Die transfer sliding table
By using a modularly designed mold transfer slide, combined with a hydraulic system and automated control, the problems of low efficiency and poor safety in traditional workpiece mold transfer are solved, achieving high-precision positioning and stable transfer, and reducing operating costs.
Patent Information
- Application Number
- CN202520050368.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2035-01-09
AI Technical Summary
Traditional workpiece mold transfer methods are inefficient, pose safety hazards, are difficult to achieve high-precision positioning, and lack effective anti-slip, limiting, and emergency braking measures. The complex mechanical structure also increases operating costs.
The modular mold transfer slide integrates a hydraulic press, pre-embedded light rails, a transfer car combination, a cable chain, and a transfer block. Combined with a hydraulic system and automated control, it achieves high-precision positioning and stable transfer of workpiece molds. It is equipped with manual brakes and a button box to ensure safety.
It improves the safety and stability of workpiece mold transfer, reduces the degree of manual intervention, enhances production efficiency and product quality, and reduces operating costs.
Smart Images

Figure CN223591708U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to workpiece transfer device field especially point to a mould transfer sliding table. BACKGROUND
[0002] In modern manufacturing industry, especially for the production process of large or heavy workpiece mold, the workpiece mold needs to be transferred from one process to another by special transfer equipment. The traditional transfer method mainly relies on manual operation of handcart, forklift and other tools, which is not only low in efficiency, but also has many safety hazards, such as transfer difficulty caused by insufficient manpower, instability of workpiece mold in the transfer process and possible harm to the operator. The traditional clamp or fixing device is difficult to adapt to workpiece molds of different sizes and shapes, and is prone to looseness or displacement. Manual or semi-automatic control system is difficult to realize high-precision positioning, which affects the subsequent machining quality. Lack of effective anti-skid, limiting and emergency braking measures, the equipment cannot be stopped in time in case of accident, increasing the risk of accident. The complex mechanical structure makes the daily inspection and maintenance work become cumbersome, increasing the operating cost. SUMMARY
[0003] In order to solve these problems existing in the prior art, the utility model provides a novel mold transfer sliding table, which aims to significantly improve the safety, stability and efficiency of workpiece mold transfer by integrating various advanced technical means, while reducing the degree of manual intervention and optimizing the overall production process.
[0004] The utility model discloses a mould transfer sliding table, it includes hydraulic machine, pre -buried light rail, translation car combination, tow chain and transfer block, the both sides of hydraulic machine are provided with corresponding side plate, the rear side of hydraulic machine is provided with backplate, is provided with mould platform on hydraulic machine;
[0005] The pre -buried light rail includes corresponding two, pre -buried light rail sets up in one side of hydraulic machine away from backplate;
[0006] Translation car combination is set up on pre -buried light rail correspondingly, translation car combination top is provided with drive assembly, drive assembly includes drive roller, set up in the one side of drive roller away from hydraulic machine push -pull slide, set up in the one side of drive roller and push -pull slide connection push -pull chain, the top of push -pull slide is provided with the pull hook that can be through push -pull slide control and carry out arc rotation, the inside of translation car combination is provided with switch board, switch board electric connection to drive assembly and hydraulic machine;
[0007] Tow chain sets up in one side of hydraulic machine away from backplate, and the tow chain is set up in translation car combination;
[0008] The transfer block comprises a base frame arranged at one end of the drag chain away from the hydraulic machine, the base frame is arranged on the same side of the hydraulic machine as the drag chain, and a plurality of roller strips are arranged above the base frame, and a plurality of rollers are arranged on the roller strips.
[0009] Further, a manual brake part for controlling the brake of the translation vehicle combination on the embedded light rail is arranged on one side of the translation vehicle combination.
[0010] Further, a welding frame for limiting is arranged on the outer side of the driving assembly on the translation vehicle combination, a button box for controlling the switch is arranged on one side of the welding frame, and the button box is electrically connected to the power distribution cabinet.
[0011] Further, the plurality of rollers arranged on the roller strips are provided with a plurality of anti-falling blocks.
[0012] Further, the driving roller comprises a plurality of rollers arranged at intervals in the left-right direction, and the push-pull chain is arranged between the plurality of rollers arranged at intervals in the left-right direction.
[0013] Further, a plurality of fixed metal sheets are arranged at the bottom of the embedded light rail.
[0014] Further, a plurality of anti-skid pads are arranged at the bottom of the hydraulic machine.
[0015] Further, the hydraulic machine comprises a plurality of hydraulic rods arranged on one side of the translation vehicle combination and a hydraulic plate arranged above the hydraulic rods and capable of moving up and down along the hydraulic rods.
[0016] The utility model discloses the beneficial effects of:
[0017] The utility model adopts the modularization design, and it is convenient for the technical personnel to approach the key components, simplifies the process of daily inspection, maintenance and trouble shooting. The button box provides a clear and concentrated operation interface, which facilitates quick diagnosis and problem troubleshooting, and reduces downtime. Stable installation reduces the relative movement between the embedded light rail and the supporting structure, reduces the wear rate, prolongs the service life of the track and its accessories, and indirectly reduces the long-term operation cost.
[0018] The utility model utilizes the precision control of the hydraulic system, so that the hydraulic plate can accurately reach the predetermined position, ensures the high-precision positioning of the tool assembly during machining or transfer, reduces the machining error caused by improper fixation, and helps to improve product quality. The automatic control system further reduces manual intervention, ensures the consistency and accuracy of each operation.
[0019] The utility model adopts the design of the combination of the hydraulic plate and the hydraulic rod, can flexibly adjust the position according to the height of the workpiece mold, and ensures that workpieces of different sizes and shapes can be effectively fixed. The hydraulic plate accurately applies pressure through the hydraulic system, prevents displacement during machining or transfer, and enhances the fixing effect. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of a mold transfer slide according to an embodiment of this application.
[0021] Figure 2 This is a cross-sectional structural diagram of a mold transfer slide according to an embodiment of this application.
[0022] In the diagram: mold transfer slide 100, hydraulic press 11, side plate 111, rear plate 112, mold table 113, embedded light rail 12, fixed sheet metal 121, translation vehicle assembly 13, drive assembly 131, drive roller 1311, push-pull slide plate 1312, push-pull chain 1313, hook 1314, power distribution cabinet 132, manual brake component 133, welding frame 134, button box 135, cable chain 14, transfer block 15, base frame 151, roller strip 152, roller 153, anti-detachment block 154. Detailed Implementation
[0023] To enable those skilled in the art to better understand the present invention, the technical solutions in the specific embodiments of the present invention will be clearly and completely described below.
[0024] The utility model discloses a mould transfer sliding table 100, it includes hydraulic machine 11, the both sides of hydraulic machine 11 are provided with corresponding side plate 111, the rear side of hydraulic machine 11 is provided with rear plate 112, and the mould table 113 is provided on hydraulic machine 11, and the workpiece mould is used for placing on the mould table 113, and hydraulic machine 11 is used for tightly fixing workpiece mould. The embedded light rail 12 includes two corresponding, and the embedded light rail 12 is arranged on the side of hydraulic machine 11 away from rear plate 112. The translation car combination 13 is correspondingly arranged on the embedded light rail 12, and the drive assembly 131 is arranged above the translation car combination 13, and the drive assembly 131 includes drive roller 1311, the push -and -pull slide 1312 of being arranged on the side of drive roller 1311 away from hydraulic machine 11, the push -and -pull chain 1313 of being arranged on the side of drive roller 1311 and being connected with push -and -pull slide 1312, the pull hook 1314 of being capable of being through push -and -pull slide 1312 control and being arranged above push -and -pull slide 1312 and being arc rotation, and the power distribution cabinet 132 is arranged in the inside of translation car combination 13, and the power distribution cabinet 132 is electrically connected to drive assembly 131 and hydraulic machine 11, and the translation car combination 13 moves on the embedded light rail 12, and drive assembly 131 moves push -and -pull slide 1312 by driving push -and -pull chain 1313, and the pull hook 1314 of being arranged above push -and -pull slide 1312 after push -and -pull slide 1312 moves to the side of hydraulic machine 11, and the pull hook 1314 hooks and fixes the workpiece mould on the mould table 113, then the workpiece mould on the mould table 113 is pulled to the translation car combination 13 by drive assembly 131 control push -and -pull chain 1313 and drive push -and -pull slide 1312, and the drive roller 1311 arranged on the translation car combination 13 is used to facilitate drive workpiece mould to move. The tow chain 14 is arranged on the side of hydraulic machine 11 away from rear plate 112, and the tow chain 14 is arranged in the translation car combination 13, and the translation car combination 13 moves on the embedded light rail 12 by the drive of tow chain 14. The transfer block 15 includes the chassis 151, and the chassis 151 is arranged on the end of tow chain 14 away from hydraulic machine 11, and the chassis 151 is on the same side of hydraulic machine 11 in the tow chain 14, and the chassis 151 includes a plurality of roller strips 152 above, and a plurality of rollers 153 are arranged on the roller strip 152. The translation car combination 13 moves on the embedded light rail 12 by the drive of tow chain 14, and after moving to the transfer area, the translation car combination 13 is docked with the transfer block 15, and drive assembly 131 drives push -and -pull slide 1312 to move by driving push -and -pull chain 1313 at this time, and push -and -pull slide 1312 moves the workpiece mould to the transfer area by the pull hook 1314, and the workpiece mould is placed to the transfer area by the pull hook 1314 arranged above push -and -pull slide 1312 at this time. The above-mentioned process is circular, and the transfer movement of workpiece mould is completed.
[0025] The mold transfer sliding table 100 of the present application realizes the automatic transfer of the workpiece mold from the hydraulic machine 11 to the transfer block 15 through the coordinated work of the driving assembly 131 including the driving rollers 1311, the push-pull sliding plate 1312, the push-pull chain 1313 and the pull hook 1314. This not only improves the work efficiency, but also reduces the dependence on manual operation. The design of the combination of the drag chain 14 and the translation car 13 ensures the stable movement of the translation car on the embedded light rail 12 and the accurate positioning of the workpiece mold during the transfer process, which helps to improve the product quality. Since the entire transfer process almost does not require direct human intervention, the risk of injury to workers during operation is greatly reduced.
[0026] As an embodiment, a manual brake 133 for controlling the brake of the translation car combination 13 on the embedded light rail 12 is provided on one side of the translation car combination 13. The manual brake 133 provides an emergency braking means when the automatic control system fails or encounters an emergency, ensuring the safety of the equipment and personnel. When it is necessary to accurately park the translation car at a specific location such as the transfer block 15, the operator can use the manual brake 133 to achieve more precise position control, which is particularly important for some processes that require high position accuracy. When performing maintenance or repair work on the equipment, the translation car can be fixed in a safe position by the manual brake to prevent accidental movement and provide a stable working platform for technicians.
[0027] As an embodiment, the outside of the driving assembly 131 on the translation car combination 13 is provided with a welded frame 134 for limiting, and one side of the welded frame 134 is provided with a button box 135 for controlling the switch, and the button box 135 is electrically connected to the power distribution cabinet 132. The welded frame 134 as a physical barrier can effectively prevent the driving assembly 131 from exceeding the predetermined working range, avoiding damage or accidents caused by excessive movement of mechanical parts. The button box 135 contains an emergency stop button, allowing the operator to quickly cut off the power and immediately stop all movements when encountering dangerous situations. The presence of the button box 135 allows the operator to perform necessary control operations directly near the translation car without returning to the central control console, improving work efficiency.
[0028] As an embodiment, a plurality of anti-drop blocks 154 are arranged on the plurality of rollers on the roller strip 152. The anti-drop blocks 154 can effectively prevent accidental movement of the tool assembly on the roller strip 152, especially when encountering vibration or inclination during the transfer process, ensuring the stability and safety of the tool assembly. When the tool assembly needs to be accurately placed or aligned, the anti-drop blocks 154 can ensure that its position does not shift, helping to improve the manufacturing precision and quality of the product.
[0029] As an embodiment, the driving rollers 1311 include a plurality of rollers arranged at intervals in the left-right direction, and the push-pull chain 1313 is arranged between the plurality of rollers arranged at intervals in the left-right direction. The plurality of rollers are arranged at intervals in the left-right direction, so that the load can be more evenly distributed on each roller, reducing the pressure borne by a single roller, thereby improving the carrying capacity and stability of the system. By arranging the push-pull chain 1313 between the rollers, the contact between the chain and the rollers can be ensured to be more closely and smoothly, reducing the frictional resistance in operation, thereby improving the efficiency of the entire transmission system. The design of the plurality of rollers ensures smooth movement of the translation car combination 13 on the embedded light rail 12, reduces vibration or instability caused by a single roller failure or uneven load, and improves the safety of operation.
[0030] As an embodiment, the bottom of the embedded light rail 12 is provided with a plurality of fixed metal sheets 121. The fixed metal sheets 121 firmly fix the embedded light rail 12 to the foundation structure by welding, bolt connection or other means, ensuring the stability and reliability of the entire sliding table system. It effectively avoids the movement or deviation of the embedded light rail 12 caused by external forces such as vibration during equipment operation, ensuring the accuracy during the transfer of workpiece molds. The stable fixing measure reduces the risk of loosening or falling of the embedded light rail 12, thereby reducing the potential safety hazard and protecting the safety of the operating personnel and surrounding equipment.
[0031] As an embodiment, the bottom of the hydraulic machine 11 is provided with a plurality of anti-skid pads. The anti-skid pads can significantly increase the friction between the hydraulic machine 11 and the ground, effectively preventing accidental movement of the equipment during operation due to vibration or external forces. It ensures that the hydraulic machine 11 maintains a stable position during work, improving the safety and accuracy of operation, especially in the case of high-precision machining or fixing workpieces.
[0032] As an embodiment, the hydraulic machine 11 includes a plurality of hydraulic rods arranged on one side of the translation car combination 13 and a hydraulic plate arranged above the hydraulic rods and capable of moving up and down along the hydraulic rods. The hydraulic plate can accurately apply pressure through the drive of the hydraulic rods, ensuring that the tool assembly is firmly fixed on the mold table 113 and preventing displacement during machining or transfer. The hydraulic plate can flexibly adjust the position according to the height of the tool assembly, ensuring that workpieces of different sizes and shapes can be effectively fixed. The precise control of the hydraulic system enables the hydraulic plate to accurately reach the predetermined position, ensuring high-precision positioning of the tool assembly during machining or transfer.
[0033] It should be understood that for those skilled in the art, improvements or changes can be made according to the above description, and all such improvements and changes shall fall within the scope of protection of the appended claims of the present utility model.
Claims
1. A mold transfer slide, characterized in that, include: The hydraulic press has corresponding side plates on both sides, a rear plate on the rear side, and a mold table on the hydraulic press. The pre-embedded light rails consist of two corresponding rails, which are set on the side of the hydraulic press away from the rear plate. The translation vehicle assembly is installed on the pre-embedded light rail. A drive component is installed on top of the translation vehicle assembly. The drive component includes drive rollers, a push-pull slide plate located on the side of the drive rollers away from the hydraulic press, and a push-pull chain located on the side of the drive rollers and connected to the push-pull slide plate. A hook that can be controlled to rotate in an arc shape is installed above the push-pull slide plate. An electrical distribution cabinet is installed inside the translation vehicle assembly. The electrical distribution cabinet is electrically connected to the drive component and the hydraulic press. Cable chain, the cable chain is located on the side of the hydraulic press away from the rear plate, the cable chain is installed in the translation vehicle assembly; The transfer block includes a base frame, which is located at the end of the cable chain away from the hydraulic press. The base frame and the hydraulic press are on the same side of the cable chain. Above the base frame are several roller strips, on which several rollers are installed.
2. The mold transfer slide according to claim 1, characterized in that: A manual brake is installed on one side of the translation vehicle assembly to control the translation vehicle assembly to brake on the pre-embedded light rail.
3. The mold transfer slide according to claim 1, characterized in that: The drive assembly on the translation vehicle assembly has a welding frame for limiting the position on its outer side. A button box for controlling the switch is located on one side of the welding frame. The button box is electrically connected to the power distribution cabinet.
4. The mold transfer slide according to claim 1, characterized in that: The rollers on the roller bar are equipped with several anti-detachment blocks.
5. A mold transfer slide according to claim 1, characterized in that: The drive rollers include several rollers, which are arranged at intervals in the left-right direction, and the push-pull chain is set between the several rollers arranged at intervals in the left-right direction.
6. A mold transfer slide according to claim 1, characterized in that: Several fixed sheet metal parts are installed at the bottom of the pre-embedded light rail.
7. A mold transfer slide according to claim 1, characterized in that: The bottom of the hydraulic press is equipped with several anti-slip pads.
8. A mold transfer slide according to claim 1, characterized in that: The hydraulic press includes several hydraulic rods arranged on one side of the translation vehicle assembly and a hydraulic plate arranged above the hydraulic rods that can move up and down along the hydraulic rods.