by this utility model can be achieved through the following technical solution:

[0005] A synchronous belt transmission cross slider mechanism includes a conveyor shaft, a support plate, a synchronous pulley mounted on a transmission shaft, and a cross slider mechanism. The conveyor shaft is mounted on the support plate, and the synchronous pulley drives the conveyor shaft to rotate through the cross slider mechanism. The mechanism is characterized by further including a cover cup, which is installed on the synchronous pulley and encloses the cross slider mechanism inside the cover cup to prevent lubricating oil on the cross slider mechanism from splashing onto the synchronous pulley.

[0006] In a preferred embodiment of the present invention, an inspection port is provided on the end wall of the cup, and a cover is provided on the inspection port. The cover is fastened to the end wall of the cup using fasteners.

[0007] In a preferred embodiment of the present invention, the cross slider mechanism includes a first cross slider and a second cross slider. The first cross slider is drivenly connected to the synchronous wheel, and the second cross slider is drivenly connected to the transmission shaft. The first cross slider and the second cross slider are meshed and drivenly connected. An oil storage groove is provided at the end of the second cross slider to store lubricating oil.

[0008] Thanks to the above technical solutions, the shield can block the lubricating oil splashed from the cross-slider mechanism, preventing it from splashing onto the timing pulley. Additionally, the cross-slider mechanism is equipped with an oil reservoir, which can store more lubricating oil and reduce labor costs. Attached Figure Description

[0009] Figure 1 This is a schematic diagram of the external shape of the synchronous belt transmission cross slider mechanism of this utility model.

[0010] Figure 2 This is an exploded view of the synchronous belt transmission cross slider mechanism of this utility model. Detailed Implementation

[0011] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments.

[0012] See Figure 1 and Figure 2 The figure shows a synchronous belt transmission cross slider mechanism, which includes a conveyor shaft 100, a support plate 200, a synchronous wheel 300 mounted on the conveyor shaft 100, and a cross slider mechanism 400. The conveyor shaft 100 is mounted on the support plate 200 for mounting the conveyor roller.

[0013] Synchronous pulley 300 drives conveyor shaft 100 to rotate via cross slider mechanism 400.

[0014] This utility model also includes a cup 500, which is installed on the synchronous pulley 300 and encloses the cross slider mechanism 400 inside the cup 500 to prevent the lubricating oil on the cross slider mechanism 400 from splashing onto the synchronous pulley 300.

[0015] An access port 511 is provided on the end wall 510 of the cup 500, and a cover 600 is provided on the access port 511. The cover 600 is installed on the end wall 510 of the cup 500 by fasteners such as screws to cover the access port 511.

[0016] The cross slider mechanism 400 includes a first cross slider 410, a second cross slider 420, a pressure cap 430, and a pressure ring 440. The first cross slider 410 is connected to the synchronous pulley 300 for transmission. The second cross slider 420 is connected to the drive shaft 100 through the pressure cap 430 and the pressure ring 440 for driving. The first cross slider 410 and the second cross slider 420 are connected for transmission by meshing. An oil reservoir 421 is provided at the end of the second cross slider 420 to store lubricating oil.

Claims

1. A synchronous belt transmission cross slide mechanism comprising a transmission shaft, a support plate, a synchronous wheel shafted on the transmission shaft, a cross slide mechanism, the transmission shaft is shafted on the support plate, the synchronous wheel drives the transmission shaft to rotate through the cross slide mechanism, characterized in that, Also included is a cup mounted on the synchronizer wheel, enclosing the cross slider mechanism in the cup to prevent lubricating oil on the cross slider mechanism from splashing onto the synchronizer wheel.

2. A synchronous belt transmission Oldham's link mechanism according to claim 1, characterized in that An access hole is provided on the end wall of the cup, and a cover is provided on the access hole, which is mounted on the end wall of the cup by fasteners.

3. A synchronous belt transmission cross slider mechanism according to claim 1, wherein The cross slider mechanism includes a first cross slider and a second cross slider, the first cross slider is drivingly connected with the synchronizer wheel, the second cross slider is drivingly connected with the transmission shaft, the first cross slider and the second cross slider are drivingly connected in meshing engagement, and an oil storage groove is provided at the end of the second cross slider to store lubricating oil.