An oil supply component, conveying device and molding system
By designing the oil supply block and connecting bolts in the oil supply assembly, the problem of inconsistent oil supply blocks is solved, achieving uniform applicability and cost savings for the slider.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN CRONUS TECHNOLOGY CO LTD
- Filing Date
- 2025-08-05
- Publication Date
- 2026-07-17
AI Technical Summary
In the existing technology, it is difficult to use oil supply blocks in a standardized manner, which results in each device needing a different model, increasing processing and design costs.
Design an oil supply assembly, including an oil supply block and connecting bolts. The oil supply block is connected to the slider through an oil supply hole and is fixed to the moving platform by the connecting bolts. The number of blocks can be adjusted according to the number of sliders.
A unified design for the oil supply block has been achieved, reducing processing and design costs. It is suitable for different numbers of sliders and ensures that the sliders slide smoothly on the slide rail.
Smart Images

Figure CN224516465U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of oil supply technology, and in particular to an oil supply component, a conveying device, and a molding system. Background Technology
[0002] Currently, linear motion is the most common form of motion in high-end manufacturing. Guide rail assemblies are applicable in various fields. An assembly includes a slide rail and a slider. The moving platform is mounted on the slider, allowing it to slide along the slide rail and be guided.
[0003] In related technologies, regular maintenance of the slider is necessary to extend its service life. Generally, according to the number of sliders on a single slide rail, an oil supply block is installed on the moving platform. The number of oil supply holes on the oil supply block corresponds to the number of sliders. Then, a hose is used to connect the oil supply holes of the oil supply block and the oil inlet of the slider. By injecting lubricating oil into the oil supply block, the lubricating oil can flow to the contact point between the slide rail and the slider, ensuring the smooth sliding of the slider.
[0004] However, different machines use different numbers of sliders, and to handle different numbers of sliders on the slide rail, oil supply blocks with different oil supply holes are required. Therefore, it is difficult to standardize the oil supply blocks, and often one machine uses one material, or even multiple materials, which greatly increases the processing and design costs. Summary of the Invention
[0005] This application provides an oil supply component, a conveying device, and a forming system to solve the problem that in related technologies, it is difficult to achieve uniformity in oil supply blocks, which often results in one material per machine or even multiple materials per machine, greatly increasing processing and design costs.
[0006] In a first aspect, an oil supply assembly is provided, mounted on a mobile platform, the mobile platform being mounted on a slider, the oil supply assembly being used to communicate with the oil inlet of the slider, the oil supply assembly comprising:
[0007] At least one oil supply block, wherein the side of the oil supply block has a through oil supply hole and the top surface of the oil supply block has a through mounting hole, the oil supply hole and the mounting hole are staggered, and the oil supply hole is used to communicate with the oil inlet of the slider; the number of oil supply blocks corresponds to the number of sliders on a single slide rail;
[0008] A connecting bolt, which passes through the oil supply block and is used for threaded connection with the moving platform;
[0009] The oil supply blocks are stacked and arranged, and the mounting holes of the oil supply blocks are connected in sequence. The connecting bolts pass through the oil supply blocks from top to bottom and are connected to the mobile platform, thereby fixing the oil supply blocks to the mobile platform.
[0010] In some embodiments, the top surface of the oil supply block is provided with a stepped groove, the stepped groove makes the top surface of the oil supply block arranged in a stepped shape, and the mounting hole is opened at the bottom of the stepped groove;
[0011] Two oil supply blocks constitute a group of oil supply blocks. The stepped grooves of the two oil supply blocks in the same group are arranged with one facing upward and the other facing downward, and the bottoms of the stepped grooves of the two oil supply blocks in the same group abut against each other.
[0012] Multiple sets of oil supply blocks are stacked sequentially from bottom to top. When the number of oil supply blocks is odd, the topmost oil supply block is stacked on top of the other oil supply blocks.
[0013] In some embodiments, when the number of oil supply blocks is odd, the stepped groove of the uppermost oil supply block is arranged facing upwards.
[0014] In some embodiments, the depth of the stepped groove is half that of the oil supply block, and two oil supply blocks in the same group are stacked together to form a combined block, the top surface of which is a plane.
[0015] In some embodiments, the oil supply holes of the plurality of oil supply blocks are oriented in the same direction.
[0016] In some embodiments, each of the oil supply blocks has at least two mounting holes, and the number of connecting bolts is the same as the number of mounting holes on the oil supply block;
[0017] When multiple oil supply blocks are stacked, the mounting holes of the multiple oil supply blocks are connected one-to-one.
[0018] In some embodiments, a magnetic element is installed inside the oil supply block, and when multiple oil supply blocks are stacked, adjacent oil supply blocks are attracted to each other through the magnetic element.
[0019] In some embodiments, the oil supply assembly further includes a connector mounted on the oil supply port.
[0020] The beneficial effects of the technical solution provided in this application include:
[0021] This application provides an oil supply assembly. Due to the arrangement of the oil supply holes on the oil supply block, the oil supply block is connected to the oil inlet of the slider through a hose. At this time, by injecting lubricating oil into the oil supply holes, lubricating oil can be injected into the oil inlet of the slider, which facilitates the maintenance process of the slider and ensures that the slider slides smoothly on the slide rail.
[0022] Due to the arrangement of the mounting holes, connecting bolts can pass through the oil supply blocks and connect to the moving platform, thus fixing the oil supply holes to the moving platform and facilitating the fixation of the oil supply blocks. When there are multiple sliders on the slide rail, multiple oil supply blocks are arranged, each corresponding to a slider, and stacked together to form a whole. These oil supply blocks are then fixed to the moving platform together using connecting bolts, facilitating the simultaneous fixing of multiple oil supply blocks. Furthermore, the number of sliders can be matched by increasing or decreasing the number of oil supply blocks, broadening the range of applications.
[0023] When the number of sliders varies, oil can be supplied to all sliders simply by increasing or decreasing the number of oil supply blocks. There is no need to redesign the shape of the oil supply blocks; simply assembling different corresponding numbers of oil supply blocks matches the number of sliders. This results in a more uniform shape for the oil supply blocks, making them suitable for any moving device, thus saving on manufacturing and design costs.
[0024] Secondly, a conveying device is provided, comprising:
[0025] At least one slide rail, and multiple slide rails arranged side by side;
[0026] At least one slider is slidably disposed on the slide rail, and at least one slider is arranged on each of the slide rails;
[0027] A mobile platform, which is mounted on the slider;
[0028] Multiple oil supply components as described above are mounted on the mobile platform, and the oil inlets of all the sliders on a single slide rail are connected to the oil supply components.
[0029] Another embodiment of this application provides a conveying device. Since the conveying device includes the oil supply component as described above, the beneficial effects of the conveying device are the same as those of the oil supply component described above, and will not be repeated here.
[0030] Secondly, a molding system is provided, including the oil supply assembly as described above, and / or the conveying device as described above.
[0031] Another embodiment of this application provides a molding system. Since the molding system includes the oil supply component and / or conveying device as described above, the beneficial effects of the molding system are consistent with the beneficial effects of the oil supply component and / or conveying device described above, and will not be repeated here. Attached Figure Description
[0032] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0033] Figure 1 A schematic diagram of the oil supply assembly provided in an embodiment of this application;
[0034] Figure 2 A schematic diagram showing that the oil supply assembly provided in the embodiments of this application includes two oil supply blocks;
[0035] Figure 3 An exploded view of the oil supply assembly provided in the embodiments of this application, which includes two oil supply blocks;
[0036] Figure 4 This is a schematic diagram of two oil supply blocks stacked in the same group, provided in an embodiment of this application.
[0037] Figure 5 A schematic diagram showing that the oil supply assembly provided in the embodiments of this application includes multiple oil supply blocks;
[0038] Figure 6 This is a schematic diagram of the oil supply assembly provided in the embodiments of this application, including a moving device.
[0039] In the diagram: 1. Oil supply block; 11. Connecting head; 1a. Oil supply hole; 1b. Mounting hole; 1c. Step groove; 2. Connecting bolt; 3. Slide rail; 4. Slider; 5. Moving platform. Detailed Implementation
[0040] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0041] This application provides an oil supply component, a conveying device, and a forming system. Based on the number of sliders, the number of oil supply blocks is selected accordingly, and multiple oil supply blocks are assembled and synchronously fixed on a moving platform. This achieves the matching of maintenance needs for different numbers of sliders without requiring redesign of the oil supply blocks, saving design and processing costs. This application addresses the difficulty in standardizing oil supply blocks in related technologies, which often involve one material per machine, or even multiple materials per machine, significantly increasing processing and design costs.
[0042] Reference Figure 2 and Figure 6 An oil supply assembly is installed on a mobile platform 5, which is mounted on a slider 4. The oil supply assembly is used to communicate with the oil inlet of the slider 4. The oil supply assembly and the slider 4 are connected by a hose, and by injecting lubricating oil into the oil supply assembly, the lubricating oil can flow into the slider 4 to maintain the slider 4 and ensure the stability of the slider 4 sliding on the slide rail 3.
[0043] Reference Figures 1-3 The oil supply assembly includes a connecting bolt 2 and at least one oil supply block 1. The oil supply block 1 has a through oil supply hole 1a on its side and a through mounting hole 1b on its top surface; the oil supply hole 1a and mounting hole 1b are staggered. The connecting bolt 2 passes through the oil supply block 1 and is used for threaded connection with the moving platform 5. The connecting bolt 2 is threadedly connected to the moving platform 5, and the bolt head of the connecting bolt 2 abuts against the oil supply block 1 to fix the oil supply block 1 onto the moving platform 5.
[0044] The oil supply hole 1a is used to communicate with the oil inlet of the slider 4. In this embodiment, the oil supply hole 1a and the oil inlet of the slider 4 are connected by a hose.
[0045] With this configuration, due to the arrangement of the oil supply hole 1a on the oil supply block 1, the oil supply block 1 is connected to the oil inlet of the slider 4 through a hose. At this time, by injecting lubricating oil into the oil supply hole 1a, lubricating oil can be injected into the oil inlet of the slider 4, which facilitates the maintenance process of the slider 4 and ensures that the slider 4 slides smoothly on the slide rail 3.
[0046] Furthermore, the number of oil supply blocks 1 corresponds to the number of sliders 4 on a single slide rail 3. When there are multiple oil supply blocks 1, the multiple oil supply blocks 1 are stacked and arranged, and the mounting holes 1b of the multiple oil supply blocks 1 are connected in sequence. The connecting bolts 2 pass through the multiple oil supply blocks 1 from top to bottom and are connected to the moving platform 5, thereby fixing the oil supply blocks 1 to the moving platform 5.
[0047] With this configuration, due to the arrangement of mounting holes 1b, connecting bolts 2 can pass through the oil supply block 1 and connect to the moving platform 5, thus fixing the oil supply hole 1a to the moving platform 5, facilitating the fixing of the oil supply block 1. When there are multiple sliders 4 on the slide rail 3, multiple oil supply blocks 1 are arranged, each corresponding to one slider 4, and the multiple oil supply blocks 1 are stacked together to form a whole. The connecting bolts 2 are used to fix the multiple oil supply blocks 1 together to the moving platform 5, facilitating the synchronous fixing of multiple oil supply blocks 1. Furthermore, the number of sliders 4 can be matched by increasing or decreasing the number of oil supply blocks 1, thus broadening the application range.
[0048] When the number of sliders 4 varies, oil can be supplied to all sliders 4 simply by increasing or decreasing the number of oil supply blocks 1. There is no need to redesign the shape of the oil supply blocks 1; the number of sliders 4 can be matched simply by assembling different corresponding numbers of oil supply blocks 1. This makes the shape of the oil supply blocks 1 more uniform, and any moving device can be used with the oil supply blocks 1, saving processing and design costs.
[0049] Reference Figures 1-3 The oil supply block 1 has a stepped groove 1c on its top surface, which makes the top surface of the oil supply block 1 arranged in a stepped shape. The mounting hole 1b is opened at the bottom of the stepped groove 1c.
[0050] Reference Figures 2-4 Two oil supply blocks 1 form a group of oil supply blocks 1. The stepped grooves 1c of the two oil supply blocks 1 in the same group are arranged with one facing upward and the other facing downward, and the bottom of the stepped grooves 1c of the two oil supply blocks 1 in the same group abuts each other.
[0051] With this arrangement, due to the layout of the stepped groove 1c, the two oil supply blocks 1 in the same group are stacked one in front and one in back, which not only improves the overall integrity, but also greatly reduces the height of the two oil supply blocks 1 in the same group. This makes it easier to arrange more oil supply blocks 1, ensures that the connecting bolts 2 can pass through all the oil supply blocks 1, and reduces the space occupied by the oil supply blocks 1.
[0052] Specifically, multiple sets of oil supply blocks 1 are stacked sequentially from bottom to top. When the number of oil supply blocks 1 is odd, the topmost oil supply block 1 is stacked on top of the other oil supply blocks 1.
[0053] Reference Figure 5 In this embodiment, when the number of oil supply blocks 1 is odd, the stepped groove 1c of the uppermost oil supply block 1 is arranged facing upwards to ensure that the top oil supply block 1 is stably stacked on the lower oil supply block 1.
[0054] Reference Figure 4 Preferably, the depth of the stepped groove 1c is half that of the oil supply block 1. Two oil supply blocks 1 in the same group are stacked together to form a combined block, and the top surface of the combined block is a plane.
[0055] It is understandable that when two oil supply blocks 1 in the same group are stacked, the overall thickness of the two combined oil supply blocks 1 does not change. Therefore, on the one hand, the thickness of the stacked oil supply blocks 1 is reduced. On the other hand, the top surface of the overall structure formed by stacking two oil supply blocks 1 in the same group is flatter, which improves the stacking stability of the oil supply blocks 1 above it. This makes it easier to stack the oil supply blocks 1 first, and after combination, it is easier to connect the bolts 2 through all the oil supply blocks 1 and fix the oil supply blocks 1.
[0056] Among them, the oil supply holes 1a of multiple oil supply blocks 1 are oriented in the same direction.
[0057] Specifically, when stacking the oil supply blocks 1, the position of the oil supply blocks 1 is adjusted to ensure that the oil supply holes 1a of all the oil supply blocks 1 are facing the same direction.
[0058] With this configuration, the oil supply holes 1a of all oil supply blocks 1 face the same direction, making it easier to inject lubricating oil into the oil supply holes 1a of all oil supply blocks 1, and also making it easier to arrange hoses that communicate with the slider 4 in the oil supply holes 1a of all oil supply blocks 1.
[0059] Reference Figures 1-3 Specifically, each oil supply block 1 has at least two mounting holes 1b, and the number of connecting bolts 2 is the same as the number of mounting holes 1b on the oil supply block 1. In this embodiment, there are two mounting holes 1b and two connecting bolts 2.
[0060] Since each oil supply block 1 needs to pass through two connecting bolts 2, when multiple oil supply blocks 1 are stacked, the multiple mounting holes 1b of the multiple oil supply blocks 1 are connected one-to-one.
[0061] This configuration, using multiple connecting bolts 2 to fix the oil supply block 1, ensures that the oil supply block 1 is more stably fixed and less prone to rotation, thus maintaining the orientation of the oil supply hole 1a on the oil supply block 1 and ensuring that the oil supply block 1 and the slider 4 remain in communication. Furthermore, by simultaneously fixing multiple stacked oil supply blocks 1 with multiple connecting bolts 2, it ensures that when the oil supply blocks 1 are stacked, the orientation of the oil supply hole 1a of all oil supply blocks 1 is consistent.
[0062] Preferably, a magnetic component is installed inside the oil supply block 1, and when multiple oil supply blocks 1 are stacked, adjacent oil supply blocks 1 are attracted to each other through the magnetic component. In this embodiment, the magnetic component includes a magnet.
[0063] With this configuration, when multiple oil supply blocks 1 are stacked, the adjacent oil supply blocks 1 attract each other, so the oil supply blocks 1 are not easy to shake during the stacking process. The oil supply blocks 1 that attract each other are in a preliminary fixed state, and the mounting holes 1b of all oil supply blocks 1 are aligned to facilitate the passage of subsequent connecting bolts 2.
[0064] The oil supply assembly also includes a connecting head 11, which is installed in the oil supply port 1a.
[0065] Specifically, the connector 11 is installed at one end of the oil supply port 1a, facilitating communication between the hose and the oil supply port 1a. In this embodiment, the connector 11 includes a rubber head, a pagoda head, etc.
[0066] This application provides an oil supply assembly. Due to the arrangement of the oil supply hole 1a on the oil supply block 1, the oil supply block 1 is connected to the oil inlet of the slider 4 through a hose. At this time, by injecting lubricating oil into the oil supply hole 1a, lubricating oil can be injected into the oil inlet of the slider 4, which facilitates the maintenance process of the slider 4 and ensures that the slider 4 slides smoothly on the slide rail 3.
[0067] Due to the arrangement of mounting hole 1b, connecting bolt 2 can pass through oil supply block 1 and connect to the moving platform 5, thus fixing oil supply hole 1a to the moving platform 5, facilitating the fixing of oil supply block 1. When there are multiple sliders 4 on the slide rail 3, multiple oil supply blocks 1 are arranged, each corresponding to a slider 4, and the multiple oil supply blocks 1 are stacked together to form a whole. The multiple oil supply blocks 1 are then fixed to the moving platform 5 together by connecting bolt 2, facilitating the synchronous fixing of multiple oil supply blocks 1. Furthermore, the number of sliders 4 can be matched by increasing or decreasing the number of oil supply blocks 1, thus broadening the application range.
[0068] When the number of sliders 4 varies, oil can be supplied to all sliders 4 simply by increasing or decreasing the number of oil supply blocks 1. There is no need to redesign the shape of the oil supply blocks 1; the number of sliders 4 can be matched simply by assembling different corresponding numbers of oil supply blocks 1. This makes the shape of the oil supply blocks 1 more uniform, and any moving device can be used with the oil supply blocks 1, saving processing and design costs.
[0069] Reference Figure 6 Another embodiment of this application provides a conveying device, including:
[0070] At least one slide rail 3, and multiple slide rails 3 arranged side by side;
[0071] At least one slider 4 is slidably disposed on a slide rail 3, and at least one slider 4 is arranged on each slide rail 3;
[0072] Mobile platform 5 is mounted on slider 4;
[0073] Multiple oil supply components as described above are installed on the mobile platform 5, and the oil inlets of all sliders 4 on a single slide rail 3 are connected to the oil supply components.
[0074] Another embodiment of this application provides a conveying device. Since the conveying device includes the oil supply component as described above, the beneficial effects of the conveying device are the same as those of the oil supply component described above, and will not be repeated here.
[0075] Secondly, a molding system is provided, including the oil supply components as described above, and / or the conveying device as described above.
[0076] Another embodiment of this application provides a molding system. Since the molding system includes the oil supply component and / or conveying device as described above, the beneficial effects of the molding system are consistent with the beneficial effects of the oil supply component and / or conveying device described above, and will not be repeated here.
[0077] In the description of this application, it should be noted that the terms "upper," "lower," etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. Unless otherwise expressly specified and limited, the terms "installed," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication between two elements. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.
[0078] It should be noted that in this application, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0079] The above description is merely a specific embodiment of this application, enabling those skilled in the art to understand or implement this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features claimed herein.
Claims
1. An oil supply assembly, mounted on a mobile platform, said mobile platform being mounted on a slider, the oil supply assembly being configured to communicate with the oil inlet of the slider, characterized in that, The oil supply assembly includes: At least one oil supply block, wherein the side of the oil supply block has a through oil supply hole and the top surface of the oil supply block has a through mounting hole, the oil supply hole and the mounting hole are staggered, and the oil supply hole is used to communicate with the oil inlet of the slider; the number of oil supply blocks corresponds to the number of sliders on a single slide rail; A connecting bolt passes through the oil supply block and is used for threaded connection with the moving platform; The oil supply blocks are stacked and arranged, and the mounting holes of the oil supply blocks are connected in sequence. The connecting bolts pass through the oil supply blocks from top to bottom and are connected to the mobile platform, thereby fixing the oil supply blocks to the mobile platform.
2. The oil supply assembly according to claim 1, characterized by The top surface of the oil supply block is provided with a stepped groove, which makes the top surface of the oil supply block arranged in a stepped shape, and the mounting hole is opened at the bottom of the stepped groove. Two oil supply blocks constitute a group of oil supply blocks. The stepped grooves of the two oil supply blocks in the same group are arranged with one facing upward and the other facing downward, and the bottoms of the stepped grooves of the two oil supply blocks in the same group abut against each other. Multiple sets of oil supply blocks are stacked sequentially from bottom to top. When the number of oil supply blocks is odd, the topmost oil supply block is stacked on top of the other oil supply blocks.
3. The oil supply assembly according to claim 2, characterized by When the number of oil supply blocks is odd, the stepped groove of the uppermost oil supply block is arranged facing upwards.
4. The oil supply assembly according to claim 2, characterized by The depth of the stepped groove is half that of the oil supply block. Two oil supply blocks in the same group are stacked together to form a combined block, and the top surface of the combined block is a plane.
5. The oil supply assembly according to any one of claims 1 to 4, characterized in that, The oil supply holes of the plurality of oil supply blocks are oriented in the same direction.
6. The oil feed assembly of any one of claims 1-4, wherein, Each of the oil supply blocks has at least two mounting holes, and the number of connecting bolts is the same as the number of mounting holes on the oil supply block; When multiple oil supply blocks are stacked, the mounting holes of the multiple oil supply blocks are connected one-to-one.
7. The oil supply assembly of claim 1, wherein The oil supply block is equipped with a magnetic component. When multiple oil supply blocks are stacked, adjacent oil supply blocks are attracted to each other through the magnetic component.
8. The oil supply assembly of claim 1, wherein It also includes a connector, which is installed on the oil supply port.
9. A delivery device characterized by, include: At least one slide rail, and multiple slide rails arranged side by side; At least one slider is slidably disposed on the slide rail, and at least one slider is arranged on each of the slide rails; A mobile platform, which is mounted on the slider; Multiple oil supply components as described in any one of claims 1 to 8, wherein the oil supply components are mounted on the mobile platform, and the oil inlets of all the sliders on a single slide rail are connected to the oil supply components.
10. A forming system characterized by, It includes the oil supply assembly as described in any one of claims 1 to 9, and / or the delivery device as described in claim 9.