Universal quick product cutting jig

By designing a universal, high-speed product cutting fixture, and utilizing a combination of sliding positioning blocks and quick clamps for fixing, the problems of low safety, poor precision, and insufficient versatility in traditional cutting methods are solved. This achieves efficient, safe, and precise cutting results, improving production efficiency and product quality.

CN224675015UActive Publication Date: 2026-08-25GREATECH MOLD & PLASTIC
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Patent Information

Application Number
CN202522071203.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-08-25
Estimated Expiration
2035-09-26

AI Technical Summary

Technical Problem

Traditional small-product cutting suffers from problems such as low operational safety, poor cutting precision, insufficient product versatility, easy damage to product surfaces, and low production efficiency, which affect production quality, efficiency, and economic benefits.

Method used

A universal fast product cutting fixture was designed, which adopts a combination of sliding positioning blocks and quick clamps for fixing. Combined with the guide structure of slide rails and ball bearings, it ensures that the electric saw moves smoothly on the slide rails, realizes all-round limiting and fixing of the product, adapts to the cutting of products of different specifications and styles, and reduces surface damage by using product padding cloth.

Benefits of technology

It significantly reduces the possibility of personal injury accidents, improves cutting accuracy and product appearance quality, simplifies operation procedures, reduces fixture replacement and storage costs, and improves production efficiency and equipment utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cutting jig, concretely is a general quick product cutting jig, aims at solving traditional cutting operation safety hidden danger big, low precision, poor versatility and so on problem. The jig includes jig bottom plate, sliding block fixed plate and electric saw, the sliding block fixed plate is fixed in the jig bottom plate rear portion, is equipped with two parallel T type slide on it, is connected to the symmetrical sliding positioning block on T type slide, and the sliding positioning block fixed quick clamp and pressure block, and is cooperated through T type buckle and T type slide, the front part of jig bottom plate is equipped with slide rail, and the slide rail is connected to sliding seat, and the electric saw is fixed on the upper surface of sliding seat. When using, the product is positioned through the sliding positioning block and quick clamp, and the electric saw moves along the slide rail and cuts. The jig promotes operation safety and cutting precision, is suitable for multiple products, is also equipped with product cloth 8 and protects the product surface, is applicable to the product cutting of mobile phone shell, tablet computer shell and the like.
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Description

Technical Field

[0001] This utility model relates to the technical field of cutting fixtures, specifically a general-purpose rapid product cutting fixture. Background Technology

[0002] In modern manufacturing, product cutting is a crucial link in many production processes, especially for small products like phone cases and tablet cases, which come in various shapes and sizes. The rationality and efficiency of the cutting process directly affect product quality, production efficiency, and cost control for enterprises. After cutting, products need to be used in conjunction with other machines for reliable testing. These machines have limited strokes to cut products to fixed dimensions, allowing different specifications to undergo wear resistance tests or other reliability tests on specific machines. Furthermore, data that cannot be measured for internal undercuts can be obtained by projecting measurements after cutting next to the undercuts. Finally, the cut surface allows observation of the bonding between the adhesive and the aluminum alloy, and assessment of the overall structural strength of the product. However, in the current field of cutting these small products, traditional cutting methods still have many problems that urgently need to be solved. These problems not only hinder smooth production but may also lead to safety hazards and economic losses.

[0003] From an operational safety perspective, traditional manual cutting methods require operators to grip the product firmly with their hands to ensure it cuts to the desired test position. However, with chainsaws and other cutting tools operating at high speeds, operator fatigue, inattention, or operational errors can easily lead to hand contact with the high-speed rotating saw blade, resulting in serious personal injury. Industry statistics show that numerous workplace injuries are caused annually by improper manual cutting operations. These accidents not only cause immense suffering for injured employees and their families but also result in substantial medical compensation costs, downtime losses, and negative social impacts for businesses. Furthermore, the instability of the hand gripping the product during cutting can cause it to wobble, affecting cutting accuracy and potentially leading to saw blade breakage due to uneven stress, further exacerbating safety risks.

[0004] In terms of cutting precision, the drawbacks of traditional manual cutting methods are even more pronounced. Lacking stable positioning and guiding mechanisms, operators rely entirely on experience and feel to control the cutting direction and force, making it easy for the cut to be slanted or uneven. Slanted or uneven cuts lead to inaccurate testing; at the same time, this precision deficiency increases the product rework rate. Extensive rework not only wastes raw materials and labor costs but also prolongs the production cycle and reduces the company's production efficiency.

[0005] From a product versatility perspective, traditional cutting fixtures are mostly designed and manufactured specifically for products of particular specifications and styles. Once a company needs to produce new specifications and styles of phone cases or tablet cases, the existing cutting fixtures become inadequate, necessitating the design and manufacture of new fixtures. The design, processing, and debugging of new fixtures often require significant time and money, increasing production costs and causing production delays. In the context of rapidly changing market demands and increasingly rapid product iteration, the limitations of these specialized fixtures are becoming increasingly apparent. To meet the needs of different customers, companies are forced to stock large quantities of different types of fixtures, which not only occupies significant production space and capital but also increases the difficulty of fixture management, hindering the achievement of lean production and cost control.

[0006] In summary, the current field of small-scale product cutting faces a series of problems, including low operational safety, poor cutting accuracy, insufficient product versatility, easy damage to product surfaces, and low production efficiency. These problems seriously affect the production quality, efficiency, and economic benefits of enterprises, and fail to meet the demands of modern manufacturing for efficient, precise, safe, and versatile production processes. Therefore, developing a universal, rapid-cutting product fixture that can solve the above problems has become a key technological challenge that urgently needs to be overcome in this field, and it has significant practical implications for promoting technological progress and industrial upgrading in the small-scale product manufacturing industry. Utility Model Content

[0007] To address the shortcomings of existing technologies, this utility model provides a universal and rapid product cutting fixture, which solves the problems mentioned in the background section.

[0008] Technical solution

[0009] To achieve the above objectives, this utility model provides the following technical solution: a universal quick-cutting fixture, comprising a fixture base plate, a sliding block fixing plate, and an electric saw; characterized in that: the sliding block fixing plate is fixed to the rear of the upper surface of the fixture base plate, and two T-shaped slides are provided parallel to each other on its upper surface; two sliding positioning blocks are symmetrically connected to the upper surfaces of the two T-shaped slides; a quick clamp is fixed to the rear center of the upper surface of each sliding positioning block, and a pressure block is connected to the end of the quick clamp; two T-shaped buckles are symmetrically connected to the left and right sides below each sliding positioning block, the T-shaped buckles match the T-shaped slides, and the two T-shaped buckles are respectively connected to the two T-shaped slides; a slide rail is provided at the front of the upper surface of the fixture base plate, and a sliding seat is slidably connected to the slide rail; the electric saw is fixed to the upper surface of the sliding seat.

[0010] Preferably, the two quick clamps are arranged in a mirror-symmetrical manner, the two pressure blocks are arranged in a mirror-symmetrical manner, and the sliding positioning block is connected to the T-shaped buckle by a T-shaped screw.

[0011] Preferably, the longitudinal center axis of the slide rail is parallel to the longitudinal center axis of the T-shaped slide.

[0012] Preferably, the slide rail has two arc-shaped slide tracks symmetrically arranged on the left and right sides, and the lower surface of the sliding seat has several clamping and positioning blocks symmetrically arranged on the left and right sides. Each clamping and positioning block has several balls evenly arranged on its inner side, and the balls match and are connected to the slide tracks.

[0013] Preferably, the electric saw is equipped with a saw blade, and the lowest cutting end of the saw blade is lower than the height of the sliding block fixing plate.

[0014] Preferably, a product pad is provided on the rear part of the upper surface of the sliding block fixing plate.

[0015] This utility model provides a universal and rapid product cutting fixture, which has the following beneficial effects: 1. This fixture changes the traditional manual cutting method where operators need to hold the product tightly with their hands. It limits the product in the left, right, forward and backward directions by sliding positioning blocks, and then uses quick clamps and pressure blocks to press and fix it in the up and down directions. During the entire cutting process, the operator does not need to touch the product with their hands, which greatly reduces the probability of the operator's hands coming into contact with the high-speed rotating saw blade. This fundamentally reduces the possibility of personal injury accidents and effectively protects the operator's personal safety. It also avoids secondary safety risks such as the saw blade breaking due to the product shaking caused by unstable hand grip.

[0016] 2. The center axis of the slide rail in the fixture is parallel to the center axis of the T-shaped slide rail. Combined with comprehensive positioning and fixing of the product, this ensures the chainsaw moves smoothly along the slide rail under the drive of the sliding base, avoiding the slanted cuts caused by human error in traditional manual cutting. Furthermore, the arc-shaped slide rails on both sides of the slide rail cooperate with the ball bearings on the clamping positioning blocks of the sliding base, making the chainsaw movement smoother and more stable, further ensuring cutting accuracy. This ensures the product can be accurately cut to the required test position, while also producing a smooth and even cut, reducing subsequent rework and improving the overall quality of the product.

[0017] 3. The sliding positioning block is connected to the T-shaped track on the sliding block fixing plate via a T-shaped buckle. The T-shaped buckle can slide freely within the T-shaped track, thus allowing for flexible adjustment of the distance between the two sliding positioning blocks. This design enables the fixture to adapt to products such as mobile phone cases and tablet cases of different widths and styles within a certain range, eliminating the need to design and manufacture special fixtures for each product specification. During adjustment, simply slide the positioning block to the appropriate position and tighten the T-shaped screw to complete the fixation. The operation is simple and quick, saving companies time and money on fixture replacement, reducing fixture storage space, simplifying fixture management, and improving the utilization rate of production equipment.

[0018] 4. A product pad, preferably made of fleece, is placed on the rear of the upper surface of the sliding block fixing plate. This effectively cushions the contact force between the product and the fixture surface during product placement and cutting. When vibrations occur during cutting, the product pad reduces direct friction between the product and the metal surface of the sliding block fixing plate, minimizing scratches and other defects and ensuring the product's appearance quality. For products such as phone cases and tablet cases where appearance is important, this design significantly enhances market competitiveness, reduces product scrap rates due to surface damage, and lowers production costs.

[0019] 5. The fixture's structural design simplifies the product cutting process, allowing operators to master its use without extensive professional training. During cutting, product positioning, clamping, and saw movement are all more convenient and efficient, significantly reducing the cutting time for individual products compared to traditional manual cutting methods. Furthermore, the fixture's versatility eliminates the need for extensive fixture changes and adjustments when cutting different products, enabling continuous, batch production and effectively improving overall enterprise production efficiency. Attached Figure Description

[0020] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is the front view of the present invention; Figure 3 for Figure 2 Top view; Figure 4 for Figure 2 The left view; Figure 5 for Figure 3 Sectional view of AA; Figure 6 for Figure 4 BB section view; In the diagram: 1. Fixture base plate; 2. Sliding block fixing plate; 201. T-shaped slide rail; 202. T-shaped buckle; 3. Electric saw; 301. Saw blade; 4. Sliding positioning block; 5. Quick clamp; 6. Pressure block; 7. Slide rail; 701. Sliding seat; 702. Slide rail; 703. Clamping positioning block; 704. Ball bearing; 8. Product pad; 9. T-shaped screw; 10. Product. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0022] In this application, the terms "upper," "lower," "inner," "middle," "outer," "front," and "rear," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0023] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0024] Example 1: Please refer to Figures 1 to 6 This utility model provides a technical solution: a universal quick-cutting product fixture, including a fixture base plate (1), a sliding block fixing plate (2), and an electric saw (3); the sliding block fixing plate (2) is fixed to the rear part of the upper surface of the fixture base plate (1), and two through T-shaped slides (201) are provided parallel to each other on its upper surface. Two sliding positioning blocks (4) are symmetrically connected to the upper surface of the two T-shaped slides (201). A quick clamp (5) is fixed to the rear center of the upper surface of each sliding positioning block (4) by a threaded part. The end of the quick clamp (5) A pressure block (6) is connected; two T-shaped buckles (202) are symmetrically connected on the left and right sides below each sliding positioning block (4), the T-shaped buckles (202) match the T-shaped slides (201) and the two T-shaped buckles (202) are respectively connected in the two T-shaped slides (201); a slide rail (7) is provided on the front part of the upper surface of the fixture base plate (1), and a sliding seat (701) is slidably connected on the slide rail (7), and the electric saw (3) is fixed to the upper surface of the sliding seat (701) by a threaded part; the electric saw (3) is provided with a saw blade (301).

[0025] Place the product (10) to be cut on the sliding block fixing plate (2), extend the length to be cut out of the front of the sliding block fixing plate (2) and align it with the saw blade (301) of the electric saw (3), then clamp it with two sliding positioning blocks (4) to limit the left and right and front and back directions, then lock the two quick clamps (5) and use two pressure blocks (6) to press the product to limit the up and down directions, turn on the power of the electric saw (3), hold the electric saw (3) by hand to make the sliding seat (701) move left and right on the slide rail (7), so that the electric saw (3) moves left and right to cut the product (10) to the required length, thus realizing the purpose of cutting the product. Compared to the common manual operation method of holding the product tightly with one's hands to ensure that the product can be cut to the required test position, which endangers personal safety, the design of this utility model reduces the probability of the operator's hands coming into contact with the electric saw (3). During the entire cutting process, the operator does not need to touch the product (10) with his / her hands, which greatly reduces the probability of the operator's hands coming into contact with the high-speed rotating saw blade (301). This fundamentally reduces the possibility of personal injury accidents and effectively protects the personal safety of the operator. At the same time, it avoids secondary safety risks such as the saw blade breaking due to the product shaking caused by unstable hand grip, thus improving the safety factor of personnel use.

[0026] The two quick clamps (5) are arranged in a mirror symmetry, and the two pressure blocks (6) are arranged in a mirror symmetry; to ensure the symmetry and stability of the clamped product (10). The sliding positioning block (4) and the T-shaped buckle (202) are connected by a T-shaped screw (9). Initially, the product (10) needs to be placed between the two sliding positioning blocks (4) for clamping. Since the product (10) is mostly a mobile phone case or a tablet case, it has different styles and different widths. This requires that the distance between the two sliding positioning blocks (4) be adjustable. This utility model is equipped with matching T-shaped buckles (202) and T-shaped slides (201). The T-shaped buckle (202) can slide freely in the T-shaped slide (201), thereby realizing the flexible adjustment of the distance between the two sliding positioning blocks (4). Under the premise that the T-shaped buckle (202) does not come out of the T-shaped slide (201), it can be adapted to different styles of products (10). This design enables the fixture to be adapted to mobile phone cases, tablet cases and other products (10) of different widths and styles, without the need to design and manufacture special fixtures for each specification of product. After adjustment, press the product (10) in the above manner to limit it in the front, back, left, right and up directions. Then tighten the T-screw (9) and press the T-ring (202) downward. The combined action of the downward pressing force and friction of the T-ring (202) on the T-slide (201) will prevent the two sliding positioning blocks (4) from moving easily after limiting the product (10), which is convenient for cutting operation. After cutting, first turn off the power switch of the electric saw (3). After the saw blade (301) stops rotating completely, loosen the T-screw (9). Be careful not to unscrew the T-screw (9) out of the T-ring (202) for the next operation. Loosen the two quick clamps (5) to release the product (10) from the two pressure blocks (6). Then slide the two sliding positioning blocks (4) in the opposite direction to completely release the product (10) and wait for the worker to take it away. After the worker takes away the product (10), continue the operation in the same way. During the adjustment process, simply slide the positioning block (4) to the appropriate position and tighten the T-screw (9) to complete the fixation. The operation is simple and quick, and the clamping is convenient. This not only saves the time and money costs of enterprises to replace fixtures, but also reduces the storage space of fixtures, reduces the difficulty of fixture management, and improves the utilization rate of production equipment.

[0027] The longitudinal central axis of the slide rail (7) is parallel to the longitudinal central axis of the T-shaped slide rail (201). The slide rail (7) has two arc-shaped slide rails (702) symmetrically arranged on the left and right sides. The lower surface of the sliding seat (701) is symmetrically provided with several clamping positioning blocks (703) on the left and right sides. This utility model uses four. Each clamping positioning block (703) has several balls (704) evenly arranged on its inner side. The balls (704) match and are connected to the slide rail (702). Since the electric saw (3) is fixed on the upper surface of the sliding seat (701), and the sliding seat (701) is slidably connected to the slide rail (7) at the front of the upper surface of the fixture base plate (1), and the slide rail (7) has two arc-shaped slides (702) symmetrically arranged on the left and right sides, and four clamping positioning blocks (703) are symmetrically arranged on the left and right sides of the lower surface of the sliding seat (701), and each clamping positioning block (703) has several balls (704) that match the slide rail (702) evenly arranged on the inner side, when the electric saw (3) is pushed, the sliding seat (701) will roll smoothly in the arc-shaped slide rail (702) of the slide rail (7) through the balls (704), driving the electric saw (3) to move in the left and right directions along the slide rail (7). The central axis of the slide rail (7) in the fixture is parallel to the central axis of the T-shaped slide (201) in the length direction. Combined with the all-round limiting and fixing of the product (10), it ensures that the electric saw (3) moves smoothly along the slide rail (7) under the drive of the sliding seat (701), avoiding the problem of skewed cuts caused by human operation errors in traditional manual cutting. In addition, the arc-shaped slides (702) on both sides of the slide rail (7) cooperate with the ball bearings (704) on the positioning block (703) of the sliding seat (701), making the movement of the electric saw (3) smoother and more stable, further ensuring the cutting accuracy, ensuring that the product can be accurately cut to the required position, and making the cut smooth and flat, reducing the amount of subsequent rework and correction, and improving the overall quality of the product.

[0028] The lowest cutting end of the saw blade (301) is lower than the height of the sliding block fixing plate (2), but does not touch the surface of the fixture base plate (1), ensuring that the product is completely cut off and the fixture base plate (1) is cut.

[0029] The sliding block fixing plate (2) has a product pad (8) on its upper rear surface. The product pad (8) is preferably made of velvet. The product pad (8) can effectively buffer the contact force between the product and the fixture surface during the placement and cutting of the product (10). When vibration occurs during cutting, the product pad (8) can reduce the direct friction between the product (10) and the metal surface of the sliding block fixing plate (2), minimizing scratches and other defects on the product surface and ensuring the appearance quality of the product. For products such as mobile phone cases and tablet cases that emphasize appearance, this design significantly enhances the market competitiveness of the product, reduces the scrap rate caused by surface damage, and lowers production costs.

[0030] The fixture's structural design simplifies the product cutting process, allowing operators to master its use without extensive professional training. During cutting, product positioning, clamping, and saw movement are all more convenient and efficient, significantly reducing the cutting time for individual products compared to traditional manual cutting methods. Furthermore, the fixture's versatility eliminates the need for time-consuming fixture changes and adjustments when cutting different products, enabling continuous, batch production. This effectively improves overall production efficiency, helps companies increase capacity, and meets market demands.

[0031] Working process: Install all components of this utility model into place to ensure a firm connection and reliable operation. First, the operator places the product to be cut (10) on the product pad (8) on the back of the upper surface of the sliding block fixing plate (2), ensuring that the length of the product (10) to be cut extends beyond the front of the sliding block fixing plate (2), and that the cutting position of the product (10) is aligned with the saw blade (301) on the electric saw (3), preparing for subsequent precise cutting. Next, according to the width of the product (10), push the two sliding positioning blocks (4) along the two parallel T-shaped slides (201) on the sliding block fixing plate (2). Since each sliding positioning block (4) has two T-shaped buckles (202) that match the T-shaped slides (201) connected by threads, and the T-shaped buckles (202) are connected in the two T-shaped slides (201), the sliding positioning blocks (4) can move smoothly along the T-shaped slides (201). Adjust the two sliding positioning blocks (4) to fit tightly against both sides of the product (10) to limit the left-right and front-back directions of the product (10) and prevent the product from shifting during the cutting process. Then, operate the quick clamps (5) on the two sliding positioning blocks (4) to move the pressure block (6) fixed on the quick clamps (5) downward and press it tightly against the upper surface of the product (10). Since the two quick clamps (5) and the two pressure blocks (6) are arranged in a mirror symmetrical manner, it can ensure that uniform pressure is applied to the product (10), thereby achieving reliable limiting of the product (10) in the up-down direction and further ensuring the stability of the product during the cutting process. Afterward, use a tool to tighten the T-screws (9) connecting the sliding positioning blocks (4) and the T-screws (202). As the T-screw (9) is tightened, it will press down on the T-shaped buckle (202), generating a large clamping force and friction between the contact surface of the T-shaped buckle (202) and the T-shaped slide (201), thereby firmly fixing the sliding positioning block (4) in the current position and preventing the sliding positioning block (4) from loosening or moving during the cutting process, ensuring the reliability of the product limit. After the product positioning and fixing are completed, turn on the power switch of the electric saw (3) to start the electric saw (3) to start working, and the saw blade (301) will rotate at high speed to enter the cutting state. At this time, the operator holds the body of the electric saw (3) with his hand and slowly pushes the electric saw (3). The electric saw (3) moves left and right along the slide rail (7). During the movement of the electric saw (3), the high-speed rotating saw blade (301) will cut the part of the product (10) that extends out of the front of the sliding block fixing plate (2). Since the lowest cutting end of the saw blade (301) is lower than the height of the sliding block fixing plate (2), it can ensure that the part of the product (10) that needs to be cut is completely cut off, thus meeting the cutting requirements.Meanwhile, the clamping positioning block (703) on the lower surface of the sliding seat (701) can also play a limiting role, preventing the electric saw (3) from deviating or falling off the slide rail (7) during movement, and ensuring the stability and safety of the cutting process. After the saw blade (301) finishes cutting the product (10), first turn off the power switch of the electric saw (3), and wait until the saw blade (301) stops rotating completely before proceeding with the subsequent operation. Then, use a tool to loosen the T-screw (9), being careful not to completely unscrew the T-screw (9) out of the T-shaped buckle (202), so that the positioning block can be quickly adjusted and fixed in the next operation. After loosening the T-screw (9), operate the quick clamp (5) to move the pressure block (6) upward, releasing the vertical clamping limit on the product (10). Next, push the two sliding positioning blocks (4) away from the product (10) along the T-shaped slide rail (201) to completely release the horizontal and vertical limits on the product (10).

[0032] Finally, the operator removes the cut product (10) from the sliding block fixing plate (2) for testing. If other products need to be cut, simply repeat the above operation process to perform the product placement, positioning, fixing, cutting, and product removal operations to achieve continuous product cutting operations.

[0033] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A universal high-speed product cutting fixture, comprising a fixture base plate (1), a sliding block fixing plate (2), and an electric saw (3); characterized in that: The sliding block fixing plate (2) is fixed to the rear part of the upper surface of the fixture base plate (1). Two T-shaped slides (201) are provided parallel to each other on the upper surface of the plate. Two sliding positioning blocks (4) are symmetrically connected to the upper surface of the two T-shaped slides (201). A quick clamp (5) is fixed to the middle of the rear of the upper surface of each sliding positioning block (4). A pressure block (6) is connected to the end of the quick clamp (5). Two T-shaped buckles (202) are symmetrically connected to the left and right sides below each sliding positioning block (4). The T-shaped buckles (202) match the T-shaped slides (201) and the two T-shaped buckles (202) are respectively connected to the two T-shaped slides (201). A slide rail (7) is provided at the front of the upper surface of the fixture base plate (1). A sliding seat (701) is slidably connected to the slide rail (7). The electric saw (3) is fixed to the upper surface of the sliding seat (701).

2. The universal rapid product cutting fixture according to claim 1, characterized in that: The two quick clamps (5) are arranged in a mirror symmetry, the two pressure blocks (6) are arranged in a mirror symmetry, and the sliding positioning block (4) is connected to the T-shaped buckle (202) by a T-shaped screw (9).

3. The universal rapid product cutting fixture according to claim 1, characterized in that: The longitudinal center axis of the slide rail (7) is parallel to the longitudinal center axis of the T-shaped slide rail (201).

4. A universal rapid product cutting fixture according to claim 3, characterized in that: The slide rail (7) is symmetrically provided with two arc-shaped slides (702) on the left and right sides. The sliding seat (701) is symmetrically provided with several clamping positioning blocks (703) on the left and right sides of its lower surface. Each clamping positioning block (703) is provided with several balls (704) evenly on its inner side. The balls (704) match and are connected to the slide rail (702).

5. A universal rapid product cutting fixture according to claim 1, characterized in that: The electric saw (3) is equipped with a saw blade (301), and the lowest cutting end of the saw blade (301) is lower than the height of the sliding block fixing plate (2).

6. A universal rapid product cutting fixture according to claim 1, characterized in that: The sliding block fixing plate (2) has a product pad (8) on the rear part of its upper surface.