Small-space downhill pitched roof demolding structure

Through the composite movement of the inclined top structure and the slider, combined with the lubrication of accumulated cotton and lubrication chute, the high wear rate problem of the small-space downhill inclined top mold release structure is solved, and the composite angle mold release effect with low wear is achieved.

CN120481144APending Publication Date: 2025-08-15SHENZHEN JINSUNWAY MOULD CO LTD
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Patent Information

Application Number
CN202510805065.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-17
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

The traditional small space downhill inclined top mold release structure has a high wear rate problem caused by composite movement.

Method used

The composite movement of the oblique top structure and the slider is adopted, and the accumulated cotton and lubrication chute are combined for lubrication to reduce wear.

Benefits of technology

Achieve composite angle demolding under small space conditions, reduce wear rate and improve equipment service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a small-space downhill pitched roof demolding structure which comprises a plate A, a movable groove A, an auxiliary rod, a sliding block, a plate B, an auxiliary rod hole, a downhill T-shaped groove, a movable groove B, a pitched roof structure and a pressing plate. A sliding groove A is formed in the front portion of the plate A, the auxiliary rod is obliquely installed on the rear portion of the bottom end of the plate A, the sliding block is installed at the top end of the plate B, and the auxiliary rod hole is formed in the rear portion of the sliding block and the rear portion of the plate B; the auxiliary rod is slidably connected to the auxiliary rod hole, the downhill T-shaped groove is formed in the front middle portion of the sliding block, the movable groove B is formed in the downhill T-shaped groove through the top end of the sliding block, the inclined top connector is installed on the sliding block through the downhill T-shaped groove, and the pressing plates are installed at the two ends of the downhill T-shaped groove respectively. The problem that when a small-space downhill pitched roof demolding structure is used, due to the fact that a pitched roof and other moving parts need to do complex composite motion, the high abrasion rate is caused is solved.
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Description

Technical Field

[0001] The present invention relates to a small space downhill slope top demoulding structure, in particular to a small space downhill slope top demoulding structure. Background Art

[0002] In limited space conditions, traditional demoulding mechanisms may not work effectively because there is not enough room to arrange a ramp or other demoulding components. Generally speaking, demoulding with a downhill ramp can indeed solve some specific demoulding problems, especially when the product has undercuts or there are parts in the mold that are difficult to eject directly.

[0003] When the downhill inclined ejector structure is in use, the inclined ejector and other moving parts (such as sliders and auxiliary rods) need to perform complex compound movements, which may lead to a higher wear rate. Summary of the Invention

[0004] The purpose of the present invention is to provide a small space downhill inclined top demoulding structure to solve the above technical problems.

[0005] To achieve the above-mentioned purpose, the present invention adopts the following technical solutions: a small space downhill inclined top demolding structure, comprising an A plate, a movable groove A, an auxiliary rod, a slider, a B plate, an auxiliary rod hole, a downhill T-slot, a movable groove B, an inclined top structure, and a pressure plate. The sliding groove A is opened at the front of the A plate, the auxiliary rod is obliquely installed at the rear of the bottom end of the A plate, the slider is installed at the top of the B plate, the auxiliary rod hole is opened at the slider and the rear of the B plate, and the auxiliary rod is slidably connected to the auxiliary rod hole, the downhill T-slot is opened at the middle front of the slider, the movable groove B is opened in the downhill T-slot through the top of the slider, the inclined top interface is installed on the slider through the downhill T-slot, and the pressure plates are respectively installed at both ends of the downhill T-slot.

[0006] Based on the above technical solution, the inclined lift structure includes a slide, cotton storage, a through groove, a lubrication groove, and an inclined lift rod. The slide is slidably connected to the downhill T-groove, and the cotton storage is respectively installed at the upper and lower ends of the slide. The through groove is opened at the upper and lower ends and the left and right parts of the slide respectively. The lubrication groove is distributed at the left and right ends of the slide. The inclined lift rod is installed on the slide through the movable groove B, and the inclined lift rod corresponds to the A plate through the movable groove A.

[0007] On the basis of the above technical solution, the accumulated cotton absorbs or discharges lubricating oil to lubricate the downslope T-slot as the slide seat contacts the pressure plate.

[0008] Compared with the prior art, the present invention has the following advantages: the present invention realizes composite angle demoulding of the inclined top by utilizing the composite movement of the inclined top structure and the slider under the condition of a downhill inclined top structure in a small space, and utilizes the accumulated cotton in combination with the through groove and the lubrication groove for sufficient lubrication to reduce wear. BRIEF DESCRIPTION OF THE DRAWINGS

[0009] Figure 1 It is a schematic diagram of the appearance structure of the present invention.

[0010] Figure 2 It is a schematic diagram of the demoulding state of the present invention.

[0011] Figure 3 This is a structural diagram of the slider of the present invention.

[0012] Figure 4 This is a schematic diagram of the demoulding state of the slider of the present invention.

[0013] Figure 5 Schematic diagram of the inclined roof structure of the present invention. In the figure: 1. Plate A, 2. Movable groove A, 3. Auxiliary rod, 4. Slider, 5. Plate B, 6. Auxiliary rod hole, 7. Downhill T-slot, 8. Movable groove B, 9. Slanted top structure, 10. Pressing plate, 11. Sliding seat, 12. Cotton storage, 13. Barrel groove, 14. Lubrication groove, 15. Slanted top rod. DETAILED DESCRIPTION

[0014] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0015] like Figures 1 to 5 As shown, a small space downhill inclined top demoulding structure includes an A plate 1, a movable groove A2, an auxiliary rod 3, a slider 4, a B plate 5, an auxiliary rod hole 6, a downhill T-slot 7, a movable groove B8, an inclined top structure 9, and a pressure plate 10. The sliding groove A2 is opened at the front of the A plate 1, the auxiliary rod 3 is obliquely installed at the rear of the bottom end of the A plate 1, the slider 4 is installed at the top of the B plate 5, the auxiliary rod hole 6 is opened at the slider 4 and the rear of the B plate 5, and the auxiliary rod 3 is slidably connected to the auxiliary rod hole 6, the downhill T-slot 7 is opened in the middle front of the slider 4, the movable groove B8 is opened in the downhill T-slot 7 through the top of the slider 4, the inclined top interface 9 is installed on the slider 4 through the downhill T-slot 7, and the pressure plate 10 is respectively installed at both ends of the downhill T-slot 7.

[0016] The inclined top structure 9 includes a slide 11, accumulated cotton 12, a through groove 13, a lubrication groove 14, and an inclined top rod 15. The slide 11 is slidably connected to the downhill T-slot 7. The accumulated cotton 12 is respectively installed at the upper and lower ends of the slide 11. The through groove 13 is respectively opened at the upper and lower ends and the left and right parts of the slide 11. The lubrication groove 14 is distributed at the left and right ends of the slide 11. The inclined top rod 15 is installed on the slide 11 through the movable groove B8, and the inclined top rod 15 corresponds to the A plate 1 through the movable groove A2.

[0017] The accumulated cotton 12 absorbs or discharges lubricating oil as the slide 1 contacts the pressing plate 10 to lubricate the downslope T-slot 7 .

[0018] The working principle of the present invention is as follows: the B plate 5 drives the slider 4 to move obliquely upward along the auxiliary rod 3, and the inclined top structure 9 moves obliquely downward along the slider 4 through the downhill T-slot 7. The compound movement causes the inclined top rod 15 to move along the compound angle direction to realize the ejection and tripping action. The accumulated cotton 12 absorbs or discharges lubricating oil as the slide 1 contacts the pressure plate 10. The lubricating oil passes through the through groove 13 and the lubrication groove 14 to fully lubricate the slide 1 when it moves in the downhill T-slot 7, thereby reducing wear.

[0019] The above is a preferred embodiment of the present invention. For ordinary technicians in this field, based on the teachings of the present invention, without departing from the principles and spirit of the present invention, changes, modifications, substitutions and variations made to the implementation methods are still within the scope of protection of the present invention.

Claims

1. A small space downhill inclined roof demoulding structure, comprising an A plate (1), a movable groove A (2), an auxiliary rod (3), a slider (4), a B plate (5), an auxiliary rod hole (6), a downhill T-shaped groove (7), a movable groove B (8), an inclined roof structure (9), and a pressure plate (10), characterized in that: The front of the A plate (1) is provided with a sliding groove A (2), the auxiliary rod (3) is obliquely mounted on the rear bottom of the A plate (1), the slider (4) is mounted on the top of the B plate (5), the auxiliary rod hole (6) is opened at the slider (4) and the rear of the B plate (5), and the auxiliary rod (3) is slidably connected to the auxiliary rod hole (6), the downhill T-shaped groove (7) is opened at the front middle of the slider (4), the movable groove B (8) is opened at the downhill T-shaped groove (7) through the top of the slider (4), the inclined top interface (9) is mounted on the slider (4) through the downhill T-shaped groove (7), and the pressure plate (10) is respectively mounted at both ends of the downhill T-shaped groove (7).

2. The small space downhill inclined roof demoulding structure according to claim 1, characterized in that: The inclined top structure (9) includes a slide (11), accumulated cotton (12), a through groove (13), a lubricating groove (14), and an inclined top rod (15). The slide (11) is slidably connected to the downhill T-shaped groove (7). The accumulated cotton (12) is respectively installed at the upper and lower ends of the slide (11). The through groove (13) is opened at the upper and lower ends and the left and right parts of the slide (11). The lubricating groove (14) is distributed at the left and right ends of the slide (11). The inclined top rod (15) is installed on the slide (11) through the movable groove B (8), and the inclined top rod (15) corresponds to the A plate (1) through the movable groove A (2).

3. The small space downhill inclined roof demoulding structure according to claim 2, characterized in that: The accumulated cotton (12) absorbs or discharges lubricating oil as the slide (1) contacts the pressing plate (10) to lubricate the downhill T-slot (7).