Full-automatic biochemical analyzer

By introducing an interval adjustment rod and a leveling rotating cylinder structure into the fully automated biochemical analyzer, the problems of interval distance adjustment and rotational resistance of the leveling support feet when the analyzer is placed against a wall are solved, enabling rapid and stable placement against a wall and improving the operational stability and detection accuracy of the equipment.

CN224052215UActive Publication Date: 2026-03-27WUHAN RUNZEHONGYE MEDICAL TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing fully automated biochemical analyzers require multiple adjustments to the interval distance when placed against a wall, and the rotational resistance of the leveling feet is high, making placement inconvenient.

Method used

The system employs an adjustable spacing rod and a leveling rotating cylinder structure, which enables rapid adjustment of the spacing frame and support legs through bearing and thread engagement, simplifying wall placement and leveling operations.

Benefits of technology

This enables the analyzer to be quickly placed against a wall and stably leveled, improving operational stability and detection accuracy.

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Abstract

The utility model provides a full-automatic biochemical analyzer, which relates to the technical field of biochemical analyzers and comprises an analyzer body. The analyzer body is provided with an analyzer shell in the left-right direction, front-back through guide grooves are formed in the bottoms of the left end face and the right end face of the analyzer shell, a vertical plate with a front-back through hole is arranged at the front end of the middle of the bottom end face of the analyzer shell, and bearing circular grooves are formed in the four corners of the bottom end face of the analyzer shell. An inserting blind hole is formed in the center of a bearing circular groove of the analyzer shell, and a threaded hole penetrating left and right is formed in the outer side wall of the lower end of the inserting blind hole of the analyzer shell, so that the interval adjusting rod is conveniently installed on the analyzer shell through a bearing to bear the wall-leaning interval frame, and the interval distance is conveniently formed between the wall-leaning interval frame and a wall body; the problem that when the analyzer is placed against the wall, the spacing distance between the analyzer and the wall needs to be adjusted and determined multiple times, and spacing measures are inconvenient to add on the analyzer to achieve rapid placement of the analyzer against the wall is solved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to biochemical analyzer technical field, especially relate to a full -automatic biochemical analyzer. BACKGROUND

[0002] Full -automatic biochemical analyzer, it is a kind of instrument for detecting and analyzing life chemical substance, it is quantitative by chemical reaction and optical measurement to the component in sample, sample is reacted to generate specific product after processing, measures the optical characteristic of product by analyzer, and the concentration of target component in sample is calculated, is widely used in laboratory, hospital, scientific research and disease prevention and control etc.

[0003] Based on the above, the present inventor finds that the existing full-automatic biochemical analyzer has the following deficiencies:

[0004] 1, analyzer is placed against wall, and the interval distance between analyzer and wall needs to be adjusted multiple times to determine, it is inconvenient to install spacing measures on analyzer to realize fast placement of analyzer against wall;

[0005] 2, analyzer bottom leveling foot screw lifting, leading to the rotation resistance of ground to leveling foot is bigger, it is inconvenient to install adjusting measures on analyzer to make leveling foot only lifting adjustment. INVENTION CONTENTS

[0006] In order to solve the above technical problems, the utility model provides a kind of full-automatic biochemical analyzer, to solve the analyzer of existing analysis instrument and wall when being placed against wall, the interval distance between analyzer and wall needs to be adjusted multiple times to determine, it is inconvenient to install spacing measures on analyzer to realize fast placement of analyzer against wall;Analyzer bottom leveling foot screw lifting, leading to the rotation resistance of ground to leveling foot is bigger, it is inconvenient to install adjusting measures on analyzer to make leveling foot only lifting adjustment.

[0007] The purpose and function of the full-automatic biochemical analyzer of the utility model are achieved by the following specific technical means:

[0008] The utility model provides an automatic biochemical analyzer, including analyzer body, the analyzer body is provided with left and right direction's analyzer shell, and the bottom of left and right end surface of analyzer shell is equipped with the guide groove that penetrates front and back, and the middle front of bottom end surface of analyzer shell is equipped with the vertical plate with front and back penetration hole, and the four corners of bottom end surface of analyzer shell are equipped with bearing circular groove, and the center of bearing circular groove of analyzer shell is equipped with the insertion blind hole, and the outside wall of lower end of insertion blind hole of analyzer shell is equipped with the threaded hole that penetrates left and right, and the rear of inside of vertical plate of analyzer shell is equipped with the interval adjusting rod of front and back direction through bearing, and the outside circumference of interval adjusting rod is equipped with screw thread, and the fixed column of interval adjusting rod front end surface is equipped with the regular hexagonal prism, and the outside circumference of interval adjusting rod is equipped with the wall -hugging interval frame of left and right direction through screw thread, and the upper portion of wall -hugging interval frame is equipped with the U -shaped plate that opens to the front and down, and the bottom end surface of U -shaped plate of wall -hugging interval frame is equipped with the extension plate of up and down direction, and the lower end of extension plate of wall -hugging interval frame is equipped with the internal thread cylinder of front and back direction.

[0009] Further, the outside circumference of the leveling support foot is provided with an up and down direction strip-shaped groove, and the bottom end surface of the leveling support foot is provided with a ground contact circular plate.

[0010] Further, the inside of the leveling rotating cylinder is provided with a leveling support foot in an up and down direction through a screw thread.

[0011] Further, the top outside circumference of the leveling rotating cylinder is provided with a bearing ring groove, and the lower part outside circumference of the leveling rotating cylinder is provided with a regular hexagonal structure.

[0012] Further, the inside of the bearing circular groove of the analyzer shell is provided with a leveling rotating cylinder in an up and down direction through a bearing, and the inside circumference of the leveling rotating cylinder is provided with a screw thread.

[0013] Further, the outside circumference of the external end of the threaded column of the fixed rotation-stopping column is provided with a limit ring plate, and the external end surface of the threaded column of the fixed rotation-stopping column is provided with a regular hexagonal prism.

[0014] Further, the inside of the threaded hole of the analyzer shell is provided with a fixed rotation-stopping column in a left and right direction, and the inside of the fixed rotation-stopping column is provided with a threaded column.

[0015] Compared with the prior art, the utility model has the following beneficial effects:

[0016] The interval adjusting rod is conveniently mounted on the analyzer shell through a bearing to bear the wall-hugging interval frame, the wall-hugging interval frame and the wall form a spacing distance, and the spacing distance between the analyzer and the wall needs to be adjusted multiple times when the analyzer is placed against the wall, and it is inconvenient to add a spacing measure on the analyzer to achieve quick placement of the analyzer against the wall.

[0017] The convenient leveling rotary cylinder is installed on the analyzer shell through a bearing to bear the leveling supporting leg, and the convenient leveling supporting leg is adjusted in height through screw engagement, thereby solving the problem that the analyzer bottom leveling supporting leg is adjusted in height through screw engagement, the ground has large rotating resistance to the leveling supporting leg, it is inconvenient to add adjustment measures on the analyzer, and the leveling supporting leg can only be adjusted in height. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is the front view structural schematic diagram of the utility model.

[0019] Figure 2 is the rear view structural schematic diagram of the utility model.

[0020] Figure 3 is the bottom view structural schematic diagram of the utility model.

[0021] Figure 4 is the disassembled structural schematic diagram of the utility model.

[0022] Figure 5 is the sectional view schematic diagram of the leveling supporting leg of the utility model.

[0023] Figure 6 is the bottom view schematic diagram of the analyzer shell of the utility model.

[0024] In the drawing: 1, analyzer body; 2, analyzer shell; 3, interval adjusting rod; 4, wall-adjacent interval frame; 5, fixed rotation-stopping column; 6, leveling rotary cylinder; 7, leveling supporting leg. DETAILED DESCRIPTION

[0025] The embodiment of the present application is further described in detail below in combination with the drawings and examples.

[0026] Example one:

[0027] As shown in the accompanying drawings: Figure 1 to the accompanying drawings: Figure 6 As shown:

[0028] The utility model provides a full -automatic biochemical analyzer, including analyzer body 1, the analyzer body 1 is provided with the left and right direction's analyzer shell 2, and the bearing of each component is convenient, and the protection of internal full -automatic biochemical analysis subassembly is convenient, the front and back through guide slot is set up in the bottom of the left and right end surface of analyzer shell 2, and it is convenient to insert and move forward and backward for wall spacing frame 4, the vertical board of front and back through hole is set up in the middle front end of the bottom end surface of analyzer shell 2, and it is convenient for interval adjusting rod 3 to install rotation through bearing, bearing round groove is set up in the four corners of the bottom end surface of analyzer shell 2, and it is convenient for leveling rotary cylinder 6 to install rotation through bearing, the bearing round groove center of analyzer shell 2 is set up with the insertion blind hole, and it is convenient for leveling support foot 7 to insert and hide, the left and right through screw hole is set up on the outside wall of the lower end of the insertion blind hole of analyzer shell 2, and it is convenient for fixed rotation column 5 to install through screw, the interval adjusting rod 3 of front and back direction is installed in the rear inside of the vertical board of analyzer shell 2 through bearing, and it is convenient for interval adjusting rod 3 to rotate and be engaged with wall spacing frame 4 through bearing, and the outside circumference of interval adjusting rod 3 is set up with screw thread, and it is convenient for wall spacing frame 4 to move forward and backward and adjust the distance between the wall body through screw engagement, the fixed column is set up on the front end surface of interval adjusting rod 3, and it is convenient for interval adjusting rod 3 to install through bearing, the fixed column front end surface of interval adjusting rod 3 is set up with regular hexagonal prism, and it is convenient for interval adjusting rod 3 to rotate and adjust through tool, and the left and right direction's wall spacing frame 4 is installed on the outside circumference of interval adjusting rod 3 through screw, and it is convenient for wall spacing frame 4 to move forward and backward and adjust the distance between the wall body through screw engagement, the U-shaped board of open to the front and up and down through is set up on the upper portion of wall spacing frame 4, and it is convenient to insert the guide slot of analyzer shell 2 and guide, and it is convenient for rear and wall contact, the U-shaped board bottom end surface of wall spacing frame 4 is set up with the extension plate of up and down direction in the middle, and it is convenient for the bearing of internal thread cylinder, and the internal thread cylinder of front and back direction is set up on the lower end of the extension plate of wall spacing frame 4, and it is convenient for interval adjusting rod 3 to install through screw.

[0029] The fixing rotation-stopping column 5 is internally provided with a threaded column, so that the fixing rotation-stopping column 5 is conveniently installed through the threads, the outer end of the threaded column of the fixing rotation-stopping column 5 is externally circumferentially provided with a limiting ring plate, so that the fixing rotation-stopping column 5 is conveniently locked and fixed, and the outer end face of the threaded column of the fixing rotation-stopping column 5 is provided with a regular hexagonal prism, so that the fixing rotation-stopping column 5 is conveniently disassembled and assembled through rotation of a tool, the leveling rotating cylinder 6 is internally circumferentially provided with threads, so that the leveling supporting leg 7 is conveniently adjusted in height through thread engagement, the top of the leveling rotating cylinder 6 is externally circumferentially provided with a bearing ring groove, so that the leveling rotating cylinder 6 is conveniently installed and rotated through a bearing, the lower part of the leveling rotating cylinder 6 is externally circumferentially provided with a regular hexagonal structure, so that the leveling rotating cylinder 6 is conveniently threadedly engaged with the leveling supporting leg 7 through rotation of a tool, the leveling supporting leg 7 is internally installed through threads in the upward and downward directions, so that the leveling supporting leg 7 is conveniently adjusted in height through thread engagement, the rollers of the analyzer shell 2 are separated from the ground, so that leveling and stable placement are realized, the external circumference of the leveling supporting leg 7 is provided with threads, so that the leveling supporting leg 7 is conveniently adjusted in height through thread engagement, the external circumference of the leveling supporting leg 7 is externally provided with an upward and downward strip-shaped groove, so that the fixing rotation-stopping column 5 is conveniently inserted into the strip-shaped groove to rotationally stop the leveling supporting leg 7, and the bottom end face of the leveling supporting leg 7 is provided with a ground-contacting circular plate, so that the analyzer body 1 is conveniently supported through contact with the ground, so that the analyzer body 1 can be stably placed and used.

[0030] The specific use mode and role of the embodiment are as follows:

[0031] In the utility model, Figure 1As shown, the analyzer body 1 is in a wall-lying state, at which time the bottom end surface of the leveling support foot 7 is in contact with the ground, the bottom roller of the analyzer shell 2 is separated from the ground, and the rear end surface of the wall-lying spacing frame 4 is in contact with the wall surface, thereby ensuring stable placement of the analyzer body 1. Note that the distance between the rear end surface of the analyzer shell 2 and the rear end surface of the wall-lying spacing frame 4 is the distance between the rear end surface of the analyzer shell 2 and the wall surface, that is, the length of the wall-lying spacing frame 4 extending beyond the rear end surface of the analyzer shell 2. When adjusting the length of the wall-lying spacing frame 4, rotate the spacing adjustment rod 3 and the wall-lying spacing frame 4 in screw engagement by means of a tool, so that the wall-lying spacing frame 4 moves forward and backward along the guide groove of the analyzer shell 2 in screw engagement. When the wall-lying spacing frame 4 moves forward, the length of the wall-lying spacing frame 4 extending beyond the rear end surface of the analyzer shell 2 becomes shorter, and when the wall-lying spacing frame 4 moves backward, the length of the wall-lying spacing frame 4 extending beyond the rear end surface of the analyzer shell 2 becomes longer. After the wall-lying spacing frame 4 is adjusted, the inner threaded cylinder of the wall-lying spacing frame 4 and the threads of the spacing adjustment rod 3 are locked to prevent deviation due to vibration or external force, thereby achieving rapid wall-lying placement of the analyzer body 1 and avoiding heat dissipation obstruction or operation collision. When leveling the analyzer shell 2, place a level on the top of the analyzer shell 2, rotate the leveling rotating cylinder 6 and the leveling support foot 7 in screw engagement by means of a tool, so that the leveling support foot 7 rises or falls in screw engagement, and the leveling support foot 7 can only move up and down by means of the fixed rotation-stopping column 5, thereby solving the problem of large frictional force between the screw-up-and-down leveling support foot and the ground, resulting in large rotational resistance of the leveling support foot, making the leveling operation more labor-saving, and at the same time observing the state of the level, stopping rotating the leveling rotating cylinder 6 when the level is in a horizontal state, thereby ensuring stable and even distribution of the center of gravity of the analyzer body 1, eliminating contact vibration between the roller and the ground, and improving the running stability and detection accuracy of the analyzer body 1.

[0032] Example Two

[0033] The difference between example one and example two is that the regular hexagonal prism of the spacing adjustment rod 3 can also be a regular heptagonal prism, thereby making the spacing adjustment rod 3 need to be rotated by means of a special tool matched with the regular heptagonal prism, thereby preventing non-workers from rotating and adjusting the spacing adjustment rod 3.

[0034] Example Three

[0035] The difference between example one and example three is that the regular hexagonal prism of the fixed rotation-stopping column 5 can also be a regular heptagonal prism, thereby making the fixed rotation-stopping column 5 need to be rotated by means of a special tool matched with the regular heptagonal prism, thereby preventing non-workers from rotating and disassembling the fixed rotation-stopping column 5.

Claims

1. A fully automatic biochemical analyzer, characterized by comprising: The utility model provides an analysis appearance, including analysis appearance body (1), analysis appearance body (1) is provided with left and right direction analysis appearance shell (2), and the bottom of left and right end surface of analysis appearance shell (2) is all seted up with the guide slot that passes through in front and back, and the middle front end of bottom end surface of analysis appearance shell (2) is provided with the vertical plate with front and back through -hole, and the bearing circular groove of four corners of bottom end surface of analysis appearance shell (2) is all seted up, and the bearing circular groove center of analysis appearance shell (2) is seted up with the insertion blind hole, and the lateral through -threaded hole of insertion blind hole lower end outside wall of analysis appearance shell (2) is seted up, and the rear of inside vertical plate of analysis appearance shell (2) is installed with the interval adjusting rod (3) of front and back direction through bearing, and the circumference of interval adjusting rod (3) is seted up with screw thread, and the fixed column of interval adjusting rod (3) front end surface is provided with regular hexagonal prism, and the circumference of interval adjusting rod (3) is installed with the wall -hugging interval frame (4) of left and right direction through screw thread, and the upper portion of wall -hugging interval frame (4) is provided with the U -shaped plate that opens to the front and passes through in up and down, and the bottom end surface of U -shaped plate of wall -hugging interval frame (4) is seted up with the extension plate of up and down direction, and the lower end of extension plate of wall -hugging interval frame (4) is seted up with the internal thread cylinder of front and back direction.

2. The fully automatic biochemical analyzer as claimed in claim 1, wherein: The threaded hole inside the analysis appearance shell (2) is installed with a left and right direction fixed rotation-stopping column (5), and the inner side of the fixed rotation-stopping column (5) is provided with a threaded column.

3. The fully automatic biochemical analyzer as claimed in claim 2, wherein: The outer end of the threaded column of the fixed rotation-stopping column (5) is provided with a limit ring plate, and the outer end surface of the threaded column of the fixed rotation-stopping column (5) is provided with a regular hexagonal prism.

4. The fully automatic biochemical analyzer as claimed in claim 2, wherein: The inside of the bearing circular groove of the analysis appearance shell (2) is installed with an up and down direction leveling rotating cylinder (6) through a bearing, and the inside circumference of the leveling rotating cylinder (6) is provided with a screw thread.

5. The fully automatic biochemical analyzer as claimed in claim 4, wherein: The top outer circumference of the leveling rotating cylinder (6) is provided with a bearing ring groove, and the lower outer circumference of the leveling rotating cylinder (6) is provided with a regular hexagonal structure.

6. The fully automatic biochemical analyzer as claimed in claim 5, wherein: The inside of the leveling rotating cylinder (6) is installed with an up and down direction leveling support foot (7) through a screw thread, and the outer circumference of the leveling support foot (7) is provided with a screw thread.

7. The fully automatic biochemical analyzer as claimed in claim 6, characterized in that: The outer side of the outer circumference of the leveling support foot (7) is provided with an up and down direction strip-shaped groove, and the bottom end surface of the leveling support foot (7) is provided with a ground contact circular plate.