Power supporting plate structure
By designing the power support plate structure and utilizing features such as through holes, positioning holes, crossbars, and calibration points, the precise positioning and stable installation of the engine support plate were achieved, solving the problem of imperfect bonding in existing technologies and improving vibration absorption and installation stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-04-03
AI Technical Summary
Existing car and motorcycle engine support plates are arbitrarily fixed with bolts, resulting in an imperfect integration with the power structure and an inability to effectively absorb engine vibration and reduce impact.
It adopts a power support plate structure with through holes, positioning holes, notches, crossbars, fixing rods and calibration points. Precise positioning and swing restriction are achieved by mounting bolts and rubber ends. Combined with calibration plates and clamps, installation accuracy is ensured.
The improved fit between the engine support plate and the chassis effectively absorbs engine vibration, reduces impact, and ensures a stable installation.
Smart Images

Figure CN224075391U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to assembly parts, specifically to a power support plate structure. Background Technology
[0002] Engine mounts (or skid plates) play a crucial role in automobiles and motorcycles, and are mainly divided into two categories: engine mounts and skid plates / engine guards. They secure the engine to the frame / chassis and absorb vibrations from engine operation, preventing them from being transmitted to the vehicle body. They also reduce the impact of the engine on the frame when the vehicle accelerates, brakes, or encounters bumps. Therefore, the mounts need to be perfectly integrated with the power structure, but currently they are often haphazardly fixed with bolts. Utility Model Content
[0003] The problem this utility model aims to solve is to provide a power support plate structure for use with the power output of a motorcycle or automobile engine, addressing the aforementioned shortcomings in the existing technology.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: a power support plate structure, comprising a power support plate body, wherein the power support plate body is provided with a through hole, and a plurality of positioning holes are provided around the through hole, wherein mounting bolts for positioning are provided in the positioning holes, the power support plate body has a notch, wherein a crossbar is engaged at the notch, wherein a first fixing rod and a second fixing rod are provided on the crossbar, wherein a first calibration point and a second calibration point are respectively provided on the lower surfaces of the first fixing rod and the second fixing rod, wherein a calibration plate is provided on the crossbar between the first fixing rod and the second fixing rod, and the calibration plate is provided with a plurality of calibration holes.
[0005] Furthermore, the power support plate body clamps a clamping plate, the clamping plate has an arc-shaped notch corresponding to the power support plate body, and the clamping plate has a third calibration point and a fourth calibration point, the third calibration point and the fourth calibration point are on the same plane as the first calibration point and the second calibration point.
[0006] Furthermore, both ends of the crossbar are provided with rubber ends for abutting against the notch.
[0007] Compared with the prior art, the present invention has the following advantages: the mounting bolt and the positioning hole are used to position and install the power support plate body; the crossbar is pressed against the notch to restrict the horizontal swing of the power support plate body; the crossbar is fixed to the machine tool by the first fixing rod and the second fixing rod; the first calibration point and the second calibration point protrude from the lower surface of the first fixing rod and the second fixing rod respectively to determine whether the crossbar is horizontal.
[0008] Other advantages, objectives and features of this invention will be partly apparent from the following description, and partly understood by those skilled in the art through study and practice of this invention. Attached Figure Description
[0009] Figure 1 This is a structural schematic diagram of a dynamic support plate structure. Detailed Implementation
[0010] To make the technical means, creative features, achieved objectives and functions of this utility model clearer and easier to understand, the utility model will be further described below with reference to the accompanying drawings and specific embodiments:
[0011] This utility model proposes a power support plate structure, including a power support plate body 1. The power support plate body 1 has a through hole 2, and a plurality of positioning holes 3 are arranged around the through hole 2. The positioning holes 3 are provided with mounting bolts 4 for positioning. The power support plate body 1 has a notch, and a crossbar 5 is engaged at the notch. The crossbar 5 is provided with a first fixing rod 6 and a second fixing rod 10. The lower surfaces of the first fixing rod 6 and the second fixing rod 10 are respectively provided with a first calibration point 7 and a second calibration point 11. The crossbar between the first fixing rod 6 and the second fixing rod 10... The 5 is equipped with a calibration plate 8, which has multiple calibration holes 9. The calibration holes 9 are used to correspond to the corresponding bosses set on the machine tool. The power support plate body 1 is provided with protrusions corresponding to the first calibration point 7 and the second calibration point 11. When the protrusions are on the same horizontal plane as the first calibration point 7 and the second calibration point 11, it indicates that the power support plate body 1 has reached the designated position and can also calibrate whether the product is qualified. The first calibration point 7 and the second calibration point 11 are sensed by existing lasers or sensors. The first calibration point 7 and the second calibration point 11 are the sensing ends.
[0012] The power support plate body 1 clamps a clamping plate 12. The clamping plate 12 has an arc-shaped notch 13 corresponding to the power support plate body 1. The clamping plate 12 has a third calibration point 14 and a fourth calibration point 15. The third calibration point 14 and the fourth calibration point 15 are on the same plane as the first calibration point 7 and the second calibration point 11. The third calibration point 14 and the fourth calibration point 15, the first calibration point 7 and the second calibration point 11 are respectively located at both ends of the power support plate body 1. By having the first calibration point 7, the second calibration point 11, the third calibration point 14 and the fourth calibration point 15 correspond together, the power support plate body 1 is ensured to be in the required installation position, thereby avoiding direct clamping of the power support plate body 1.
[0013] Both ends of the crossbar 5 are provided with rubber ends for abutting against the notch.
[0014] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A powered support pad structure, characterized by: Including power support plate body (1), be equipped with through -hole (2) on the power support plate body (1), be equipped with multiple positioning holes (3) around the through -hole (2) on the power support plate body (1), be equipped with installation bolt (4) for positioning on the positioning hole (3), the power support plate body (1) has a notch, the cross bar (5) is clamped at the notch, the cross bar (5) is equipped with first fixed rod (6) and second fixed rod (10), the lower surface of first fixed rod (6) and second fixed rod (10) is equipped with first calibration point (7) and second calibration point (11) respectively, the cross bar (5) between first fixed rod (6) and second fixed rod (10) is equipped with calibration plate (8), the calibration plate (8) is equipped with multiple calibration holes (9).
2. The powered support structure of claim 1, wherein: The power support plate body (1) clamps the clamp plate (12), the clamp plate (12) is equipped with arc-shaped notch (13) corresponding the power support plate body (1), the clamp plate (12) is equipped with third calibration point (14) and fourth calibration point (15), the third calibration point (14) and fourth calibration point (15) are on the same plane with the first calibration point (7) and second calibration point (11).
3. The powered support structure of claim 1, wherein: The cross bar (5) both ends are equipped with rubber end for abutting in the notch.