ADIT HSR cast-in concrete insert

ADIT HSR Cast-in Concrete Insert

Internal threaded insert cast into concrete and connected to a bent rebar — for anchoring, lifting and connecting elements to cast concrete, in four sizes M12–M24 with factory pull-out test results.

Cast-in insert technologyCold Formed carbon steelZinc coating 5–8 micronConditional on rebar connection4 sizes: M12 / M16 / M20 / M24Factory pull-out tests

Technical specification

PropertyADIT HSR — cast-in concrete insert
Product typeCast-in concrete insert (embedded before the pour)
MaterialCold Formed Carbon Steel
CoatingZinc (Zn) 5–8 micron
SizesM12 / M16 / M20 / M24
Internal threadMetric standard (Rd)
Rebar connectionRequired — bent rebar through transverse hole at the insert base
Installation stageBefore the pour (no drilling after curing)
TestingFactory pull-out test — report 243105 (8 tests to failure, all 4 sizes)

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ADIT HSR cast-in concrete insert — threaded insert for rebar connection

Every precast concrete element, every lifting point and every industrialised connection to cast concrete starts at a single anchoring point: the cast-in concrete insert. The ADIT HSR insert by Adit Ltd. is a threaded insert embedded in the concrete before the pour and connected to a bent rebar, so it “locks” itself inside the concrete mass and carries the tension and shear loads required in construction, industrial and infrastructure applications.

The HSR concrete insert is made of Cold Formed Carbon Steel and comes with a 5–8 micron zinc coating that gives it suitable durability for field conditions. The insert body contains a standard internal thread (M12 / M16 / M20 / M24) that lets you connect a bolt, lifting eye, tension rod, railing bracket or any other threaded element – after the concrete has cured, without drilling or installing a chemical anchor at a later stage.

Important to know: ADIT HSR is a rebar-dependent insert – the tension loads and the combined load in the technical table are conditional on a proper connection to a bent rebar of the diameter and length matching the insert size. An insert installed without a rebar, or with a rebar of a non-matching diameter, will not reach the loads shown in the specification.

What is a concrete insert and how does it work

A concrete insert is a metal component embedded within the concrete during the pouring stage (rather than screwed into cured concrete like a chemical anchor or a wedge anchor). The ADIT HSR insert has two complementary “anchorages”: the external shape of the insert body (cone/steps) that creates a mechanical lock within the concrete mass, and a transverse hole at the base of the insert through which a bent rebar is threaded – acting as an additional anchor and significantly increasing the total tension load.

After the concrete has cured, the installer reaches the top of the insert – which has a metric-standard internal thread (Rd) – and screws in the required element: a lifting eye bolt, a threaded rod for a railing connection, a bolt for an equipment bracket, and more. Because the thread already exists inside the concrete, there is no need for additional drilling, epoxy or a chemical anchor on site.

Single-anchor load table for ADIT HSR (conditional on rebar connection)

The following table, taken from Adit’s official technical data, shows the tension loads (Nu/Nrd/Nrec) and the combined load at 45° (Yu/YRd/Yrec) for each of the four insert sizes. All values are expressed in kN and include three levels: ultimate failure load (test result to failure), design load (after safety factors, for use in engineering calculations) and recommended / service load (recommended for routine field use).

Insert sizeNu ultimate tension (kN)Yu combined 45° ultimate (kN)Nrd tension design load (kN)YRd combined 45° design load (kN)Nrec recommended tension (kN)Yrec combined 45° service (kN)
M1238.433.016.115.411.511.0
M1660.051.028.023.820.017.0
M2075.162.140.633.629.024.0
M2497.174.754.642.039.030.0

Please note: all values in the table are conditional on a proper rebar connection of the diameter and length matching the insert size (see the “General data” table below). The data refers to a single anchor; for multiple anchoring, keep the minimum distances from the concrete edge (cmin) and between anchors (smin), as detailed in the following table.

General data and dimensions – ADIT HSR insert

The following table brings together all the installation dimensions required for each insert size: insert body length, internal and external thread diameters, thread length, the diameter of the hole for inserting the rebar, the required rebar diameter, the required rebar length (before and after bending) and the recommended minimum distances.

ParameterM12M16M20M24
Bolt / insert length H (mm)607792100
Internal thread diameter Rd (mm)12162024
External diameter D (mm)15212731
Thread length E (mm)22273543
Rebar insertion hole diameter F (mm)10131618
Required rebar diameter dB (mm)8101214
Rebar length per side LB (mm)240330440480
Rebar length before bending (mm)490670890970
Minimum rebar loop opening after bending dBr (mm)24404856
Recommended minimum distance from concrete edge cmin (mm)40455065
Recommended minimum distance between anchors smin (mm)607590100
Part no.12060HSR16080HSR20090HSR24100HSR

Bending the rebar is not optional. The rebar is supplied/prepared straight (for example 490 mm for M12) and is then bent into an arc/loop shape at a minimum opening diameter (dBr) as detailed in the table. The bend is what creates the locking effect within the concrete mass and allows the insert to reach the tension loads specified.

Pull-out test results – ADIT HSR insert (factory report 243105)

To verify the insert’s performance under controlled production conditions, Adit carried out a factory pull-out test (Factory Certification Pull-out Test, report no. 243105, dated 08-01-2024, tested by Eng. W. Huang). The test included 8 pull-out tests to failure across all four insert sizes: M12×60, M16×80, M20×90 and M24×100. The failure results (Breaking Load) were measured and presented in the following table.

Insert sizeBreaking Load in test (kN)
M12×6046.0
M16×8066.5
M20×9090.2
M24×100106.8

Interpreting the results: the failure loads measured in the factory test (46.0–106.8 kN) are higher than the ultimate tension failure load (Nu) listed in the official load table (38.4–97.1 kN), because the factory test is carried out under controlled laboratory conditions. For actual engineering design, however, you should rely on the design load (Nrd/YRd) and recommended load (Nrec/Yrec) data in the main table, which match field conditions and the required safety factors.

Common applications for the ADIT HSR concrete insert

Thanks to the dual connection – a standard internal thread on one side and rebar anchorage on the other – the HSR insert suits a wide range of applications in construction, industry and infrastructure where a reliable connection point to concrete is needed, pre-embedded during the pouring stage:

  • Precast concrete: embedding in precast concrete elements – beams, columns, walls and industrial structures – to create a future connection point for bolts.
  • Lifting and hanging points: connecting lifting eyes or lifting brackets to the concrete element for moving, assembly and installation on site.
  • Railings and scaffolding: an anchoring point for installing railing brackets, scaffolding and temporary or permanent protective frames on concrete surfaces.
  • Equipment and system brackets: connecting brackets for HVAC systems, piping, rails and industrial equipment mounted on concrete surfaces.
  • Wall cladding and panels: anchoring panels, stone/metal cladding and secondary structural elements to cast concrete walls.
  • Formwork and dowel assemblies: use as a fixing point in formwork systems and industrial dowel assemblies that require a strong, repeatable threaded connection to concrete.

Correct installation of the ADIT HSR concrete insert – step by step

Unlike a chemical anchor or a wedge anchor, the HSR insert is installed before the pour and not afterwards. Incorrect installation – an improper rebar connection, wrong positioning within the formwork, or failure to keep minimum distances – will impair the loads the insert can actually carry. Follow these steps:

  1. Choosing the right rebar – choose a rebar of diameter dB matching the insert size (for example 8 mm for M12, 14 mm for M24) and cut it to the correct length before bending, as detailed in the general data table.
  2. Bending the rebar – bend the rebar into a loop/arc shape at an opening diameter no smaller than the required minimum (dBr) for the relevant insert size.
  3. Threading the rebar into the insert – thread the bent rebar through the transverse hole (F) at the base of the insert, so that both ends come out at an equal length LB on each side.
  4. Positioning in the formwork and fixing – fix the insert in the formwork at the correct direction and depth, and tie the rebar to the existing reinforcement in the formwork so it does not move during the pour. Keep the minimum distances from the concrete edge (cmin) and between adjacent anchors (smin).
  5. Pouring the concrete – pour the concrete so that it fully envelops the insert body and the bent rebar, with no voids or air pockets around them.
  6. Connecting the bolt after curing – after the concrete has cured to the required strength, screw the required element (eye bolt, threaded rod or bracket) into the internal thread (Rd), according to the working load required for the project.

What is allowed and recommended

  • Use a rebar of the diameter and length exactly matching the insert size.
  • Bend the rebar to an opening diameter (dBr) no smaller than the required minimum.
  • Tie the rebar to the existing reinforcement to prevent movement during the pour.
  • Keep the minimum distance from the concrete edge (cmin) for every anchor.
  • Keep the minimum distance between adjacent anchors (smin).
  • Check the internal thread for dust/concrete before connecting the bolt.
  • Work to the design/recommended load (Nrd/Nrec) in engineering calculations.

What must not be done

  • Install an insert without a rebar and rely on the table loads.
  • Use a rebar of a diameter smaller than required for the insert size.
  • Bend the rebar to an opening diameter smaller than the defined minimum (dBr).
  • Position the insert closer than the minimum distance to the concrete edge.
  • Leave air voids around the insert during the pour.
  • Load the bolt beyond the design/recommended load without an engineer’s check.
  • Install in concrete of unknown strength without checking engineering suitability.

Warning: all loads in the design table are conditional on a full, proper installation, including a connection to a suitable rebar. In any doubt regarding the insert size, the required rebar diameter or the concrete strength in the project – contact an Adit Ltd. engineer: +972-54-7976110.

Frequently asked questions about concrete inserts

What is a concrete insert and what is it used for?
A concrete insert is a metal component with an internal thread, embedded within the concrete element during the pouring stage and intended to serve as a future connection point for a bolt, lifting eye, bracket or any other threaded element. Unlike a chemical anchor or a wedge anchor installed in cured concrete after drilling, a concrete insert goes into the formwork before the pour and remains “buried” within the concrete mass. The ADIT HSR insert additionally uses a rebar anchorage, which increases the total tension load compared with a standard insert alone.
What is the difference between a concrete insert and a wedge anchor or a chemical anchor?
The main difference is the installation stage. A concrete insert is embedded in the formwork before the pour, with no need for drilling after the concrete has cured. A wedge anchor / mechanical anchor is screwed into a drilled hole in cured concrete, relying on friction and side pressure in the hole. A chemical anchor is bonded with resin into a drilled hole in cured concrete. An insert suits cases where it is known in advance that a future connection point will be needed, and it can sometimes provide higher loads than anchors installed after the pour.
How is the HSR insert installed – before or after the pour?
Before the pour. The insert is threaded with a bent rebar, tied to the existing reinforcement in the formwork at the required position and direction, and then the concrete is poured around it. Only after the concrete has cured do you reach the head of the insert and screw in the desired bolt, lifting eye or bracket.
Which rebar diameter is required for each HSR insert size?
The required rebar diameter (dB) depends on the insert size: M12 uses a rebar of 8 mm diameter; M16 uses 10 mm; M20 uses 12 mm; M24 uses 14 mm. Using a rebar of a diameter different from the recommended one may impair the tension loads specified in the technical data.
What is the recommended working load for each HSR insert size?
The recommended service loads for a single anchor, conditional on a proper rebar connection: M12 tension 11.5 kN, combined 45° load up to 11.0 kN; M16 tension 20.0 kN, combined 45° up to 17.0 kN; M20 tension 29.0 kN, combined 45° up to 24.0 kN; M24 tension 39.0 kN, combined 45° up to 30.0 kN. For engineering anchoring it is recommended to rely on the design load (Nrd/YRd) listed in the official table, and to consult the project engineer.
Why does the rebar need to be bent, and why can’t it be used straight?
The bend is what creates the insert’s engineered locking effect within the concrete mass. A straight rebar may pull out together with the insert at a low load, whereas a rebar bent into a loop/arc is “caught” by the surrounding concrete and considerably increases the total tension load of the assembly. Each insert size has a defined minimum opening diameter after bending (dBr) that must not be reduced.
What is the difference between tension load (Nu/Nrd) and combined 45° load (Yu/YRd)?
Tension load (N) is a load applied perpendicular to the insert (a straight “pull-out” direction from the concrete) – it expresses the axial grip of the insert and rebar within the concrete mass. Combined 45° load (Y) is a load applied at a 45-degree angle, combining a tension component and a shear component together. This load is usually lower than the pure tension load, and it simulates practical field situations where the force on the mounted element does not act in a straight line.
What is the minimum distance required from the concrete edge and between adjacent anchors?
The recommended minimum distances (cmin from the concrete edge, smin between anchors) vary by insert size: M12 cmin = 40 mm, smin = 60 mm; M16 cmin = 45 mm, smin = 75 mm; M20 cmin = 50 mm, smin = 90 mm; M24 cmin = 65 mm, smin = 100 mm. Failing to keep the minimum distances may cause the concrete to crack and significantly impair the actual tension loads.
Which tests have ADIT HSR inserts passed?
HSR inserts were tested at the Adit factory in an official pull-out test (Factory Certification Pull-out Test, report 243105, 08-01-2024) that included 8 pull-out tests to failure across all four sizes: M12×60, M16×80, M20×90 and M24×100. The failure loads measured ranged from 46.0 kN (M12) to 106.8 kN (M24), and were used to establish the official load table (ultimate failure, design load and recommended load).
Which applications suit the HSR concrete insert?
The HSR insert suits any application requiring a threaded connection point to concrete that is known in advance at the pouring stage, such as precast concrete elements (beams, columns, walls, structural elements); lifting and hanging points for concrete elements; brackets for railings, scaffolding and protective frames; brackets for equipment and HVAC/piping/rail systems; wall cladding, panels and secondary structural elements; and formwork systems and industrial dowel assemblies.
Can bolts be connected and disconnected from the HSR insert in the future?
Yes – the internal thread in the insert allows repeated connection and disconnection of bolts, lifting eyes and brackets, like any standard metric thread. That said, it is recommended to visually check the condition of the thread (dust, rust, mechanical damage) before each new connection, and not to load the insert beyond the design/recommended load stated in the technical data.
What is the coating of the HSR insert and why is it important?
The HSR insert is made of Cold Formed Carbon Steel and is coated with a zinc (Zn) coating 5–8 microns thick. The coating provides basic corrosion protection for the insert within the concrete and in a normal working environment. In particularly aggressive environments (seashore, chemical plants) it is recommended to consult an Adit engineer regarding the suitability of the coating to the project conditions.

Planning a project with cast-in inserts? Tell us the insert size, rebar diameter and load – our engineers will run the calculation and send you the HSR technical data.

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