Electromechanically-controlled integrated machine for longitudinal and transverse adjustment and pulse diagnosis
An electromechanical control and all-in-one machine technology, applied in the field of medical equipment, can solve the problems of increasing the work intensity of medical staff, affecting the work efficiency of medical staff, and not being easy to implement, and achieves the effects of simple structure, stable work, and low production cost
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Embodiment 1
[0054] An electromechanical control vertical and horizontal adjustment pulse diagnosis integrated machine, such as Figure 1-4 As shown, it includes a square shell 1, the upper part of the square shell 1 is fixedly equipped with a support shell 2, and the outer side of the support shell 2 is equipped with a pulse diagnostic device 7 through a longitudinal drive mechanism 12, and the square shell 1 The upper part is equipped with a support block 5 through a transverse drive mechanism 13, and the support block 5 is located below the pulse diagnostic device 7, and an arc-shaped groove 6 is opened in the center of the upper part of the support block 5, and the support housing 2 A square limiting hole 31 is centrally opened on the top wall, and a square through hole 8 is centrally opened on the top wall of the square housing 1;
[0055] Such as image 3 with 4 As shown, the longitudinal drive mechanism 12 includes a first servo motor 14, a first threaded rod 15, a square support ...
Embodiment 2
[0077] The difference from Example 1 is that the inner surface of the square chute 26 is also provided with a protective layer, and the protective layer is prepared by the following method:
[0078] Take the following raw materials and weigh them by weight: 20 parts of epoxy resin, 8 parts of titanium dioxide powder, 10 parts of aluminum oxide particles, 10 parts of phenolic resin, 8 parts of silicon carbide particles, 10 parts of chromium oxide particles, 3 parts of glycerin, alcohol 2 parts of ester twelve, 2 parts of triethanolamine, 1 part of emulsified silicone oil and 30 parts of ethanol;
[0079] S1. Add the weighed glycerin, alcohol ester dodeca, triethanolamine, emulsified silicone oil and ethanol into the mixer and stir for 20min at a stirring speed of 600r / min to prepare a mixed solution;
[0080] S2, adding epoxy resin, calcium carbonate powder, aluminum oxide particles, phenolic resin, silicon carbide particles and chromium oxide particles into a pulverizer and pu...
Embodiment 3
[0086] The difference with embodiment 2 is the preparation of protective layer, and its specific preparation method is as follows:
[0087] Take the following raw materials and weigh them by weight: 25 parts of epoxy resin, 10 parts of titanium dioxide powder, 11 parts of aluminum oxide particles, 13 parts of phenolic resin, 9 parts of silicon carbide particles, 12 parts of chromium oxide particles, 4 parts of glycerin, alcohol 3 parts of twelve esters, 3 parts of triethanolamine, 2 parts of emulsified silicone oil and 40 parts of ethanol;
[0088] S1. Add the weighed glycerin, alcohol ester dodeca, triethanolamine, emulsified silicone oil and ethanol into the mixer and stir for 25min at a stirring speed of 700r / min to prepare a mixed solution;
[0089] S2, adding epoxy resin, calcium carbonate powder, aluminum oxide particles, phenolic resin, silicon carbide particles and chromium oxide particles into a pulverizer and pulverizing until the particle diameter of the material is...
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