China Standard HGH35CA HGR35 CHINAMFG Linear Guide Block Rail for Grinding Machines

Product Description

Model Number H
(mm)
W
(mm)
B
(mm)
L
(mm)
G
(mm)
WR
(mm)
Block Weight
(kg)
Rail Weight
(kg)
HGH15CA 28 34 26 61.4 5.3 15 0.18 1.45
HGH20CA 30 44 32 77.5 12 20 0.3 2.21
HGH25CA 40 48 35 84 12 23 0.51 3.21
HGH30CA 45 60 40 97.4 12 28 0.68 4.47
HGH35CA 55 70 50 112.4 12 34 1.45 6.3
HGH45CA 70 86 60 139.4 12.9 45 2.73 10.41
HGH55CA 80 100 75 166.7 12.9 53 4.17 15.08
HGH65CA 90 126 76 200.2 12.9 63 7 21.18

Packing:
Please contact us for more pictures of different packing.

Universal Packing

Without any logo on bearings or packing.

CHINAMFG Packing

With our brand CHINAMFG on bearings and packing.

Customized Packing

Depends on buyer’s requirements.

Original Brand Packing

Bearing and packing are both original. Please contact us for pictures.

Certificate:
Our bearings comes with CE certificate and our company has been verified by SGS Group. Please contact us for clear certificate photos.

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Application: Warehouse Crane, Shipboard Crane, Goods Yard Crane, Building Crane, Workshop Crane, Automatic Machinery and Equipment
Material: Chrome Steel
Structure: Mechanical Equipment
Installation: Automatic Machinery
Driven Type: Rolling
Carrying Capacity: Weight Level
Samples:
US$ 11.58/Piece
1 Piece(Min.Order)

|

Customization:
Available

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linear rail

Can you provide guidance on the selection and sizing of linear rails for specific linear motion applications?

When selecting and sizing linear rails for specific linear motion applications, several factors need to be considered to ensure optimal performance. Here is guidance on the key considerations:

1. Load Requirements: Determine the maximum load the linear rail system will need to support. Consider both static and dynamic loads, as well as any potential impact or shock loads during operation.

2. Travel Distance: Evaluate the required travel distance of the linear rail system. Different rail types and designs are suitable for short-range, medium-range, or long-range travel, so choose accordingly based on the application’s needs.

3. Precision and Accuracy: Assess the precision and accuracy requirements of the application. High-precision applications, such as CNC machining or optical systems, may require linear rails with specialized designs to meet stringent accuracy standards.

4. Speed and Acceleration: Consider the desired speed and acceleration of the linear motion. Different rail systems have specific capabilities in terms of speed and acceleration, so choose a system that aligns with the application’s performance requirements.

5. Environmental Conditions: Evaluate the environmental conditions in which the linear rail will operate. Factors such as temperature, humidity, and exposure to contaminants can impact the choice of materials, coatings, and lubrication for the linear rail system.

6. Mounting Configurations: Consider the available space and mounting configurations in the application. Linear rails come in various designs, including profiled rail systems, round rail systems, and others. Choose a design that fits the available space and allows for easy integration.

7. Budget Constraints: Assess budget constraints and cost considerations. Linear rail systems come in a range of price points, and balancing performance requirements with budget constraints is essential for cost-effective solutions.

8. Manufacturer and Supplier Expertise: Collaborate with experienced linear rail manufacturers or suppliers. Seek their expertise in selecting the most suitable rail system based on the application’s specific requirements. They can provide valuable insights, technical support, and customized solutions.

By carefully considering these factors, engineers and decision-makers can make informed choices in selecting and sizing linear rails for specific linear motion applications, ensuring optimal performance and longevity of the system.

linear rail

What are the typical load capacities and travel distances for linear rails?

The load capacities and travel distances for linear rails vary based on the specific design, size, and application requirements. Here are general considerations:

Load Capacities:

  • Light-Duty Applications: Linear rails in smaller sizes may be suitable for light-duty applications with load capacities ranging from a few hundred pounds to a few thousand pounds. These are commonly used in applications like 3D printers and light-duty automation systems.
  • Medium-Duty Applications: Linear rails in medium sizes are designed for applications with moderate load requirements. Typical load capacities for medium-duty linear rails range from a few thousand pounds to tens of thousands of pounds. These are often used in CNC machines, robotic systems, and material handling equipment.
  • Heavy-Duty Applications: Larger linear rails are built for heavy-duty applications with substantial load requirements. Load capacities for heavy-duty linear rails can extend into the hundreds of thousands of pounds. These are employed in industrial machinery, aerospace testing equipment, and other heavy-duty applications.

Travel Distances:

  • Short-Range Travel: Some linear rails are designed for short-range travel, with typical distances ranging from a few inches to a few feet. These are suitable for applications with limited linear motion requirements, such as in certain types of printing machinery.
  • Medium-Range Travel: Linear rails for medium-range travel cover distances from a few feet to several feet. These are commonly used in applications like CNC machines and automation systems where moderate linear motion is required.
  • Long-Range Travel: Linear rails with long-range travel capabilities are designed for applications where extensive linear motion is necessary. These can cover distances ranging from several feet to meters and are used in applications such as large-scale industrial automation and material handling systems.

It’s essential to consult manufacturer specifications and consider factors such as speed, acceleration, and environmental conditions when selecting linear rails to ensure they meet the specific load and travel requirements of a given application.

linear rail

Can you describe the various types of linear rails, such as profiled or round rail systems?

There are several types of linear rails, each with its own design and characteristics. Two common types are profiled rail systems and round rail systems:

Profiled Rail Systems: Profiled rail systems consist of a rigid rail with a specially designed profile, typically featuring recirculating ball or roller bearings. The carriage, mounted on the rail, contains these bearings, providing smooth and precise linear motion. Profiled rail systems are known for their high load capacity, accuracy, and stiffness. They are commonly used in applications where precision and rigidity are critical, such as CNC machines and industrial automation systems.

Round Rail Systems: Round rail systems utilize cylindrical rails and carriages with linear bearings. These systems are often more compact and cost-effective than profiled rail systems. While they may have slightly lower load capacities and precision compared to profiled rail systems, round rail systems are suitable for applications where space is limited, and the requirements for precision are moderate. Round rail systems find use in applications such as packaging machinery, material handling, and some types of 3D printers.

Other types of linear rails include dovetail slides, boxway guides, and more, each with its own design to suit specific applications and requirements. The choice of linear rail type depends on factors such as load capacity, precision, space constraints, and cost considerations in a particular application.

China Standard HGH35CA HGR35 CHINAMFG Linear Guide Block Rail for Grinding Machines  China Standard HGH35CA HGR35 CHINAMFG Linear Guide Block Rail for Grinding Machines
editor by CX 2024-04-17